WO2018133789A1 - 吸奶器和乳房护理装置及其应用 - Google Patents

吸奶器和乳房护理装置及其应用 Download PDF

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Publication number
WO2018133789A1
WO2018133789A1 PCT/CN2018/072930 CN2018072930W WO2018133789A1 WO 2018133789 A1 WO2018133789 A1 WO 2018133789A1 CN 2018072930 W CN2018072930 W CN 2018072930W WO 2018133789 A1 WO2018133789 A1 WO 2018133789A1
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WO
WIPO (PCT)
Prior art keywords
breast
negative pressure
space
massage
milk
Prior art date
Application number
PCT/CN2018/072930
Other languages
English (en)
French (fr)
Inventor
胡敏
Original Assignee
宁波幸福妈妈医疗科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201720050302.9U external-priority patent/CN207125826U/zh
Priority claimed from CN201720053620.0U external-priority patent/CN207356246U/zh
Priority claimed from CN201710030491.8A external-priority patent/CN108310491A/zh
Priority claimed from CN201720069869.0U external-priority patent/CN207545542U/zh
Priority claimed from CN201720050422.9U external-priority patent/CN207545541U/zh
Priority claimed from CN201710041073.9A external-priority patent/CN108310492B/zh
Priority claimed from CN201710030483.3A external-priority patent/CN108309735A/zh
Priority claimed from CN201720050524.0U external-priority patent/CN207323781U/zh
Priority claimed from CN201720050689.8U external-priority patent/CN207384461U/zh
Priority claimed from CN201710041084.7A external-priority patent/CN108310493A/zh
Priority claimed from CN201710030486.7A external-priority patent/CN108309716A/zh
Application filed by 宁波幸福妈妈医疗科技有限公司 filed Critical 宁波幸福妈妈医疗科技有限公司
Publication of WO2018133789A1 publication Critical patent/WO2018133789A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M1/00Suction or pumping devices for medical purposes; Devices for carrying-off, for treatment of, or for carrying-over, body-liquids; Drainage systems
    • A61M1/06Milking pumps
    • A61M1/069Means for improving milking yield
    • A61M1/0697Means for improving milking yield having means for massaging the breast
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M1/00Suction or pumping devices for medical purposes; Devices for carrying-off, for treatment of, or for carrying-over, body-liquids; Drainage systems
    • A61M1/06Milking pumps
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M1/00Suction or pumping devices for medical purposes; Devices for carrying-off, for treatment of, or for carrying-over, body-liquids; Drainage systems
    • A61M1/06Milking pumps
    • A61M1/069Means for improving milking yield
    • A61M1/0693Means for improving milking yield with programmable or pre-programmed sucking patterns
    • A61M1/06935Means for improving milking yield with programmable or pre-programmed sucking patterns imitating the suckling of an infant

Definitions

  • the present invention relates to a breast pump, and more particularly to a breast pump and breast care device and uses thereof.
  • a breast pump is a device for helping a user to excrete breast milk from the breast.
  • the breast milk can be drained by the breast pump, and the milk in the breast is discharged more empty, and the breast milk is secreted later. More, therefore, the breast pump helps to promote lactation, wherein the breast pump includes a manual breast pump and an electric breast pump.
  • the breast pump includes a manual breast pump and an electric breast pump.
  • the user can also achieve rapid opening of the milk with the help of a breast pump, so that the first milk that the newborn eats is breast milk, which is especially important for the growth and development of the newborn. of.
  • the user uses the breast pump, the user needs to buckle a part of the breast pump to the position of the breast. After the breast pump is operated to generate a negative pressure inside the breast pump, the breast pump can discharge the breast milk from the breast. in vitro.
  • Prior art breast pumps have a number of drawbacks.
  • the common electric breast pump switches the working state and the non-working state by a suction pump (for example, a piston suction pump), so that the inside of the breast pump intermittently generates a negative pressure for sucking milk.
  • a suction pump for example, a piston suction pump
  • the current breast pump has the same air pressure inside and outside the suction pump when the suction pump is not in operation. Therefore, when using the breast pump, the user needs to use the hand to support or hold the breast pump. Because the use of the breast pump for up to ten minutes or more, it is easy to feel tired when the user stays in the same tight posture for a long time, especially for users who have just given birth, using this breast pump Obviously, the feeling is not enough.
  • the cup of the breast pump is mostly a plastic product or a silicone product.
  • the cup of the breast pump is exposed to the external environment, so that the temperature of the cup of the breast pump and the surrounding environment are The temperature is similar, especially in the colder winter season, the surface temperature of the cup of the breast pump will be very low, which makes it impossible for the user to directly use the breast pump to suck the milk, otherwise it will cause bad stimulation to the breast tissue of the breast. So that the secretion of prolactin and oxytocin is inhibited, resulting in a decrease in lactation and damage to the user's body. Therefore, the user will find a way to raise the temperature of the cup of the breast pump before using the breast pump.
  • the current practice is to place the cup in hot water to soak or cook to raise the temperature of the cup. Not only is the procedure very cumbersome, but the temperature of the cup is difficult to maintain. When the breast pump is used for more than a certain period of time, the temperature of the cup will continue to decrease rapidly, especially in the colder winter season, the temperature of the cup drops more. fast. That is to say, this practice does not allow the cup of the breast pump to be maintained at a reasonable temperature range.
  • the user needs to relax the breast skin and breast tissue around the breast before using the breast pump to remove the breast milk from the breast, especially in the colder winter season, but also the breast skin and breast tissue around the breast.
  • the current practice is to use a hot towel to heat the breast.
  • This method also has many problems.
  • using a hot towel to heat the breast requires first using hot water to soak the towel, which leads to a very Trouble, and after the hot towel is cold, the mother is prone to cold.
  • the hot towel has more moisture content, and it is easier to wet the clothes or bedding during the hot compress, and after the hot compress is completed, there will be more trouble. More water remains on the surface of the skin of the breast.
  • Breast disease is a common disease in women, such as, but not limited to, lobular hyperplasia, breast fibroma, breast cysts, and breast cancer.
  • women who are breast-feeding may also experience breast swelling, mastitis, or breast milk deficiency caused by milk accumulation.
  • it is necessary to massage the breast to stimulate the breast tissue and moderately stimulate the acupuncture points associated with the breast tissue to relax the breast tissue and energize the breast tissue. the goal of.
  • the breast is a relatively private organ for women. Although there are organizations that provide breast massage and health care services, most women still use the manual massage to massage the breasts. However, this kind of manual massage exists. A lot of flaws.
  • women can't simultaneously stimulate the acupuncture points associated with breast tissue by manually massaging the breasts, that is, women can't simultaneously massage the breasts and stimulate the acupuncture points associated with the breast tissue, while the medical research surface, Stimulation of the acupuncture points associated with breast tissue while the breast is being massaged has the effect of better relaxing the breast tissue and making the breast tissue more vibrant.
  • Stimulation of the acupuncture points associated with breast tissue while the breast is being massaged has the effect of better relaxing the breast tissue and making the breast tissue more vibrant.
  • the temperature difference between the temperature and the breast is large. When the hand of the woman is in contact with the skin of the breast, the skin of the breast may be uncomfortable, which may make it more difficult to adhere to by manually massaging the breast in colder weather conditions such as winter.
  • manual massage has the following drawbacks:
  • the temperature is heated to and maintained at a temperature appropriate to the skin of the breast to avoid irritation to the breast skin and breast tissue.
  • the breast containment device in contact with the breast skin of the person is capable of relaxing the breast skin and breast tissue by increasing the temperature of the breast skin and breast tissue.
  • the temperature is such that the use of the breast pump is more convenient.
  • the temperature of the containment device is maintained at a suitable temperature range.
  • the temperature of the containment device is raised and the temperature of the breast containment device is maintained at a suitable temperature range.
  • the milk body body forms a negative pressure in the heat maintaining space of the breast receiving device so that the breast receiving device does not automatically fall off from the user's breast, thereby enabling the user to easily use the suction Milk machine.
  • the breast pump body creates a pressure difference between the inside and the outside of the accommodation space of the breast containment device and causes the pressure difference to always exist during the user's use of the breast pump.
  • An object of the present invention is to provide a breast pump and a breast care apparatus and an application thereof, wherein the breast pump body can massage a user's breast by causing the accommodation space to form the negative pressure to be The user's breast skin and breast tissue are further relaxed.
  • An object of the present invention is to provide a breast pump and a breast care device and an application thereof, wherein the cleaning device is capable of cleaning dust adhering to an inner wall of the connecting pipe by allowing fluid to enter the inside of the connecting pipe, Bacteria, milk stains and other pollutants.
  • An object of the present invention is to provide a breast pump and a breast care device and an application thereof, wherein the cleaning device is capable of flushing the inner wall of the connecting pipe by flowing a fluid inside the connecting pipe, thereby cleaning and attaching Contaminants such as dust, bacteria, milk stains, etc. on the inner wall of the connecting pipe.
  • the inner wall of the connecting pipe is dust, bacteria, milk stains and the like.
  • An object of the present invention is to provide a breast pump and a breast care device and an application thereof, wherein the cleaning device includes a cleaning body and a vacuum generator, the cleaning body having an inlet port and an outlet port.
  • a vacuum generator is connected to the inlet port and the outlet port of the cleaning body, and the vacuum generator is capable of allowing fluid to enter and enter the cleaning body from the inlet port of the cleaning body Dissipating the outlet port, the connecting tube may be connected to the inlet port or the outlet port of the cleaning body to allow fluid from the cleaning body to be in the vacuum generator When the flow port enters and exits from the outlet port of the cleaning body, the inside of the connecting pipe is cleaned.
  • the cleaning device includes a pressure release device, wherein the pressure release device is in communication with the cleaning body and the vacuum generator a fluid passageway that causes a fluid to alternate between a fluid in the fluid passage when the vacuum generator causes fluid to enter the fluid passage from the inlet port of the washing body .
  • the cleaning device includes a housing, wherein the cleaning body, the vacuum generator, the pressure release, and the power A supply element can be disposed to the housing to form a unitary structure. Additionally, the cleaning body may also form the housing.
  • the breast pump includes a milk receptacle that is disposed in communication with the receiving space of the breast receiving device And guiding the breast milk from the receiving space of the breast receiving device to the milk receptacle.
  • the breast pump comprises a support frame, the breast containment device, the milk receptacle and the cleaning device are respectively provided
  • the support frame is such that the breast pump is easy to carry and use.
  • the breast receiving member includes a receiving body and a heat generating component, the receiving body having a receiving space for receiving the breast, the heat generation An element is disposed to the accommodating body to heat the accommodating body and raise a temperature of the accommodating space when the heat generating element generates heat.
  • An object of the present invention is to provide a breast pump and breast care apparatus and an application thereof, wherein the breast receiving member provides a temperature maintaining portion, the temperature maintaining portion is provided to the receiving body, and the temperature is maintained The portion can maintain the temperature of the breast receiving member at a suitable temperature range.
  • An object of the present invention is to provide a breast pump and breast care apparatus and application thereof, wherein the heat generating component has an inner side and an outer side corresponding to the inner side, wherein the temperature maintaining portion is located outside the heat generating component So that the heat generated by the heat generating element can only be radiated to the inner side portion of the accommodating body and radiated to the accommodating space, and the breast care device blocks the heat generated by the heat generating element from being radiated to the breast care device to The manner of accommodating the outer portion of the body and the external environment causes the heat generated by the heat generating component to be utilized efficiently, thereby enabling the breast receiving member to be quickly warmed up and in a case where less power is consumed The temperature of the breast receiving member is maintained at a suitable temperature range.
  • the power supply unit generates heat by supplying electric power to the heat generating element by the power supply unit.
  • An object of the present invention is to provide a breast pump and breast care apparatus and application thereof, wherein the care body further provides a driving portion, wherein the driving portion is electrically connected to the power supply portion to The power supply portion supplies electric power to the driving portion to provide vibration, which is explained to the accommodating body to massage the breast in a manner to cause the accommodating body to vibrate.
  • An object of the present invention is to provide a breast pump and a breast care apparatus and an application thereof, wherein the vibrating portion can also be provided to the accommodating body to supply electric power to the driving portion when the power supply portion supplies The driving portion generates vibration to massage the breast.
  • the breast receiving member is described.
  • An object of the present invention is to provide a breast pump and a breast care device and an application thereof, wherein the vacuum massage device provides a negative pressure generating unit and a massage unit, and the massage unit is coupled to the negative pressure generating unit
  • the negative pressure generating unit alternately forms a massage negative pressure and a maintenance negative pressure in a massage space of the massage unit, so that the negative pressure massage device is in the massage negative pressure state and the maintenance negative Switch back and forth between pressure states.
  • An object of the present invention is to provide a breast pump and a breast care device and an application thereof, wherein when the vacuum massage device is used, a negative pressure environment is always formed in the massage space, and in this way, the device can be alleviated
  • the tension of the negative pressure massage device on the human tissue when used to improve the comfort of the negative pressure massage device.
  • the vacuum massage device provides a vibration unit for massaging human tissue.
  • the vibration unit can provide vibration and simultaneously act on the position of the human tissue to enhance the massage effect on the human tissue.
  • An object of the present invention is to provide a breast pump and a breast care device and an application thereof, wherein the massage unit provides a massage body and a heat supply body, the massage body provides the massage space, the heat supply body and The massage bodies are connected to each other to heat the massage body by the heat supply body and to maintain the temperature of the massage body and the massage space at a suitable temperature range.
  • the supply body is in direct contact with the human body tissue, so that the body tissue can be prevented from being harmed by the heat supply body.
  • the massage body and the temperature of the massage body and the massage space are maintained at a suitable temperature range.
  • the breast pump is a milk discharger that provides a breast containment device
  • the breast containment device providing a flexible milk discharge unit having a milk discharge space, wherein when the breast is accommodated in the milk discharge space, the milk discharge unit can be deformed to simulate a sucking action of the baby, thereby removing breast milk from the breast milk Excreted in the breast.
  • the milking unit has a uniform deformation amplitude each time.
  • the milk discharge unit provides a row of milk portions, the milk discharge portion providing at least one molding portion and two deformation guide portions, each of which The deformation guiding portions are symmetrical with each other to guide a deformation direction of the milk discharge unit, so that the two molding portions are relatively moved, or the upper portion and the lower portion of the molding portion are relatively moved to simulate sucking of the baby. action.
  • the deformation amplitude of the portion may be greater than the deformation amplitude of the upper molding portion to better simulate the sucking motion of the baby.
  • the comfort of the breast containment device is increased, and the milk discharger can also be made particularly suitable for use in low temperature conditions.
  • the heating unit provides a heating portion, the heating portion being disposed in the milk discharge unit to heat the milk discharge unit and The milk discharge space formed by the milk discharge unit.
  • the heating portion may be formed inside the milk discharge unit or the heating portion may be overlapped on the outer wall of the milk discharge unit.
  • the breast skin of the breast thereby preventing the heating portion from causing adverse stimulation to the breast skin and breast tissue of the breast due to excessive temperature to improve the reliability and stability of the breast receiving device when it is used.
  • An object of the present invention is to provide a breast pump and a breast care device and application thereof, wherein the heating portion can also form a heating space, and the milk discharge unit is held in the heating space, so that when the heating portion When the heat is generated, the milk discharge space of the milk discharge unit and the milk discharge unit are heated.
  • An object of the present invention is to provide a breast pump and a breast care apparatus and application thereof, wherein the heating unit provides a temperature maintaining portion that is held at an outer wall of the heating portion to prevent the heating The temperature generated by the portion is radiated to the external environment through the temperature maintaining portion, thereby increasing the utilization rate of heat generated by the heating portion, and is advantageous for saving power supplied to the heating portion, thereby improving the milk discharger Endurance.
  • the milk discharge device provides a milk discharge device
  • the milk discharge device provides a vacuum generator
  • the vacuum generator Forming a ventilation path
  • the milk discharge unit is disposed with the milk discharge device to connect the milk discharge space to the air passage
  • the negative pressure generator forms a negative pressure environment by the air passage
  • the milking space is formed into a negative pressure environment, thereby deforming the milking unit to simulate the sucking action of the baby.
  • An object of the present invention is to provide a breast pump and breast care device and application thereof, wherein the vacuum generator is implemented as a vacuum generator to form a negative pressure in the milk discharge space of the milk discharge unit The environment thereby deforming the milking unit to simulate the sucking action of the infant.
  • An object of the present invention is to provide a breast pump and breast care device and application thereof, wherein when the milking negative pressure is formed in the milk discharge space, the milk discharge unit can discharge breast milk from the breast when When the maintenance negative pressure is formed in the milk discharge space, the breast accommodating device can be maintained in the maintenance of the breast, and in this way, the comfort of the milk discharge device when it is used can be improved. That is, once the milk discharger is used, the milk discharge space is always a negative pressure environment to improve the comfort of the milk discharger when it is used.
  • An object of the present invention is to provide a breast pump and a breast care device and an application thereof, wherein when the nipple correction device is used, the air passage is always in a negative pressure state, in this way, not only the user is allowed It is comfortable to use the nipple correction device to correct the nipple to be corrected, and it is possible to improve the safety and reliability of the nipple correction device when it is used.
  • the manner of the holding portion is such that the nipple to be corrected is always maintained at the correcting end during the process of being corrected, thereby facilitating the improvement of the correcting effect.
  • An object of the present invention is to provide a breast pump and a breast care device and an application thereof, wherein an inner wall of the aligner extends obliquely from a free end of the aligner toward a mounting end to facilitate the nipple to be corrected Pulled to the holding portion and held at the correction end.
  • the aligner has a first inner wall, a second inner wall and a third inner wall, wherein the first inner wall is from the aligner a free end extending toward the mounting end, the third inner wall extending from the mounting end of the aligner toward the free end, the second inner wall being coupled to the first inner wall and the third inner wall, and
  • the second inner wall and the first inner wall and the third inner wall respectively have an angle.
  • An object of the present invention is to provide a breast pump and a breast care device and an application thereof, wherein a connection position of the first inner wall and the second inner wall is rounded, thereby facilitating not only lifting of the nipple to be corrected It is also advantageous for the retaining portion to facilitate the detachment of the nipple to be corrected from the retaining portion and to cause no damage to the nipple to be corrected during both processes.
  • the pressure relief valve can quickly restore the normal pressure in the air passage to prevent the negative pressure in the air passage from being excessively damaged, thereby causing damage to the nipple to be corrected, thereby improving the nipple correction device. Safety and reliability when using.
  • the invention provides a breast pump comprising:
  • At least one breast receiving device wherein the breast receiving device has a receiving space and a breast pumping passage, wherein the breast receiving device is coupled to the breast pump body, and the breast pumping passage communicates with the receiving space and
  • the breast pump body is configured to form a negative pressure ring shape by the breast pump body through the milk suction passage;
  • a maintenance device wherein the breast containment device is coupled to the maintenance device, wherein the maintenance device is configured to maintain a temperature of the breast containment device at a suitable temperature range.
  • the maintaining device includes at least one heat generating component, the heat generating component is disposed on the breast receiving device, and the heat generating component is wrapped around the accommodation space, wherein the heat is generated Heat is generated when the component is supplied with power to heat the breast containment device and maintain the temperature of the breast containment device within a suitable temperature range.
  • the breast receiving device includes an inner portion and an outer portion, and the heat generating element is disposed between the inner portion and the outer portion that overlap each other, wherein the breast receiving device
  • the inner side portion forms the breast pumping passage and the accommodation space.
  • the breast receiving device includes an inner portion and an outer portion, and the heat generating element is integrally formed between the inner portion and the outer portion that overlap each other, wherein the breast is accommodated
  • the inner side portion of the device forms the breast pumping passage and the accommodation space.
  • the maintenance device comprises at least one temperature maintaining element, wherein the temperature maintaining element is held outside the heating element.
  • the temperature maintaining element is disposed between the heating element and the outer side portion, or the temperature maintaining element is formed between the heating element and the outer side portion such that The temperature maintaining element is held outside of the heating element.
  • the breast pump further includes a power supply device, wherein the heat generating component is electrically connected to the power supply device.
  • the breast pump further includes a conductive device, wherein the conductive device includes a first conductive member and a second conductive member, wherein the first conductive member is electrically connected to the a power supply device, the second conductive member is electrically connected to the heating element, wherein the second conductive member is electrically connected to the first conductive member to turn on the power supply device and the heat generation element.
  • the conductive device includes a first conductive member and a second conductive member, wherein the first conductive member is electrically connected to the a power supply device, the second conductive member is electrically connected to the heating element, wherein the second conductive member is electrically connected to the first conductive member to turn on the power supply device and the heat generation element.
  • the first conductive member and the second conductive member are each a conductive sheet; or the first conductive member and the second conductive member are both conductive contacts; or the first One of the conductive members and the second conductive member is a conductive sheet, and the other conductive member is a conductive contact.
  • the breast pump body comprises a milking device and a vacuum generating assembly, wherein the milking device has a milking space, at least one milking inlet and a negative pressure generating passage.
  • the milk inlet and the negative pressure generating passage are respectively communicated with the milking space, wherein the negative pressure generating assembly is in communication with the negative pressure generating passage of the milk receptacle, and the breast receiving device is installed
  • the milking device of the breast pump body such that the breast pumping passage of the breast receiving device communicates with the milking port of the milk receptacle, wherein the negative pressure generating component causes the A negative pressure environment is formed in the accommodation space of the breast containment device.
  • the negative pressure generating component is electrically connected to the power supply device.
  • the breast pump further includes a casing, wherein the negative pressure generating component and the power supply device are respectively disposed on the casing, wherein the first conductive member is disposed In the housing, and at least a portion of the first conductive member is exposed on a surface of the housing, the second conductive member is disposed on the breast receiving device, and at least a portion of the second conductive member Exposed to a surface of the breast receiving device, wherein the first conductive member and the second conductive member are in contact with each other when the housing is mounted to the milk receptacle of the breast pump body through.
  • the breast receiving device has a soaking space, at least one first switching passage, and at least one second switching passage, and the first switching passage and the second switching passage are respectively connected to the Said heat equalizing space
  • said maintaining means comprises a container and a heating element, said container having a heat generating space for containing a fluid, said heating element being disposed in said container, wherein said first exchange passage is connected In the heat generating space, wherein the temperature of the fluid is raised by heating the fluid in the heat generating space when the heating element is supplied with electric power, and the fluid whose temperature is raised enters through the first exchange passage
  • a soaking space is provided to heat the breast containment device when a fluid whose temperature is raised releases heat in the soaking space, wherein fluid that releases heat is discharged through the second exchange passage into the soaking space.
  • the second exchange passage is in communication with the heat generating space such that fluid after releasing heat is recovered to the heat generating space through the second exchange passage.
  • the breast receiving device comprises a heat equalizing element
  • the heat equalizing element is wrapped around the receiving space
  • the maintaining device comprises a heating element
  • the heat equalizing element is Thermally connected to the heat generating component, wherein when the heat generating component is supplied with electric power to generate heat, heat is conducted to the heat equalizing component to heat the breast receiving device and to cause the temperature of the breast receiving device to be Keep at the proper temperature range.
  • the maintaining device comprises at least one heat conducting element, wherein the heat conducting element is thermally conductively connectable to the heat equalizing element and the heat generating element.
  • the present invention further provides a method of heating a breast containment device of a breast pump, wherein the method of heating comprises the steps of:
  • the heat generated by the heat generating component is prevented from radiating to the external environment of the breast containment device such that the temperature of the breast containment device is maintained at a suitable temperature range.
  • a temperature maintaining member is disposed outside the heat generating component to prevent heat generated by the heat generating component from being radiated to the
  • the external environment of the breast receiving device is such that the temperature of the breast receiving device is maintained at a suitable temperature range.
  • a temperature maintaining member is formed on the outer side of the heat generating component to prevent heat generated by the heat generating component from being radiated to the
  • the external environment of the breast receiving device is such that the temperature of the breast receiving device is maintained at a suitable temperature range.
  • the heat generating element in the step (a), is disposed between an outer side portion and an inner side portion of the breast receiving device that overlap each other, and the heat generating element is surrounded An inner portion of the breast containment device, wherein heat generated by the heat generating component is capable of heating the breast containment device simultaneously and with the same extent around the breast.
  • the invention further provides a method of breast pumping, wherein the method of breast pumping comprises the steps of:
  • the accommodating space When a breast is received in an accommodating space of a breast accommodating device, the accommodating space is formed into a suction negative pressure by a breast pump body to discharge the breast milk from the breast;
  • the invention further provides a method of breast pumping, wherein the method of breast pumping comprises the steps of:
  • the inner portion of the breast receiving device is attached to the breast skin of the breast such that the breast receiving device directly conducts heat to the breast The breast skin of the breast, whereby in the step (iii), the breast skin and breast tissue of the breast are relaxed while sucking out the breast milk accumulated in the breast tissue of the breast.
  • the breast pump body causes the accommodating space to form an adsorption negative pressure to suck out breast milk accumulated in the breast tissue of the breast, and
  • the accommodation space forms a maintenance negative pressure to hold the breast containment device in the breast, wherein the value of the adsorption negative pressure is greater than the value of the maintenance negative pressure, and the adsorption negative pressure and the maintenance negative The pressure is alternately formed.
  • the invention further provides a breast pump comprising:
  • each of the breast receiving devices has a receiving space and a breast pumping passage, the breast pumping passage is connected to the receiving space, and the receiving space is for receiving a breast, wherein each of the breasts
  • the breast receiving device is respectively disposed on the breast pump body such that the receiving space communicates with the breast pump body through the breast pumping passage, wherein the breast pump body is disposed to make the receiving space Forming an adsorption negative pressure to excrete breast milk from the breast, and forming the accommodation space to maintain a negative pressure to maintain the breast receiving device at a position of the breast, wherein the value of the adsorption negative pressure is greater than The value of the negative pressure is maintained, and the adsorption negative pressure and the maintenance negative pressure are alternately formed in the accommodation space.
  • the breast pump body comprises a milking device and a vacuum generator, wherein the milking device has a milking space, at least one milking inlet and a negative pressure generating passage, each The milk inlet and the negative pressure generating passage are respectively communicated with the milking space, wherein the vacuum generator is connected to the negative pressure generating passage of the milk receptacle, and each of the breast receiving devices respectively
  • the milk receptacles are mounted to the breast pump body such that the breast pumping passages of each of the breast containment devices are respectively communicated with each of the milking ports of the milk receptacle, wherein
  • the vacuum generator alternately forms the accommodating space of each of the breast accommodating devices to form the absorbing negative pressure and the maintaining negative pressure when supplied with electric power.
  • the breast pump further includes a maintaining device, wherein the maintaining device includes at least one heat generating component, and each of the heat generating components is disposed in each of the breast receiving devices, respectively
  • the heat generating component surrounds the circumference of the accommodation space, wherein heat is generated when the heat generating component is supplied with electric power to heat the breast receiving device and maintain the temperature of the breast receiving device at a suitable temperature range.
  • the maintaining device comprises at least one temperature maintaining element, wherein the temperature maintaining element is overlappedly disposed on the breast receiving device, or the temperature maintaining element is formed in the breast receiving device, The heat generated by the heat generating element is prevented from being radiated to the external environment of the breast containment device.
  • the breast pump further includes a power supply device, wherein each of the heat generating component and the vacuum generator are electrically connected to the power supply device, respectively, to enable the power supply A device supplies power to each of the heat generating components and the vacuum generator, respectively.
  • the breast pump further includes a conductive device, wherein the conductive device includes a first conductive member and a second conductive member, wherein the first conductive member is electrically connected to the a power supply device, the second conductive member is electrically connected to the heating element, wherein the second conductive member is electrically connected to the first conductive member to turn on the power supply device and the heat generation element.
  • the conductive device includes a first conductive member and a second conductive member, wherein the first conductive member is electrically connected to the a power supply device, the second conductive member is electrically connected to the heating element, wherein the second conductive member is electrically connected to the first conductive member to turn on the power supply device and the heat generation element.
  • the breast pump further includes a casing, wherein the vacuum generator and the power supply device are respectively disposed on the casing, wherein the first conductive member is disposed at The housing, and at least a portion of the first conductive member is exposed on a surface of the housing, the second conductive member is disposed on the breast receiving device, and at least a portion of the second conductive member is exposed a surface of the breast receiving device, wherein the first conductive member and the second conductive member are in contact with each other and are turned on when the housing is mounted to the milk receptacle of the breast pump body .
  • the breast receiving member is disposed on the care body, wherein the breast receiving member includes a heat generating component and a receiving body and has an accommodation space, wherein the receiving body further includes an inner portion and An outer side portion that is overlappedly mounted on an outer side of the inner side portion, the heat generating element is disposed between the inner side portion and the outer side portion, and the inner side portion of the accommodating body forms the accommodating body The accommodation space.
  • the inner side portion and the outer side portion of the accommodating body of the breast accommodating member are fitted together by snapping or bonding so that the heat generating element is disposed at Between the inner side portion and the outer side portion.
  • the breast receiving member further includes a temperature maintaining portion, wherein the temperature maintaining portion is located outside the heat generating element.
  • the breast receiving member further includes a temperature maintaining portion, wherein the temperature maintaining portion is located outside the heat generating element.
  • the temperature maintaining portion is held between the heat generating element and the outer side portion of the accommodating body such that the temperature maintaining portion is located outside the heat generating element.
  • the care body includes a casing and a power supply portion provided to the casing, wherein the accommodating body of the breast accommodating member is detachably mounted to the casing The body, and the heat generating component of the breast receiving member are electrically connected to the power supply portion.
  • the breast care device further includes a conductive member, wherein the conductive member includes a first conductive portion and a second conductive portion, the first conductive portion is coupled to the care body The power supply portion, the second conductive portion is coupled to the heat generating component of the breast receiving member, wherein the housing body of the breast receiving member is mounted to the shell of the care body The second conductive portion is automatically turned on by the first conductive portion.
  • the breast care device further includes at least one electrode member, wherein the electrode member includes two connecting wires, a positive terminal, and a negative terminal, and the positive terminal and the negative terminal are respectively disposed At a free end of each of the connecting lines, and the positive end and the negative end are respectively attached to acupuncture points associated with breast tissue of the breast, wherein the care body includes a low frequency pulse portion, the low frequency pulse a portion disposed in the housing, and the low frequency pulse portion is electrically connected to the power supply portion, each of the connection lines of the electrode member being respectively connected to the low frequency pulse portion, wherein the low frequency The pulse portion generates a low frequency pulse when supplied with electric power to act on the acupuncture point through the positive electrode end and the negative electrode end of the electrode member.
  • the present invention further provides a breast care apparatus comprising:
  • the breast receiving member is disposed on the care body, wherein the breast receiving member further comprises:
  • An accommodating body wherein the accommodating body includes an inner portion forming an accommodating space of the breast accommodating member, wherein the heat generating element is located outside the inner portion, and the temperature maintaining portion is located at the The outside of the heat generating component is such that the heat generating component is held between the inner portion and the temperature maintaining portion.
  • the temperature maintaining portion is formed outside the heat generating element; or the temperature maintaining portion is disposed outside the heat generating element.
  • the invention provides a cleaning device for cleaning a connecting tube, wherein the cleaning device comprises:
  • the cleaning body comprises an inflow end and an outflow end, the inflow end has an inflow port, and the outflow end has an outflow port, wherein the vacuum generator is connected And at the inflow end and the outflow end of the cleaning body to form a fluid passage, wherein the inlet port of the inflow end and the outflow port of the outflow end are respectively Two ends of the fluid passage are in communication with the fluid passage;
  • one end of the connecting tube is mounted to the inflow end or the outflow end of the cleaning body such that the connecting tube is from the inlet port of the fluid passage or the An outflow port is communicated with the fluid passage, wherein the vacuum generator creates a negative pressure environment within the fluid passageway to allow fluid to enter the interior space of the connecting pipe from one end of the connecting pipe and The other end of the connecting pipe discharges the inner space of the connecting pipe, thereby washing the connecting pipe.
  • the cleaning device further comprises a pressure release, wherein the pressure release is arranged to intermittently communicate the fluid passage and an external environment of the cleaning device, wherein the vacuum occurs
  • the pressure release device alternately generates a first negative pressure and a second negative pressure in the fluid passage, wherein the value of the first negative pressure and the second negative pressure The values are all greater than 0, and the value of the first negative pressure is greater than the value of the second negative pressure.
  • the pressure release device has an air inlet and an air outlet, and the air inlet of the pressure release device communicates with the air inlet of the fluid passage, the pressure release The air outlet of the device is in communication with an external environment of the cleaning device.
  • the pressure release device has an air inlet and an air outlet, and the air inlet of the pressure release device communicates with the air outlet of the fluid passage, the pressure release The air outlet of the device is in communication with an external environment of the cleaning device.
  • the pressure release device has an air inlet and an air outlet, and the air inlet of the pressure release device communicates with the air inlet of the fluid passage, the pressure release The air outlet of the device is in communication with the outflow port of the fluid passage.
  • the pressure release is a solenoid valve.
  • the cleaning device further comprises a power supply element, wherein the vacuum generator is electrically connected to the power supply element.
  • the cleaning device further comprises a power supply element, wherein the pressure release is electrically connected to the power supply element.
  • the vacuum generator is electrically connected to the power supply element.
  • the cleaning device further includes a housing, wherein the cleaning body, the vacuum generator, the pressure release, and the power supply element are both disposed in the housing.
  • both the inflow end and the outflow end of the washing body protrude from the housing.
  • the present invention further provides a breast pump with a cleaning device, comprising:
  • At least one breast receiving device wherein the breast receiving device has a receiving space for receiving a breast
  • a cleaning device wherein the cleaning device forms a fluid passage and an inlet port and an outlet port respectively communicating with both ends of the fluid passage, wherein the receiving space of the breast receiving device passes through
  • the inlet port of the cleaning device communicates with the fluid passage
  • the outlet of the cleaning device communicates with an external environment of the breast pump, wherein the accommodation space is synchronized with the fluid passage
  • a negative pressure environment is formed to excrete breast milk from the breast.
  • the cleaning device further includes a vacuum generator and a cleaning body, the cleaning body includes an inflow end and an outflow end, and the inflow end has the inflow port, The outflow end has the outflow port, wherein the vacuum generator is connected to the inflow end and the outflow end of the cleaning body to form the fluid passage, wherein the vacuum occurs
  • the device creates a negative pressure environment within the fluid passage.
  • the cleaning device comprises a pressure release device, the pressure release device being arranged to intermittently communicate the fluid passage and an external environment of the cleaning device, wherein the vacuum generator is In a continuous working state, the pressure release device alternately generates a first negative pressure and a second negative pressure in the fluid passage, wherein the values of the first negative pressure and the second negative pressure are both It is greater than 0, and the value of the first negative pressure is greater than the value of the second negative pressure.
  • the breast pump further includes a milking device, wherein the milking device has a milking space and an opening communicating with the milking space, wherein the breast receiving device The accommodating space and the inlet port of the fluid passage are respectively communicated to the milking space through the opening.
  • the breast pump further includes a support frame, wherein the support frame has a first passage and a second passage, wherein the milk receptacle and the cleaning device are respectively mounted on The support frame such that the first passage communicates with the milking space of the milk receptacle and the inlet of the fluid passage, wherein the breast receiving device is mounted to the support frame Causing the second passage to communicate with the milking space of the milk receptacle and the receiving space of the breast containment device.
  • the support frame has a first mounting position, a second mounting position, and a third mounting position, wherein the first passage is in communication with the first mounting position and the third a mounting position, the second passage is in communication with the second mounting position and the third mounting position, wherein the cleaning device is detachably mounted to the first mounting position, the breast receiving device is separable Installed in the second mounting position, the milk receptacle is detachably mounted to the third mounting position.
  • the present invention further provides a method of cleaning a connecting pipe by a cleaning device, wherein the cleaning method comprises the following steps:
  • a first negative pressure and a second negative pressure are alternately generated in the fluid passage by a pressure release device of the cleaning device, so that The fluid flushes the inner wall of the connecting pipe in an alternating manner in the inner space of the connecting pipe, wherein the value of the first negative pressure and the value of the second negative pressure are both greater than 0, and the first negative The value of the pressure is greater than the value of the second negative pressure.
  • an intake port of the pressure release device is communicated with the outflow port of the fluid passage, and an air outlet of the pressure release device is communicated with the outlet a fluid inlet of the fluid passage such that fluid flows through the pressure release to simultaneously purge the pressure release.
  • the connecting tube has an inner diameter size ranging from 1 mm to 10 mm, and the connecting tube has a length dimension ranging from 10 mm to 1000 mm.
  • the present invention provides a breast care device comprising:
  • At least one breast receiving member wherein the breast receiving member has a receiving space for receiving the breast;
  • a care body wherein the care body further comprises:
  • a driving portion wherein the driving portion is electrically connected to the power supply portion, and the driving portion and the power supply portion are respectively disposed in the housing, and the breast receiving member is disposed in the care
  • the housing of the body wherein the driving portion generates vibration when supplied with electric power to cause the breast receiving member to vibrate in synchronization, thereby massaging a breast accommodated in the accommodation space of the breast receiving member.
  • the breast receiving member includes a receiving body and a heat generating component, wherein the receiving body forms the receiving space, the heat generating component is disposed on the receiving body, and the heat generating component Electrically connected to the power supply portion, wherein the heat generating component generates heat when supplied with electric power to heat the accommodating body and raise a temperature of the accommodating space.
  • the accommodating body includes an inner portion and an outer portion, the inner portion forms the accommodating space, and the heat generating member is held at the inner portion and the outer portion overlapping each other Between the heat generated by the heat generating component is capable of heating the inner portion and radiating to the receiving space through the inner portion such that the temperature of the receiving space is raised.
  • the breast receiving member includes a temperature maintaining portion, wherein the temperature maintaining portion is held between the heat generating element and the outer side portion.
  • the breast care device further comprises a conductive member, wherein the conductive member comprises a first conductive element and a second conductive element, the first conductive element being electrically connected to the power a supply portion, the second conductive member is coupled to the heat generating component, wherein the accommodating body of the breast accommodating member is detachably mounted to the housing of the care body, wherein when the breast is accommodated
  • the first conductive element and the second conductive element are conductively connected when the receiving body of the member is mounted to the housing of the care body.
  • the first conductive element is disposed on the housing
  • the receiving body is provided with a mounting portion
  • the second conductive element is disposed on the mounting portion, wherein the receiving portion
  • the first conductive element and the second conductive element are electrically connected when the mounting portion of the body is mounted to the housing.
  • the first conductive element is exposed on a surface of the housing
  • the second conductive element is exposed on a surface of the mounting portion
  • the mounting portion of the receiving body is When mounted on the housing, the first conductive element and the second conductive element are conductively connected by physical contact.
  • the first conductive element and the second conductive element are each a conductive sheet; or the first conductive element and the second conductive element have a conductive bump; or the first One of the conductive elements and the second conductive element is a conductive bump and the other conductive element is a conductive sheet.
  • the housing has a mounting space
  • the receiving body is provided with a mounting portion, wherein the mounting portion of the receiving body is detachably mounted to the mounting of the housing space.
  • the accommodating body has an installation space, and the housing is provided with a mounting portion, wherein the mounting portion of the housing is detachably mounted to the mounting body space.
  • the breast care device further includes a connecting member, wherein the connecting member includes a magnetic first connecting member and a magnetic second connecting member, the housing having an installation space.
  • the first connecting element is disposed on the housing and located in the installation space, wherein the receiving body is provided with a mounting portion, and the second connecting element is disposed on the mounting portion, wherein the receiving body
  • the first connecting member and the second connecting member are attracted to each other such that the mounting portion of the receiving body is held in the The installation space of the housing.
  • the first connecting element and the second connecting element are each a magnet; or one of the first connecting element and the second connecting element is a magnet and the other is connected
  • the component is a magnetic component
  • the breast care device further includes at least one electrode member, wherein the electrode member includes two connecting wires, a positive terminal, and a negative terminal, and the positive terminal and the negative terminal are respectively disposed At a free end of each of the connecting lines, and the positive end and the negative end are respectively attached to acupuncture points associated with breast tissue of the breast, wherein the care body includes a low frequency pulse portion, the low frequency pulse a portion disposed in the housing, and the low frequency pulse portion is electrically connected to the power supply portion, each of the connection lines of the electrode member being respectively connected to the low frequency pulse portion, wherein the low frequency The pulse portion generates a low frequency pulse when supplied with electric power to act on the acupuncture point through the positive electrode end and the negative electrode end of the electrode member.
  • the present invention further provides a breast care apparatus comprising:
  • At least one breast receiving member wherein the breast receiving member has a receiving space for receiving the breast;
  • At least one electrode member wherein the electrode member comprises two connecting wires, a positive terminal and a negative terminal, the positive terminal and the negative terminal being respectively disposed at free ends of each of the connecting wires, and the positive electrode The extreme and the negative end are respectively attached to acupuncture points associated with breast tissue of the breast;
  • a care body wherein the breast receiving member is disposed on the care body, a connection end of each of the connecting wires is respectively connected to the care body, wherein the care body is disposed to vibrate the breast receiving member
  • the breast accommodated in the accommodation space is massaged, and the care body is configured to generate a low frequency pulse to act on the acupuncture point through the positive end and the negative end of the electrode member.
  • the care body includes a casing, a power supply portion, and a driving portion, the driving portion is electrically connected to the power supply portion, and the driving portion and the power supply
  • the portions are respectively disposed in the housing, wherein the breast receiving member is disposed in the housing, wherein the driving portion generates vibration when the power is supplied to drive the breast receiving member to vibrate synchronously, thereby massaging a breast housed in the accommodation space of the breast receiving member.
  • the care body includes a casing, a power supply portion, and a driving portion, the driving portion is electrically connected to the power supply portion, and the power supply portion is disposed at the a housing, the driving portion is disposed to the breast receiving member, wherein the breast receiving member is disposed to the housing, wherein the driving portion generates vibration to drive the breast receiving member to be synchronized when power is supplied
  • the ground vibrates so as to massage the breast accommodated in the accommodation space of the breast receiving member.
  • the care body includes a low frequency pulse portion, wherein the low frequency pulse portion is electrically connected to the power supply portion, and a connection end of each of the connection wires of the electrode member is Connected to the low frequency pulse portion, wherein the low frequency pulse portion generates a low frequency pulse to apply to the acupuncture point through the positive terminal and the negative terminal of the electrode member when power is supplied.
  • the present invention provides a vacuum massage apparatus comprising:
  • the massage unit has a massage space
  • a negative pressure generating unit wherein the negative pressure generating unit is connected to the massaging unit, wherein the negative pressure generating unit is configured to alternately form a massage negative pressure and a massage space in the massage space of the massage unit The negative pressure is maintained to massage the human tissue corresponding to the massage space, wherein the value of the massage negative pressure is greater than the value of the maintenance negative pressure.
  • the negative pressure generating unit includes a negative pressure generator and a pressure release device, and the negative pressure generator and the pressure release device communicate with each other to form a ventilation path, the massage unit
  • the massage space is connected to the air passage of the negative pressure generating unit, wherein the negative pressure generator forms a negative pressure environment in the massage space through the air passage, and the pressure is a release device
  • the manner of switching back and forth between an open state and a closed state causes the massage negative pressure and the maintenance negative pressure to alternately form in the massage space.
  • the negative pressure generating unit includes a pressure relief valve, wherein the pressure relief valve is operatively communicated with the air passage to pass the pressure relief valve into the massage space Restore normal pressure.
  • the massage unit includes a massage body having a massage space, and the heat supply body is coupled to the massage body to heat the massage body .
  • the heat supply body includes a heating element, wherein the heating element is disposed on the massage body to heat the massage when the heating element is supplied with electric power main body.
  • the heat supply body includes a temperature maintaining portion, wherein the temperature maintaining portion is held outside the heating element to prevent heat generated by the heating element from passing through the temperature maintaining portion Radiation to the external environment.
  • the vacuum massage apparatus further includes a power supply unit, wherein the heating element is electrically connected to the power supply unit to supply power to the heating element when the power supply unit supplies The heating element generates heat to heat the massaging body.
  • the vacuum massage device further includes a conductive unit, wherein the conductive unit includes a first conductive component and a second conductive component, the first conductive component is electrically connected to the a power supply unit, the second conductive component being coupled to the heating element, wherein the first conductive component and the second conductive component are electrically connected to each other to cause the power supply unit to supply power to the heating element.
  • the vacuum massage apparatus further includes a mounting unit, wherein the mounting unit includes a housing, and the power supply unit is disposed inside the housing, wherein the first conductive An assembly is disposed on the housing, the second conductive assembly is disposed on the massage body, wherein the first conductive component and the second conductive when the massage body and the housing are close to each other The components are turned on each other.
  • At least a portion of the first conductive component is exposed outside the housing, and at least a portion of the second conductive component is exposed outside the massage body, such that the massage body
  • the first conductive component and the second conductive component are electrically connected to each other by physical contact.
  • the first conductive component and the second conductive component are respectively conductive sheets or conductive bumps.
  • the vacuum massage apparatus further includes a vibration unit, wherein the vibration unit is disposed inside the casing, and the vibration unit is electrically connected to the power supply unit, wherein The vibration unit generates vibration when supplied with electric power, and the vibration drives the massage body to vibrate synchronously through the housing.
  • the vacuum massage device further includes a low frequency pulse unit, wherein the low frequency pulse unit includes a pulse generator and a conduction component, and the conduction component is coupled to the pulse generator.
  • the low frequency pulser is disposed inside the housing, and the low frequency pulser is electrically connected to the power supply unit, wherein the low frequency pulser generates a low frequency pulse when supplied with power, and the conductive component will The low frequency pulses are transmitted to human tissue or corresponding acupuncture points.
  • the vacuum massage device further includes a low frequency pulse unit, wherein the low frequency pulse unit includes a pulse generator and a conduction component, and the conduction component is coupled to the pulse generator.
  • the low frequency pulser is disposed inside the housing, and the low frequency pulser is electrically connected to the power supply unit, wherein the low frequency pulser generates a low frequency pulse when supplied with power, and the conductive component will The low frequency pulses are transmitted to human tissue or corresponding acupuncture points.
  • the conducting component comprises two conductive lines, a positive terminal and a negative terminal, and the connecting ends of each of the conductive wires are respectively connected to the pulse generator, the positive terminal and the The negative ends are respectively disposed at the free ends of each of the conductive lines.
  • the vacuum massage apparatus further includes a mounting unit, wherein the mounting unit includes a housing, a support body, and a receiving body, wherein the vacuum generator and the pressure release Separatingly disposed in the interior of the housing, wherein the support body has a first mounting position, a second mounting position, a third mounting position, a first passage, and a second passage, the first a passage communicating with the first mounting position and the third mounting position, the second passage communicating with the second mounting position and the third mounting position, wherein the receiving body has a milking space, wherein a housing mounted to the first mounting position of the support body to communicate the air passage to the first passage, the massage unit being mounted to the second mounting position of the support body Having the massage space communicate with the second mounting position, wherein the receiving body is mounted to the third mounting position of the support body such that the milking space communicates with the first passage and The second pass Road.
  • the mounting unit includes a housing, a support body, and a receiving body, wherein the vacuum generator and the pressure release Separatingly disposed in the
  • the present invention further provides a vacuum massage method, wherein the vacuum massage method comprises the following steps:
  • a massage negative pressure and a maintenance negative pressure are alternately formed in the massage space to massage the human tissue corresponding to the massage space.
  • the present invention further provides a vacuum massage method, wherein the vacuum massage method comprises the following steps:
  • the step (C) is preceded by the step (A), thereby first preheating the massage body by the heat supply body to make the massage body
  • the temperature is raised to a suitable range, and then the human tissue is closed to the opening of the massage space.
  • the heat supply body continuously heats the massage body such that the temperature of the massage body and the massage space is maintained within an appropriate range.
  • the method further comprises the steps of:
  • the present invention provides a breast containment device for a milk discharger comprising:
  • the milk discharge unit further comprises a row of milk portions, the milk discharge portion further comprising at least one molding portion and two deformation guiding portions and having a row of milk chambers, each of the deformation guiding portions Separately located on both sides of the molding portion for guiding a deformation direction of the molding portion, wherein a breast can be accommodated in the milk discharge chamber, and when the milk discharge portion is stressed, the molding portion is Deformation under the guidance of each of the deformation guiding portions to support the areola of the breast upward in a lower portion of the areola of the breast, and to press the areola of the breast downward in an upper portion of the areola of the breast, thereby Breast milk is excreted from the breast.
  • the number of the molding portions is one, each of the deformation guiding portions is symmetrically disposed on both sides of the molding portion, or each of the deformation guiding portions is integrally formed On both sides of the molding portion, a direction of deformation of the molding portion is guided.
  • the number of the molding portions is two, wherein the molding portion at the upper portion is defined as an upper molding portion, and the molding portion at the lower portion is defined as a lower molding portion, wherein each The deformation guiding portions are symmetrically disposed on both sides of the upper molding portion, and each of the deformation guiding portions is symmetrically disposed on both sides of the lower molding portion to each of the deformations
  • the guiding portion guides the upper molding portion and the lower molding portion to have a tendency and displacement close to each other.
  • the deformation guiding portion has a thickness thinner than a thickness of the molding portion.
  • the breast receiving device further includes a heating unit, wherein the heating unit includes a heating portion, the heating portion is disposed inside the milk discharging portion, wherein the heating portion is Heat can be generated after the power is supplied to heat the milk discharge portion of the milk discharge portion and the milk discharge portion, wherein the heating portion is an electrically heated film.
  • the heating unit includes a temperature maintaining portion, wherein the temperature maintaining portion is held at an outer wall of the heating portion to prevent heat generated by the heating portion from being radiated through the temperature maintaining portion To the external environment.
  • the invention further provides a milk discharger comprising:
  • the milking device comprises an air passage
  • a breast containment device wherein the breast containment device comprises a flexible milk discharge unit, the milk discharge unit further comprising:
  • the mounting portion has a row of milk passages, the mounting portion being mounted to the milk discharge device to allow the milk discharge passage to communicate with the air passage;
  • each of the deformation guiding portions is respectively located at two sides of the molding portion for guiding a deformation direction of the molding portion, wherein a breast can be accommodated in the milk discharge chamber
  • the air passage forms a negative pressure environment
  • the milking chamber forms a negative pressure environment to force the milking portion, so that the molding portion is deformed under the guidance of each of the deformation guiding portions to The areola of the breast is held up at a lower portion of the areola of the breast, and the areola of the breast is pressed downward at an upper portion of the areola of the breast, thereby expelling the breast milk from the breast.
  • the milk discharge device comprises a vacuum generator, wherein the vacuum generator forms the air passage, and the vacuum generator is capable of forming a negative pressure environment by the air passage The way the milking chamber is formed into a negative pressure environment.
  • the milk discharge device comprises a vacuum generator and a pressure release, wherein the vacuum generator and the pressure release device communicate with each other to form the air passage, wherein
  • the negative pressure generator forms a negative pressure environment by forming the air passage to form a negative pressure environment
  • the pressure release device forms the milk discharge chamber by switching between an open state and a closed state.
  • the milking negative pressure and a maintaining negative pressure wherein the value of the milking negative pressure is greater than the position maintaining the negative pressure.
  • the milk discharge device comprises a power supply unit, wherein the vacuum generator and the pressure release device are electrically connected to the power supply unit, respectively.
  • the milk discharge device includes a pressure relief valve, wherein the pressure relief valve is connectable to the air passage, wherein the air pressure passage is in an open state when the pressure relief valve is in an open state It is a normal pressure state.
  • the milk discharge device includes a pressure relief valve, wherein the pressure relief valve is connectable to the air passage, wherein the air pressure passage is in an open state when the pressure relief valve is in an open state It is a normal pressure state.
  • the milk discharge device includes a support unit and a milk receptacle, wherein the support unit has a first mounting position, a second mounting position, a third mounting position, and a first a passage and a second passage, the first passage communicating with the first mounting position and the third mounting position, the second passage communicating with the second mounting position and the third mounting position, wherein
  • the milking device has a milking space, and the milking device is mounted to the third mounting position of the support unit such that both the first passage and the second passage communicate with the milking space.
  • the mounting portion is mounted to the second mounting position such that the milk discharge passage communicates with the second passage
  • the vacuum generator and the pressure release are mounted to the first installation a bit such that the air passage is in communication with the first passage.
  • the number of the molding portions is one, each of the deformation guiding portions is symmetrically disposed on both sides of the molding portion, or each of the centenary star guiding portions is integrally formed Formed on both sides of the molding portion for guiding the deformation direction of the molding portion.
  • the number of the molding portions is two, wherein the molding portion at the upper portion is defined as an upper molding portion, and the molding portion at the lower portion is defined as a lower molding portion, wherein each The deformation guiding portions are symmetrically disposed on both sides of the upper molding portion, and each of the deformation guiding portions is symmetrically disposed on both sides of the lower molding portion to each of the deformations
  • the guiding portion guides the upper molding portion and the lower molding portion to have a tendency and displacement close to each other.
  • the breast receiving device further includes a heating unit, wherein the heating unit includes a heating portion, the heating portion is disposed inside the milk discharging portion, wherein the heating portion is Heat can be generated after the power is supplied to heat the milk discharge portion of the milk discharge portion and the milk discharge portion, wherein the heating portion is an electrically heated film.
  • the present invention further provides a milk discharge method, wherein the milk discharge method comprises the following steps:
  • the present invention provides a nipple correction device comprising:
  • An aligner wherein the aligner is disposed on the vacuum generator to form an air passage by the aligner and the vacuum generator, and the aligner forms a correcting end;
  • a pressure release device wherein the pressure release device has a release air inlet and a release air outlet, the release air inlet is connected to the air passage, and the release air outlet is connected to the external environment Or the discharge port of the release device is connected to the air passage, wherein the pressure release device alternately generates a corrective negative pressure when the vacuum generator forms a negative pressure environment in the air passage And maintaining a negative pressure, and when the corrective negative pressure is generated in the air passage, a to-be-corrected nipple corresponding to the correcting end is pulled to the inside of the correcting end, when the air venting path is generated When the negative pressure is maintained, the nipple to be corrected is held inside the correction end.
  • the aligner has a correcting passage and forms a retaining portion, the retaining portion being located in the correcting passage, wherein the nipple to be corrected is pulled to the correcting passage and is passing through In the retaining portion, the retaining portion can catch the nipple to be corrected so that the nipple to be corrected is held at the correcting end.
  • the aligner has an inner wall and a mounting surface, the inner wall is coupled to the mounting surface, and has an included angle ⁇ between the inner wall and the mounting surface to form a retaining
  • the inner wall forms a correcting passage, wherein the nipple to be corrected is pulled into the correcting passage and the retaining portion can catch the nipple to be corrected when passing through the retaining portion, so that The nipple to be corrected is held at the correction end.
  • the inner wall and the mounting surface form an angle ⁇ which is an acute angle.
  • connection position of the inner wall and the mounting surface is rounded.
  • the aligner has an inner wall to form the correcting passage, wherein the retaining portion projects annularly at the inner wall of the aligner.
  • the aligner has an inner wall to form the correcting passage, wherein the inner wall further has a first inner wall, a second inner wall and a third inner wall, the first inner wall The free end of the aligner extends toward the mounting end, the third inner wall extends from the mounting end of the aligner toward the free end, and the second inner wall is coupled to the first inner wall and the second inner wall, respectively And forming an angle ⁇ between the first inner wall and the second inner wall, and forming an angle ⁇ between the second inner wall and the third inner wall to form the position at the position of the second inner wall Holder.
  • the angle ⁇ formed between the first inner wall and the second inner wall is an acute angle.
  • connection position of the first inner wall and the second inner wall is rounded.
  • the vacuum generator includes a vacuum generating tube and a vacuum generating body, the vacuum generating tube has a first end portion and a second end portion, and the vacuum generating body is disposed on The vacuum generating tube is configured to form a negative pressure environment in the vacuum generating tube, wherein the aligner is disposed at the first end of the vacuum generating tube, and the second end of the vacuum generating tube The department is connected to the external environment.
  • the aligner and the first end of the vacuum generating tube are integrally formed.
  • the aligner has a mounting groove, and the first end of the vacuum generating tube is mounted to the mounting groove of the aligner.
  • the first end of the vacuum generating tube has a mounting groove, and the mounting end of the aligner is mounted to the first end of the vacuum generating tube Install the slot.
  • the nipple correction device further comprises a power supply element, wherein the vacuum generator and the pressure release device are electrically connected to the power supply element, respectively.
  • the nipple correction device further includes a housing, wherein the vacuum generator and the pressure release device are respectively disposed inside the housing, and the aligner is located in the housing The outside of the body.
  • the nipple correction device further includes a vibration motor, wherein the vibration motor is disposed inside the casing, and the vibration motor generates vibration when the vibration motor is supplied with electric power
  • the to-corrected nipple that is accommodated at the correction end is massaged.
  • the present invention further provides a nipple correction device comprising:
  • An aligner wherein the aligner is disposed on the vacuum generator to form an air passage by the aligner and the vacuum generator, and the aligner forms a correcting end and a holding portion, wherein when the vacuum generator generates a negative pressure environment in the air passage, a to-be-corrected nipple corresponding to the correction end is pulled into the correction end, and when the nipple to be corrected passes through the retention The portion is later caught by the retaining portion to keep the nipple to be corrected at the correcting end during the correction of the nipple to be corrected.
  • the aligner has an inner wall and a mounting surface, the inner wall is coupled to the mounting surface, and has an angle ⁇ between the inner wall and the mounting surface to form the Holder.
  • the inner wall and the mounting surface form an angle ⁇ which is an acute angle.
  • connection position of the inner wall and the mounting surface is rounded.
  • the aligner has an inner wall
  • the inner wall further has a first inner wall, a second inner wall and a third inner wall
  • the first inner wall being mounted from the free end of the aligner Extending in an end direction
  • the third inner wall extends from a mounting end of the aligner toward a free end
  • the second inner wall is coupled to the first inner wall and the second inner wall, respectively
  • the first inner wall and An angle ⁇ is formed between the second inner walls
  • an angle ⁇ is formed between the second inner wall and the third inner wall to form the retaining portion at a position of the second inner wall.
  • the angle ⁇ formed between the first inner wall and the second inner wall is an acute angle.
  • connection position of the first inner wall and the second inner wall is rounded.
  • the present invention further provides an aligner for a nipple correction device, wherein the aligner has an inner wall and a correcting passage and forms a retaining portion, wherein the inner wall forms the correcting passage, and The inner wall extends obliquely from the free end of the aligner toward the mounting end such that an nipple to be corrected can easily enter the correcting passage when pulled, and when the nipple to be corrected passes through the retaining portion The retaining portion catches the nipple to be corrected so that the nipple to be corrected is held in the correcting passage.
  • the aligner has a mounting surface, the inner wall being coupled to the mounting surface, and having an angle ⁇ between the inner wall and the mounting surface to form the retaining portion.
  • the inner wall and the mounting surface form an angle ⁇ which is an acute angle.
  • connection position of the inner wall and the mounting surface is rounded.
  • the inner wall further has a first inner wall, a second inner wall and a third inner wall, the first inner wall extending from the free end of the aligner toward the mounting end, the first a third inner wall extending from a mounting end of the aligner toward a free end, the second inner wall being coupled to the first inner wall and the second inner wall, respectively, and between the first inner wall and the second inner wall An angle ⁇ is formed, and an angle ⁇ is formed between the second inner wall and the third inner wall to form the holding portion at a position of the second inner wall.
  • the angle ⁇ formed between the first inner wall and the second inner wall is an acute angle.
  • connection position of the first inner wall and the second inner wall is rounded.
  • FIG. 1A is a perspective view of a breast pump in accordance with a preferred embodiment of the present invention.
  • Fig. 1B is a perspective view showing a first modified embodiment of the breast pump according to the above preferred embodiment of the present invention.
  • Fig. 1C is a perspective view showing a second modified embodiment of the breast pump according to the above preferred embodiment of the present invention.
  • Fig. 1D is a perspective view showing a third modified embodiment of the breast pump according to the above preferred embodiment of the present invention.
  • Fig. 1E is a schematic cross-sectional view showing a third modified embodiment of the breast pump according to the above preferred embodiment of the present invention.
  • FIG. 2 is a schematic illustration of the use of the breast pump in accordance with the above-described preferred embodiment of the present invention, which depicts a relationship of a breast containment device of the breast pump to the breast of the user.
  • FIG. 3 is a schematic illustration of the use of the breast pump in accordance with the above-described preferred embodiment of the present invention, which depicts another relationship of the breast containment device of the breast pump to the breast of the user.
  • FIG. 4 is a schematic illustration of the use of the breast pump in accordance with the above-described preferred embodiment of the present invention, which depicts the relationship of a maintenance device of the breast pump to the breast containment device and the breast of the user.
  • 5A and 5B are schematic views showing a sucking process of the breast pump according to the above preferred embodiment of the present invention.
  • Figure 6A is an exploded perspective view of a breast pump in accordance with another preferred embodiment of the present invention.
  • Figure 7A is an enlarged schematic view of the breast pump in the S position in accordance with the above preferred embodiment of the present invention.
  • Figure 7B is an enlarged schematic view showing a modified embodiment of the breast pump at the S position in accordance with the above preferred embodiment of the present invention.
  • Figure 7C is an enlarged schematic view showing another modified embodiment of the breast pump at the S position in accordance with the above preferred embodiment of the present invention.
  • Figure 8 is a schematic illustration of the use of the breast pump in accordance with the above-described preferred embodiment of the present invention, which depicts a relationship of a breast containment device of the breast pump to the breast of the user.
  • FIG. 9 is a schematic illustration of the use of the breast pump in accordance with the above-described preferred embodiment of the present invention, which depicts another relationship of the breast containment device of the breast pump to the breast of the user.
  • Figure 10 is a schematic illustration of the use of the breast pump in accordance with the above-described preferred embodiment of the present invention, which depicts the relationship of a maintenance device of the breast pump to the breast containment device and the breast of the user.
  • Figure 11 is a perspective view of a breast pump in accordance with still another preferred embodiment of the present invention.
  • Figure 12 is an exploded perspective view of the breast pump according to the above preferred embodiment of the present invention.
  • Figure 13 is a cross-sectional view showing the breast pump according to the above preferred embodiment of the present invention.
  • Figure 14 is an enlarged schematic view of the breast pump in the S' position in accordance with the above preferred embodiment of the present invention.
  • Figure 15 is an enlarged schematic view showing a modified embodiment of the breast pump at the S' position in accordance with the above preferred embodiment of the present invention.
  • Figure 16 is an enlarged schematic view showing a modified embodiment of the breast pump at the S' position in accordance with the above preferred embodiment of the present invention.
  • Figure 17 is an enlarged schematic view showing a modified embodiment of the breast pump at the S' position in accordance with the above preferred embodiment of the present invention.
  • Figure 18 is a schematic view showing the state of use of the breast pump according to the above preferred embodiment of the present invention, which depicts a relationship between a breast receiving device of the breast pump and the breast of the user.
  • Figure 19 is a schematic view showing the state of use of the breast pump according to the above preferred embodiment of the present invention, which depicts another relationship between the breast receiving device of the breast pump and the breast of the user.
  • Figure 20 is a schematic illustration of the use of the breast pump in accordance with the above-described preferred embodiment of the present invention, which depicts the relationship of a maintenance device of the breast pump to the breast containment device and the breast of the user.
  • Figure 21 is a schematic illustration of a cleaning apparatus in accordance with a preferred embodiment of the present invention.
  • Figure 22A is a conceptual schematic view of a first embodiment of the cleaning apparatus in accordance with the above-described preferred embodiment of the present invention.
  • Figure 22B is a conceptual schematic view of a second embodiment of the cleaning apparatus in accordance with the above-described preferred embodiment of the present invention.
  • Figure 22C is a conceptual schematic view of a third embodiment of the cleaning apparatus in accordance with the above-described preferred embodiment of the present invention.
  • 23A and 23B are schematic views showing a cleaning method of the cleaning device according to the above preferred embodiment of the present invention.
  • 24A and 24B are schematic views showing a cleaning method of the cleaning device in accordance with the above preferred embodiment of the present invention.
  • Figure 25 is a flow chart showing a cleaning method for cleaning a connecting pipe by the cleaning device according to the above preferred embodiment of the present invention.
  • Figure 26 is a perspective view of a breast pump with a cleaning device in accordance with the above preferred embodiment of the present invention.
  • Figure 27 is a cross-sectional view showing the breast pump with a washing device in accordance with the above preferred embodiment of the present invention.
  • 28A and 28B are schematic views showing the sucking process of the breast pump with the washing device in accordance with the above preferred embodiment of the present invention.
  • 29 is a perspective view of a breast care device in accordance with a preferred embodiment of the present invention.
  • Figure 30 is an exploded perspective view of the breast care device in accordance with the above preferred embodiment of the present invention.
  • Figure 31 is a cross-sectional view of the breast care device in accordance with the above preferred embodiment of the present invention.
  • Figure 32 is a schematic illustration of the state of use of the breast care device in accordance with the above-described preferred embodiment of the present invention.
  • Figure 33 is an exploded perspective view of a breast receiving member according to a first modified embodiment of the breast care device of the above preferred embodiment of the present invention.
  • Figure 34 is an exploded perspective view of the breast accommodating member of the second modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 35 is a cross-sectional view showing a third modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 36 is a cross-sectional view showing a fourth modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 37 is a cross-sectional view showing a fifth modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 38 is a cross-sectional view showing a sixth modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 39 is a cross-sectional view showing a seventh modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 40 is a cross-sectional view showing an eighth modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 41 is a cross-sectional view showing a ninth modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 42 is a cross-sectional view showing a tenth modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 43 is a cross-sectional view showing an eleventh modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 44 is a cross-sectional view showing a twelfth modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 45 is a cross-sectional view showing a thirteenth modified embodiment of the breast care device according to the above preferred embodiment of the present invention.
  • Figure 46 is a perspective view of a vacuum massage apparatus in accordance with a preferred embodiment of the present invention.
  • Figure 47 is a cross-sectional view showing the vacuum massage apparatus according to the above preferred embodiment of the present invention.
  • Figure 48 is a schematic view showing the principle of the negative pressure massage device according to the above preferred embodiment of the present invention, which depicts a negative pressure generating unit of the negative pressure massage device alternately forming a massage space in a massage unit.
  • Figure 49 is a view showing a state of use of the vacuum massage apparatus according to the above preferred embodiment of the present invention, which illustrates a state in which the negative pressure environment is not formed in the massage space of the vacuum massage apparatus.
  • Figure 50 is a view showing another state of use of the vacuum massage apparatus according to the above preferred embodiment of the present invention, which illustrates a state in which a massage negative pressure is formed in the massage space of the vacuum massage apparatus.
  • Fig. 51 is a view showing another use state of the vacuum massage apparatus according to the above preferred embodiment of the present invention, which shows a state in which the negative pressure is maintained in the massage space of the vacuum massage apparatus.
  • Figure 52 is a cross-sectional view showing a modified embodiment of the vacuum massage apparatus according to the above preferred embodiment of the present invention.
  • Figure 53 is a cross-sectional view showing another modified embodiment of the vacuum massage apparatus according to the above preferred embodiment of the present invention.
  • Figure 54 is a perspective view of a milk discharger in accordance with a preferred embodiment of the present invention.
  • Figure 55 is a perspective view of a milk discharger in accordance with another preferred embodiment of the present invention.
  • Figure 56A is an exploded perspective view of the milk discharger in accordance with the above preferred embodiment of the present invention.
  • Figure 56B is a schematic view showing the principle of an air passage of the milk discharger according to the above preferred embodiment of the present invention.
  • Figure 57 is a perspective cross-sectional view showing the milk discharger according to the above preferred embodiment of the present invention.
  • Figure 58A is a perspective view of a milk discharge unit of the milk discharger in accordance with the above preferred embodiment of the present invention.
  • Figure 58B is a perspective view showing a modified embodiment of the milk discharge unit of the milk discharger according to the above preferred embodiment of the present invention.
  • 59A to 59C are respectively schematic cross-sectional views of the milk discharge unit of the milk discharger according to the above preferred embodiment of the present invention.
  • Figure 60 is a schematic view showing a use process of the milk discharger in accordance with the above preferred embodiment of the present invention.
  • Figure 61 is a schematic view showing another use process of the milk discharger according to the above preferred embodiment of the present invention.
  • Figure 62 is a cross-sectional view showing a modified embodiment of the milk discharger in accordance with the above preferred embodiment of the present invention.
  • Figure 63 is a cross-sectional view showing another modified embodiment of the milk discharger according to the above preferred embodiment of the present invention.
  • Figure 64 is a cross-sectional view showing another modified embodiment of the milk discharger according to the above preferred embodiment of the present invention.
  • Figure 65 is a cross-sectional view showing another modified embodiment of the milk discharger according to the above preferred embodiment of the present invention.
  • Figure 66 is a cross-sectional view showing another modified embodiment of the milk discharger according to the above preferred embodiment of the present invention.
  • Figure 67 is a perspective view of a nipple correction device in accordance with a preferred embodiment of the present invention.
  • Figure 68 is an exploded perspective view of the nipple correction device according to the above preferred embodiment of the present invention.
  • Figure 69A is a cross-sectional view showing the nipple correction device according to the above preferred embodiment of the present invention.
  • Fig. 69B is an enlarged schematic view showing a partial position of Fig. 69A.
  • Figure 70A is a cross-sectional view showing a state of use of the nipple correction device according to the above preferred embodiment of the present invention.
  • Figure 70B is a cross-sectional view showing another use state of the nipple correction device according to the above preferred embodiment of the present invention.
  • Figure 70C is a cross-sectional view showing still another use state of the nipple correction device according to the above preferred embodiment of the present invention.
  • Figure 71A is a cross-sectional view showing a first modified embodiment of the nipple correction device according to the above preferred embodiment of the present invention.
  • Fig. 71B is an enlarged schematic view showing a partial position of Fig. 71A.
  • Figure 72A is a cross-sectional view showing a second modified embodiment of the nipple correction device according to the above preferred embodiment of the present invention.
  • Fig. 72B is an enlarged schematic view showing a partial position of Fig. 72A.
  • Figure 73 is a cross-sectional view showing a third modified embodiment of the nipple correction device according to the above preferred embodiment of the present invention.
  • the term “a” is understood to mean “at least one” or “one or more”, that is, in one embodiment, the number of one element may be one, and in other embodiments, the element The number can be multiple, and the term “a” cannot be construed as limiting the quantity.
  • a breast pump according to a preferred embodiment of the present invention is illustrated in the following description, wherein the breast pump includes a breast pump body 10 And at least one breast receiving device 20, wherein each of the breast receiving devices 20 is coupled to the breast pump body 10, respectively.
  • Each of the breast receiving devices 20 has a receiving space 21 for accommodating a breast 100, wherein the breast pump body 10 is capable of forming a negative pressure environment for the receiving space 21 of each of the breast receiving devices 20.
  • the breast milk is excreted from the breast 100.
  • the breast pump body 10 can form a negative pressure environment in the accommodating space 21 of each of the breast accommodating devices 20 by manual operation to remove breast milk from the The breast 100 is excreted from the body.
  • the breast pump main body 10 can also cause the accommodating space 21 of each of the breast accommodating devices 20 to form a negative pressure environment by means of an automatic operation (for example, being supplied with electric power) to take breast milk from The breast 100 is excreted from the body.
  • the breast pump body 10 is capable of accommodating the accommodating space 21 of each of the breast accommodating devices 20.
  • Forming an adsorption negative pressure to expel breast milk from the breast 100, and forming the accommodation space 21 of each of the breast containment devices 20 to maintain a negative pressure to maintain the breast containment device 20 in place The position of the breast 100, wherein the value of the adsorption negative pressure is greater than the value of the maintenance negative pressure, and the adsorption negative pressure and the maintenance negative pressure are alternately formed. It can be understood that the value of the adsorption negative pressure and the value of the maintenance negative pressure are both greater than zero.
  • the breast pump main body 10 forms the manner of maintaining the negative pressure in the accommodating space 21 of each of the breast accommodating devices 20, enabling each of the breasts
  • the accommodating device 20 holds each of the breast accommodating devices 20 at a position of the breast 100 without requiring hand holding or holding to avoid each of the breast accommodating devices 20 from the breast 100 The problem of falling off the position appears, which makes the sucking process more convenient.
  • the breast pump main body 10 can alternately form the adsorption negative pressure and the maintenance negative pressure formed in the accommodation space 21 of each of the breast accommodation spaces 20
  • the breast receiving device 20 does not need to be held at the position of the breast 100 under the maintenance of external force to facilitate breast pumping, which is unexpected in the prior art breast pump, and is convenient for improving breast pumping. Sex and comfort are especially important.
  • the breast pump main body 10 can alternately form the suction negative pressure and the maintenance negative pressure formed in the accommodation space 21 of each of the breast accommodation devices 20, so that the breast 100 can be A massage is obtained during the process of sucking the breast to relax the breast skin and breast tissue of the breast 100, and to facilitate the health of the breast 100 of the user. Further, the breast pump main body 10 can alternately form the suction negative pressure and the maintenance negative pressure formed in the accommodation space 21 of each of the breast containment devices 20 to enable the breast 100 The breast skin gradually adapts to the negative pressure environment within the accommodation space 21 to avoid exerting greater pressure on the breast skin and breast tissue of the breast 100 during breast pumping by the breast pump of the present invention. .
  • the breast receiving device 20 is embodied in a flared or funnel shape such that the breast receiving device 20 forms the receiving space 21 for receiving the breast. 100.
  • the breast containment device 20 can also be implemented in other possible shapes, and the breast pump of the present invention is not limited in this respect.
  • the shape of the accommodating space 21 of the breast accommodating device 20 and the shape of the breast 100 are matched to each other so that the breast accommodating device 20 and the breast 100 are better fitted together, thereby There is always a negative pressure in the accommodation space 21 of the breast containment device 20 and a more comfortable suction process.
  • Each of the breast receiving devices 20 is detachably coupled to the breast pump body 10, in such a manner that, on the one hand, after the breast pump is used, the user can respectively access the breast pump
  • the breast receiving device 20 and the breast pump body 10 are cleaned and sterilized.
  • the breast pump allows the user to select and replace the breast having the accommodating space 21 of different sizes as needed.
  • the device 20 is housed.
  • the breast pump includes a maintaining device 30, wherein each of the breast receiving devices 20 is connected to the maintaining device 30, respectively, to make each of the breast receiving devices 20 by the maintaining device 30
  • the temperature rises and the temperature of each of the breast containment devices 20 is maintained at a suitable temperature range.
  • the suitable temperature range involved in the breast pump of the present invention means that the temperature of the breast receiving device 20 is comparable to the temperature of the breast skin of the breast 100, that is, the breast.
  • the temperature of the accommodating device 20 is not excessively higher than the temperature of the breast skin of the breast 100, and is not excessively lower than the temperature of the breast skin of the breast 100.
  • the maintaining device 30 is capable of raising the temperature of each of the breast receiving devices 20 to a suitable temperature range before each of the breast receiving devices 20 is not fitted to the breast skin of the breast 100, thereby When the breast receiving device 20 is attached to the breast skin of the breast 100, the breast receiving device 20 does not cause adverse irritation to the breast skin and breast tissue of the breast 100. In other words, the breast containment device 20 can be preheated.
  • the breast accommodating device 20 can also raise the temperature of the breast skin of the breast 100 to function to relax and massage the breast skin and breast tissue of the breast 100, and the breast accommodating device 20 further It can stimulate the brain to produce oxytocin and prolactin, so that during the use of the breast pump of the present invention, the breast pump not only can make the user feel comfortable, but also can effectively improve the breast pumping effect and Guarantee the quality of breast milk.
  • the number of the breast receiving devices 20 is not limited in the breast pump of the present invention.
  • the number of the breast receiving devices 20 may be one.
  • the number of the breast receiving devices 20 may be two; in the example of the breast pump shown in FIG. 1C, the breast receiving The number of devices 20 may also exceed two.
  • the maintenance device 30 may be preset in a delivery room of a hospital, and the user may connect the breast accommodation device 20 to the maintenance when using the breast pump.
  • the breast containment device 20 can also be detached from the maintenance device 30.
  • the number of the breast receiving devices 20 is implemented as one, and the breast pump body 10, the breast receiving device 20, and the breast pump are The breast pump formed by assembling the main body 10 as an example continues to illustrate the features and advantages of the breast pump of the present invention.
  • the breast receiving device 20 is detachably mounted to the breast pump body 10, wherein the breast receiving device 20 is mounted to the breast pump After the main body 10, the breast receiving device 20 is coupled to the breast pump body 10.
  • the maintenance device 30 is detachably mounted to the breast pump body 10, and the maintenance device 30 is detachably coupled to the breast containment device 20, wherein the maintenance device 30 is coupled to the After the breast receiving device 20, the maintaining device 30 is capable of raising the temperature of the breast receiving device 20 and maintaining the temperature of the breast receiving device 20 at a suitable temperature range.
  • the breast receiving device 20 has a heat equalizing space 22, at least one first exchange passage 23 and at least one second exchange passage 24, wherein each of the first exchange passages 23 and each of the second exchange passages 24 respectively Connected to the soaking space 22 .
  • the maintaining device 30 has a heat generating space 31, wherein each of the first exchange channels 23 of the breast receiving device 20 is respectively connected to the heat generating space 31 of the maintaining device 30.
  • the maintaining device 30 raises the temperature in the heat generating space 31 to increase the air pressure in the heat generating space 31 of the maintaining device 30, thereby A higher temperature fluid (such as, but not limited to, a liquid, a gas, a gas-liquid mixture) in the heat generating space 31 of the maintaining device 30 enters through each of the first exchange passages 23 of the breast receiving device 20
  • the soaking space 22 is such that a lower temperature fluid in the soaking space 22 is discharged through the heat equalizing space 22 through each of the second exchange passages 24, so that a higher temperature gas causes the breast
  • the temperature of the accommodating device 20 rises.
  • the higher temperature fluid in the heat generating space 31 of the maintaining device 30 continuously enters the heat equalizing space 22 through each of the first exchange passages 23 of the breast receiving device 20, and the soaking heat
  • the fluid of the space 22 is continuously discharged through the soaking space 22 through each of the second exchange passages 24 such that the temperature of the breast containment device 20 is maintained at a suitable temperature range.
  • each of the second exchange channels 24 of the breast containment device 20 is in communication with the heat generating space 31 of the maintaining device 30, such that the heat storage space 22 of the breast receiving device 20 Fluid may be discharged into the heat generating space 31 of the maintaining device 30 through each of the second exchange passages 24 to achieve gas recovery and reuse. That is, the heat generating space 31 of the maintaining device 30, each of the first exchange passage 23, the heat equalizing space 22, and each of the second exchange passages 24 of the breast containing device 20 are formed. A fluid circulation loop to achieve heat exchange.
  • the maintaining device 30 may raise the breast receiving device 20 by forming water or other liquid located in the heat generating space 31 to form a vapor.
  • the temperature and temperature of the breast containment device 20 are maintained at a suitable temperature range.
  • the maintaining device 30 causes water or other liquid located in the heat generating space 31 to form the vapor, wherein the vapor enters through each of the first exchange passages 23 of the breast receiving device 20
  • the soaking heat space 22 increases the temperature of the breast containment device 20 by the vapor in the soaking space 22 from a gaseous state to a liquid state to release heat, and is converted into liquid water or other liquids.
  • Each of the second exchange passages 24 of the breast containment device 20 is recovered to the heat generating space 31 of the maintenance device 30 to effect recovery and reuse of water or other liquid.
  • each of the first exchange passage 23, the heat equalizing space 22, and each of the second exchange passages 24 of the breast containing device 20 are formed.
  • the maintaining device 30 continuously causes the vapor or other liquid located in the heat generating space 31 to form the vapor and continuously causes the vapor to enter the soaking space 22 of the breast containment device 20, thereby The temperature of the breast containment device 20 is maintained at a suitable temperature range.
  • the maintaining device 30 includes a container 32 and a heating element 33, wherein the container 32 has the heat generating space 31 for containing water or other liquid, and the heating element 33 is disposed on the container 32. And the heating element 33 is supplied with energy (for example, supplied with electric power) for heating water or other liquid contained in the heat generating space 31 of the container 32 so that water or other liquid is formed
  • the vapor enters the soaking space 22 through each of the first exchange passages 23 of the breast containment device 20, thereby raising the temperature of the breast containment device 20 and bringing the temperature of the breast containment device 20 It is maintained at a suitable temperature range.
  • the breast receiving device 20 includes an inner portion 25 and an outer portion 26, wherein the inner portion 25 and the outer portion 26 of the breast receiving device 20 are disposed to overlap each other to be at the inner portion 25 and
  • the soaking space 22 and each of the first exchange passages 23 and each of the second exchange passages 24 respectively communicating with the heat equalizing space 22 are formed between the outer side portions 26.
  • the inner side portion 25 of the breast accommodating device 20 forms the accommodating space 21 and a breast pumping passage 27 that communicates with the accommodating space 21.
  • the inner side portion 25 and the outer side portion 26 of the breast receiving device 20 may be integrally formed to be on the inner side.
  • the heat equalizing space 22 and each of the first exchange passages 23 and each of the second exchange passages 24 respectively communicating with the heat equalizing space 22 are formed between the portion 25 and the outer side portion 26.
  • the inner side portion 25 and the outer side portion 26 of the breast containment device 20 may also be separately produced, and then passed through the inner side portion 25
  • the heat equalizing space 22 and each of the heat equalizing spaces 22 are respectively formed between the inner side portion 25 and the outer side portion 26 in such a manner that the outer side portions 26 are assembled to overlap each other.
  • the first exchange channel 23 and each of the second exchange channels 24 are described.
  • first exchange passage 23 and the second exchange passage 24 may also be simultaneously formed on the inner portion 25 or the outer portion 26 such that the first exchange passage 23 and the second exchange passage The heat equalizing space 22 formed between the inner side portion 25 and the outer side portion 26 is communicated with each other.
  • one of the first exchange passage 23 and the second exchange passage 24 is formed at the inner portion 25, and the other exchange passage is formed at the outer portion 26, thereby making the first exchange passage 23 and the second exchange passage 24 communicate with the heat equalizing space 22 formed between the inner side portion 25 and the outer side portion 26, respectively.
  • the manner in which the breast containment device 20 is formed is not limited in the breast pump of the present invention.
  • the maintaining device 30 further includes a temperature maintaining member 34, wherein the temperature maintaining member 34 is disposed on the breast receiving device 20, or the temperature maintaining member 34 is formed on the breast receiving device 20 to
  • the temperature maintaining element 34 maintains the temperature of the breast containment device 20 at a suitable temperature range.
  • the temperature maintaining element 34 is made of a material that is more thermally insulated, for example, the temperature maintaining element 34 can be, but is not limited to, an insulating cotton.
  • the temperature maintaining element 34 may be a separate component that is disposed over the breast containment device 20 after being formed.
  • the outer portion 26 is configured to prevent temperature in the heat equalizing space 22 of the breast containment device 20 from being exchanged by the outer portion 26 of the breast containment device 20 and the external environment of the breast containment device 20, Thereby the temperature of the breast containment device 20 is maintained at a suitable temperature range.
  • the temperature maintaining element 34 may be overlapped on the inner surface of the outer side portion 26 of the breast containment device 20 such that the temperature maintaining element 34 is held in the soaking space. 22 inside.
  • the temperature maintaining element 34 may also be disposed in an overlapping manner on the outer surface of the outer side portion 26 of the breast containment device 20.
  • the temperature maintaining member 34 may also be integrally formed on the outer side portion 26 of the breast containment device 20, for example, the temperature maintaining member 34 may be integrally formed.
  • a heat insulating material may be applied to the inner and/or outer surfaces of the outer side portion 26 of the breast containment device 20 such that the heat insulating material is formed to overlap the outer side portion 26.
  • the temperature of the inner surface and/or the outer surface maintains the element 34 such that the temperature within the soaking space 22 of the breast containment device 20 and the exterior of the breast containment device 20 are prevented by the temperature maintaining element 34
  • the environment is exchanged to thereby maintain the temperature of the breast containment device 20 within a suitable temperature range.
  • the temperature maintaining element 34 of the maintaining device 30 and the outer side portion 26 of the breast receiving device 20 are of unitary construction.
  • the outer side portion 26 of the breast containment device 20 may have a thermal insulation capability to prevent heat within the soaking space 22 of the breast containment device 20 from passing through the outer side portion of the breast containment device 20 26 is exchanged with the external environment such that the temperature of the breast containment device 20 is maintained at a suitable temperature range.
  • the breast pump body 10 includes a milking device 11 and a negative pressure generating assembly 12, wherein the milking device 11 has a milking space 111, a milking inlet 112 and a negative pressure generating passage 113.
  • the milk inlet 112 and the negative pressure generating passage 113 are respectively communicated with the milking space 111, the negative pressure generating assembly 12 is disposed at the milking device 11, and the negative pressure generating component 12 is connected to The negative pressure generating passage 113 of the milk receptacle 11 is formed.
  • the breast containment device 20 is mounted to the milk receptacle 11 of the breast pump body 10, and the breast pumping passage 27 of the breast containment device 20 communicates with the advancement of the milk receptacle 11 Milk port 112.
  • the negative pressure generating assembly 12 can form a negative pressure environment in the accommodating space 21 of the breast accommodating device 20 after being supplied with energy (for example, supplied with electric power) to perform a breast sucking operation.
  • the control mode of the negative pressure generating component 12 is not limited in the breast pump of the present invention.
  • the negative pressure generating component 12 may include a vacuum generator and a solenoid valve, wherein a vacuum occurs.
  • the solenoid valve can cooperate with each other such that the state of the negative pressure generating assembly 12 is changed, so that the negative pressure generating assembly 12 can cause the accommodating space 21 of the breast receiving device 20 to alternately generate the adsorption Negative pressure and said maintaining negative pressure.
  • the breast pump further includes a power supply device 40, wherein the negative pressure generating component 12 is electrically connected to the power supply device 40 to supply the negative pressure generating component 12 by the power supply device 40
  • the electric power causes the negative pressure generating assembly 12 to operate to further form a negative pressure environment within the accommodation space 21 of the breast containment device 20.
  • the type of the power supply device 40 is not limited as long as it can supply electric power to the negative pressure generating unit 12.
  • the power supply device 40 may be implemented as a dry battery, a lithium battery, or the like.
  • the power supply device 40 may also be implemented as a disposable battery or a rechargeable battery.
  • the power supply device 40 is implemented as a rechargeable battery to allow external electric energy to be supplemented to the power supply device 40, thereby reducing the suction The cost of using the milk.
  • the maintenance device 30 may also be electrically connected to the power supply device 40 to supply power to the maintenance device 30 by the power supply device 40, thereby causing the heat generation of the maintenance device 30.
  • the gas temperature of the space 31 or the temperature of water or other liquid can be raised.
  • the heating element 33 of the maintaining device 30 is connected to the power supply device 40 to cause the heating element 33 to generate heat under the power supplied by the power supply device 40, thereby heating The manner in which water or other liquid is contained in the heat generating space 31 converts water or other liquid into the vapor.
  • the breast pump may also include a casing 50, wherein the power supply device 40, the negative pressure generating component 12 of the breast pump body 10, and the maintaining device 30 may be disposed at The housing 50 is integrated as one.
  • the negative pressure generating assembly 12 communicates with the negative pressure generating passage 113 of the milk receptacle 11.
  • the breast 100 accommodated in the accommodating space 21 of the breast accommodating device 20 is attached to the inner side of the breast accommodating device 20. 25, such that the breast containment device 20 wraps around the breast 100.
  • the maintenance device 30 raises the temperature of the breast accommodation device 20 after being supplied with electric power, the breast accommodation device 20 makes the breast 100 by direct contact with the breast skin of the breast 100. The temperature of the breast skin and breast tissue is simultaneously raised, thereby relaxing the breast skin and breast tissue of the breast 100.
  • the breast 100 and the inner side of the breast receiving device 20 are accommodated in the accommodating space 21 of the breast accommodating device 20.
  • a heat maintaining space 200 is created between the portions 25, wherein the heat maintaining space 200 surrounds the breast 100.
  • the temperature of the breast accommodating device 20 is increased after the maintenance device 30 is supplied with electric power, the temperature of the breast accommodating device 20 and the temperature of the heat maintaining space 200 are exchanged to further the heat.
  • the temperature of the space 200 is raised, so that the temperature of the breast skin of the breast 100 is simultaneously raised, thereby relaxing the breast skin and breast tissue of the breast 100.
  • the breast pump is capable of generating the heat maintaining space 200 between the breast 100 and the inner side portion 25 of the breast receiving device 20, due to the gravity of the breast 100 itself,
  • the lower side of the breast 100 may contact or fit over the inner side portion 25 of the breast containment device 20, and only on the upper side and/or both sides of the breast 100 with the breast receiving device
  • the heat maintaining space 200 is formed between the inner side portions 25 of 20.
  • Figures 5A and 5B illustrate the process by which the user uses the breast pump in a lower temperature environment.
  • Power is supplied to the maintenance device 30 to raise the temperature of the breast containment device 20 by the maintenance device 30.
  • the power supply device 40 can be used to supply power to the maintenance device 30.
  • the temperature of the breast receiving device 20 is comparable to the breast skin temperature of the breast 100
  • the breast receiving device 20 is placed at the position of the breast 100 such that the breast 100 is accommodated in the breast receiving The accommodation space 21 of the device 20.
  • the heat is maintained between the inner side portion 25 of the breast accommodating device 20 and the breast 100 Space 200.
  • the maintenance device 30 is continuously supplied with electric power so that the temperature of the breast accommodation device 20 is maintained at a suitable temperature range. It can be understood that the temperature maintaining element 34 disposed on the breast receiving device 20 can prevent the temperature of the breast receiving device 20 from being exchanged with the external environment, so that the temperature maintaining member 34 can make the breast receiving device The temperature of 20 is maintained at a suitable temperature range and the consumption of electrical energy by the maintenance device 30 is reduced to increase the endurance of the breast pump and reduce the cost of use of the breast pump.
  • the negative pressure generating assembly 12 of the breast pump main body 10 is supplied with electric power to cause the negative pressure generating assembly 12 to form a negative pressure environment in the accommodating space 21 of the breast accommodating device 20.
  • the power supply device 40 can be used to supply power to the negative pressure generating component 12.
  • the negative pressure generating assembly 12 can cause the accommodating space 21 of the breast accommodating device 20 to form the maintenance negative pressure to maintain the breast accommodating device 20 at the position of the breast 100. Therefore, even if the user does not hold or hold the breast pump by hand, the breast accommodating device 20 does not fall off from the breast 100 to improve the reliability when the breast pump is used. Referring to FIG.
  • the negative pressure generating assembly 12 can cause the accommodating space 21 of the breast accommodating device 20 to form the absorbing negative pressure to expel breast milk from the breast 100. It can be understood that the negative pressure generating assembly 12 alternately forms the adsorption negative pressure and the maintenance negative pressure in the accommodating space 21 of the breast accommodating device 20 to improve the sucking effect.
  • the breast pump includes a breast pump The main body 10A and at least one breast receiving device 20A, wherein each of the breast receiving devices 20A is connected to the breast pump main body 10A, respectively.
  • Each of the breast accommodating devices 20A has an accommodating space 21A for accommodating a breast 100A, wherein the breast pump main body 10A is capable of forming a negative pressure in the accommodating space 21A of each of the breast accommodating devices 20A.
  • the environment is to excrete breast milk from the breast 100A.
  • the number of the breast accommodating device 20A is not limited in the breast pump of the present invention, and in the following description of the present invention, the breast accommodating device 20A is implemented as one
  • the breast pump and the following description are illustrated in Figures 6A-10.
  • the breast pump shown in the above should not be considered as limiting the content and scope of the breast pump of the present invention.
  • the breast pump main body 10A can form the accommodating space 21A of each of the breast accommodating devices 20A.
  • a negative pressure is adsorbed to excrete breast milk from the breast 100A, and the accommodation space 21A of the breast containment device 20A is formed to maintain a negative pressure so that the breast receiving device 20A is held at the breast 100A.
  • a position in which the value of the adsorption negative pressure is greater than the value of the maintenance negative pressure, and the adsorption negative pressure and the maintenance negative pressure are alternately formed. It can be understood that the value of the adsorption negative pressure and the value of the maintenance negative pressure are both greater than zero.
  • the user can establish a negative pressure environment in the accommodating space 21A of the breast accommodating device 20A during the whole process of using the breast pump, and in this way, The breast accommodating device 20A is held in the position of the breast 100A without being detached from the position of the breast 100A without requiring the hand holding or holding by hand, thereby The sucking process is more convenient.
  • the breast receiving device of the breast pump The 20A may also be implemented in a flared or funnel shape such that the breast receiving device 20A forms the accommodation space 21A for accommodating the breast 100A.
  • the shape of the accommodation space 21A of the breast containment device 20A matches the shape of the breast 100A so that the breast containment device 20A and the breast 100A are better fitted together.
  • the breast receiving device 20A is detachably coupled to the breast pump body 10A, in such a manner that, on the one hand, the user can respectively accommodate the breast after using the breast pump
  • the device 20A and the breast pump main body 10A are cleaned and sterilized, and on the other hand, the user can replace the breast accommodating device 20A having the accommodating space 21A of a different size as needed.
  • the breast pump further includes a maintaining device 30A, wherein the breast receiving device 20A is coupled to the maintaining device 30A to accommodate the breast by the maintaining device 30A
  • the temperature of the device 20A rises and the temperature of the breast containment device 20A is maintained at a suitable temperature range.
  • the suitable temperature range involved in the breast pump of the present invention means that the temperature of the breast receiving device 20A is equivalent to the temperature of the breast skin of the breast 100A, that is, the breast.
  • the temperature of the accommodating device 20A is not excessively excessively the temperature of the breast skin of the breast 100A, and is not excessively lower than the temperature of the breast skin of the breast 100A, such that when the user uses the breast pump, the The temperature of the breast containment device 20A effectively increases the comfort and affinity of the breast pump.
  • the maintaining device 30A can raise the temperature of the breast receiving device 20A to a suitable temperature range, thereby at the breast receiving device 20A
  • the breast skin and breast tissue of the breast 100A are not stimulated by the breast holding device 20A.
  • the temperature of the breast containment device 20A may be slightly higher than the temperature of the breast skin of the breast 100A such that when the breast containment device 20A is manipulated to fit the breast skin of the breast 100A
  • the breast accommodating device 20A is capable of raising the temperature of the breast skin of the breast 100A to relax and massage the breast skin and breast tissue of the breast 100A, thereby in the process of using the breast pump of the present invention Not only makes the user feel comfortable, but also effectively improves the milk absorption effect and ensures the quality of breast milk.
  • the breast accommodating device 20A is detachably mounted to the breast pump main body 10A, wherein after the breast accommodating device 20A is mounted to the breast pump main body 10A, the breast accommodating device 20A is connected to the breast pump body 10A.
  • the maintenance device 30A is detachably mounted to the breast pump body 10A, and the maintenance device 30A is detachably coupled to the breast housing device 20A, wherein the maintenance device 30A is coupled to the After the breast accommodating device 20A, the maintaining device 30A can raise the temperature of the breast accommodating device 20A and maintain the temperature of the breast accommodating device 20A at a suitable temperature range.
  • the breast receiving device 20A includes an inner portion 25A, an outer portion 26A, and a heat equalizing member 28A, wherein the heat equalizing member 28A is disposed between the inner portion 25A and the outer portion 26A that overlap each other.
  • the inner side portion 25A forms the accommodation space 21A and forms a breast suction passage 27A that communicates with the accommodation space 21A.
  • the heat equalizing element 28A surrounds the accommodation space 21A, and when the heat is supplied to the heat equalizing element 28A, the heat equalizing element 28A can uniformly radiate heat to the accommodation space 21A. To increase the temperature in the accommodation space 21A.
  • the heat equalizing element 28A is also capable of uniformly radiating heat to the inner side portion 25A to increase the temperature of the inner side portion 25A.
  • the inner side portion 25A, the outer side portion 26A, and the heat equalizing member 28A of the breast containing device 20A are respectively fabricated, and then the heat equalizing member is 28A is disposed between the inner side portion 25A and the outer side portion 26A which overlap each other, for example, the inner side portion 25A and the outer side portion 26A may be coupled together by mutual engagement to make the soaking
  • the element 28A is held between the inner side portion 25A and the outer side portion 26A, or the edge of the inner side portion 25A and the edge of the outer side portion 26A are bonded together so that the heat equalizing element 28A is It is held between the inner side portion 25A and the outer side portion 26A.
  • the inner side portion 25A, the outer side portion 26A, and the heat equalizing member 28A of the breast containment device 20A may also be integrally formed, for example, first The heat equalizing element 28A is placed in a molding space of a molding die, and then a molding material is added into the molding space to wrap the molding material around the heat equalizing member 28A, so that when the molding material is After being solidified in the molding space, the molding material forms the inner portion 25A and the outer portion 26A on the inner side and the outer side of the heat equalizing member 28A, that is, the inner portion 25A, the heat equalizing member
  • the 28A and the outer portion 26A may be integrally molded by an embedded injection process. Of course, other molding processes may also integrally form the heat equalizing element 28A between the inner side portion 25A and the outer side portion 26A to form the breast receiving device 20A.
  • the maintaining device 30A includes a heat generating component 35A, and the heat equalizing member 28A of the breast receiving device 20A is thermally coupled to the heat generating component 35A of the maintaining device 30A, wherein when the heat generating component 35A is When the energy is supplied (for example, supplied with electric power), the heat generating element 35A can convert the energy into heat, and the heat generated by the heat generating element 35A is conducted to the heat equalizing element 28A of the breast receiving device 20A, Thereby the temperature of the breast containment device 20A is increased.
  • the energy for example, supplied with electric power
  • the temperature of the breast receiving device 20A is maintained at an appropriate temperature. temperature range.
  • the maintaining device 30A further includes a temperature maintaining member 34A, wherein the temperature maintaining member 34A is disposed to the breast receiving device 20A to maintain the temperature of the breast receiving device 20A by the temperature maintaining member 34A. temperature range.
  • the temperature maintaining element 34A of the maintaining device 30A is a separate component, in a specific example of the breast pump,
  • the temperature maintaining member 34A is disposed in an overlapping manner on the heat equalizing member 28A, and the inner side portion 25A of the breast receiving device 20A is overlappedly disposed on the heat equalizing member 28A, and the breast receiving device 20A is
  • the outer side portion 26A is overlappedly disposed on the temperature maintaining member 34A, and the inner side portion 25A and the outer side portion 26A of the breast containing device 20A are coupled together such that the temperature maintaining member 34A and the The heat equalizing element 28A is held between the outer side portion 26A of the breast housing device 20A and the inner side portion 25A.
  • the breast housing device 20A is, in order from the outside to the inside, the outer portion 26A, the temperature maintaining member 34A, the heat equalizing member 28A, and the inner portion 25A, in such a manner, when the heat is applied
  • the temperature maintaining element 34A can prevent the heat equalizing element 28A from radiating the heat to the outer side portion 26A of the breast receiving device 20A, and only the soaking
  • the element 28A radiates the heat to the inner side portion 25A of the breast containment device 20A, that is, the temperature maintaining member 34A may have good thermal insulation properties, for example, the temperature maintaining member 34A may be implemented as, but not limited to, Insulation cotton or other components with thermal insulation.
  • the temperature maintaining member 34A can not only rapidly raise the temperature of the breast receiving device 20A, but also maintain the temperature after the temperature of the breast receiving device 20A rises.
  • the element 34A can also maintain the temperature of the breast containment device 20A at a suitable temperature range when the heat generating element 35A provides a small amount of heat to save energy and improve the endurance of the breast pump.
  • the temperature maintaining element 34A and the heat equalizing element 28A may be first overlapped and placed in the molding space of the molding die, so that the temperature The maintaining member 34A and the heat equalizing member 28A are wrapped in the molding space by the molding material added to the molding space, thereby forming the breast housing on the side of the heat equalizing member 28A after the molding material is cured.
  • the inner side portion 25A of the device 20A and the outer side portion 26A of the breast containing device 20A are formed on the side of the temperature maintaining member 34A.
  • the temperature maintaining member 34A may be integrally formed to the heat equalizing member 28A of the breast containment device 20A.
  • a heat insulating material may be applied to a side of the heat equalizing member 28A facing the outer side portion 26A of the breast receiving device 20A to cause the heat insulating material to be formed to overlap the The temperature of the thermal element 28A maintains the element 34A such that the heat equalizing element 28A prevents the heat equalizing element 28A from radiating the heat to the outer side portion 26A of the breast containment device 20A. That is, the temperature maintaining element 34A may be a heat insulating layer.
  • the temperature maintaining member 34A may also be integrally formed on the outer side portion 26A of the breast containment device 20A, thereby by the temperature
  • the maintaining element 34A prevents the heat equalizing element 28A from radiating the heat to the outer side portion 26A of the breast containment device 20A.
  • the temperature maintaining member 34A may be integrally formed on an inner surface and/or an outer surface of the outer side portion 26A of the breast containment device 20A to block the heat equalizing member 28A by the temperature maintaining member 34A. The heat is radiated to the outer side portion 26A of the breast containment device 20A.
  • the heat equalizing element 28A of the breast receiving device 20A and the heat generating element 35A of the maintaining device 30A may be directly connected together to generate energy by the heating element 35A of the maintaining device 30A being supplied with energy. After this heat, the heat can be conducted directly to the heat equalizing element 28A.
  • the maintaining device 30A may also include at least one heat conducting element 36A, wherein each of the heat conducting elements 36A is coupled to the heat generating element 35A, respectively.
  • the heat equalizing element 28A of the breast containment device 20A can be coupled to each of the heat conducting elements 36A to conduct heat generated by the heat generating element 28 to each of the heat conducting elements 36A Heat equalizing element 28A.
  • the spacing between adjacent heat conducting elements 36A is equal such that heat generated by the heat generating element 35A can be uniformly conducted to the heat equalizing element 28A.
  • each of the heat conducting elements 36A may also be coupled to the heat equalizing element 28A to interconnect the breast containment device 20A and the maintaining device 30A
  • Each of the heat transfer elements 36A can be coupled to the heat generating element 35A.
  • the heat conduction element 36A can be made of a material having good thermal conductivity so that heat generated by the heat generating element 35A can be quickly conducted to the heat equalizing element 28A, and The loss is reduced when the heat is conducted by the heat conduction element 36A, and in this manner, the efficiency with which the maintenance device 30A raises the temperature of the breast accommodation device 20A can be effectively improved.
  • the breast pump further includes a power supply device 40A, wherein the heat generating component 35A of the maintaining device 30A is electrically connected to the power supply device 40A to the power supply device 40A to the maintaining device 30A
  • the heating element 35A supplies electric power
  • the heating element 35A can generate the heat
  • the heat generated by the heating element 35A can be conducted to the heat equalizing element directly or through each of the heat conducting elements 36A. 28A, to raise the temperature of the breast containment device 20A and maintain the temperature of the breast containment device 20A at a suitable temperature range.
  • the type of the power supply device 40A is not limited as long as it can supply electric power to the heat generating element 35A of the maintenance device 30A.
  • the power supply device 40A may be implemented as a dry battery, a lithium battery, or the like.
  • the power supply device 40A may also be implemented as a disposable battery or a rechargeable battery.
  • the power supply device 40A is implemented as a rechargeable battery to allow external electric energy to be supplemented to the power supply device 40A, thereby reducing the suction The cost of using the milk.
  • the breast pump further includes a housing 50A, wherein the heat supply element 35A of the power supply device 40A and the maintenance device 30A and each of the heat conduction elements 36A may be respectively disposed on the case
  • the body 50A integrates the power supply device 40A and the heat generating component 35A of the maintaining device 30A and each of the heat conducting members 36A by the housing 50A.
  • the breast pump body 10A includes a milking device 11A and a negative pressure generating assembly 12A, wherein the milking device 11A has a milking space 111A, a milking inlet 112A, and a negative pressure generating passage 113A.
  • the milk inlet 112A and the negative pressure generating passage 113A are respectively communicated with the milking space 111A, the negative pressure generating component 12A is disposed at the milking device 11A, and the negative pressure generating component 12A communicates with the negative pressure generating passage 113A of the milking device 11A.
  • the negative pressure generating assembly 12A may also be disposed in the housing 50A to be the negative pressure when the housing 50A is mounted to the milk receptacle 11A of the breast pump body 10A.
  • the generating assembly 12A is in communication with the negative pressure generating passage 113A of the milking device 11A. More preferably, the negative pressure generating component 12A is electrically connected to the power supply device 40A to supply power to the negative pressure generating component 12A by the power supply device 40A.
  • the breast accommodating device 20A has the breast suction passage 27A, wherein the breast accommodating device 20A is attached to the milk receptacle 11A of the breast pump main body 10A, and the suction of the breast accommodating device 20A
  • the milk passage 27A communicates with the milking port 112A of the milking device 11A, and the negative pressure generating unit 12A can form a negative pressure environment in the accommodating space 21A of the breast accommodating device 20A after being energized.
  • the breast milk sucked from the breast tissue of the breast 100A sequentially passes through the breast pumping passage 27A and the milking port 112A, and enters and is stored in the milking space 111A.
  • the negative pressure generating assembly 12A of the breast pump main body 10A can be controlled such that the accommodating space 21A of the breast accommodating device 20A alternately forms the absorbing negative pressure and the The negative pressure is maintained, wherein the control mode of the negative pressure generating assembly 12A is not limited in the breast pump of the present invention, for example, the negative pressure generating assembly 12A can be controlled by a solenoid valve.
  • the breast 100A accommodated in the accommodating space 21A of the breast accommodating device 20A is fitted to the inner side portion of the breast accommodating device 20A. 25A, so that the breast receiving device 20A surrounds the circumference of the breast 100A.
  • the heat generating element 35A of the maintaining device 30A is supplied with electric power to generate the heat, and the heat is conducted to the heat equalizing element 28A directly or through each of the heat conducting members 36A to accommodate the breast.
  • the temperature of the device 20A is raised, wherein the breast receiving device 20A synchronously raises the temperature of the breast skin of the breast 100A by direct contact with the breast skin of the breast 100A, thereby relaxing the breast 100A.
  • Breast skin and breast tissue are examples of the breast skin of the breast 100A by direct contact with the breast skin of the breast 100A, thereby relaxing the breast 100A.
  • a heat maintaining space 200A may also be formed between the portions 25A, wherein the heat maintaining space 200A surrounds the breast 100A.
  • the heat generating element 35A of the maintaining device 30A is supplied with electric power to generate the heat, and the heat is conducted to the heat equalizing element 28A directly or through each of the heat conducting members 36A, the heat equalizing element 28A Heat is radiated to the heat maintaining space 200A to further increase the temperature of the heat maintaining space 200A, thereby causing the temperature of the breast skin of the breast 100A to rise synchronously, thereby relaxing the breast skin of the breast 100A. And breast tissue.
  • the breast pump is capable of generating the heat maintaining space 200A between the breast 100A and the inner side portion 25A of the breast accommodating device 20A, due to the gravity of the breast 100A itself, The lower side portion of the breast 100A may contact or fit to the inner side portion 25A of the breast containment device 20A, and only the upper side portion and/or both sides of the breast 100A and the breast receiving device
  • the heat maintaining space 200A is formed between the inner side portions 25A of 20A.
  • the breast pump includes a breast pump The main body 10B and at least one breast receiving device 20B, wherein each of the breast receiving devices 20B is connected to the breast pump main body 10B, respectively.
  • Each of the breast accommodating devices 20B has an accommodating space 21B for accommodating a breast 100B, wherein the breast pump main body 10B is capable of forming a negative pressure in the accommodating space 21B of each of the breast accommodating devices 20B.
  • the environment is to excrete breast milk from the breast 100B.
  • the number of the breast accommodating devices 20B is not limited in the breast pump of the present invention, for example, the number of the breast accommodating devices 20B may be one or two.
  • the features and advantages of the breast pump of the present invention are illustrated in the accompanying drawings 11 to 20 and in the following description, only the breast pump including one of the breast receiving devices 20B as an example, the field The skilled person will understand that the breast pump shown in Figures 11 to 20 and in the following description should not be considered as limiting the content and scope of the breast pump of the present invention.
  • the breast pump body 10B can form a negative pressure environment in the accommodating space 21B of the breast accommodating device 20B by manual operation to discharge breast milk from the breast 100B. in vitro.
  • the breast pump main body 10B can also form a negative pressure environment in the accommodation space 21B of the breast containment device 20B by means of an automatic operation (for example, being supplied with electric power) to take breast milk from the place.
  • the breast 100B is excreted from the body.
  • the breast receiving device 20B is detachably mounted to the breast pump body 10B, in such a manner that, on the one hand, the user after using the breast pump
  • the breast accommodating device 20B and the breast pump body 10B can be separately detached and cleaned and sterilized.
  • the breast pump allows the user to select and replace the accommodating space having different sizes as needed.
  • the breast receiving device 20B of 21B it will be understood by those skilled in the art that when any one of the breast receiving device 20B and the breast pump body 10B is damaged or is not suitable for continued use, the user can replace only the damaged or uncomfortable. It is sufficient to continue to use one, so that the use cost of the breast pump can be reduced.
  • the breast pump main body 10B includes a milking device 11B and a negative pressure generating assembly 12B, wherein the negative pressure generating assembly 12B is disposed in the milking device 11B, and the breast receiving device 20B is
  • the milking device 11B is detachably mounted to the breast pump main body 10B, and the negative pressure generating unit 12B is capable of forming a negative pressure environment in the accommodation space 21B of the breast housing device 20B.
  • the negative pressure generating assembly 12B is detachably mounted to the milk receptacle 11B.
  • the milking device 11B has a milking space 111B, a milking port 112B, and a negative pressure generating passage 113B, wherein the milking port 112B and the negative pressure generating passage 113B are respectively communicated with the milking space 111B.
  • the negative pressure generating unit 12B After the negative pressure generating unit 12B is installed in the milking device 11B, the negative pressure generating unit 12B communicates with the milking space 111B through the negative pressure generating passage 113B, so that the negative pressure occurs.
  • the assembly 12B is capable of forming the accommodation space 21B into a negative pressure environment by the milk receptacle 11B.
  • the breast accommodating device 20B has a breast suction passage 27B, wherein the breast suction passage 27B communicates with the accommodating space 21B.
  • the breast suction passage 27B of the breast accommodating device 20B passes the suction of the milk receptacle 11B
  • the milk port 112B communicates with the milking space 111B of the milking device 11B to connect the negative pressure generating assembly 12B and the accommodating space 21B of the breast accommodating device 20B, thereby by the negative pressure
  • the generating assembly 12B forms a negative pressure environment in the accommodation space 21B.
  • the breast 100B When sucking milk using the breast pump, the breast 100B is housed in the accommodating space 21B of the breast accommodating device 20B, and the negative pressure generating unit 12B is supplied with energy (for example, supplied with electric power) so that The accommodating space 21B of the breast accommodating device 20B forms an absorbing negative pressure to discharge the breast milk from the breast 100B, and the accommodating space 21B of the breast accommodating device 20B is formed to maintain a negative pressure so that The breast receiving device 20B is held at the position of the breast 100B, wherein the value of the adsorption negative pressure is greater than the value of the maintenance negative pressure, and the adsorption negative pressure and the maintenance negative pressure are alternately formed. It can be understood that the value of the adsorption negative pressure and the value of the maintenance negative pressure are both greater than zero.
  • the breast pump main body 10B forms the manner of maintaining the negative pressure in the accommodating space 21B of the breast accommodating device 20B, in the user Throughout the process of using the breast pump, the breast receiving device 20B can be held at the position of the breast 100B without being lifted or held by the hand without being lifted or held by the hand. The position of 100B is detached, which makes the sucking process more convenient.
  • the breast pump main body 10B can alternately form the adsorption negative pressure and the maintenance negative pressure formed in the accommodation space 21B of the breast housing device 20B.
  • the breast accommodating device 20B is held at the position of the breast 100B without the need for external force maintenance, which is unexpected in the prior art breast pump, which is not only important for improving the convenience and comfort of sucking milk.
  • the breast 100B can be massaged to relax the breast skin and breast tissue of the breast 100B, thereby facilitating the health of the breast 100B of the user.
  • the breast receiving device 20B may be embodied in a flared shape or a funnel shape such that the breast receiving device 20B forms the accommodation space 21B.
  • the breast containment device 20B can also be implemented in other possible shapes.
  • the flared or funnel-shaped breast receiving device 20B matches the shape of the user's breast 100B to accommodate the breast 100B in the breast receiving device 20B. After the space 21B, no gap is generated before the breast accommodating device 20B and the breast skin of the breast 100B, so that the negative pressure generating component 12B can make the accommodating while providing a small vacuum absorbing force. A negative pressure environment is formed in the space 21B. In this manner, the power requirement of the breast pump to the negative pressure generating assembly 12B is lowered to reduce the manufacturing cost of the breast pump and to miniaturize the breast pump. Lightweight.
  • the breast pump further includes a power supply device 40B, wherein the negative pressure generating component 12B is electrically connected to the power supply device 40B to supply the negative pressure generating component 12B by the power supply device 40B.
  • the electric power is such that the accommodating space 21B of the breast accommodating device 20B alternately forms the absorbing negative pressure and the maintaining negative pressure by the negative pressure generating unit 12B.
  • the manner of controlling the negative pressure generating assembly 12B is not limited in the breast pump of the present invention, for example, the negative pressure generating assembly 12 may include a vacuum generator and a solenoid valve. Wherein the vacuum generator and the solenoid valve can cooperate with each other such that the state of the negative pressure generating assembly 12 is changed, thereby enabling the negative pressure generating assembly 12 to alternate the accommodation spaces 21 of the breast receiving device 20. The adsorption negative pressure and the maintenance negative pressure are generated.
  • the type of the power supply device 40B is not limited as long as it can supply power to the negative pressure generating unit 12B, for example, the power supply device 40B can be implemented as a disposable battery or can be implemented as a rechargeable battery. battery.
  • the power supply device 40B is implemented as a rechargeable lithium battery to allow external power to be replenished to the power supply device 40B, thereby reducing the cost of use of the breast pump.
  • the breast pump further includes a housing 50B, wherein at least one of the power supply device 40B and the negative pressure generating assembly 12B is integrated in the housing 50B.
  • the power supply device 40B and the negative pressure generating component 12B are both disposed in the housing 50B.
  • the housing 50B is detachably mounted to the milk receptacle 11B of the breast pump body 10B, wherein the housing 50B is mounted to the milk dispenser 11B of the breast pump body 10B
  • the negative pressure generating unit 12B is in communication with the negative pressure generating passage 113B of the milking device 11B.
  • the breast pump further includes a maintaining device 30B, wherein the maintaining device 30B includes a heat generating component 35B, wherein the heat generating component 35B is disposed in the breast receiving device 20B, wherein When the heat generating component 35B is supplied with energy (for example, supplied with electric power), the heat generating component 35B can generate heat to raise the temperature of the breast receiving device 20B. It is understood that the temperature of the breast containment device 20B is maintained at a suitable temperature range when energy is continuously supplied to the heat generating element 35B to cause the heat generating element 35B to continuously generate heat.
  • the heat generating element 35B is electrically connected to the power supply device 40B to supply electric power to the heat generating element 35B by the power supply device 40B, thereby The heat generating element 35B is caused to generate heat.
  • the breast receiving device 20B may be first mounted on the milk receptacle 11B of the breast pump body 10B, and then the housing 50B is mounted.
  • the heating element 35B of the maintaining device 30B is electrically connected to the power supply device 40B when the milking device 11B of the breast pump body 10B is placed, so that the power supply device 40B can
  • the heating element 35B supplies electric power to cause the heating element 35B to generate heat.
  • the housing 50B may also be first mounted on the milk receptacle 11B of the breast pump body 10B, and then the breast housing device
  • the heat generating component 35B of the maintaining device 30B is electrically connected to the power supply device 40B, so that the power supply device 40B can Electric power is supplied to the heat generating element 35B to cause the heat generating element 35B to generate heat.
  • the breast pump further includes a conductive device 60B, wherein the conductive device 60B includes a first conductive member 61B and a second conductive member 62B, wherein the first conductive member 61B is electrically connected to the power supply device 40B, the second conductive member 62B is electrically connected to the heat generating component 35B of the maintaining device 30B, wherein the second conductive member 62B can be electrically connected to the first conductive member 61B such that the The conductive device 60B electrically connects the heating element 35B of the maintaining device 30B and the power supply device 40B, thereby supplying power to the heating element 35B of the maintaining device 30B by the power supply device 40B. .
  • the first conductive member 61B is disposed to the housing 50B, and at least a portion of the first conductive member 61B is exposed on a surface of the housing 50B.
  • the second conductive member 62B is disposed to the breast receiving device 20B, and at least a portion of the second conductive member 62B is exposed on a surface of the breast receiving device 20B.
  • the first conductive member 61B and the second conductive member 62B are in contact with each other to turn on the power supply device 40B and the heat generating component 35B of the maintaining device 30B, in such a manner that the power supply device 40B can supply power to the heat generating component 35B of the maintaining device 30B to cause the heat generating component 35B to generate heat .
  • the first A conductive member 61B and the second conductive member 62B are in contact with each other to turn on the heat generating element 35B of the power supply device 40B and the maintenance device 30B.
  • first conductive member 61B and the second conductive member 62B can be simultaneously implemented as a conductive sheet or a conductive contact, or in the first conductive member 61B and the second conductive member 62B.
  • One of them is implemented as a conductive sheet and the other is implemented as a conductive contact, and the breast pump of the present invention is not limited in this respect.
  • the types of the first conductive member 61B and the second conductive member 62B are not limited in the breast pump of the present invention, as long as they can be in contact with each other to turn on the power supply device 40B and the The heat generating element 35B of the device 30B may be maintained.
  • Figure 15 shows a variant embodiment of the breast pump wherein the first conductive member 61B can be embodied as an insert or the first conductive member 61B can be embodied to comprise the insert,
  • the second conductive member 62B may be implemented as an inserted member or the second conductive member 62B may be embodied to include the inserted member such that the first conductive member 61B is inserted into the second conductive member 62B
  • the heat-emitting element 35B of the power supply device 40B and the maintenance device 30B is turned on by the conductive device 60B.
  • the first conductive member 61B is inserted into the second conductive member 62B.
  • the first conductive member 61B and the second conductive member 62B are capable of not only turning on the heat generating element 35B of the power supply device 40B and the maintaining device 30B, but also the first conductive The member 61B and the second conductive member 62B are also capable of cooperating with each other to prevent the housing 50B from coming off the breast pump body 10B when the breast pump is used, thereby ensuring that the breast pump is Reliability and stability when used.
  • Figure 16 shows another variant embodiment of the breast pump wherein the first conductive member 61B can be implemented as an insert or the first conductive member 61B is embodied to include the inserted
  • the second conductive member 62B is implemented as an insert or the second conductive member 62B is implemented to include the insert such that the second conductive member 62B is inserted into the first conductive member 61B
  • the conductive element 60B turns on the heat generating element 35B of the power supply device 40B and the maintaining device 30B, and the first conductive member 61B and the second conductive member 62B are also capable of mutually Cooperating to prevent the housing 50B from coming off the breast pump body 10B when the breast pump is used, thereby ensuring reliability and stability when the breast pump is used.
  • Figure 17 shows still another modified embodiment of the breast pump, wherein the first conductive member 61B and the second conductive member 62B can each be implemented as a wireless transmission module, wherein the first conductive The member 61B is disposed inside the housing 50B, and the second conductive member 62B is disposed inside the breast housing device 20B, when the housing 50B is mounted to the breast pump body 10B
  • the first conductive member 61B and the second conductive member 62B are mutually inductive to realize electric power between the power supply device 40B and the heat generating element 35B of the maintaining device 30B. transmission.
  • first conductive member 61B and the second conductive member 62B shown in FIGS. 14 to 17 are merely examples to further illustrate the present invention.
  • the features and advantages of the breast pump, therefore, the embodiments of the first conductive member 61B and the second conductive member 62B are not to be considered as limiting the content and scope of the breast pump of the present invention.
  • the breast receiving device 20B includes an inner portion 25B and an outer portion 26B, wherein the heat generating element 35B may be disposed between the inner portion 25B and the outer portion 26B that overlap each other to make The heat generating element 35B is provided to the breast housing device 20B.
  • the inner side portion 25B and the outer side portion 26B of the breast containing device 20B and the heat generating element 35B of the maintaining device 30B may be separately manufactured And the inner side portion 25B and the outer side portion 26B may hold the heat generating element 35B between the inner side portion 25B and the outer side portion 26B which are overlapped with each other by engagement or the like.
  • the heat generating element 35B of the maintaining device 30B and the inner side portion 25B and the outer side portion 26B of the breast containing device 20B may also be integrally form.
  • the maintaining device 30B further includes a temperature maintaining member 34B, wherein the temperature maintaining member 34B is disposed on the breast receiving device 20B or the temperature maintaining member 34B may be formed on the breast receiving device 20B to The temperature of the breast containment device 20B is maintained by the temperature maintaining member 34B at a suitable temperature range.
  • the temperature maintaining element 34B is made of a material that is more thermally insulated, for example, the temperature maintaining element 34B may be an insulating cotton.
  • the temperature maintaining member 34B may be a separate member that is overlappedly disposed on the outer side portion 26B of the temperature maintaining member 34B after being formed for blocking the accommodation space of the breast receiving device 20B.
  • the temperature inside 21B is exchanged by the outer side portion 26B of the breast containing device 20B and the external environment of the breast receiving device 20B, so that the temperature of the breast receiving device 20B is maintained at a suitable temperature range.
  • the temperature maintaining member 34B may be overlappedly disposed on the inner surface of the outer side portion 26B of the breast containing device 20B such that the temperature maintaining member 34B is held in the receiving space 21B. Inside. The temperature maintaining member 34B may also be disposed to overlap the outer surface of the outer side portion 26B of the breast containment device 20B.
  • the temperature maintaining member 34B may also be integrally formed on the outer side portion 26B of the breast containment device 20B, for example, the temperature maintaining member 34B may be integrally formed.
  • a heat insulating material may be applied to the inner surface and/or the outer surface of the outer side portion 26B of the breast receiving device 20B to form an overlap with the outer side portion after the heat insulating material is cured.
  • the temperature maintaining member 34B of 26B is configured to prevent the temperature in the accommodating space 21B of the breast accommodating device 20B from being exchanged with the external environment of the breast accommodating device 20B by the temperature maintaining member 34B, thereby causing the The temperature of the breast containment device 20B is maintained at a suitable temperature range.
  • the temperature maintaining member 34B of the maintaining device 30B and the outer side portion 26B of the breast receiving device 20B are of a unitary structure.
  • the outer side portion 26B of the breast accommodating device 20B may have an insulating ability to block heat in the accommodating space 21B of the breast accommodating device 20B from passing through the outer side portion 26B of the breast accommodating device 20B. Exchange with the external environment such that the temperature of the breast containment device 20B is maintained at a suitable temperature range.
  • the breast 100B accommodated in the accommodating space 21B of the breast accommodating device 20B is fitted to the inner side portion of the breast accommodating device 20B. 25B to surround the breast receiving device 20B around the breast 100B.
  • the maintenance device 30B raises the temperature of the breast accommodation device 20B after being supplied with electric power
  • the breast accommodation device 20B makes the breast 100B by direct contact with the skin of the breast of the breast 100B.
  • the temperature of the breast skin is simultaneously raised, thereby relaxing the breast skin and breast tissue of the breast 100B.
  • the breast 100B and the inner side of the breast receiving device 20B accommodated in the accommodating space 21B of the breast accommodating device 20B are accommodated.
  • a heat maintaining space 200B is formed between the portions 25B, wherein the heat maintaining space 200B surrounds the breast 100B.
  • the maintenance device 30B raises the temperature of the breast accommodation device 20B after being supplied with electric power, the temperature of the breast accommodation device 20B and the temperature of the heat maintenance space 200B are exchanged to further the heat.
  • the temperature of the space 200B is raised, so that the temperature of the breast skin of the breast 100B is simultaneously raised, thereby relaxing the breast skin and breast tissue of the breast 100B.
  • the breast pump is capable of generating the heat maintaining space 200B between the breast 100B and the inner side portion 25B of the breast accommodating device 20B, due to the gravity of the breast 100B itself, The lower side portion of the breast 100B may contact or fit to the inner side portion 25B of the breast containment device 20B, and only the upper side portion and/or both sides of the breast 100B and the breast receiving device
  • the heat maintaining space 200B is formed between the inner side portions 25B of 20B.
  • the present invention further provides a method of generating heat to a breast containment device of a breast pump, wherein the method of heating includes the following steps:
  • the present invention further provides a method of sucking milk, wherein the method of sucking milk comprises the steps of:
  • the accommodating space 21B is caused to form an absorbing negative pressure by a breast pump main body 10B to discharge the breast milk from the breast 100;
  • the accommodating space 21B is formed by the breast pump main body 10B to maintain a negative pressure so that the breast accommodating device 20B is held at the breast 100B, wherein the value of the absorbing negative pressure is greater than the value of the holding negative pressure Numerical values, and the adsorption negative pressure and the maintenance negative pressure are alternately formed.
  • the present invention further provides a method of sucking milk, wherein the method of sucking milk comprises the steps of:
  • a negative pressure environment is formed in the accommodating space 21B by a breast pump main body 10B connected to the breast accommodating device 20B to excrete breast milk from the breast 100.
  • the breast pump of the present invention further provides a cleaning device 510, with reference to Figures 21 to 25 of the accompanying drawings of the present invention, in accordance with a preferred embodiment of the present invention,
  • the cleaning device 510 is illustrated in the following description, wherein the cleaning device 510 can be used to clean a connecting tube 5100.
  • the connecting tube 5100 may be, but not limited to, a connecting tube between the various components of the breast pump, a straw of the bottle, and the like. It will be understood by those skilled in the art that the connecting tube 5100 enumerated above and the connecting tube 5100 shown in FIGS. 23A to 24B are merely examples for illustrating and explaining the cleaning of the present invention. The features and advantages of the device 510, therefore, the type and use of the connecting tube 5100 should not be considered as limiting the content and scope of the cleaning device 510 of the present invention.
  • the connecting tube 5100 is elongated, for example, the inner diameter of the connecting tube 5100 ranges in size from 1 mm to 10 mm. Nevertheless, it will be understood by those skilled in the art that the cleaning device 510 of the present invention can not only clean the connecting tube 5100 having an inner diameter of 1 mm, but also the connecting tube 5100 having an inner diameter of 10 mm. Of course, the cleaning device 510 can also be used to clean the connecting tube 5100 having an inner diameter of more than 10 mm, but those skilled in the art can understand that when the inner diameter of the connecting tube 5100 is larger than 10 mm, the user can The connecting tube 5100 is cleaned by selecting another cleaning method.
  • the cleaning device 510 is adapted to be applied to the cleaning of the connecting tube 5100 having an inner diameter ranging from 1 mm to 5 mm. More preferably, the cleaning device 510 is particularly adapted to be applied to the cleaning of the connecting tube 5100 having an inner diameter of 2 mm or 3 mm.
  • the length of the connecting tube 5100 is also not limited.
  • the cleaning device 510 of the present invention the cleaning device 510 is adapted to be applied to the connecting tube 5100 having a cleaning length ranging from 10 mm to 100 mm.
  • the cleaning device 510 is adapted to be applied to the connecting tube 5100 having a cleaning length ranging from 10 mm to 500 mm.
  • the connecting tube 5100 may have a size ranging from 10 mm to 50 mm, 50 mm to 100 mm, and 100 mm to 150 mm. 150mm to 200mm, 200mm to 250mm, 250mm to 300mm, 300mm to 350mm, 350mm to 400mm, 400mm to 450mm or 450mm to 500mm.
  • the cleaning device 510 includes a cleaning body 511 and a vacuum generator 512, wherein the cleaning body 511 has an inflow end 5111 and an outflow end 5112, wherein the vacuum generator 512 is connected to the The inflow end 5111 and the outflow end 5112 of the cleaning body 511 are formed such that the cleaning body 511 and the vacuum generator 512 form a fluid passage 513.
  • the inflow end 5111 of the cleaning body 511 has an inflow port 5110
  • the outflow end 5112 has an outflow port 51120 in which the inflow is connected to the cleaning body 511.
  • the vacuum generator 512 of the end 5111 and the outflow end 5112 is further connected to the inflow port 51110 and the outflow port 51120 to form the cleaning body 511 and the vacuum generator 512. Fluid path 513.
  • the vacuum generator 512 may be a manual vacuum generator to subsequently form the fluid passage 513 by manually operating the vacuum generator 512.
  • a negative pressure environment such that fluid of the external environment can enter the fluid passage 513 from the inlet port 51110 of the inlet end 5111 of the washing body 511, and the outlet from the outlet end 5112
  • the flow port 51120 discharges the fluid passage 513.
  • the vacuum generator 512 may also be an electric vacuum generator, wherein the vacuum generator 512 may cause the vacuum generator 512 to be powered when the vacuum generator 512 is supplied with power
  • the fluid passage 513 forms a negative pressure environment such that fluid of the external environment can enter the fluid passage 513 from the inlet port 51110 of the inlet end 5111 of the washing body 511, and from the outflow The outflow port 51120 of the end 5112 exits the fluid passage 513.
  • the type of the vacuum generator 512 is not limited in the cleaning device 510 of the present invention, as long as the fluid passage 513 can be formed into a negative pressure environment, in the following description.
  • the vacuum generator 512 is implemented as an electric vacuum generator as an example, and the features and advantages of the cleaning device 510 of the present invention are further explained. However, those skilled in the art can understand that the following The vacuum generator 512 described as being implemented as an electric vacuum generator should not be considered as limiting the content and scope of the cleaning device 510 of the present invention.
  • the cleaning device 510 further includes a power supply component 514, wherein the vacuum generator 512 is electrically connected to the power supply component 514 to supply power to the vacuum generator at the power supply component 514
  • the vacuum generator 512 causes the fluid passage 513 to form a negative pressure environment when the vacuum generator 512 is driven to operate 512.
  • the type of the power supply element 514 is not limited in the cleaning device 510 of the present invention, as long as power can be supplied to the vacuum generator 512, for example, the power supply element 514. It can be implemented as a disposable battery or a rechargeable battery. Preferably, the power supply component 514 is implemented as a rechargeable lithium battery such that a user can supplement external power (eg, utility power) to the power supply component 514 to reduce the cost of use of the cleaning device 510 and The endurance of the cleaning device 510 is increased.
  • external power eg, utility power
  • the cleaning body 511 may further include a cleaning body 5113, wherein the inflow end 5111 and the outflow end 5112 are integrally formed in the cleaning body 5113, respectively, and the inflow end 5111 and the outflow Ends 5112 protrude from the cleaning body 5113, respectively, to facilitate subsequent mounting of the connecting tube 5100. That is, the end of the connecting tube 5100 may be detachably mounted to the inflow end 5111 or the outflow end 5112 of the cleaning body 511.
  • the vacuum generator 512 may be disposed inside the cleaning body 5113 of the cleaning body 511 such that the vacuum generator 512 is connected to the inflow end 5111 and the inside of the cleaning body 5113. The flow end 5112 is described.
  • the cleaning body 5113 of the cleaning body 511 may not be a unitary structure in order to dispose the vacuum generator 512 inside the cleaning body 5113.
  • the power supply element 514 may also be disposed inside the cleaning body 5113 of the cleaning body 511 to electrically connect the vacuum generator 512 to the inside of the cleaning body 5113.
  • Power supply component 514 That is, the cleaning body 5113 of the cleaning body 511 may form a housing of the cleaning device 510.
  • the cleaning device 510 may further include a housing 515, wherein the inflow end 5111 and the outflow end 5112 of the cleaning body 511 may be respectively disposed on the housing 515, and The inflow end 5111 and the outflow end 5112 respectively protrude from the housing 515, thereby facilitating subsequent installation of the connecting tube 5100 to the inflow end 5111 or the outflow end 5112.
  • the inflow end 5111 and the outflow end 5112 of the cleaning body 511 may also be integrally formed on the housing 515, respectively.
  • the vacuum generator 512 and the power supply element 514 are respectively disposed inside the housing 515 such that the vacuum generator 512 is connected to the cleaning body 511 inside the housing 515.
  • the inflow end 5111 and the outflow end 5112, such that the vacuum generator 512 and the cleaning body 511 form the fluid passage 513, and the inlet port 51110 of the fluid passage 513 and the The outflow ports 51120 are respectively connected to the external environment. Additionally, the vacuum generator 512 is electrically connected to the power supply element 514 inside the housing 515.
  • the cleaning device 510 further includes a control switch 516, wherein the control switch 516 is operatively disposed to the housing 515, and the vacuum generator 512 and the power supply component 514 are respectively Electrically coupled to the control switch 516, wherein the power supply element 514 can be controlled to supply power to the vacuum generator 512 by the control switch 516, that is, when the housing 515 is externally opened
  • the control switch 516 can also control the operating state of the vacuum generator 512.
  • the cleaning device 510 further includes a charging port 517, the charging port 517 is disposed in the housing 515, and the charging port 517 is electrically connected to the power supply component 514 through the charging port 517 external electrical energy may be supplemented to the power supply component 514 external to the housing 515. It is worth mentioning that the type and location of the charging port 517 are not limited in the cleaning device 510 of the present invention.
  • the cleaning device 510 further includes a pressure release 518, wherein the pressure release 518 is in communication with the fluid passage 513 and an external environment for the vacuum generator When the fluid passage 513 is formed into a negative pressure environment, the pressure release 518 is arranged to alternate the pressure within the fluid passage 513, i.e., the pressure release 518 causes the fluid passage 513 to be generated.
  • a first negative pressure and a second negative pressure wherein the value of the first negative pressure is greater than the value of the second negative pressure, and the values of the first negative pressure and the second negative pressure are both greater than 0 .
  • the type of the pressure release device 518 is not limited in the cleaning device 510 of the present invention, for example, the pressure release device 518 can be implemented as a solenoid valve, a relay, and any other type capable of being released.
  • the features and advantages of the cleaning device 510 of the present invention are further illustrated by the fact that the pressure release 518 is implemented as a solenoid valve, as will be understood by those skilled in the art.
  • the pressure release 518 embodied as a solenoid valve is merely an example and should not be considered as limiting the interior and scope of the cleaning device 510 of the present invention.
  • the pressure release 518 can be implemented as a normally closed solenoid valve, wherein the pressure release 518 is electrically connected to the power supply element 514 when the power supply element 514 is not biased When the releaser 518 supplies power, the pressure release 518 is in a closed state, at which time the first negative pressure is within the fluid passage 513. When the power supply element 514 supplies power to the pressure release 518, the pressure release 518 is in an open state, at which time the fluid passage 513 is within the second negative pressure. More preferably, the pressure release 518 is disposed inside the housing 515.
  • the pressure release 518 can also be implemented as a normally open solenoid valve. It will be understood by those skilled in the art that when the pressure release 518 is implemented as a normally closed solenoid valve, the pressure release 518 can consume less electrical energy, thereby facilitating the cleaning of the cleaning device. The endurance of the 510, therefore, in the following description, the features and advantages of the cleaning device 510 of the present invention are further illustrated with the pressure release 518 being further implemented as a normally closed solenoid valve.
  • the pressure release 518 has an inlet end 5181 and an outlet end 5182, wherein the inlet end 5181 of the pressure release 518 has a a gas port 51810 having an air outlet 51820, wherein the inlet end 5181 of the pressure release 518 is coupled to the vacuum generator 512 for connecting the cleaning body 511
  • An end of the flow end 5111 or the inlet end 5181 of the pressure release 518 is coupled to the inflow end 5111 of the cleaning body 511 such that the inlet end 5181 of the pressure release 518
  • the air inlet 51810 is in communication with the fluid passage 513, and the air outlet 51820 of the outlet end 5182 of the pressure release 518 is in communication with an external environment.
  • the inlet end 5181 of the pressure release 518 is coupled to a chamber of the vacuum generator 512 for connecting the cleaning body 511.
  • An end of the flow end 5112 or the inlet end 5181 of the pressure release 518 is coupled to the outflow end 5112 of the cleaning body 511 such that the inlet end of the pressure release 518
  • the air inlet 51810 of the 5181 is in communication with the fluid passage 513, and the air outlet 51820 of the outlet end 5182 of the pressure release 518 is in communication with an external environment.
  • the inlet end 5181 of the pressure release 518 is coupled to a chamber of the vacuum generator 512 for connecting the cleaning body 511
  • the end of the inflow end 5111 or the inlet end 5181 of the pressure release 518 is connected to the inflow end 5111 of the cleaning body 511 such that the inlet end of the pressure release 518
  • the air inlet 51810 of the 5181 is in communication with the fluid passage 513, and the outlet end 5182 of the pressure release 518 is connected to the outlet of the vacuum generator 512 for connecting the cleaning body 511.
  • An end of the flow end 5112 or the outlet end 5182 of the pressure release 518 is coupled to the outflow end 5112 of the cleaning body 511 such that the inlet end 5181 of the pressure release 518
  • the air inlets 51810 and the air outlets 51820 of the outlet end 5182 are both in communication with the fluid passage 513.
  • the cleaning device 510 further includes a pressure relief valve 519, wherein the pressure relief valve 519 is disposed in the housing 515, and the pressure relief valve 519 is in communication with the fluid passage 513.
  • the pressure relief valve 519 When the pressure relief valve 519 is operated outside the housing 515 to open the pressure relief valve 519, the external environment communicates with the pressure relief valve 519 and the fluid passage 513 in an open state.
  • the pressure inside the fluid passage 513 is consistent with the pressure of the external environment, for example, the air pressure inside the fluid passage 513 coincides with the air pressure of the external environment.
  • the pressure relief valve 519 is in a closed state to create a negative pressure environment within the fluid passage 513 when the vacuum generator 512 is in operation, such as cleaning the connecting tube 5100 using the cleaning device 510.
  • the pressure relief valve 519 is in a closed state to create a negative pressure environment within the fluid passage 513 when the vacuum generator 512 is in operation.
  • the pressure relief valve 519 can be a manual valve or an electric valve.
  • the pressure relief valve 519 can be electrically connected.
  • the power supply component 514 In other words, the type of the pressure relief valve 519 is not limited in the cleaning device 510 of the present invention.
  • the cleaning device 510 can clean one of the connecting tubes 5100 at a time, wherein the end of the connecting tube 5100 can be mounted to the cleaning body 511 of the cleaning device 510.
  • the cleaning device 510 can also clean two of the connecting tubes 5100 each time, wherein the ends of each of the connecting tubes 5100 are respectively mounted to the cleaning device 510.
  • the inflow end 5111 and the outflow end 5112 of the cleaning body 511 are described.
  • one of the connecting tubes 5100 is cleaned each time with the cleaning device 510, and the end of the connecting tube 5100 is mounted to the cleaning body 511 of the cleaning device 510.
  • the flow end 5111 is taken as an example, and the process in which the cleaning device 510 is used to clean the connecting tube 5100 will be described to further illustrate the features and advantages of the cleaning device 510 of the present invention.
  • the ends of the connecting tube 5100 are respectively defined as a mounting end 5101 and a free end 5102, wherein the connecting tube 5100 is used for mounting to the cleaning body 511.
  • the end of the inflow end 5111 is defined as the mounting end 5101
  • the other end of the connecting tube 5100 is defined as the free end 5102.
  • the ends of the connecting tube 5100 are respectively defined as the mounting end 5101 and the free end 5102 for convenience of explanation and elaboration of the cleaning device 510 and the utilization device of the present invention.
  • the process of cleaning the connecting tube 5100 by the cleaning device 510 is not to be considered as limiting the content and scope of the cleaning device 510 of the present invention.
  • the mounting end 5101 of the connecting tube 5100 is mounted to the inflow end 5111 of the cleaning body 511 of the cleaning device 510, so that the internal space of the connecting tube 5100 is in the The flow end 5111 communicates with the fluid passage 513 through the inlet port 51110.
  • the free end 5102 of the connecting tube 5100 is placed in a lower portion of a liquid surface 5201, for example, a liquid 5200 is contained in a container 5300, wherein the liquid surface 5201 forms the liquid surface 5201, and the connection is The free end 5102 of the tube 5100 is inserted into and held below the liquid level 5201.
  • fluid may be implemented as the liquid 5200, of course, in other examples of the cleaning device 510, the fluid may also be implemented as a gas. Or the mixture of gas and liquid, the cleaning device 510 of the present invention is not limited in this respect.
  • the power supply component 514 supplies power to the vacuum generator 512 to bring the vacuum generator 512 into operation.
  • the vacuum generator 512 causes the fluid passage 513 to form a negative pressure environment to
  • the liquid 5200 accommodated in the container 5300 enters the inner space of the connecting tube 5100 from the free end 5102 of the connecting tube 5100, and discharges the connection from the free end 5102 of the connecting tube 5100.
  • the internal space of the tube 5100, and the liquid 5200 enters the fluid passage 513 from the inlet end 5111 of the washing body 511 and discharges the fluid passage from the outlet end 5112 of the washing body 511 513. In this manner, the internal space of the connecting pipe 5100 is cleaned. It will be appreciated that the fluid passage 513 can also be cleaned by the liquid 5200.
  • the vacuum generator 512 enables the negative pressure generated in the fluid passage 513 to cause the liquid 5200 to rapidly flow in the internal space of the connecting pipe 5100, thereby scouring the connecting pipe 5100.
  • the inner wall is cleaned of contaminants attached to the inner wall of the connecting pipe 5100, such as dust, bacteria, and milk stains.
  • the power supply element 514 supplies power to the pressure release 518 to place the pressure release 518 in an operational state, at which time the pressure release 518 alternately creates the fluid passage 513
  • the first negative pressure and the second negative pressure are described.
  • the pressure release 518 causes the first negative pressure to be generated in the fluid passage 513
  • the liquid 5200 can enter the connecting tube from the free end 5102 of the connecting tube 5100 at a relatively fast speed.
  • the inner space of the 5100 and the inner end of the connecting tube 5100 are discharged from the mounting end 5101 of the connecting tube 5100.
  • the liquid 5200 can enter the inner space of the connecting pipe 5100 from the free end 5102 of the connecting pipe 5100 and discharge the connecting pipe 5100 from the mounting end 5101 of the connecting pipe 5100 at a slow speed. Interior space.
  • the pressure release device 518 can cause the liquid 5200 to enter the alternating manner in a fast and slow manner by alternately generating the first negative pressure and the second negative pressure in the fluid passage 513.
  • the inner space of the connecting tube 5100 is flushed by the inner space of the connecting tube 5100, thereby effectively cleaning dust, bacteria and milk stains adhering to the inner wall of the connecting tube 5100, which is a prior art cleaning of the connection.
  • the manner of the tube 5100 is also unexpected, and is particularly effective for improving the cleanliness and hygienicity of the internal space of the connecting tube 5100.
  • the liquid 5200 may also enter the inside of the vacuum generator 512 and the pressure release device 518 to clean the vacuum generator and the The pressure release device 518 further ensures the reliability of the connection tube 5100 after being cleaned.
  • the fluid passages 513 are each a negative pressure environment to enable the liquid 5200 to continuously enter the interior space of the connecting tube 5100 from the free end 5102 of the connecting tube 5100.
  • the pressure release device 518 enables the first negative pressure and the second negative pressure generated by the fluid passage 513 to enter the inner space of the connecting tube 5100 from the free end 5102 of the connecting tube 5100
  • the liquid 5200 produces alternating fast and slow changes to provide a better scouring effect.
  • the present invention further provides a method 500 of cleaning the connecting tube 5100 by the cleaning device 510, wherein the cleaning method 500 includes the following steps:
  • Step 510 (a) a vacuum generator 512 of the cleaning device 510 is connected to an inlet port 51110 and an outlet port 51120 of a cleaning body 511 to form a fluid passage 513;
  • Step 520 (b) communicating one end of the connecting pipe 5100 to the fluid passage 513 through the inlet port 51110 or the outflow port 51120 of the washing body 511;
  • Step 530 (c) causing the fluid passage 513 to generate a negative pressure environment through the vacuum generator 512 to allow fluid to enter the internal space of the connecting tube 5100 from one end of the connecting tube 5100 and from the The other end of the connecting pipe 5100 discharges the internal space of the connecting pipe 5100, thereby washing the connecting pipe 5100.
  • the present invention further provides a breast pump with a cleaning device which, for ease of explanation, will be described in the following description with a suction device.
  • the milk device is simply referred to as the breast pump.
  • the breast pump includes the cleaning device 510 and at least one breast receiving device 520, wherein the breast receiving device 520 has a receiving space 521 for receiving a breast 5400, the breast receiving device 520
  • the accommodating space 521 is communicated with the fluid passage 513 of the washing device 510 to form a negative pressure environment in the accommodating space 521, so that breast milk is discharged from the breast 5400.
  • the breast pump includes a milk receptacle 530, wherein the milk receptacle 530 has a milking space 531 and an opening 532, the opening 532 is in communication with the milking space 531, the milk A space 531 is communicated through the opening 532 to the accommodation space 521 of the breast containment device 520 to be further diverted to and stored in the milk after the breast milk is aspirated from the breast tissue of the breast 5400.
  • the milking space 531 of the device 530 is provided to the milking space 531 of the device 530.
  • the breast pump includes a support frame 540, wherein the support frame 540 has a first passage 541 and a second passage 542.
  • the support frame 540 is mounted to the milk receptacle 530, and the first passage 541 and the second passage 542 of the support frame 540 are respectively communicated through the opening 532 of the milk receptacle 530 The milking space 531 of the milk receptacle 530.
  • the cleaning device 510 is mounted on the support frame 540 such that the inlet port 51110 of the cleaning body 511 of the cleaning device 510 communicates with the first passage 541, and the breast receiving device 520 is
  • the support frame 540 is mounted to communicate the accommodation space 521 of the breast containment device 520 with the second passage 542.
  • the accommodating space 521 of the breast accommodating device 520 sequentially passes through the second passage 542, the milking space 531, and the first passage 541 and the fluid passage 513 of the washing device 510.
  • the accommodating space 521 of the breast containment device 520 forms a negative pressure environment when a negative pressure environment is formed in the fluid passage 513.
  • the support frame 540 has a first mounting position 5401, a second mounting position 5402, and a third mounting position 5403, wherein the first channel 541 is in communication with the first mounting position 5401 and the first Three mounting bits 5403, the second channel 542 being in communication with the second mounting location 5402 and the third mounting location 5403.
  • the milk receptacle 530 is detachably mounted to the third mounting position 5403 of the support frame 540 to be mounted when the milk receptacle 530 is mounted to the third mounting position 5403 of the support frame 540
  • the first passage 541 and the second passage 542 are respectively communicated with the milking space 531 of the milk receptacle 530.
  • the milk receptacle 530 and the support frame 540 may be detachably connected by a threaded connection, although the milk receptacle 530 and the support frame 540 may also pass through a connection such as a snap. The way is detachably connected.
  • the cleaning device 510 is detachably mounted to the first mounting position 5401 of the support frame 540 to be installed when the cleaning device 510 is mounted to the first mounting position 5401 of the support frame 540.
  • the inlet port 51110 of the cleaning body 511 of the cleaning device 510 is in communication with the first passage 541, so that the milk passage 531 of the milk receptacle 530 is communicated by the first passage 541.
  • the fluid passage 513 of the cleaning device 510 is detachably mounted to the first mounting position 5401 of the support frame 540 to be installed when the cleaning device 510 is mounted to the first mounting position 5401 of the support frame 540.
  • the inlet port 51110 of the cleaning body 511 of the cleaning device 510 is in communication with the first passage 541, so that the milk passage 531 of the milk receptacle 530 is communicated by the first passage 541.
  • the fluid passage 513 of the cleaning device 510 is detachably mounted to the first mounting position 5401 of the support frame 540 to be installed when
  • the first passage 541 of the support frame 540 is configured to communicate the inlet port 51110 of the cleaning body 511 with the first passage 541 of the support frame 540.
  • the breast receiving device 520 is detachably communicated with the second mounting position 5402 of the support frame 540 to be mounted when the breast receiving device 520 is mounted to the second mounting position 5402 of the support frame 540
  • the accommodating space 521 of the breast accommodating device 520 is in communication with the second passage 542 of the support frame 540 such that the second passage 542 of the support frame 540 communicates with the breast accommodating device 520.
  • the cleaning device 510 is mounted to the first mounting position 5401 of the support frame 540 and
  • the receiving space 521 of the breast receiving device 520 sequentially passes through the second passage 542 and the milking space. 531 and the first passage 541 communicate with the fluid passage 513 of the washing device 510, so that when a negative pressure environment is formed in the fluid passage 513, the accommodating space 521 of the breast accommodating device 520 forms a negative Pressure the environment.
  • the procedure for applying the breast pump to sucking out breast milk accumulated in the breast tissue of the breast 5400 is illustrated.
  • the breast 5400 is housed in the accommodation space 521 of the breast accommodation device 520.
  • power is supplied to the vacuum generator 512 to cause the vacuum generator 512 to be in a continuous operating state to cause the fluid passage 513 to generate a negative pressure environment, at which time the pressure release 518 is also supplied with power.
  • the breast receiving device 520 In a working state such that the fluid passage 513 has the first negative pressure, it is understood that when the first negative pressure is generated in the fluid passage 513, the breast receiving device 520 is The first negative pressure is synchronously generated in the accommodation space 521 to exhale the breast milk from the breast 5400, and the breast milk is guided to and stored in the milking space 531 of the milk receptacle 530. Subsequently, the pressure release device 518 generates the second negative pressure in the fluid passage 513, and the second negative pressure is synchronously generated in the accommodating space 521 of the breast accommodating device 520.
  • the breast pump may not need to suck breast milk out of the breast 5400, and the second negative pressure may only cause the breast receiving device 520 to be held at the position of the breast 5400 while preventing the breast Containing device 520 from the milk The position of the room 5400 is detached, thereby facilitating the use of the breast pump.
  • the pressure release device 518 alternately generates the first negative pressure and the negative pressure in the fluid passage 513, so that the receiving space 521 of the breast receiving device 520 is also alternately generated.
  • the first negative pressure and the second negative pressure when the first negative pressure is generated in the accommodating space 521, the breast milk is discharged from the breast 5400, and the inside of the accommodating space 521 is generated.
  • the second negative pressure causes the breast receiving device 520 to be held at the position of the breast 5400, thereby not only facilitating the user to use the breast pump, but also the simulated baby sucking provided by the breast pump of the present invention.
  • the manner of breast milk can also serve to massage the breast 5400, and more importantly, during the use of the breast pump to suck milk, since the breast receiving device 520 is always held in the breast 5400 The position is such that the breast milk sucked from the breast tissue of the breast 5400 is prevented from coming into contact with the air to cause contamination, which is advantageous for ensuring the safety of the breast milk.
  • the breast care device includes a care body 610, at least A breast receiving member 620 and at least one electrode member 630, wherein each of the breast receiving members 620 and each of the electrode members 630 are respectively disposed on the care body 610.
  • the number of the breast receiving members 620 may be one or two. When the number of the breast receiving members 620 is implemented as two, the breast care device can simultaneously care for the user. The breasts on both sides.
  • the breast receiving member 620 is embodied as one example, and therefore, those skilled in the art should It is understood that the number of breast containment members 620 should not be considered as limiting the content and scope of the breast care device of the present invention.
  • the number of the electrode members 630 may also be not limited, and in the following description and the accompanying drawings, the number of the electrode members 630 is implemented as an example to further illustrate the present invention. Features and advantages of the breast care device, therefore, those skilled in the art will appreciate that the number of electrode members 630 should be considered as limiting the content and scope of the breast care device of the present invention.
  • the breast receiving member 620 is detachably disposed on the care body 610, in such a manner that, on the one hand, the user can select the breast receiving member 620 of a suitable size, and on the other hand, when When any one of the breast receiving member 620 and the care body 610 is damaged, only one of the damaged ones may need to be replaced to reduce the cost of use of the breast care device.
  • the manner in which the breast receiving member 620 and the care body 610 are mounted will be further explained.
  • the breast receiving member 620 and the care body 610 may also be a one-piece structure. That is, the breast receiving member 620 and the care body 610 are not detachable.
  • the electrode member 630 is detachably disposed on the care body 610, in such a manner that, on the one hand, the user can select the electrode member 630 of a suitable length, and on the other hand, when the electrode member When any of the 630 and the care body 610 is damaged, only one of the damaged ones may need to be replaced to reduce the cost of use of the breast care device.
  • the care body 610 can provide an interface, and the electrode member 630 can provide a terminal when the terminal of the electrode member 630 is inserted and held The electrode member 630 may be disposed to the care body 610 at the interface of the care body 610.
  • the manner in which the care body 610 provides the interface and the electrode member 630 provides the terminal is merely an example to illustrate that the electrode member 630 and the care body 610 can be detachably mounted, It should not be considered as limiting the content and scope of the breast care device of the present invention.
  • the breast receiving member 620 has a receiving space 621 for receiving a breast.
  • the breast accommodating member 620 can be preheated so that when the breast accommodating member 620 comes into contact with the breast skin of the breast, the temperature of the breast accommodating member 620 and the temperature of the breast skin of the breast coincide, thereby avoiding the breast
  • the breast tissue produces undesirable stimuli to improve the comfort of the breast care device when it is used, and makes the breast care device particularly suitable for use in colder weather conditions.
  • the breast receiving member 620 includes a receiving body 622 and a heat generating component 623, wherein the receiving body 622 has the receiving space 621, and the heat generating component 623 is disposed in the receiving body 622.
  • the heat generating component 623 is capable of generating heat when supplied with electric power to raise the temperature of the accommodating body 622 and raise the temperature of the accommodating space 621, thereby contacting the breast accommodating member 620 and the breast of the breast.
  • the breast receiving member 620 is previously preheated.
  • the shape of the receiving body 622 may be a funnel shape such that the shape of the receiving body 622 matches the shape of the breast, so that when the breast is accommodated in the receiving space 621, the receiving body 622 can Surrounded by the breasts.
  • the receiving body 622 is implemented in a hemispherical shape or a bowl shape, and therefore, the shape of the receiving body 622 is in the breast care device of the present invention. Unlimited.
  • the accommodating body 622 further includes an inner portion 6221, wherein the inner portion 6221 of the accommodating body 622 forms the accommodating space 621, and the heating element 623 is disposed at The inner side portion 6221 of the accommodating body 622 is not located in the accommodating space 621.
  • the inner portion 6221 of the accommodating body 622 isolates the heat generating component 623 and the breast when the breast is accommodated in the heat generating component 623, thereby preventing the heat generating component 623 from being in direct contact with the breast to cause the heat generating component 623 produces heat that burns the breasts of the breasts with undesirable skin.
  • heat generated by the heat generating element 623 is radiated to the accommodating space 621 through the inner side portion 6221 of the accommodating body 622 to raise the temperature of the accommodating space 621, and the heat generating element 623 is generated.
  • the heat is conducted to the breast skin of the breast through the inner side portion 6221 of the accommodating body 622, and in this way, the safety and reliability of the breast care device when it is used can be improved.
  • the heat generating component 623 is of a unitary structure, and the heat generating component 623 is circumferentially disposed at the inner side portion 6221 of the accommodating body 622, in such a manner that heat generated by the heat generating component 623 can be uniform
  • the ground is radiated from the accommodation body 622 to the accommodation space 621 and the breast skin that is conducted to the breast to improve the comfort when the breast care device is used.
  • the number of the heat generating elements 623 may also be implemented as a plurality, each of the heat generating elements 623 being respectively along the receiving body
  • the inner side portion 6221 of the 622 is arranged in the circumferential direction such that the heat generating element 623 surrounds the inner side portion 6221 of the accommodating body 622, so that the heat generated by each of the heat generating elements 623 can be uniformly self-sufficient
  • the circumference of the accommodation body 622 is radiated to the accommodation space 621 and the breast skin that is conducted to the breast to improve the comfort when the breast care device is used.
  • each of the heat generating elements 623 is disposed at a distance from each other. More preferably, the distance between adjacent heat generating elements 623 is equal.
  • the heat generating component 623 may further include a first heat generating component 6231 and a set of second heat generating component 6232, wherein the first The heat generating member 6231 is circumferentially disposed at the inner side portion 6221 of the accommodating body 622, and each of the second heat generating members 6232 is arranged along a circumferential direction of the inner side portion 6221 of the accommodating body 622 so that each The second heat generating element 6232 surrounds the inner side portion 6221 of the accommodating body 622, and each of the second heat generating elements 6232 extends integrally on the same side of the first heat generating element 6231, thereby
  • the heat generated by the first heat generating element 6231 and each of the second heat generating elements 6232 can be uniformly radiated from the circumference of the accommodating body 622 to the accommodating space 621 and the skin of the breast that is transmitted to the breast to improve the The comfort of the breast care device when it is used
  • the type of the heating element 623 is not limited, and it is possible to generate heat after being supplied with electric power.
  • the care body 610 includes a power supply portion 611, wherein the heat generating component 623 is electrically connected to the power supply portion 611.
  • the power supply portion 611 can supply power to the heat generating component 623 to cause the heat generating component 623 to generate heat.
  • the power supply portion 611 may be implemented as a disposable battery, a rechargeable battery, or the like, such as a rechargeable lithium battery, to be directly connected by the power supply portion 611 Power is supplied to the heating element 623.
  • the power supply portion 611 may also be a power relay portion that is capable of supplying external power (for example, commercial power) to the heat generating component 623 so that The heating element 623 generates heat.
  • the power supply unit 611 can also provide a function of voltage transformation and voltage regulation.
  • the type of the power supply portion 611 is not limited in the breast care device of the present invention, and it is possible to supply electric power to the heat generating element 623.
  • the breast care device may further include a conductive member 640, wherein the conductive member 640 includes a first conductive portion 641 and a second conductive portion 642, wherein the first conductive portion 641 is disposed at the The care body 610 is described, and the first conductive portion 641 is electrically connected to the power supply portion 611, wherein the second conductive portion 642 is disposed on the receiving body 622, and the second conductive portion 642 is Connected to the heating element 623.
  • the conductive member 640 includes a first conductive portion 641 and a second conductive portion 642, wherein the first conductive portion 641 is disposed at the The care body 610 is described, and the first conductive portion 641 is electrically connected to the power supply portion 611, wherein the second conductive portion 642 is disposed on the receiving body 622, and the second conductive portion 642 is Connected to the heating element 623.
  • the first conductive portion 641 and the second conductive portion 642 of the conductive member 640 are conductively connected to enable the power
  • the supply portion 611 can supply electric power to the heat generating element 623 to cause the heat generating element 623 to generate heat.
  • the first conductive portion 641 and the second conductive portion 642 of the conductive member 640 may be implemented as wireless power transmission in another specific example of the breast care device.
  • the module when the distance between the first conductive portion 641 and the second conductive portion 642 is within a suitable range, the first conductive portion 641 and the second conductive portion 642 can be directly turned on.
  • the accommodating body 622 further includes an outer portion 6222, wherein the heat generating component 623 is disposed between the inner side portion 6221 and the outer side portion 6222 of the accommodating body 622 that overlap each other. The heat generating component 623 is prevented from being exposed.
  • the inner side portion 6221 and the outer side portion 6222 of the accommodation body 622 and the heat generating element 623 may be integrally formed. Specifically, the heat generating component 623 is placed in a molding die, and then a molding material is added to the molding die to form the receiving body 622 wrapped around the heating element 623 after the molding material is cured. The inner portion 6221 and the outer portion 6222.
  • the inner side portion 6221 and the outer side portion 6222 of the accommodating body 622 may be separately formed, and then the inner side portion 6221 and the outer side portion 6222 are overlapped and mounted.
  • the heating element 623 is located between the inner side portion 6221 and the outer side portion 6222.
  • the heat generating element 623 may be overlapped on the inner side portion 6221 or the heat generating element 623 may be overlapped.
  • the outer portion 6222 is disposed on the outer portion 6222, and the inner portion 6221 and the outer portion 6222 are mounted together by a snapping or bonding or the like so that the heat generating elements 623 are held at overlap each other. Between the inner side portion 6221 and the outer side portion 6222.
  • the breast receiving member 620 further includes a temperature maintaining portion 624, wherein the temperature maintaining portion 624 is disposed in the receiving body 622 to accommodate the breast by the temperature maintaining portion 624.
  • the temperature of member 620 is maintained at a suitable temperature range.
  • the suitable temperature involved in the breast care device of the present invention means that the temperature of the breast receiving member 620 is consistent with the normal temperature of the breast skin of the breast, that is, the temperature of the breast receiving member 620 is not The normal temperature of the breast skin, which is excessively higher than the breast, is not excessively lower than the normal temperature of the breast skin of the breast, in such a way that the breast care device is made more comfortable and reliable when it is used.
  • the temperature maintaining portion 624 causes the heat generating element 623 of the breast accommodating member 620 to be supplied only. Less electric power enables the temperature of the breast accommodating member 620 to be maintained at a suitable temperature range, and in this way, not only the consumption of electric power can be reduced, but also the endurance of the breast accommodating device can be improved.
  • the heat generating component 623 has an inner side 6233 and an outer side 6234 corresponding to the inner side 6233, wherein a side of the heat generating component 623 facing the inner side portion 6221 of the receiving body 622 is defined as The inner side 6233 of the heat generating component 623, the side of the heat generating component 623 facing the outer side portion 6222 of the accommodating body 622 is defined as the outer side 6234 of the heat generating component 623.
  • the temperature maintaining portion 624 is held on the outer side 6234 of the heat generating component 623 such that the temperature maintaining portion 624 is located on the outer side 6234 of the heat generating component 623 such that the heat generating component 623 is supplied
  • the heat generated by the electric power can only be radiated to the inner side portion 6221 of the accommodating body 622 and radiated to the accommodating space 621.
  • the temperature maintaining portion 624 is a heat insulating layer or a heat insulating layer that radiates heat to the outer side portion 6222 of the accommodating body 622 and radiation by preventing heat generated by the heat generating element 623 from being supplied with electric power.
  • the way to the external environment causes the heat generating element 623 to be efficiently utilized by the heat generated by the supplied electric power, so that the breast receiving member 620 can be quickly warmed up and in the case of consuming better electric power
  • the temperature of the breast receiving member 620 is maintained at a suitable temperature range. In other words, the temperature maintaining portion 624 can make the temperature of the breast receiving member 620 more constant, thereby improving the comfort when the breast care device is used.
  • the temperature maintaining portion 624 may be a separate member that is overlappedly disposed on the outer side 6234 of the heat generating component 623 such that the temperature maintaining portion 624 and the heat generating component 623 together
  • the inner side portion 6221 and the outer side portion 6222 that overlap each other of the accommodating body 622 are held.
  • the temperature may be at the temperature by injection molding, molding, or embedding.
  • the inner portion 6221 and the outer portion 6222 of the accommodating body 622 are integrally formed by the maintaining portion 624 and both sides of the heat generating element 623.
  • FIG. 35 illustrates a modified embodiment of the breast care device, wherein the temperature maintaining portion 624 may also be formed on the outer side 6234 of the heat generating component 623.
  • the temperature maintaining portion 624 may be implemented as a heat insulating film or a heat insulating film that overlaps the outer side 6234 of the heat generating component 623.
  • a liquid heat insulating material or a heat insulating material may be applied to the outer side 6234 of the heat generating component 623 to form the overlap with the heat generating component 623 after the heat insulating material or the heat insulating material is cured.
  • a heat insulating film or a heat insulating film of the outer side 6234 which is formed by integrally forming the inner side portion 6221 and the outer side portion 6222 of the accommodating body 622 that surrounds the heat generating element 623 and the temperature maintaining portion 624 It is worthwhile for the breast accommodating member 620 to be attached to the inner portion 6221 and the outer portion 6222 of the accommodating body 622 by the heat generating member 623 having the temperature maintaining portion 624.
  • the breast receiving member 620 is described.
  • the temperature maintaining portions 624 can each be implemented as a layer overlapping the outer side portion 6222 of the receiving body 622. a heat insulating film or a heat insulating film, wherein in FIG. 36, the temperature maintaining portion 624 is overlapped with an outer wall of the outer side portion 6222 of the accommodating body 622, and in FIG. 37, the temperature maintaining portion 624 is overlapped. The inner wall of the outer side portion 6222 of the accommodating body 622.
  • the accommodating body 622 is The inner portion 6221 and the outer portion 6222 may be integrally formed with the heat generating component 623 and then apply a heat insulating material or a heat insulating material to the outer wall of the outer portion 6222 to be cured in the heat insulating material or the heat insulating material.
  • the temperature maintaining portion 624 illustrated in FIG. 37 is overlapped with the inner wall of the outer side portion 6222 of the accommodating body 622, the inner side wall 221 and the outer side portion 6222 of the accommodating body 622 are provided.
  • the temperature maintaining portion 624 is formed on the inner wall of the outer portion 6222 of the accommodating body 622, and then the inner portion 6221 and the outer portion 6222 of the accommodating body 622 are installed.
  • the breast receiving member 620 is formed together and the heat generating member 623 is held between the inner side portion 6221 and the outer side portion 6222 which are overlapped with each other.
  • the outer portion 6222 of the receiving body 622 of the breast receiving member 620 may form the temperature maintaining portion 624. That is, the outer side portion 6222 of the accommodating body 622 may be made of a heat insulating material or a heat insulating material to prevent heat generated by the heat generating element 623 from being supplied with electric power from being radiated to the external environment through the outer side portion 6222. .
  • the care body 610 further includes a driving portion 612, wherein the driving portion 612 is electrically connected to the power supply portion 611 to supply electric power to the driving portion at the power supply portion 611.
  • the driving portion 612 is capable of generating vibration, and the vibration is further transmitted to the breast receiving member 620 to massage the breast accommodated in the accommodation space 621 of the breast receiving member 620.
  • the driving portion 612 can be implemented as a vibration motor capable of generating vibration when supplied with electric power, and the vibration can be further transmitted to the breast receiving member 620, so that the massage is accommodated in the The breast of the accommodation space 621 of the breast receiving member 620.
  • the drive portion 612 is capable of providing a stable vibration frequency to provide a better massage effect in the future. More preferably, the vibration frequency of the driving portion 612 is adjustable to allow the user to select different vibration frequencies as needed.
  • the care body 610 further includes a housing 613, wherein the power supply portion 611 and the driving portion 612 may be respectively disposed inside the housing 613, and the breast receiving member 620 is detachably mounted In the housing 613.
  • the first conductive portion 641 of the conductive member 640 is disposed on the housing 613, and the first conductive portion 641 is electrically connected to the power supply portion 611, the second conductive portion 642 is disposed to the accommodating body 622 of the breast accommodating member 620, and the second conductive portion 642 is coupled to the heat generating component 623, wherein the accommodating body 622 of the breast accommodating member 620 is installed
  • the second conductive portion 642 can be disposed to be electrically connected to the first conductive portion 641, so that the power supply portion 611 can pass through the conductive member
  • the first conductive portion 641 and the second conductive portion 642 of the conductive connection of 640 are supplied to the heat generating element 623 to cause the heat generating element 623 to generate heat.
  • the first conductive portion 641 may be implemented as two conductive sheets or conductive bumps, and the first conductive portion 641 is exposed on the surface of the housing 613, and correspondingly, the second conductive portion
  • the portion 642 may also be implemented as two conductive sheets or conductive bumps, and the second conductive portion 642 is exposed on the surface of the accommodating body 622, wherein the accommodating body 622 of the breast accommodating member 620 is mounted
  • the first conductive portion 641 and the second conductive portion 642 can be turned on by mutual contact.
  • first conductive portion 641 and the second conductive portion 642 may be simultaneously implemented as conductive sheets, or the first conductive portion 641 and the second conductive portion 642 may be simultaneously implemented as a conductive bump, or one of the first conductive portion 641 and the second conductive portion 642 is implemented as a conductive sheet, and the other conductive portion is implemented as a conductive bump, the breast care device of the present invention There is no limit in this regard.
  • the first conductive portion 641 of the breast care device of the present invention is exposed on the surface of the housing 613 and the second conductive portion 642 is exposed to the receiving body 622.
  • the surface means that the first conductive portion 641 and the second conductive portion 642 can be electrically connected in a physical contact manner while the receiving body 622 is attached to the housing 613, for example,
  • the first conductive portion 641 may be visually disposed on a surface of the housing 613 and the second conductive portion 642 may be visually disposed on a surface of the receiving body 622, or the first conductive portion 641 and
  • the second conductive portion 642 may also not be visualized, that is, the first conductive portion 641 is hidden inside the housing 613, and the second conductive portion 642 is hidden inside the receiving body 622, and
  • the first conductive portion 641 and the second conductive portion 642 may be electrically connected in a physical contact manner.
  • the driving portion 612 may not be disposed on the housing 613, but the driving portion 612 may be directly disposed on the breast.
  • the accommodating body 622 of the accommodating member 620 wherein the driving portion 612 may be electrically connected to the housing 613 of the care body 610 when the accommodating body 622 of the breast accommodating member 620 is mounted
  • the power supply portion 611 wherein the power supply portion 611 is capable of supplying electric power to the driving portion 612 to cause the driving portion 612 to generate vibration to cause the breast receiving member 620 to vibrate in synchronization, so that the massage is accommodated in The breast of the accommodating space 621 of the breast accommodating member 620.
  • the care body 610 further includes a low frequency pulse portion 614, wherein the low frequency pulse portion 614 is electrically connected to the power supply portion 611, wherein the power supply When the power is supplied to the low frequency pulse portion 614, the low frequency pulse portion 614 can generate a low frequency pulse.
  • the low frequency pulse portion 614 is also disposed inside the housing 613.
  • the electrode member 630 is connected to the low frequency pulse portion 614 to transmit the low frequency pulse generated by the low frequency pulse portion 614 due to the supplied power to the acupuncture point associated with the breast tissue of the breast by the electrode member 630 Thereby, the acupoints associated with the breast tissue of the breast are stimulated by the low frequency pulse while massaging the breast to enhance the massage effect.
  • the electrode member 630 includes two connection lines 631, a positive terminal 632 and a negative terminal 633, wherein the positive terminal 632 and the negative terminal 633 are respectively disposed at the free end of each of the connecting lines 631.
  • the connection end of the connection line 631 is connected to the low frequency pulse portion 614, wherein the positive electrode end 632 and the negative electrode end 633 of the electrode member 630 are attached to the breast tissue of the breast when used.
  • the associated acupoints act on the acupuncture points through the positive terminal 632 and the negative terminal 633 of the electrode member 630 when the low frequency pulse portion 614 generates a low frequency pulse.
  • the low frequency involved in the breast care device of the present invention means that the frequency ranges from 0 Hz to 100 Hz.
  • the low frequency involved in the breast care device of the present invention refers to a flat frequency of 80 Hz to 100 Hz, and for example, the low frequency involved in the breast care device of the present invention may be 92 Hz.
  • the care body 610 may further include a control portion 615, wherein the control portion 615 is operatively disposed on the housing 613 to allow a user to operate the control portion outside the housing 613 615.
  • the heat generating component 623, the power supply portion 611, the driving portion 612, and the low frequency pulse portion 614 may be operatively coupled to the control portion 615, respectively.
  • the state in which the power supply unit 611 supplies power to the heat generating element 623, the driving unit 612, and the low frequency pulse unit 614 is controlled by the control unit 615.
  • the number of the control portions 615 may be one, so that when the control portion 615 is turned on, the power supply portion 611 may simultaneously feed the heat generating element 623, the driving portion 612, and the low frequency pulse portion.
  • control portion 615 is supplied with electric power, or the number of the control portions 615 may be plural to individually control the power supply portion 611 to the heat generating component, the driving portion 612, and the respective by the control portion 615 The power supply state of the low frequency pulse portion 614.
  • the breast care device when the breast care device is used, power may be supplied to the heat generating component 623 by the power supply portion 611 to cause the heat generating component 623 to generate heat to preheat the breast receiving member 620. And raising the temperature of the accommodation space 621 of the breast receiving member 620. When the temperature of the breast accommodating member 620 is raised to a suitable temperature range, the breast is housed in the accommodating space 621 of the breast accommodating member 620.
  • the breast care device can provide a temperature detecting device and a display screen to display the temperature of the breast receiving member 620 and the receiving space 621 detected by the temperature detecting device on the display screen.
  • the positive electrode end 632 and the negative electrode end 633 of the electrode member 630 may be attached to acupuncture points associated with breast tissue of the breast, respectively.
  • the power supply portion 611 is supplied with electric power to the driving portion 612 and the low frequency pulse portion 614, respectively, wherein the driving portion 612 generates vibration when supplied with electric power, and the vibration is further transmitted to the breast receiving member 620.
  • the breast accommodating member 620 is vibrated in synchronization so as to massage the breast accommodated in the accommodating space 621, wherein the low-frequency pulse portion 614 generates a low-frequency pulse when supplied with electric power, and the low-frequency pulse is passed through the connecting line 631
  • the positive end 632 and the negative end 633 are transmitted to stimulate the acupuncture point, whereby the breast care device can stimulate acupuncture points associated with the breast tissue of the breast while massaging the breast to enhance the massage effect.
  • the temperature maintaining portion 624 can prevent the heat generated by the heat generating component 623 from radiating to the external environment, thereby maintaining the temperature of the breast receiving member 620 at Suitable temperature range.
  • the housing 613 defines a mounting space 6131.
  • the receiving body 622 is provided with a mounting portion 6223, wherein the mounting portion 6223 of the receiving body 622 is detachably mounted to the housing 613.
  • the installation space 6131 is such that the breast receiving member 620 and the care body 610 are mounted together.
  • the first conductive portion 641 of the conductive member 640 is located in the mounting space 6131 of the housing 613
  • the second conductive portion 642 is located in the mounting portion 6223 of the receiving body 622.
  • the first conductive portion 641 and the second conductive portion 642 may be in physical contact. Connected in a conductive manner.
  • the inner wall of the housing 613 may be provided with at least one engaging protrusion 6132, and the mounting portion 6223 of the receiving body 622 is provided with at least one engaging recess 6224, wherein the housing 613 is
  • the position and number of the engaging protrusions 6132 are preferably coincident with the position and number of the engaging recesses 6224 of the receiving body 622, wherein the mounting portion 6223 of the receiving body 622 is mounted to the
  • each of the engaging projections 6132 of the housing 613 can be respectively engaged with each of the engaging recesses 6224 of the receiving body 622, thereby preventing
  • the situation in which the breast containment member 620 is detached from the care body 610 when the breast care device is in use occurs to ensure the reliability of the breast care device.
  • the material forming the housing 613 and the receiving body 622 may be slightly deformed.
  • the housing 613 and the accommodating body 622 are mounted together, and the breast accommodating member 620 and the care body 610 are detached by a slight deformation of the material forming the housing 613 and the accommodating body 622.
  • the housing 613 and the receiving body 622 are separated.
  • the inner wall of the housing 613 may be provided with at least one of the engaging recesses 6224, and the mounting portion 6223 of the receiving body 622.
  • At least one of the engaging projections 6132 may be provided such that when the mounting portion 6223 of the receiving body 622 is mounted to the mounting space 6131 of the housing 613, each of the engaging projections 6132 Engaged in each of the engaging recesses 6224, respectively, to prevent the breast receiving member 620 from being detached from the care body 610 when the breast care device is used, to ensure the breast care device Reliability.
  • the housing 613 may also be provided with one mounting portion 6223, and the receiving body 622 forms one of the mounting spaces 6131.
  • the mounting portion 6223 of the housing 613 is detachably mounted to the mounting space 6131 of the housing body 622 such that the breast housing member 620 and the care body 610 are mounted together.
  • the inner wall of the accommodating body 622 is provided with at least one of the engaging protrusions 6132
  • the mounting portion 6223 of the housing 613 is provided with at least one of the engaging recesses 6224, wherein the shell
  • each of the engaging protrusions 6132 of the receiving body 622 is respectively engaged with the housing 613.
  • Each of the engaging recesses 6224 prevents the detachment of the breast receiving member 620 from the care body 610 when the breast care device is in use to ensure the reliability of the breast care device.
  • the inner wall of the receiving body 622 is provided with at least one of the engaging recesses 6224, and the mounting portion 6223 of the housing 613 At least one of the engaging projections 6132 is provided, wherein each of the mounting portions 13 is mounted when the mounting portion 6223 of the housing 613 is mounted to the mounting space 6131 of the receiving body 622
  • the engaging protrusions 6132 are respectively engaged with each of the engaging recesses 6224 of the receiving body 622, thereby preventing the breast receiving member 620 from the nursing body 610 when the breast care device is used.
  • the upper detachment occurs to ensure the reliability of the breast care device.
  • the housing 613 has at least one locking groove 6133, and each of the locking grooves 6133 is respectively connected to the installation space 6131.
  • the mounting portion 6223 of the accommodating body 622 is provided with at least one latch 6225, wherein when the mounting portion 6223 of the accommodating body 622 is mounted to the mounting space 6131 of the housing 613,
  • the main body 622 and/or the housing 613 are accommodated in such a manner that each of the latches 6225 of the receiving body 622 is respectively mounted to and held by each of the lock grooves 6133 of the housing 613. In such a manner, it is possible to prevent the breast accommodating member 620 from being detached from the care body 610 when the breast care device is used, to ensure the reliability of the breast care device.
  • housing 613 of the care body 610 and the mounting portion 6223 of the receiving body 622 can also be mounted together by screwing or the like.
  • the breast care device further includes a connecting member 650, wherein the connecting member 650 includes a magnetic first connecting member 651 and a magnetic a second connecting member 652, wherein the first connecting member 651 is disposed on the housing 613, and the second connecting member 652 is disposed in the mounting portion 6223 of the receiving body 622, wherein the mounting portion
  • the first connecting member 651 and the second connecting member 652 can be attracted to each other to enable the mounting portion 6223 of the receiving body 622 to be easily removed.
  • the user does not need to specifically make the mounting portion 6223 of the receiving body 622 and the mounting space 6131 of the housing 613 mutually
  • the first connecting member 651 and the second connecting member 652 can Adhering to each other such that the mounting portion 6223 of the accommodating body 622 is held in the mounting space 6131 of the housing 613, thereby preventing the breast accommodating member 620 from being used when the breast care device is used
  • the detachment of the care body 610 occurs to ensure the reliability of the breast care device.
  • the first connecting member 651 and the second connecting member 652 may each be a magnet such that when the first connecting member 651 and the second connection When the elements 652 are close to each other, mutual attraction force can be generated between the first connecting member 651 and the second connecting member 652 such that the first connecting member 651 and the second connecting member 652 are close to each other.
  • the tendency and displacement make it easier to mount the breast containment member 620 and the care body 610 together.
  • the breast receiving member 620 and the care body 610 can be separated in the event of an adsorption force such that the breast receiving member 620 and the care body 610 are carried and used when the breast care device is carried and used. There is no separation, and when the breast receiving member 620 or the care body 610 is replaced, it is only necessary to slightly apply an external force greater than the adsorption force generated between the first connecting member 651 and the second connecting member 652.
  • the breast receiving member 620 and the care body 610 can be easily separated. It will be understood by those skilled in the art that the magnitude of the external force required to be applied to the breast receiving member 620 and the care body 610 and the first connecting member 651 and the second connecting member of the connecting member 650 are understood. 652 related.
  • one of the first connecting member 651 and the second connecting member 652 is a magnet
  • the other connecting member is a magnetic member, such as a ferrous material. Any material that can interact with magnetic properties to create an adsorption force.
  • the breast pump of the present invention comprises a vacuum massage device, with reference to Figures 46 to 51 of the drawings of the present invention, a negative pressure in accordance with a preferred embodiment of the present invention.
  • the massage device is explained in the following description, wherein the vacuum massage device comprises a negative pressure generating unit 710 and at least one massage unit 720, wherein each of the massage units 720 is connected to the negative pressure generating unit 710, massage the local position of the human tissue.
  • the number of the massage unit 720 is not limited in the vacuum massage device of the present invention, although in the drawings 46 to 51 and in the following description, the massage unit is used.
  • the number of 720 is implemented as an example to illustrate the contents and features of the vacuum massage device of the present invention, and those skilled in the art will appreciate that in other possible examples of the vacuum massage device,
  • the number of massage units 720 can also be implemented as two or more, and therefore, the number of massage units 720 should not be considered as limiting the content and scope of the vacuum massage device of the present invention.
  • the negative pressure generating unit 710 forms a ventilation path 7100
  • the massage unit 720 provides a massage space 7200
  • the massage unit 720 is connected to the negative pressure generating unit 710 to make the massage space 7200 is connected to the air passage 7100, so that when the air passage 7100 of the negative pressure generating unit 710 forms a negative pressure environment, the massage space 7200 of the massage unit 720 can also form a negative pressure environment to massage Corresponding to the position of the human tissue of the massage space 7200.
  • the massage unit 720 is detachably coupled to the negative pressure generating unit 710, wherein when the massage unit 720 is connected to the negative pressure occurs At the time of unit 710, the massage space 7200 of the massage unit 720 is in communication with the air passage 7100 of the negative pressure generating unit 710 to subsequently enable the pressure state of the massage space 7200 of the massage unit 720.
  • the pressure state of the air passage 7100 of the negative pressure generating unit 710 is identical.
  • the massage unit 720 and the negative pressure generating unit 710 may be separately fabricated, and then disassembly is not allowed after the massage unit 720 and the negative pressure generating unit 710 are mounted together. Still alternatively, the massage unit 720 and the negative pressure generating unit 710 may also be integrally formed.
  • the vacuum massage device includes a mounting unit 730, wherein the negative pressure generating unit 710 and the massage unit 720 can be respectively mounted to the mounting unit 730 to enable the mounting unit 730 to
  • the negative pressure generating unit 710 and the massaging unit 720 are mounted together to form a portable negative pressure massaging device.
  • the mounting unit 730 is used not only for mounting the negative pressure generating unit 710 and the massaging unit 720 but also for turning on the negative pressure generating unit The air passage 7100 of the 710 and the massage space 7200 of the massage unit 720.
  • the mounting unit 730 is only used to mount the negative pressure generating unit 710 and the massaging unit 720, and the air passage 7100 of the negative pressure generating unit 710 And the massage space 7200 of the massage unit 720 is directly turned on, that is, by the way that the negative pressure generating unit 710 is directly connected to the massage unit 720, the negative pressure generating unit 710 is The air passage 7100 and the massage space 7200 of the massage unit 720 are directly turned on.
  • the mounting unit 730 may be implemented as a housing in this embodiment of the vacuum generating device of the present invention.
  • the mounting unit 730 may not be used to mount the negative pressure generating unit 710 and the massaging unit 720, but may be turned on using the mounting unit 730.
  • the air passage 7100 of the negative pressure generating unit 710 and the massage space 7200 of the massage unit 720, for example, the mounting unit 730 may be implemented as this embodiment of the negative pressure generating device of the present invention as A connecting pipe, such as a hose, can make the use of the vacuum generating device more flexible. Nevertheless, in the following description, the contents of the vacuum massage device of the present invention are explained with the mounting unit 730 being used to mount the negative pressure generating unit 710 and the massage unit 720 as an example. And features.
  • the negative pressure generating unit 710, the massaging unit 720, and the mounting unit 730 may be separately fabricated, and then the negative pressure generating unit 710 and the massaging unit 720 are respectively mounted on the The unit 730 is installed to form the vacuum massage device.
  • at least one of the negative pressure generating unit 710 and the massage unit 720 can be detachably mounted with the mounting unit 730, for example, the negative pressure generating unit 710 can be installed on the mounting.
  • the massage unit 720 is detachably mounted on the outside of the mounting unit 730.
  • the massage unit 720 may be installed inside the mounting unit 730, and the negative pressure may be
  • the generating unit 710 is installed outside the mounting unit 730.
  • the negative pressure generating unit 710 and the massaging unit 720 may also not allow disassembly after being mounted to the mounting unit 730.
  • at least a part of the negative pressure generating unit 710 and the massage unit 720 may also be integrally formed with the mounting unit 730.
  • the vacuum massage device of the present invention is not limited in this regard.
  • the massage unit 720 has a funnel shape, a drop shape or a hemisphere shape, so that the massage unit 720 forms the massage space 7200.
  • the massage unit 720 is implemented in a bowl shape. Therefore, the shape of the massage unit 720 should not be regarded as the content and range of the negative pressure massage device of the present invention. limits.
  • the shape of the massage unit 720 may coincide with the shape of the breast, so that the negative pressure massage device of the present invention can be used to massage the breast. It can be understood that the massage unit 720 can be separated from the negative pressure generating unit 710, so that the user can replace the massage unit 720 having the massage space 7200 of different sizes as needed for use. Massage the breasts.
  • the massage unit 720 may have other shapes, such as a half football shape, etc., therefore, the shape of the massage unit 720 is not in the vacuum massage device of the present invention. Restricted.
  • the massage unit 720 When the vacuum massage device is used, the massage unit 720 is in contact with a local position of the human tissue to close the opening of the massage space 7200 of the massage unit 720 by human tissue, the negative pressure generating unit The 710 is configured to alternately form a massage negative pressure and a maintenance negative pressure in the massage space 7200 of the massage unit 720 to massage the human tissue corresponding to the massage space 7200 of the massage unit 720.
  • the negative pressure massage device When the negative pressure generating unit 710 is configured to form the massage negative pressure in the massage space 7200 of the massage unit 720, the negative pressure massage device is in a massage negative pressure state, when the negative pressure occurs When the unit 710 is disposed such that the maintenance negative pressure is formed in the massage space 7200 of the massage unit 720, the negative pressure massage device is in a state of maintaining a negative pressure, so that when the negative pressure generating unit 710 is set When the massage negative pressure and the maintenance negative pressure are alternately formed in the massage space 7200 of the massage unit 720, the negative pressure massage device is between the massage negative pressure state and the maintenance negative pressure state Switch.
  • the value of the massage negative pressure is greater than the value of the maintenance negative pressure, so that when the negative pressure generating unit 710 is arranged to form the massage in the massage space 7200 of the massage unit 720
  • the human tissue corresponding to the massage space 7200 is in a state of tension
  • the negative pressure generating unit 710 is disposed such that the maintenance negative pressure is formed in the massage space 7200 of the massage unit 720, corresponding
  • the human body tissue in the massage space 7200 is in a relaxed state
  • the negative pressure generating unit 710 is disposed to alternately form the massage negative pressure and the maintenance negative pressure in the massage space 7200 of the massage unit 720
  • the human tissue corresponding to the massage space 7200 of the massage unit 720 is switched back and forth between the tension state and the relaxed state, thereby massaging the human tissue corresponding to the massage space 7200 of the massage unit 720.
  • the value of the massage negative pressure and the value of the maintenance negative pressure are both greater than 0, that is, whether the negative pressure massage device is in the massage negative pressure state or in the maintenance negative pressure state.
  • a negative pressure environment is formed in the massage space 7200 of the massage unit 720.
  • the massage space 7200 of the massage 20 of the vacuum massage device of the present invention not only continuously forms a negative pressure environment, but also the massage unit 720
  • the massage negative pressure and the maintenance negative pressure can be alternately formed in the massage space 7200.
  • the tension of the negative pressure massage device on the human tissue when used can be alleviated, so as to improve the The comfort of the negative pressure massage device, which is unexpected in the prior art negative pressure massage device, and is particularly useful for improving the comfort of the negative pressure massage device of the present invention and improving the massage effect of the negative pressure massage device. Effective.
  • the negative pressure massage device of the present invention when the partial pressure of the human body tissue is massaged using the negative pressure massaging device of the present invention, when the negative pressure massage device is in the massage negative pressure state, that is, when the negative pressure generating unit 710 causes the When the massage negative pressure is formed in the massage space 7200 of the massage unit 720, the human tissue is acted upon to start opening the pores, and when the negative pressure massage state is in the maintenance negative pressure state, that is, when the negative pressure When the generating unit 710 forms the maintenance negative pressure in the massage space 7200 of the massage unit 720, the human body tissue is acted upon to maintain the pores in an open state, when the negative pressure massage device is in the massage After switching between the negative pressure state and the maintained negative pressure state a plurality of times, the human body tissue is acted upon to open the pores completely, compared with the existing negative pressure massage device to make the pores of the human tissue all open at one time.
  • the vacuum massage device of the present invention slows the process of opening the pores of the human tissue to avoid causing strong adverse stimulation
  • the negative pressure generating unit 710 includes a negative pressure generator 711, wherein the negative pressure generator 711 forms the air passage 7100, wherein the negative pressure generator 711 is formed by forming the air passage 7100 In a negative pressure environment, a negative pressure environment is formed in the massage space 7200 of the massage unit 720.
  • the negative pressure generator 711 can further alternately form the massage negative pressure and the maintenance negative pressure in the massage space 7200 of the massage unit 720 through the air passage 7100, so as to massage corresponding to the The human tissue of the massage space 7200 of the massage unit 720 is described.
  • the negative pressure generator 711 can be implemented as any type of negative pressure device, such as but not limited to, the negative pressure generator 711 can be a high-speed water flow injection device, wherein the negative pressure occurs.
  • the 711 is configured to form a negative pressure environment in the air passage 7100 by injecting a high-speed water flow, thereby forming a negative pressure environment in the massage space 7200 of the massage unit 720.
  • the negative pressure is caused by The speed of the high-speed water flow emitted by the generator 711 alternates rapidly, and the negative pressure generator 711 can alternately form the massage negative pressure and the maintenance negative pressure in the massage space 7200 of the massage unit 720.
  • the vacuum massage device can be applied to a bathing device such as a bathtub or a shower to massage the negative pressure massage device of the present invention during the user's bathing.
  • the negative pressure generator 711 may also be implemented as an electric vacuum pump, which can be made by the negative pressure generator 711 by alternately supplying a strong and weak current to the negative pressure generator 711.
  • the massage negative pressure and the maintenance negative pressure are alternately formed in the massage space 7200 of the massage unit 720, so that the negative pressure massage device switches back and forth between the massage negative pressure state and the maintenance negative pressure state. .
  • the negative pressure generating unit 710 includes a pressure release device 712, wherein the negative pressure generator 711 and the pressure release device 712 are connected to each other to form the air passage 7100, and the massage unit 720
  • the massage space 7200 is in communication with the air passage 7100.
  • the negative pressure generator 711 can form a negative pressure environment in the massage space 7200 of the massage unit 720, and the pressure release device 712 can switch back and forth between an open state and a closed state.
  • the massage negative pressure and the maintenance negative pressure are alternately formed in the massage space 7200 of the massage unit 720.
  • the negative pressure generator 711 can form a negative pressure environment in the massage space 7200 of the massage unit 720 when the power is supplied, for example, the vacuum generator 711 can be implemented as a diaphragm vacuum pump.
  • the pressure release device 712 can switch back and forth between the open state and the closed state when the power is supplied, so that the massage negative pressure and the massage space 7200 of the massage unit 720 are alternately formed.
  • the negative pressure is maintained, for example, the pressure release 712 can be implemented as a solenoid valve or a relay or the like.
  • the pressure release device 712 may be implemented as a normally open type solenoid valve, that is, when no power is supplied to the pressure release device 712, The pressure release 712 is in the open state, and when power is supplied to the pressure release 712, the pressure release 712 is in the closed state.
  • the pressure release device 712 may also be implemented as a normally closed solenoid valve, that is, when no power is supplied to the pressure release device 712, The pressure release 712 is in the closed state, and when power is supplied to the pressure release 712, the pressure release 712 is in the open state.
  • the vacuum generator 711 has a generator inlet end 7111 and a generator outlet end 7112.
  • the pressure release 712 has a release inlet end 7121 and a releaser outlet end 7122. .
  • the massage space 7200 of the massage unit 720 is connected to the air passage 7100 from the generator inlet end 7111 of the vacuum generator 711.
  • An external environment is communicated from the generator outlet end 7112 of the negative pressure generator 711 to the air passage 7100, and the releaser inlet end 7121 of the pressure releaser 712 communicates with the negative pressure generator 711
  • the generator outlet end 7112, the discharger outlet end 7122 of the pressure releaser 712 is in communication with the generator inlet end 7111 of the vacuum generator 711, with reference to FIG.
  • the negative pressure generator 711 When the negative pressure generator 711 is supplied with electric power, the negative pressure generator 711 causes the massage space 7200 of the massage unit 720 to form a negative pressure environment through the air passage 7100, when the pressure release device 712 In the open state, the maintenance negative pressure is formed in the massage space 7200 of the massage unit 720, which can relieve tension on the human body tissue on the one hand, and enable the massage unit 720 to be Maintaining a local position of the human body tissue, when the pressure release device 712 is in the closed state, the massage negative pressure is formed in the massage space 7200 of the massage unit 720 to stretch the human tissue, thereby When the massage negative pressure and the maintenance negative pressure are alternately formed in the massage space 7200 of the massage unit 720, the human tissue corresponding to the massage space 7200 of the massage unit 720 is massaged.
  • the massage space 7200 of the massage unit 720 communicates with the air passage 7100 from the generator inlet end 7111 of the negative pressure generator 711.
  • An external environment is communicated from the generator outlet end 7112 of the negative pressure generator 711 to the air passage 7100, and the releaser inlet end 7121 of the pressure releaser 712 communicates with the vacuum generator 711
  • the generator inlet end 7111, the releaser outlet end 7122 of the pressure release 712 is in communication with the external environment.
  • the releaser inlet end 7121 of the pressure releaser 712 is in communication with the generator outlet end 7112 of the vacuum generator 711, and the releaser outlet end 7122 of the pressure releaser 712 is in communication. External environment.
  • the negative pressure generating unit 710 may further include a pressure relief valve 713, wherein the pressure relief valve 713 can be communicated with the air passage 7100 when the pressure relief valve 713 is operated to make the pressure relief valve When the 713 is in the open state, the inside of the air passage 7100 can be quickly restored to the normal pressure state, so that the massage space 7200 of the massage unit 720 can quickly return to the normal pressure state.
  • the pressure relief valve 713 may be implemented as a manual pressure relief valve, or may be implemented as an electric pressure relief valve, for example, when power is supplied to the pressure relief valve 713, the pressure relief valve 713 may be opened to enable The massage space 7200 of the massage unit 720 quickly returns to a normal pressure state, and when no power is supplied to the pressure relief valve 713, the negative pressure generator 711 of the negative pressure generating unit 710 and the The pressure release device 712 can alternately form the massage negative pressure and the maintenance negative pressure in the massage space 7200 of the massage unit 720.
  • the vacuum massage device further provides a power supply unit 740, wherein the negative pressure generator 711 and the pressure release device 712 of the negative pressure generating unit 710 can be electrically connected to the power supply unit 740, respectively. Power is supplied from the power supply unit 740 to the negative pressure generator 711 and the pressure releaser 712, respectively.
  • the pressure relief valve 713 may also be electrically connected to the power supply unit 740 to supply power to the pressure relief valve 713 by the power supply unit 740.
  • the power supply unit 740 is not limited in the vacuum massage device of the present invention.
  • the power supply unit 740 can be implemented as a disposable battery, a rechargeable battery, or the like, such as a rechargeable lithium battery, and in addition, the power supply unit 740 may also be implemented as a mechanism for separately supplying external electric energy (for example, commercial power) to the negative pressure generator 711 and the pressure release device 712, for example, after external electric energy is connected to the power supply unit 740.
  • the unit 740 is capable of supplying external power to the negative pressure generator 711 and the pressure release 712, respectively, and the power supply unit 740 can provide a function of voltage transformation and voltage stabilization.
  • the power supply unit 740 may be implemented as a mechanism that supplies power directly to the negative pressure generator 711 and the pressure releaser 712, or may be implemented to indirectly to the negative pressure generator 711 and the The mechanism in which the pressure release device 712 supplies electric power.
  • the vacuum generator 711, the pressure release device 712, and the power supply unit 740 may be disposed inside the mounting unit 730 to pass the negative pressure generator 711 by the mounting unit 730.
  • the pressure releaser 712 and the power supply unit 740 are integrated.
  • the mounting unit 730 includes a housing 731, wherein the negative pressure generator 711, the pressure releaser 712, and the power supply unit 740 are both disposed inside the housing 731 to
  • the housing 731 integrates the negative pressure generator 711, the pressure releaser 712, and the power supply unit 740.
  • the housing 731 may provide a charging port to allow a charging terminal to be inserted into the interior of the housing 731 through the charging port and electrically connected to the power supply unit 740 to supply the power Unit 740 supplements the power.
  • the pressure relief valve 713 is operatively disposed to the housing 731 to allow a user to operate the pressure relief valve 713 outside of the housing 731.
  • the vacuum massage apparatus may further include a control unit 750, wherein the control unit 750 includes a control body 751 and an operating body 752, wherein the operating body 752 is electrically connected to The control body 751, wherein the control body 751 is disposed inside the housing 731, the operation body 752 extends from an interior of the housing 731 to an exterior of the housing 731 to allow a user The operating body 752 is operated outside of the housing 731.
  • the control unit 750 includes a control body 751 and an operating body 752, wherein the operating body 752 is electrically connected to The control body 751, wherein the control body 751 is disposed inside the housing 731, the operation body 752 extends from an interior of the housing 731 to an exterior of the housing 731 to allow a user The operating body 752 is operated outside of the housing 731.
  • the negative pressure generator 711, the pressure releaser 712, the pressure relief valve 713, and the power supply unit 740 are all electrically connected to the control body 751, and when the operation body 752 is operated, the control The body 751 is capable of supplying electric power to the negative pressure generator 711, the pressure release device 712, and the pressure relief valve 713, respectively, according to a user's selection.
  • the control body 751 can also supply different currents of different strengths to the negative pressure generator 711, the pressure release device 712 and the pressure relief valve 713, and the negative pressure massage device of the present invention is There is no limit to this.
  • control body 751 of the control unit 750 can be implemented as a circuit board, such as a PCB circuit board, an FPC circuit board, a soft and hard bonding board, etc., and the control body 751 can be provided with a resistor and a capacitor. Electronic components such as drivers, processors, relays, etc., such that the control body 751 forms an integrated circuit board.
  • the operating body 752 can be a push button switch, a knob switch, a touch switch, a gesture switch, or the like. When the user applies pressure, torsion or gesture to the operating body 752 outside the housing 731, the operating body 752 can generate an operation signal, and the control body 751 can be based on the operation signal. Power is supplied to the negative pressure generator 711, the pressure releaser 712, and the pressure relief valve 713, respectively.
  • the charging terminal may also be in contact with the control body 751 through the charging port to supplement the power supply unit 740 with power.
  • the vacuum massage apparatus further provides a vibration unit 760, wherein the vibration unit 760 can be disposed inside the housing 731, and the vibration unit 760 can be provided when power is supplied. Vibration is generated, and the vibration can be transmitted to the massaging unit 720 through the housing 731, thereby providing vibration to the position of the human body tissue that is subjected to the negative pressure to enhance the massage effect.
  • the vibration unit 760 may also be disposed on the massage unit 720, so that when the vibration unit 760 is supplied with electric power to provide vibration, the vibration directly acts on the human body tissue through the massage unit 720. The position that is under negative pressure.
  • the vibration unit 760 is electrically connected to the power supply unit 740 to supply power to the vibration unit 760 by the power supply unit 740.
  • the type of the vibration unit 760 is not limited in the vacuum massage device of the present invention.
  • the vibration unit 760 may include a motor and an eccentric mechanism, and the eccentric mechanism is drivably disposed on the motor.
  • the motor is electrically connected to the power supply unit 740, wherein when the power supply unit 740 supplies power to the motor, the motor can drive the eccentric mechanism to rotate to provide vibration.
  • the vacuum massage apparatus further includes a low frequency pulse unit 770, wherein when the low frequency pulse unit 770 is supplied with electric power, a low frequency pulse can be generated to apply a negative pressure to the human tissue. Stimulate or stimulate the corresponding acupuncture points to enhance the massage effect on human tissue.
  • the low frequency pulse unit 770 includes a pulse generator 771 and a conductive component 772.
  • the conductive component 772 further includes two conductive lines 7721, a positive terminal 7722, and a negative terminal 7723.
  • the positive terminal 7722 and the The negative terminals 7723 are respectively disposed at the free ends of each of the conductive lines 7721, and the connection ends of each of the conductive lines 7721 are detachably connected to the pulse generator 771, respectively.
  • the pulse generator 771 is disposed inside the housing 731, and the pulse generator 771 is electrically connected to the power supply unit 740, wherein the connection of each of the conductive lines 7721 of the conductive component 7721
  • the end can be connected to the pulse generator 771 at the outside of the housing 731, respectively, and the pulse generator 771 can generate a low frequency pulse when the power supply unit 740 supplies power to the pulse generator 771, and
  • the low frequency pulse acts on the acupuncture points contacting the positive terminal 7722 and the negative terminal 7723 through each of the conductive line 7721, the positive terminal 7722 and the negative terminal 7723 to stimulate the acupuncture point, thereby improving the The massage effect of the negative pressure massage device.
  • the massage unit 720 of the vacuum massage device of the present invention can be preheated prior to contact with human tissue to improve the comfort of the negative pressure massage device when it is used. And in this manner, the vacuum massage device is particularly suitable for use in cold weather conditions to avoid irritating human tissue and subcutaneous tissue in direct contact with the massage unit 720. It can be understood that when the user uses the negative pressure massage device to massage, the position of the human body tissue to be massaged is exposed in the external environment, especially in the cold weather conditions such as winter, the position of the human tissue will be It feels cold, and therefore, the massage unit 720 capable of generating heat can alleviate such a feeling of coldness of human tissue. In addition, when the vacuum massage device is used, the temperature of the massage unit 720 can be maintained at a suitable temperature range to further improve the comfort of the vacuum massage device when it is used.
  • the suitable temperature according to the present invention means that the temperature of the massage unit 720 is adapted to the temperature of the human tissue, that is, the temperature of the massage unit 720 is not excessively higher than that of human tissue, and Excessively lower than human tissue, thereby improving the comfort of the vacuum massage device of the present invention when it is used.
  • the massage unit 720 includes a massage body 721 and a heat supply body 722, wherein the massage body 721 provides the massage space 7200, and the heat supply body 722 and the massage body 721 are connected to each other to borrow
  • the massage body 721 is heated by the heat supply body 722 and the temperature of the massage body 721 and the massage space 7200 is maintained at a suitable temperature range.
  • the heat supply body 722 is not in direct contact with human tissue, that is, when the vacuum massage device is used, the massage body 721 is used to isolate the heat supply body 722 and human tissue to avoid The temperature of the heat supply body 722 is too high to cause damage to human tissue, thereby improving the reliability and stability of the vacuum massage device.
  • the heat supply body 722 further includes a heating element 7221, wherein the heating element 7221 is configured to heat the massage body 721 and maintain the temperature of the massage body 721 and the massage space 7200 at Suitable temperature range.
  • the heating element 7221 is disposed inside the massage body 721, and when the heating element 7221 is supplied with electrical energy, the heating element 7221 can generate heat to heat the massage body 721 and The temperature of the massage body 721 and the massage space 7200 is maintained at a suitable temperature range. That is, the heating element 7221 can be an electrical heating element, ie, once the heating element 7221 is powered, the heating element 7221 can generate heat.
  • the heating element 7221 can be implemented as an electrically heated film.
  • the heating element 7221 is electrically connected to the power supply unit 740 to enable heat to be generated when the power supply unit 740 supplies power to the heating element 7221.
  • the heating element 7221 can also generate heat to join the massage body 721 and the temperature of the massage body 721 and the massage space 7200. It is kept at a suitable temperature range.
  • the heating element 7221 can be implemented as a soaking element.
  • the heating element 7221 is disposed in the massage body 721 one week to enable the heating element 7221 to simultaneously generate heat at all positions of the massage body 721, and preferably, the heating element 7221 is in the The heat generated at each position of the massage body 721 is uniform, and in this way, the comfort of the vacuum massage device can be further improved.
  • the heating element 7221 and the massage body 721 may be integrally formed, for example, by placing the heating element 7221 in a molding space of a molding die. A molding material is injected into the molding space, and the molding material is wrapped around the inner and outer walls of the heating element 7221 to form the massage that wraps the inner and outer walls of the heating element 7221 when the molding material is cured. Body 721.
  • the heating element 7221 and the massage body 721 may also be separately fabricated.
  • the massage body 721 includes an inner portion 7211 and an outer portion 7212, wherein the heating element 7221 is disposed between the inner portion 7211 and the outer portion 7212 that overlap each other, and the massage
  • the inner side portion 7211 of the main body 721 forms the massage space 7200.
  • the inner side portion 7211 and the outer side portion 7212 of the massage body 721 may be mounted together by snapping or the like.
  • the inner side portion 7211 and the outer side portion 7212 of the massage body 721 may also be joined together by ultrasonic waves or the like, that is, once the inner side portion 7211 and the massage body 721 are The outer side portions 7212 are joined together, and the inner side portion 7211 and the outer side portion 7212 of the massage body 721 are not allowed to be detached.
  • the heat supply body 722 may further include a temperature maintaining portion 7222, wherein the temperature maintaining portion 7222 is held outside the heating element 7221 to prevent heat generated by the heating element 7221 from passing through the temperature.
  • the temperature of the massage body 721 and the massage space 7200 is maintained at a suitable temperature range in such a manner that the maintaining portion 7222 radiates to the external environment.
  • the temperature maintaining portion 7222 may be a single component, for example, the temperature maintaining portion 7222 may be implemented as a thermal insulating element or a thermal insulating element, wherein the temperature maintaining portion 7222 may overlap Provided in the heating element 7221 or overlappingly disposed on the outer side portion 7212 of the massage body 721, being held outside the heating element 7221, such that when the heating element 7221 generates heat, The heat is not radiated to the external environment via the temperature maintaining portion 7222 to improve the utilization of heat. In this manner, the power supply unit 740 only needs to provide less power to enable the massage body 721 and the The temperature of the massage space 7200 is maintained at a suitable temperature range, thereby improving the endurance of the vacuum massage device.
  • the temperature maintaining portion 7222 may also be implemented as a layer of thermal insulation film or thermal insulation film, for example, by the outer wall of the heating element 7221 or the outer side of the massage body 721.
  • the inner wall and/or the outer wall of the portion 7212 is brushed with a heat insulating material to form the temperature maintaining portion 7222. In this manner, when the heating element 7221 generates heat, the heat does not pass through the temperature maintaining portion 7222. Radiation to the external environment to increase heat utilization.
  • the negative pressure massaging device further provides a conductive unit 780, wherein the conductive unit 780 further includes a first conductive component 781 and a second conductive component 782, wherein the first conductive component 781 is electrically connected to
  • the power supply unit 740 is electrically connected to the heating element 7221, and when the second conductive component 782 and the first conductive component 781 are turned on, the power supply unit 740 can Power is supplied to the heating element 7221 to generate heat.
  • the first conductive component 781 is disposed on the housing 731, and at least a portion of the first conductive component 781 is exposed outside the housing 731, and the second conductive component 782 is disposed on The massage body 721 and at least a portion of the second conductive component 782 are exposed outside the massage body 721 such that when the massage body 721 and the housing 731 of the massage unit 720 are mounted together
  • the first conductive component 781 and the second conductive component 782 can be turned on by physical contact.
  • the first conductive component 781 and the second conductive component 782 may also be implemented as a wireless power transmission module, wherein the first conductive component 781 may be hidden inside the housing 731, The second conductive component 782 may be hidden inside the massage body 721, and when the massage body 721 and the housing 731 of the massage unit 720 are mounted together, the first conductive component 781 and the The second conductive component 782 can be turned on.
  • first conductive component 781 and the second conductive component 782 are implemented as a contact conductive component, while the massage unit 720 and the mounting unit 730 are installed together, The first conductive component 781 and the second conductive component 782 can be turned on by physical contact.
  • the first conductive component 781 and the second conductive component 782 may be implemented as conductive sheets or conductive bumps, respectively, to be turned on when the first conductive component 781 and the second conductive component 782 are in contact with each other .
  • the first conductive component 781 can be implemented as a conductive sheet
  • the second conductive component 782 can be implemented as a conductive sheet or a conductive bump when the first conductive component 781 is implemented as a conductive bump
  • the second conductive component 782 can be implemented as a conductive sheet or a conductive bump.
  • first conductive component 781 and the second conductive component 782 may be implemented as a conductive plug, and the other conductive component may be implemented as a conductive recess so that when the conductive plug is inserted and held
  • the first conductive component 781 and the second conductive component 782 may also be turned on by physical contact when in the conductive recess. Accordingly, those skilled in the art will appreciate that at least a portion of the first conductive component 781 of the present invention is exposed to the exterior of the housing 731 and at least a portion of the second conductive component 782 is exposed.
  • the exterior of the massage body 721 is not limited to the first conductive component 781 and the second conductive component 782 being visually exposed as long as the first conductive component 781 and the second conductive component 782 can be physically
  • the embodiments in which the manner of contact is turned on belong to the content and range of the negative pressure generating device of the present invention.
  • the heat supply body 722 may also be devoid of the heating element 7221.
  • the inner side portion 7211 and the outer side portion 7212 of the massage body 721 are arranged to overlap each other to form a soaking heat between the inner side portion 7211 and the outer side portion 7212 of the massage body 721.
  • the space 7213, wherein the massage body 721 further has at least one first exchange channel 7214 and at least one second exchange channel 7215, wherein the first exchange channel 7214 and the second exchange channel 7215 are respectively connected to the soaking Space 7213 and the heat supply body 722.
  • the heat supply body 722 includes a fluid supply element 7223, wherein the first exchange passage 7214 and the second exchange passage 7215 are in communication with the fluid supply element 7223.
  • the fluid supply element 7223 of the heat supply body 722 is capable of providing a higher temperature fluid, and the fluid enters the soaking space 7213 from the first exchange passage 7214 to be released within the soaking space 7213 The heat, thereby heating the massage body 721, the cooled fluid is conducted out of the soaking space 7213 from the second exchange passage 7215. It can be understood that when the heat supply body 722 continuously supplies the higher temperature fluid to the soaking space 7213 through the first exchange passage 7214 and continuously discharges the cooled fluid. In the soaking space 7213, the temperature of the massage body 721 and the massage space 7200 is maintained at a suitable temperature range.
  • the type of the fluid is not limited, for example, the fluid may be a gas, a liquid or a mixture of a gas and a liquid, or the like.
  • the vacuum massage device is capable of diverting the cooled fluid to the fluid supply element 7223 through the second exchange passage 7215 to recover the fluid and recycle it.
  • the fluid supply element 7223 can also be electrically connected to the power supply unit 740 to raise the temperature of the fluid when the power supply unit 740 provides power.
  • the temperature of the massage body 721 may be raised by the heat supply body 722, and then the massage body 721 and human tissue may be further Contacting to close the opening of the massage space 7200 of the massage body 721 by human tissue.
  • the human tissue corresponding to the massage space 7200 is in a state of tension and is stretched into the massage space 7200.
  • the massage negative pressure causes the massage unit 720
  • the maintenance of the human body tissue can be maintained such that when the massage negative pressure and the maintenance negative pressure are alternately formed in the massage space 7200 of the massage unit 720, the human tissue corresponding to the massage space 7200 is massaged.
  • the heat supply body 722 can maintain the temperature of the massage body 721 and the massage space 7200 at a suitable temperature range.
  • the vibration unit 50 can provide vibration to further enhance the massage effect when supplied with electric power
  • the low frequency pulse unit 770 can also generate the low frequency pulse to stimulate the corresponding massage space. 7200 human tissue or corresponding acupuncture points to further enhance the massage effect.
  • the present invention further provides a vacuum massage method, wherein the vacuum massage method comprises the following steps:
  • a massage negative pressure and a maintenance negative pressure are alternately formed in the massage space 7200 to massage the human tissue corresponding to the massage space 7200.
  • the present invention further provides a vacuum massage method, wherein the vacuum massage method comprises the following steps:
  • step (C) is before the step (A), so that the massage body 721 is first preheated by the heat supply body 722 so that the temperature of the massage body 721 is raised. To a suitable temperature range, the human tissue is then closed to the opening of the massage space 7200.
  • the heat supply body 722 continuously heats the massage body 721 such that the temperature of the massage body 721 and the massage space 7200 is maintained at a suitable temperature range.
  • the vacuum massage device of the present invention is particularly suitable for massaging the breast. It is also worth mentioning that the vacuum massage device is also capable of excluding breast milk from the breast.
  • the mounting unit 730 further includes a support body 732 and a receiving body 733.
  • the support body 732 has a first mounting location 7321, a second mounting location 7322, a third mounting location 7323, a first channel 7324, and a second channel 7325, wherein the first channel 7324 communicates with the The first mounting location 7321 and the third mounting location 7323 are in communication with the second mounting location 7322 and the third mounting location 7323.
  • the accommodating body 733 has a milking space 7331, wherein the accommodating body 733 can be mounted to the third mounting position 7323 of the support body 732 such that the first channel 7324 and the second channel 7325 is connected to the milking space 7331, respectively.
  • the housing 731 can be mounted to the first mounting position 7321 of the support body 732 to form the negative pressure generator 711 and the pressure releaser 712 located inside the housing 731
  • the air passage 7100 is in communication with the first passage 7324.
  • the massage unit 720 can be mounted to the second mounting position 7322 of the support body 732 such that the massage space 7200 of the massage unit 720 is in communication with the second passage 7325.
  • the breast is housed in the massage space 7200 of the massage unit 720, and then the negative pressure generator 711 and the pressure release 712 can pass through the air passage 7100 and the first passage 7324.
  • the milking space 7331 and the second channel 7325 alternately form the massage negative pressure and the maintenance negative pressure in the massage space 7200, wherein the massage space 7200 is formed in the massage space 7200.
  • the massage is under negative pressure
  • the breast milk is discharged from the breast and is guided by the second passage 7325 into the milking space 7331 of the accommodating body 733, when the massage space of the massage unit 720
  • the massage unit 720 is held at the position of the breast.
  • the breast pump can be a milk discharger.
  • the milk discharger is connected according to a preferred embodiment of the present invention.
  • the milk discharger includes a milk discharge device 810 and at least one breast containment device 820, each of which is disposed in the milk discharge device 810, respectively.
  • the milk discharger of the present invention is explained by taking the milk discharger only including one of the breast receiving devices 820 as an example.
  • the content and features, but in other examples, the number of the breast receiving devices 820 is not limited to one, for example, the number of the breast receiving devices 820 may be two. In addition, in a special case, the number of the breast receiving devices 820 may also exceed two.
  • the milk discharging device 810 may be disposed in a delivery room, and the user may set the breast receiving device 820 as needed. In the milk discharge device 810. Accordingly, those skilled in the art will appreciate that the number of breast containment devices 820 is not limited in the breast pump of the present invention.
  • the breast receiving device 820 is detachably disposed in the milk discharging device 810. In this manner, not only the breast receiving device 820 and the milk discharging device 810 can be conveniently cleaned separately, but also according to The user needs to select the breast receiving device 820 of different sizes, and when any one of the breast receiving device 820 and the milk discharging device 810 is damaged or cannot be used continuously, only the damaged or The breast containment device 820 and the milk discharge device 810, which cannot be used continuously, may be used to reduce the use cost of the milk discharger.
  • the breast receiving device 820 may also be integrally disposed on the milk discharging device 810.
  • the breast receiving device 820 and the milk discharging device 810 may be separately prepared, and then assembled by one time.
  • the breast containment device 820 and the milk discharge device 810 are mounted together so as not to allow the user to disassemble.
  • the breast containment device 820 includes a milk discharge unit 821, wherein the milk discharge unit 821 has a milk discharge space 8210, and the milk discharge unit 821 is disposed at the milk discharge device 810.
  • the milk discharge unit 821 is detachably disposed to the milk discharge device 810.
  • a breast 8100 can be accommodated in the milk discharge space 8210 of the milk discharge unit 821, and the milk discharge device 810 can enable the milk discharge of the milk discharge unit 821
  • a negative pressure environment is formed in the space 8210 to deform the milk discharge unit 821, so that the milk discharge unit 821 excretes breast milk from the breast 8100 by squeezing the breast 8100.
  • the milk discharge unit 821 is a flexible milk discharge unit to form a milk discharge space of the milk discharge unit 821 when a negative pressure environment is formed in the milk discharge space 8210 of the milk discharge unit 821.
  • the pressure within 8210 is less than the pressure of the external environment so that the milking unit 821 can be deformed.
  • the milk discharge unit 821 is implemented as a flexible milk discharge unit such that when the pressure in the milk discharge space 8210 of the milk discharge unit 821 is slightly smaller than the pressure of the external environment of the milk discharge unit 821, the row
  • the milk unit 821 is capable of producing deformation, in such a manner that the requirements of the milk discharger for the power of the milk discharge device 810 can be reduced.
  • the milk discharge unit 821 is made of a flexible material such as, but not limited to, a silicone material, a rubber material, a thermoplastic elastomer, or the like.
  • the milk discharge device 810 can be implemented as a manual vacuum generator, wherein the manner of manually operating the milk discharge device 810 A negative pressure environment can be formed in the milk discharge space 8210 of the milk discharge unit 821.
  • the milk discharge device 810 further includes a vacuum generator 811, wherein the vacuum generator 811 forms a venting path 8110.
  • the milk discharge unit 821 is disposed in the negative pressure generator 811, and the milk discharge space 8210 of the milk discharge unit 821 is in communication with the air passage 8110.
  • the breast 8100 can be accommodated in the milk discharge space 8210 of the milk discharge unit 821, and the negative pressure generator 811 can form a negative pressure by the air passage 8110
  • the manner of environment causes a negative pressure environment to be formed in the milk discharge space 8210, thereby deforming the milk discharge unit 821, and the milk discharge unit 821 removes breast milk from the breast 8100 by squeezing the breast 8100.
  • Excreted in vitro the milk discharge unit 821 may press the areola at the upper and lower portions of the areola of the breast 8100, respectively, to excrete breast milk from the breast 8100. .
  • the type of the negative pressure generator 811 is not limited in the milk discharger of the present invention, and for example, the negative pressure generator 811 can be implemented as a vacuum pump.
  • the vacuum generator 811 in this example of the breast pump of the present invention, the contents and features of the milk discharger of the present invention are further illustrated by taking the vacuum generator 811 as a vacuum generator as an example. It will be understood by those skilled in the art that when the negative pressure generator 811 is implemented as a vacuum generator and the negative pressure generator 811 is in a continuous working state, a negative pressure is always formed in the air passage 8110. Environment, and a negative pressure environment is always formed in the milk discharge space 8210 of the milk discharge unit 821.
  • the milk discharge device 810 includes a pressure release device 812, wherein the pressure release device 812 is coupled to the negative pressure generator 811 to form the air passage 8110. That is, in this example of the milk discharger, the negative pressure generator 811 and the pressure releaser 812 simultaneously form the air passage 8110.
  • the negative pressure generator 811 has a generator inlet end 8111 and a generator outlet end 8112.
  • the pressure release 812 has a release inlet end 8121 and a releaser outlet end 8122. .
  • the milk discharge unit 821 is detachably coupled to the generator inlet end 8111 of the negative pressure generator 811, and the release inlet end 8121 is coupled to the At the generator outlet end 8112, the releaser outlet end 8122 is coupled to the generator inlet end 8111, and the generator outlet end 8112 is in communication with the external environment.
  • the milk discharge unit 821 is detachably coupled to the generator inlet end 8111 of the negative pressure generator 811, the release inlet end 8121 being coupled to The generator inlet end 8111, the generator outlet end 8112 and the releaser outlet end 8122 are each in communication with an external environment.
  • the milk discharge unit 821 is detachably coupled to the generator inlet end 8111 of the negative pressure generator 811, the release inlet end 8121 being coupled to The generator outlet end 8112, the generator outlet end 8112 and the releaser outlet end 8122 are each in communication with an external environment.
  • the pressure release device 812 can form a milking negative pressure and a pressure in the air passage 8110. Maintaining a negative pressure, and the pressure release device 812 can cause the milking negative pressure and the maintenance negative pressure to be formed in the milk discharge space 8210 of the milk discharge unit 821, wherein the milking negative pressure value It is larger than the value of the maintenance negative pressure, and the values of the squeeze negative pressure and the maintenance negative pressure are both greater than zero.
  • the pressure release device 812 can cause the milk discharge space 8210 to form the milking negative pressure and the maintenance negative pressure by switching between an open state and a closed state. It can be understood that the pressure release device 812 can switch back and forth between the open state and the closed state, so that the milk discharge space 8210 of the milk discharge unit 821 alternately forms the milking negative pressure. And maintaining the negative pressure.
  • the milk discharge unit 821 when the milking negative pressure is formed in the milk discharge space 8210 of the milk discharge unit 821, the milk discharge unit 821 can generate a large deformation to discharge the breast milk from the breast 8100.
  • the maintenance negative pressure when the maintenance negative pressure is formed in the milk discharge space 8210 of the milk discharge unit 821, the milk discharge unit 821 can generate a small amplitude deformation, and the milk discharge unit 821 is kept at In this manner, the position of the breast 8100 can effectively improve the comfort of the milk discharger when it is used.
  • the milk discharge space 8210 of the milk discharge unit 821 can always be a negative pressure environment, thereby effectively improving the milk discharger when it is used. Comfort.
  • the normal pressure environment may also be formed intermittently in the milk discharge space 8210 of the milk discharge unit 821.
  • the type of the pressure release device 812 is not limited in the milk discharger of the present invention as long as the pressure release device 812 can form the milking negative pressure in the air passage 8110. And maintaining the negative pressure, and further forming the milking negative pressure and the maintaining negative pressure in the milk discharge space 8210 of the milk discharge unit 821.
  • the pressure release 812 can be implemented as a relay, and in another example of the milk discharger of the present invention, the pressure release 812 is further It can be implemented as a solenoid valve.
  • the pressure release device 812 may be implemented as a normally closed type solenoid valve, that is, when no power is supplied to the pressure release device 812, The pressure release device 812 is in the closed state, at which time the milking negative pressure is formed in the milk discharge space 8210 of the milk discharge unit 821, and when power is supplied to the pressure release device 812, The pressure release device 812 is in the open state, at which time the milk discharge space 8210 of the milk discharge unit 821 forms the maintenance negative pressure.
  • the pressure release 812 can be implemented as a normally open solenoid valve, that is, when no power is supplied to the pressure release 812, the pressure releaser 812 is in the open state, at this time, the maintenance negative pressure is formed in the milk discharge space 8210 of the milk discharge unit 821, and when the power is supplied to the pressure release device 812, the pressure release device 812 is at In the closed state, at this time, the milk discharge space 8210 of the milk discharge unit 821 forms the squeeze negative pressure.
  • the milk discharging device 810 further provides a power supply unit 813, wherein the negative pressure generator 811 and the pressure release device 812 are electrically connected to the power supply unit 813, respectively, to be supplied at the power supply unit 813.
  • the negative pressure generator 811 When the electric power is applied to the negative pressure generator 811, a negative pressure environment is formed in the air discharge space 8110 of the air passage 8110 and the milk discharge unit 821, and electric power is supplied to the pressure in the power supply unit 813.
  • the releaser 812 is released, the milking negative pressure and the maintenance negative pressure are formed in the ventilation passage 8110 and the milk discharge space 8210 of the milk discharge unit 821.
  • the type of the power supply unit 813 is not limited in the milk discharger of the present invention.
  • the power supply unit 813 may have a function of storing power, such as a disposable battery or a rechargeable battery.
  • the power supply unit 813 may also supply other electric energy (for example, commercial power) to the negative pressure generator 811 and the pressure release device 812, and the power supply unit 813 may provide voltage transformation and/or stable voltage.
  • the type of the power supply unit 813 is not limited in the milk discharger of the present invention as long as it can be directed to the negative pressure generator 811 and the pressure releaser. 812 power supply can be.
  • the deformation direction of the milk discharge unit 821 is controllable.
  • the deformation position of the milk discharge unit 821 can also be controlled, so that the milk discharge unit 821 can better simulate the sucking action of the baby.
  • the milk discharge unit 821 can be deformed on both sides to The upper and lower portions of the milking unit 821 are brought into close proximity and displacement to simulate the upper and lower jaws of the infant, respectively, thereby simulating the sucking action of the infant, thereby discharging the breast milk from the breast 8100.
  • the deformation direction of the milk discharge unit 821 is controllable, so that the milk discharge is performed.
  • Unit 821 better simulates the sucking action of the infant to expel breast milk from the breast 8100.
  • the milk discharge unit The deformation direction of the 821 is controllable, and when the negative pressure generator 811 and the pressure release 812 cooperate to cause the milk discharge space 8210 of the milk discharge unit 821 to form the maintenance negative pressure,
  • the recovery deformation direction of the milk discharge unit 821 is controllable when the negative pressure generator 811 and the pressure release 812 cooperate to cause the milk discharge space 8210 of the milk discharge unit 821 to alternately form the milking
  • both the deformation direction and the recovery deformation direction of the milk discharge unit 821 are controllable, so that the milk discharge unit 821 can better simulate the sucking action of the baby, thereby removing the breast milk from The breast 8100 is excreted from the body.
  • the milk discharge unit 821 includes a milk discharge portion 8211 and a mounting portion 8212, wherein the milk discharge portion 8211 has a milk discharge chamber 82110, and the mounting portion 8212 has a milk discharge passage 82120, wherein the milk discharge portion 8211 and the mounting portion 8212 are integrally formed such that the milk discharge passage 82120 communicates with the milk discharge chamber 82110 to form the milk discharge space 8210.
  • the mounting portion 8212 of the milk discharge unit 821 is detachably mounted to the milk discharge device 810 such that the milk discharge passage 82120 of the mounting portion 8212 communicates with the air passage 8110, thereby When a negative pressure environment is formed in the air passage 8110, the milk discharge chamber 82110 of the milk discharge portion 8211 forms a negative pressure environment to excrete breast milk from the breast 8100 accommodated in the milk discharge chamber 82110. .
  • the milk discharge portion 8211 of the milk discharge unit 821 has a flared shape or a funnel shape, so that the shape of the milk discharge portion 8211 of the milk discharge unit 821 and the shape of the breast 8100 are mutually match.
  • the strength of the milk discharge portion 8211 and the mounting portion 8212 of the milk discharge unit 821 may be consistent.
  • the strength of the mounting portion 8212 of the milk discharge unit 821 is greater than
  • the attachment portion 8212 may not be deformed, and in this manner, the external portion can be prevented.
  • the ambient gas enters the air passage 8110 and/or the milk discharge space 8210 through the mounting portion 8212 and the installation position of the milk discharge device 810, so that in the process of using the milk discharge device, not only It is ensured that a negative pressure environment is always formed in the milk discharge space 8210 of the milk discharger, and it is also possible to prevent the contamination of the breast milk by the gas inclusions in the external environment.
  • the milk discharge portion 8211 and the mounting portion 8212 of the milk discharge unit 821 may be separately formed by different materials, thereby making the milk discharge portion 8211 and the The mounting portion 8212 has different strengths; the milking portion 8211 and the mounting portion 8212 may be made of the same material, and the milking portion 8211 and the mounting portion 8212 have different thicknesses.
  • the milking portion 8211 and the mounting portion 8212 have different strengths; the milking portion 8211 and the mounting portion 8212 may be made of the same material, and the reinforcing portion is formed at the mounting portion 8212 (for example, strengthening)
  • the ribs or the reinforcing portions are provided such that the milk discharging portion 8211 and the mounting portion 8212 have different strengths.
  • the cross-sectional shape of the milk discharge portion 8211 of the milk discharge unit 821 may be implemented as an ellipse to deform each of the milk discharge portions 8211 The square is controllable.
  • the cross-sectional shape of the milk discharge portion 8211 of the milk discharge unit 821 may also be implemented as a circle, wherein the row of the milk discharge unit 821
  • the milk portion 8211 further includes at least one molding portion 82111 and two deformation guiding portions 82112, wherein each of the deformation guiding portions 82112 is symmetrically disposed on both sides of the molding portion 8211, or each of the deformation guiding portions 82112 is mutually The both sides of the molding portion 8211 are symmetrically formed to form the milk discharge chamber 82110 between the molding portion 8211 and each of the deformation guiding portions 82112.
  • the number of the molding portions 8211 may be two, wherein two of the molding portions 8211 are arranged up and down, two of the deformation guiding portions 82112 are arranged left and right, and each of the molding portions 82111 and Each of the deformation guiding portions 82112 is integrally molded to form the milking chamber 82110 of the milk discharging portion 8211, wherein the milk discharging portion 8211 can be deformed at a position of each of the deformation guiding portions 82112, In order to make each of the shaped portions 211 have a tendency and displacement close to each other, the infant sucking action is simulated.
  • each of the deformation guiding portions 82112 is symmetrically disposed on both sides of the milk discharge portion 8211, or each of the deformation guiding portions 82112 is symmetrically formed on both sides of the milk discharge portion 8211.
  • each of the molding portions 8211 may be symmetrically disposed at an upper portion and a lower portion of the milk discharge portion 8211, or each of the molding portions 211 may be symmetrically formed at an upper portion of the milk discharge portion 8211 and Lower part.
  • an upper molding portion 82111a formed by the molding portion 8211 located at the upper portion and a lower molding portion 82111b formed by the molding portion 82111 located at the lower portion may also be asymmetrical, for example, the upper portion
  • the shape and size of the molding portion 82111a and the lower molding portion 82111b may be identical or may not coincide with each other.
  • the size of the upper molding portion 8211a is larger than the size of the lower molding portion 82111b.
  • each of the molding portions 82111 and each of the deformation guiding portions 82112 of each of the milk discharge portions 8211 are integrally formed In the mounting portion 8212.
  • the number of the shaped portions 82111 of the milk discharge portion 8211 is implemented as one, wherein only the shaped portion 82111 of the milk discharge portion 8211 Integrally formed in the mounting portion 8212, wherein each of the deformation guiding portions 82112 is symmetrically formed on both sides of the molding portion 8211 to be in the molding portion 82111 and each of the deformation guiding portions 82112
  • the milking chambers 82110 are formed therebetween, or each of the deformation guiding portions 82112 is symmetrically disposed on both sides of the molding portion 8211 so that the molding portion 8211 forms the milking chamber 82110.
  • Each of the deformation guiding portions 82112 is configured to guide a deformation direction of the molding portion 8211 so that the deformation direction of the molding portion 82111 is controllable each time, so that the deformation direction of the milk discharge unit 821 is changed each time. Controllable, thereby enabling the milking unit 821 to simulate the sucking action of the infant.
  • the molding portion 82111 and each of the deformation guiding portions 82112 are integrally molded, that is, each of the deformation guiding portions 82112 is symmetrically formed on both sides of the molding portion 8211 to be formed in the molding.
  • the milking chamber 82110 is formed between the portion 82111 and each of the deformation guiding portions 82112.
  • the molding portion 82111 and each of the deformation guiding portions 82112 may be separately formed, and then each of the deformation guiding portions 82112 is symmetrically disposed on both sides of the molding portion 8211.
  • the milk discharge portion 8211 of the milk discharge unit 821 can be in each The position of the deformation guiding portion 82112 is deformed such that the upper molding portion 8211a and the lower molding portion 82111b have a tendency and displacement close to each other to simulate the sucking action of the baby.
  • the milk discharger illustrated in FIG. 58A illustrates that the milk discharger illustrated in FIG.
  • the milk discharge portion 8211 of the milk discharge unit 821 can be described in each The position of the deformation guiding portion 82112 is deformed so that the upper portion and the lower portion of the molding portion 8211 have a tendency and displacement close to each other to simulate the sucking action of the baby.
  • the molding portion 82111 and the deformation guiding portion 82112 of the milk discharge portion 8211 of the milk discharge unit 821 can be separately manufactured, then the two deformation guiding portions 82112 are symmetrically disposed to each other in the molding.
  • the two sides of the portion 82111 are used to guide the deformation direction of the molding portion 82111, and in the following description, the molding portion 82111 and the deformation guiding portion 82112 are integrally molded as an example to further illustrate
  • the contents and features of the milk discharger of the present invention can be understood by those skilled in the art that the forming portion 8211 and the deformation guiding portion 82112 are integrally molded to form the milk discharging unit 821.
  • the milk discharge portion 8211 should not be considered as limiting the content and scope of the milk discharger of the present invention.
  • the thickness of the deformation guiding portion 82112 is smaller than the thickness of the molding portion 82111, so that when a negative pressure environment is formed in the milk discharge chamber 82110 of the milk discharge portion 8211, the row The milk portion 8211 will first be deformed at a position where the thickness is thin, that is, at the position of the deformation guiding portion 82112, so that the upper molding portion 8211a and the lower molding portion 82111b have a tendency and displacement close to each other to The upper molding portion 82111a and the lower molding portion 82111b are respectively simulated to simulate the upper and lower lips of the baby.
  • the milking portion 8211 may further form a milking protrusion 82113 in the lower molding portion 8211b, wherein the milking protrusion 82113 is located in the milking cavity 82110 to be surrounded by the milking protrusion 82113 simulates the tongue of the baby, and in this way, the milking unit 821 can better simulate the sucking action of the baby.
  • the deformation guiding portion 82112 of the milk discharge portion 8211 is deformed, and the molding portion 82111 is also deformed. Deformation occurs. More preferably, the deformation width of the lower molding portion 8211b may be greater than the deformation amplitude of the upper molding portion 8211a, so that the lower molding portion 8211b drives the milking protrusion 82113 at the lower portion of the areola of the breast 8100. The areola is squeezed upward to expel breast milk from the breast 8100.
  • the deformation guiding portion 82112 may also be a guiding groove to deform the milking portion 8211 when a negative pressure environment is formed in the milking chamber 82110 of the milk discharging portion 8211. The position of the guide portion 82112 is deformed.
  • the deformation guiding portion 82112 may also be a guiding rib to deform the milk discharging portion 8211 when a negative pressure environment is formed in the milking chamber 82110 of the milk discharging portion 8211. The position of the guide portion 82112 is deformed.
  • the molded portion 82111 and the deformation guide portion 82112 of the milk discharge portion 8211 shown in FIGS. 59A to 59C are implemented as an example only to illustrate that the milk discharge portion 8211 can be first used in the The position of the deformation guiding portion 82112 is deformed, but it should not be considered as limiting the content and range of the milk discharger of the present invention. It can be understood by those skilled in the art that any manner in which the deformation guiding portion 82112 can guide the milking portion 8211 to be deformed at the position when the negative pressure environment can be formed in the milking chamber 82110 can belong to The content and scope of the breast pump of the present invention.
  • the milking device 810 further includes a vibration unit 814, wherein the vibration unit 814 is electrically connected to the power supply unit 813, wherein when the power supply unit 813 is toward the vibration unit When the power is supplied 814, the vibration unit 814 can generate vibration to drive the milk discharge unit 821 to generate vibration, thereby massaging the breast 8100 to improve the comfort of the milk discharger when it is used.
  • the vibration unit 814 can be implemented as a vibration motor.
  • the vibration unit 814 may include not only the vibration motor but also a vibration member such as an eccentric member capable of causing the vibration motor to output power when supplied with electric power.
  • the vibrating member vibrates, thereby causing the milk discharge unit 821 to generate vibration.
  • the vibration unit 814 can also have other embodiments, which do not limit the content and scope of the milk discharger of the present invention.
  • the milking device 810 further includes a pressure relief valve 815, wherein the pressure relief valve 815 can be in communication with the air passage 8110, wherein the pressure relief valve 815 can be opened by opening the pressure relief valve 815
  • the external environment is connected to the air passage 8110 to return the milk discharge space 8210 to normal pressure by returning the air passage 8110 to normal pressure.
  • the pressure relief valve 815 may be a manual pressure relief valve or an electric pressure relief valve.
  • the pressure relief valve 815 may be Electrically connected to the power supply unit 813.
  • the milk discharge device 810 further includes a housing 816, wherein the negative pressure generator 811, the pressure release device 812, the power supply unit 813, and the vibration unit 814 are all disposed on the housing 816.
  • the pressure relief valve 815 is disposed to the housing 816 to allow a user to operate the pressure relief valve 815 external to the housing 816.
  • the housing 816 may further be provided with a charging port to conveniently supplement external power (mains) to the power supply unit 813, and the housing 816 may also be provided with a control switch to pass the control switch.
  • a power supply state of the power supply unit 813 to the negative pressure generator 811, the pressure release device 812, the vibration unit 814, and the pressure relief valve 815 is controlled.
  • the milk discharging device 810 includes a supporting unit 817, wherein the supporting unit 817 has a first mounting position 8171, a second mounting position 8172, a third mounting position 8173, a first passage 8174, and a a second passage 8175, wherein the first passage 8174 communicates with the first mounting position 8171 and the third mounting position 8173, and the second passage 8175 communicates with the second mounting position 8172 and the third mounting position 8173.
  • the housing 816 is mounted to the first mounting position 8171 of the support unit 817 such that the generator inlet end 8111 of the vacuum generator 811 is coupled to the support unit 817, thereby enabling
  • the air passage 8110 communicates with the first passage 8174, wherein the generator outlet end 8112 of the negative pressure generator 811 communicates with an external environment, and the generator outlet end 8112 of the vacuum generator 811
  • the location is not limited as long as it can communicate with the external environment.
  • the housing 816 is detachably mounted to the first mounting location 8171 of the support unit 817.
  • the mounting portion 8212 of the milk discharge unit 821 is mounted to the second mounting position 8172 of the support unit 817 such that the milk discharge passage 82120 of the mounting portion 8212 communicates with the support unit 817.
  • the second channel 8175 Preferably, the mounting portion 8212 of the milk discharge unit 821 is detachably mounted to the second mounting position 8172 of the support unit 817.
  • the milking device 810 further includes a milk receptacle 818, wherein the milk receptacle 818 has a milking space 8181, wherein the milk receptacle 818 is mounted to the third mounting location of the support unit 817 8173, such that the milking space 8181 of the milking device 818 communicates with the first passage 8174 and the second passage 8175, respectively, so that the milking portion 8211 of the milk discharging unit 821 is
  • the milk discharge chamber 82110 communicates with the air passage 8110.
  • the milk receptacle 818 is detachably mounted to the third mounting location 8173 of the support unit 817. It is worth mentioning that the milking device 818 can be a bottle or a milk bag or the like.
  • the user places the milk discharge unit 821 of the breast containment device 820 at the position of the breast 8100 when the breast pump is used, so that the breast 8100 is accommodated.
  • a deformation space 8300 is formed between the inner wall of the milk discharge portion 8211 and at least a portion of the areola of the breast 8100.
  • the inner wall of the milking portion 8211 is in contact with the posterior portion of the areola of the breast 8100, and the inner wall of the milking portion 8211 and the front portion of the areola of the breast 8100 are not in contact, thereby The deformation space 8300 is formed between the inside of the milk discharge portion 8211 and the front portion of the areola of the breast 8100.
  • the inner wall of the milking portion 8211 and the areola of the breast 8100 are not in contact, thereby forming the milking space 300 between the inner wall of the milking portion 8211 and the areola of the breast 8100.
  • the milking chamber 82110 of the milk discharge portion 8211 of the milk discharge unit 821 is formed into a negative pressure environment, so that the milk discharge portion 8211 is deformed at the position of the deformation guiding portion 82112, thereby causing the The upper molding portion 8211a and the lower molding portion 82111b have a tendency and displacement close to each other, and at this time, the lower molding portion 8211b or the milking projection 82113 formed in the lower molding portion 8211b is from the breast 8100
  • the lower portion of the areola holds up the areola of the breast 8100, and the upper molding portion 8211a presses the areola of the breast 8100 downward from the lower portion of the areola of the breast 8100, in such a manner that breast milk can be taken from the The breast 8100 is excreted from the body.
  • the ventilation path 8110 formed by the negative pressure generator 811 and the pressure release device 812 forms a negative pressure environment
  • the milking chamber 82110 of the milk discharging portion 8211 communicates with each other through the second passage 8175, the milking space 8181, the first passage 8174, and the air passage 8110
  • the milking chamber 82110 also forms a negative pressure environment, so that the milk discharge portion 8211 is deformed at the position of the deformation guiding portion 82112, so that the upper molding portion 8211a and the lower molding portion 82111b have a tendency and displacement close to each other.
  • the lower molding portion 8211b or the milking projection 82113 formed on the lower molding portion 8211b holds the areola of the breast 8100 upward from the lower portion of the areola of the breast 8100, and the upper molding portion 8211a
  • the areola of the breast 8100 is pressed downward from the lower portion of the areola of the breast 8100, in such a manner that breast milk can be excreted from the breast 8100.
  • the mounting portion 8212 of the milk discharge unit 821 is not deformed, thereby preventing gas from the external environment from entering the air passage from the mounting position of the mounting portion 8212 and the support unit 817. 8110, thereby not only ensuring that the milking chamber 82110 always forms a negative pressure environment when the milk discharger is used, and also prevents breast milk from being contaminated.
  • electric power can be supplied to the vibration unit 814 to cause the milk discharge unit 821 to vibrate in synchronization, in such a manner that the breast 8100 can be massaged and the areola of the breast 8100 can be massaged.
  • the breast milk discharged from the breast tissue of the breast 8100 is drained by the second passage 8175 to the milking space 8181 of the milk receptacle 818 for storage.
  • the pressure discharge valve 815 When the pressure discharge valve 815 is manually operated or the pressure is supplied to the pressure relief valve 815 during the milk discharge process, the pressure in the milk discharge chamber 82110 of the milk discharge portion 8211 can be restored to normal pressure, thereby The milk discharger is conveniently removed from the position of the breast 8100.
  • the breast containment device 820 further includes a heating unit 822, wherein the heating unit 822 is capable of preheating the breast containment device 820, preferably The heating unit 822 can preheat the milk discharge unit 821, in such a manner that the temperature of the milk discharge unit 821 can be raised before the milk discharge unit 821 and the breast 8100 are in contact with each other.
  • the breast milk unit 821 does not stimulate the breast 8100 when it comes into contact with the breast 8100, and can make the user feel comfortable, so that the milk discharger is particularly suitable for use under cold weather conditions. .
  • the heating unit 822 includes a heating portion 8221, wherein the heating portion 8221 may be disposed inside the milk discharging portion 8211 of the milk discharging unit 821, when the heating portion 8221 is supplied with electric power.
  • the heating portion 8221 can generate heat, and heat generated by the heating portion 8221 can be radiated to the milk discharge portion 8211 and the milk discharge chamber 82110 of the milk discharge portion 8211.
  • the heating portion 8221 may be implemented as an electrically heated film, such that the heating portion 8221 can generate heat after being supplied with electric power, and the heating portion 8221 can also be deformed in synchronization with the milk discharge portion 8211. In order to simulate the sucking action of the baby, breast milk is discharged from the breast 8100.
  • the heating portion 8221 may be integrally formed with the milk discharge portion 8211, and the heating portion 8221 may be integrally molded to the milk discharge by, for example, an embedded injection process or a molding process.
  • the heating portion 8221 may be overlapped on the outer wall of the milk discharge portion 8211, or the heating portion 8221 may be overlapped on the outer wall of the milk discharge portion 8211. It will be understood by those skilled in the art that when the breast 8100 is accommodated in the milk discharge chamber 82110 of the milk discharge portion 8211, the milk discharge portion 8211 is used to isolate the heating portion 8221 and the The breast 8100 is prevented from injuring the breast skin of the breast 8100 due to excessive temperature, and the heat generated by the heating portion 8221 acts on the breast 8100 through the milk discharge portion 8211. The breast skin and breast tissue can make the user feel more comfortable.
  • the heating unit 822 may further include a temperature maintaining portion 8222, wherein the temperature maintaining portion 8222 is held at an outer wall of the heating portion 8221 to prevent heat generated by the heating portion 8221 from passing through the temperature
  • the maintaining portion 8222 is radiated to the external environment, and in this manner, the heat utilization rate can be improved. That is, the temperature maintaining portion 8222 may be a heat insulating portion or a heat insulating portion.
  • the heating portion 8221 is electrically connected to the power supply unit 813, wherein the heating portion 8221 is capable of generating heat when the power supply unit 813 is electrically connected to the heating portion 8221.
  • the temperature maintaining portion 8222 may be a heat insulating film or a heat insulating film formed on the outer wall of the heating portion 8221, or may be disposed in an overlapping manner.
  • the heat insulating element or the heat insulating element of the outer wall of the heating portion 8221 is such that the temperature maintaining portion 8222 is held by the outer wall of the heating portion 8221.
  • the temperature maintaining portion 8222 may be a heat insulating film or a heat insulating film formed on the outer wall of the milk discharging portion 8211, or may be overlapped and disposed.
  • the heat insulating element or the heat insulating element of the outer wall of the milk discharge portion 8211 is such that the temperature maintaining portion 8222 is held by the outer wall of the heating portion 8221.
  • the temperature maintaining portion 8222 held by the outer wall of the heating portion 8221 may be in contact with the heating portion 8221, or may not be in contact with the heating portion 8221, and may be held in the heating.
  • the temperature maintaining portion 8222 of the outer wall of the portion 8221 may be a single member, or may be a film integrally formed with the heating portion 8221 or a film integrally formed with the milk discharge portion 8211.
  • the heating portion 8221 may also be out of contact with the milk discharge portion 8211. Specifically, the heating portion 8221 forms a heating space 82210, wherein the tight milk portion 8211 is held in the heating space 82210 of the heating portion 8221, and when the heating portion 8221 is supplied with electric power, The heating portion 8221 can generate heat to raise the temperature of the heating space 82210, thereby increasing the temperature of the milk discharge portion 8221 and the milk discharge chamber 82210 of the milk discharge portion 8221.
  • the heating portion 8221 The generated heat can also raise the temperature of the milk discharge portion 8211 and the milk discharge chamber 82110 of the milk discharge portion 8211.
  • the temperature maintaining portion 8222 may be implemented as a separate member such that the temperature maintaining portion 8222 is overlappedly disposed on the heating portion 8221, or the temperature maintaining portion 8222 may be implemented to be integrally formed.
  • the film on the outer wall of the heating portion 8221 prevents the heat generated by the heating portion 8221 from being radiated to the external environment by the temperature maintaining portion 8222 to improve heat utilization efficiency.
  • the heating unit 822 may further include a protective case 8223, wherein the heating portion 8221 is provided to the protective case 8223 to cause the heating
  • the heat generated by the portion 8221 being supplied with electric power is radiated to the milk discharge portion 8211 through the inner wall of the protective casing 8223, thereby causing the milk discharge portion 8211 and the milk discharge chamber 82110 of the milk discharge portion 8211 The temperature rises.
  • the protective casing 8223 can prevent the heating portion 8221 from being exposed, thereby improving the safety of the milk discharger when it is used.
  • the temperature maintaining portion 8222 may be disposed inside the protective case 8223 or the temperature maintaining portion 8222 may be formed inside the protective case 8223.
  • the temperature maintaining portion 8222 may be disposed outside the protective case 8223 or the temperature maintaining portion 8222 may be formed outside the protective case 8223.
  • the heating unit 822 may also be devoid of the heating portion 8221.
  • the protective case 8223 has an inner portion 82231 and an outer portion 82232, wherein the inner portion 82231 and the outer portion 82232 overlap each other to form between the inner portion 82231 and the outer portion 82232.
  • the protective casing 8223 has an inlet port and an outlet port respectively communicating with the soaking space 82233 to enable fluid to enter the soaking space 82233 from the inlet port. And discharging the soaking space 82233 from the outlet.
  • the temperature maintaining portion 8222 may be disposed at the outer side portion 82232 of the protective case 8223, or the temperature maintaining portion 8222 may be formed at the outer side portion 82232 of the protective case 8223, for example, the temperature
  • the maintaining portion 8222 may be formed on an inner wall and/or an outer wall of the outer side portion 82232 of the protective case 8223 to prevent heat from radiating to the external environment.
  • the present invention further provides a milk discharge method, wherein the milk discharge method comprises the following steps:
  • a deformation space 8300 is formed between at least a portion of the areola of the breast 8100 and the inner wall of the milk discharge portion 8211;
  • the breast pump of the present invention comprises a nipple correction device, a nipple correction device according to a preferred embodiment of the present invention, with reference to Figures 67 to 69B of the accompanying drawings of the present invention.
  • the nipple correction device includes a aligner 910 and a vacuum generator 920, wherein the aligner 910 is disposed at the vacuum generator 920 to generate by the aligner 910 and the vacuum The 920 forms a venting path 9100, wherein the aligner 910 forms a correcting end 930.
  • the aligner 910 has a correcting passage 911, a free end 912 and a mounting end 913, wherein the correcting passage 911 is in communication with the free end 912 and the mounting end 913.
  • the aligner 910 has a cylindrical shape.
  • the correcting passage 911 of the aligner 910 is shaped and sized similarly to the shape and size of a nipple 9200 to be corrected.
  • the mounting end 913 of the aligner 910 is disposed to the vacuum generator 920 such that the correcting passage 911 of the aligner 910 is in communication with the venting path 9100 of the nipple correction device.
  • the aligner 910 can be made of a flexible material, such as silicone or rubber, such that the aligner 910 forms a silicone orthotic or rubber aligner. Nonetheless, it will be understood by those skilled in the art that the aligner 910 can also be made from other flexible materials. More preferably, the aligner 910 can be made of a mild, flexible material such that when the aligner 910 is in contact with the nipple 9200 to be corrected and during the correction of the nipple to be corrected, the user feels more For comfort, thereby improving the comfort of the nipple correction device.
  • the nipple correction device further includes a pressure release 940, wherein the pressure release 940 has a release air inlet 941 and a release air outlet 942, the release air inlet 941 being in communication with the Ventilation path 9100, the release vent 942 is in communication with the external environment.
  • the pressure release 940 has an open state and a closed state, wherein the pressure release 940 is switchable between the open state and the closed state. When the pressure release 940 is in the open state, the pressure release 940 communicates the air passage 9100 with the external environment through the release vent 942 when the pressure release 940 is in the In the closed state, the pressure release 940 does not communicate with the air passage 9100 and the external environment.
  • the pressure release 940 can be implemented as a solenoid valve, such as a normally closed solenoid valve, ie, the pressure release 940 can be in the shutdown when no power is supplied to the pressure release 940. State, when power is supplied to the pressure release 940, the pressure release 940 can be in an open state, thereby causing the pressure release 940 to switch between the open state and the closed state. It can be understood that the pressure release device 940 can also be implemented as a normally open solenoid valve, that is, when no power is supplied to the pressure release device 940, the pressure release device 940 can be in the open state. The pressure release 940 may be in the closed state when power is supplied to the pressure release 940.
  • a solenoid valve such as a normally closed solenoid valve
  • the pressure release device 940 described above as being implemented as the solenoid valve is merely an example for illustrating the features and advantages of the nipple correction device of the present invention, in other examples.
  • the pressure release 940 may also be implemented as a relay or other mechanism as long as it is switchable between the open state and the closed state. Accordingly, the pressure release 940 embodied as the solenoid valve disclosed in the following description and the accompanying drawings should not be considered as limiting the content and scope of the nipple correction device of the present invention.
  • the vacuum generator 920 forms a negative pressure environment in the air passage 9100, and the pressure release device 940 generates a corrective negative pressure in the air passage 9100. And one to maintain negative pressure.
  • the pressure release device 940 when the pressure release device 940 is in the closed state, the correcting negative pressure is generated in the air passage 9100 to lift the to-corrected nipple 9200 corresponding to the correcting end 930 to the The correcting end 930, when the pressure release 940 is in the open state, the maintaining negative pressure is generated in the air passage 9100, so that the to-be-corrected nipple 9200 is held at the correcting end 930, In this way, the corrective effect can be improved.
  • the nipple 9200 to be corrected can be kept at all times after the nipple 9200 to be corrected is pulled to the correcting end 930.
  • the correction end 930 is described until the end of the correction process.
  • the vacuum generator 920 includes a vacuum generating tube 921 and a vacuum generating body 922, wherein the vacuum generating tube 921 has a first end portion 9211 and a second end portion 9212, and the vacuum generating body 922 is disposed at The vacuum generating tube 921 is configured to form a negative pressure environment in the vacuum generating tube 921, wherein the mounting end 913 of the aligner 910 is disposed at the first end of the vacuum generating tube 921 a portion 9211, such that the inside of the vacuum generating tube 921 communicates with the correcting passage 911 of the aligner 910, the second end portion 9212 of the vacuum generating tube 921 communicates with the external environment, thereby
  • the aligner 910 and the vacuum generator 920 form the air passage 9100.
  • the vacuum generating body 922 may be implemented as a diaphragm vacuum pump to enable a vacuum environment to be formed in the vacuum generating tube 921 when the vacuum generating body 922 is supplied with electric power.
  • the release air inlet 941 of the pressure release 940 may communicate with the first end portion 9211 of the vacuum generation tube 921. Ventilation path 9100. In another specific example of the nipple correction device of the present invention, the release air inlet 941 of the pressure release device 940 may also be in communication with the second end portion 9212 of the vacuum generation tube 921. The air passage 9100. In this specific example of the nipple correction device of the present invention, the release air inlet 941 of the pressure release 940 is in communication with the ventilation at the second end portion 9212 of the vacuum generation tube 921. The road 9100 and the release vent 942 of the pressure release 940 are in communication with the air passage 9100 at the first end portion 9211 of the vacuum generation tube 921.
  • the nipple correction device further includes a power supply element 950, wherein the vacuum generating body 922 and the pressure release 940 of the vacuum generator 920 are electrically connected to the power supply element 950, respectively, by The power supply element 950 supplies power to the vacuum generating body 922 and the pressure release device 940, respectively, so that the vacuum generating body 922 and the pressure release device 940 are in an operating state, and the air generating path 9100 is generated. The correcting negative pressure and the maintaining negative pressure.
  • the type of the power supply component 950 is not limited in the nipple correction device of the present invention.
  • the power supply component 950 may be a disposable battery or a rechargeable battery, such as a rechargeable battery.
  • the power supply element 950 can also provide only the function of voltage transformation and voltage stabilization, so that external electric energy (for example, commercial power) connected to the power supply element 950 can be supplied to the The vacuum generating body 922 and the pressure release 940.
  • the type of power supply element 950 should not be considered as limiting the content and scope of the nipple correction device of the present invention.
  • the power supply element 950 supplies power to the vacuum generating body 922 and the pressure release device 940 is also not limited.
  • the power supply element 950 can be controlled to simultaneously the vacuum generating body.
  • the pressure release device 922 and the pressure release device 940 supply power so that the vacuum generating body 922 and the pressure release device 940 are simultaneously in an operating state.
  • the power supply element 950 can also be controlled to the vacuum generating body 922, respectively.
  • the pressure release device 940 is supplied with electric power so that the vacuum generating body 922 and the pressure release device 940 are in an operating state, respectively.
  • the nipple correction device further includes a pressure relief valve 960, wherein the pressure relief valve 960 is operatively coupled to the air passage 9100, wherein when the negative pressure environment is formed within the air passage 9100, The pressure relief valve 960 quickly restores the pressure to the normal pressure state in the air passage 9100.
  • the pressure in the air passage 9100 can be prevented from being excessively damaged, thereby causing damage to the nipple to be corrected.
  • the pressure relief valve 960 may be a manual valve or an electric valve. When the pressure relief valve 960 is implemented as an electric valve, the pressure relief valve 960 may be electrically connected to the power supply. Element 950.
  • the nipple correction device may include a housing 970, wherein the vacuum generator 920, the pressure release device 940, and the power supply element 950 are respectively disposed inside the housing 970, and the vent A pressure valve 960 is operatively disposed on a surface of the housing 970 to enable operation of the pressure relief valve 960 external to the housing 970.
  • a control switch and a charging port electrically connected to the power supply element 950 may be respectively disposed outside the housing 970 to control the power supply element 950 to the vacuum generating body 922 and the The power supply state of the pressure release device 940, and the power supply element 950 are supplemented with electrical energy through a charging port.
  • the position of the pressure relief valve 960, the control switch and the charging port in the housing 970 is not limited.
  • the nipple correction device may further include a vibration motor 980, wherein the vibration motor 980 is disposed inside the housing 970, and the vibration motor 980 is electrically connected to the power supply element 950, wherein When the vibration motor 980 is supplied with electric power, vibration can be generated to massage the to-be-corrected nipple accommodated in the correction end 930, thereby further improving the correcting effect.
  • a vibration motor 980 wherein the vibration motor 980 is disposed inside the housing 970, and the vibration motor 980 is electrically connected to the power supply element 950, wherein When the vibration motor 980 is supplied with electric power, vibration can be generated to massage the to-be-corrected nipple accommodated in the correction end 930, thereby further improving the correcting effect.
  • the vibration frequency of the vibration motor 980 is selected to allow the user to select a different frequency to massage the to-be-corrected nipple contained in the correction end 930 as needed. It can be understood that a control switch for controlling the power supply state of the power supply element 950 to the vibration motor 980 can also be provided outside the housing 970 for ease of operation.
  • the first end portion 9211 and the second end portion 9212 of the vacuum generation tube 921 may be integrally formed with the housing 970, and The first end portion 9211 of the vacuum generating tube 921 may protrude outside the housing 970 to facilitate mounting of the aligner 910.
  • the second end portion 9212 of the vacuum generating tube 921 may protrude outside the housing 970 or may not protrude outside the housing 970 as long as the second portion of the vacuum generating tube 921 is caused
  • the end portion 9212 is connected to the external environment.
  • the mounting end 913 of the aligner 910 is detachably mounted to the first end portion 9211 of the vacuum generating tube 921 of the vacuum generator 920, in such a manner, on the one hand,
  • the nipple correction device allows the user to replace the aligners 910 of different sizes as needed.
  • the user can remove the aligner 910 from the vacuum generator 920 before and after using the nipple correction device.
  • the nipple correction device is detached to clean it to ensure the hygienicity of the nipple correction device to further ensure the reliability of the nipple correction device when it is used.
  • the aligner 910 may be integrally formed with the vacuum generating tube 921 of the vacuum generator 920, with reference to FIG.
  • the nipple correction device of the present invention is further illustrated and described by taking the vacuum generating tube 921 detachably mounted to the vacuum generator 920 as an example. It should not be construed as limiting the content and scope of the nipple correction device of the present invention.
  • the aligner 910 forms a holding portion 914, wherein the nipple 9200 to be corrected can be configured when the vacuum generator 920 forms a negative pressure environment in the air passage 9100. Being lifted to the correcting end 930 and caught in the retaining portion 914, in the process of correcting the nipple 9200 to be corrected, the nipple 9200 to be corrected is always held at the correcting end 930, by In a manner, the effect of correcting the nipple 9200 to be corrected can be greatly improved.
  • the holding portion 914 is formed at the mounting end 913 of the aligner 910.
  • the aligner 910 has an inner wall 915 and a mounting surface 916, wherein the inner wall 915 of the aligner 910 is used to form the correcting passage 911, and the mounting surface 916 is the mounting end 913.
  • the correcting end 930 is formed by the 910, the front end of the nipple 9200 to be corrected is caught in the holding portion 914, so that the nipple to be corrected is held at the correcting end by the holding portion 914 930.
  • an angle ⁇ formed between the inner wall 915 of the aligner 910 and the mounting surface 916 is an acute angle such that the opening size of the correcting passage 911 on the side of the free end 912 is larger than the The size of the opening of the correcting passage 911 on the side of the mounting end 913 is such that when the nipple 9200 to be corrected is corrected, the nipple 9200 to be corrected is facilitated to be pulled to the correcting end 930. That is, the inner wall 915 of the aligner 910 extends obliquely from the free end 912 toward the mounting end 913.
  • the holding portion 914 surrounds the circumference of the aligner 910, so that when the to-be-corrected nipple 9200 is caught in the holding portion 914, the holding portion 914 can be stuck in the week of the nipple 9200 to be corrected.
  • the correcting nipple 9200 is described to improve the comfort of the nipple correction device.
  • the inner wall 915 and the mounting surface 916 of the aligner 910 are rounded to prevent the to-corrected nipple 9200 stuck to the holding portion 914 from being injured, thereby ensuring the nipple correction. The reliability and safety of the device when it is used.
  • the mounting end 913 of the aligner 910 may have a mounting slot 917, wherein the first end portion 9211 of the vacuum generating tube 921 of the vacuum generator 920 is detachably mounted on the The mounting groove 917 of the aligner 910 can be mounted to the vacuum generator 920 to form the air passage 9100 in this manner.
  • the retaining portion 914 may also be formed in the middle of the aligner 910.
  • the inner wall 915 of the aligner 910 has a first inner wall 9151, a second inner wall 9152, and a third inner wall 9153, wherein the first inner wall 9151 is free from the aligner 910.
  • the end 912 extends toward the mounting end 913
  • the third inner wall 9153 extends from the mounting end 913 of the aligner 910 toward the free end 912
  • the second inner wall 9152 is connected to the first end
  • An inner wall 9151 and the third inner wall 9153 and an angle ⁇ is formed between the second inner wall 9152 and the first inner wall 9151, and a sandwich is formed between the second inner wall 9152 and the third inner wall 9153
  • An angle ⁇ is formed to form the holding portion 914.
  • an angle ⁇ formed between the first inner wall 9151 and the second inner wall 9152 is an acute angle to facilitate pulling the to-corrected nipple 9200 to the correcting end 930.
  • connection position of the first inner wall 9151 and the second inner wall 9152 is rounded, thereby not only facilitating the pulling of the to-be-corrected nipple 9200 to the holding portion 914, but also facilitating the The nipple 9200 to be detached is detached from the retaining portion 914 and does not cause damage to the nipple 9200 to be corrected in either of the two processes.
  • the mounting end 913 of the aligner 910 can also be provided with the mounting slot 917 to facilitate mounting the first end 9211 of the vacuum generator 21 to the aligner 910.
  • the mounting groove 917 is such that the aligner 910 and the vacuum generator 920 are mounted together to form the air passage 9100.
  • the retaining portion 914 of the aligner 910 may be stepped, while in other examples of the nipple correction device of the present invention, the aligner The retaining portion 914 of the 910 may be an annular projection, with reference to Figures 72A and 72B, wherein the retaining portion 914 protrudes from the inner wall 915 of the orthotic 910 to facilitate jamming the to-be-corrected Nipple 9200.
  • the first end portion 9211 of the vacuum generating tube 921 of the vacuum generator 920 may also be inserted through the mounting end 913 of the aligner 910. In a manner, the aligner 910 is mounted to the vacuum generator 920 to form the air passage 9100.
  • the correcting end 930 formed by the aligner 910 can be made to correspond to the areola Position and cause the nipple 9200 to be corrected to correspond to the correcting passage 911 of the aligner 910.
  • the maintaining negative pressure can help the holding portion 914 to keep the to-be-corrected nipple 9200
  • the correcting end 930 is used to improve the correcting effect. It will be appreciated that in some instances, even if the aligner 910 does not form the retaining portion 914, the maintaining a negative pressure may cause the nipple 9200 to be corrected to be retained at the orthotic end 930.
  • the value of the correction negative pressure and the value of the maintenance negative pressure are both greater than 0, and the number of the correction negative pressure is greater than the value of the maintenance negative pressure.
  • the air pressure reducing valve 960 can be operated to communicate the air passage 9100 with the external environment, thereby restoring the normal pressure in the air passage 9100. To avoid injury to the nipple 9200 to be corrected.
  • the vibration motor 980 may also provide vibration to massage the nipple 9200 to be corrected, thereby further improving the correcting effect.

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Abstract

一种吸奶器和乳房护理装置及其应用,其中吸奶器包括一吸奶器主体(10,10A,10B)、至少一乳房容纳装置(20,20A,20B,520,820)以及一维持装置(30,30A,30B)。乳房容纳装置(20,20A,20B,520,820)具有一容纳空间(21,21A,21B,521,621)和一吸奶通道(27,27A,27B),其中乳房容纳装置(20,20A,20B,520,820)被连接于吸奶器主体(10,10A,10B),并且吸奶通道(27,27A,27B)连通容纳空间(21,21A,21B,521,621)和吸奶器主体(10,10A,10B),以藉由吸奶器主体(10,10A,10B)通过吸奶通道(27,27A,27B)使容纳空间(21,21A,21B,521,621)形成负压环境,其中乳房容纳装置(20,20A,20B,520,820)被连接于维持装置(30,30A,30B),其中维持装置(30,30A,30B)被设置使乳房容纳装置(20,20A,20B,520,820)的温度被保持在适宜温度范围。

Description

吸奶器和乳房护理装置及其应用 技术领域
本发明涉及一吸奶器,特别涉及一吸奶器和乳房护理装置及其应用。
背景技术
众所周知,吸奶器是用于帮助使用者将母乳从乳房中排出体外的设备,借助吸奶器可以排空乳房中的乳汁,乳房中的乳汁排得越空,母乳在后续就会分泌得越多,因此,吸奶器有助于促进泌乳,其中吸奶器包括手动吸奶器和电动吸奶器。通常情况下(并非全部情况),当婴儿无法直接吮吸母乳时或者使用者需要暂时停止哺乳时,例如当母婴分离时婴儿无法直接吮吸母乳,均需要使用吸奶器将淤积母乳从乳房中排出进行存储或者丢弃。另外,在新生儿刚出生时,使用者也可以藉由吸奶器的帮助实现快速的开奶,以便于让新生儿吃的第一口奶就是母乳,这对于新生儿的生长发育是特别重要的。使用者在使用吸奶器时,需要将吸奶器的一部分扣在乳房的位置,通过操作吸奶器以在吸奶器的内部产生负压后,吸奶器就能够将母乳从乳房中排出体外。现有技术的吸奶器存在着诸多的缺陷。
首先,常见的电动吸奶器通过一个抽吸泵(例如活塞式抽吸泵)在工作状态和非工作状态之间切换的方式,使吸奶器的内部间歇性地产生负压以进行吸奶。现在的吸奶器在抽吸泵处于非工作状态时,吸奶器的内部和外部的气压相同,因此,使用者在使用吸奶器时,需要使用手部一直扶持或者拿持着吸奶器,由于使用吸奶器的时间长达十分钟或者更久,当使用者长期保持在同一个紧张的姿势时很容易感到疲劳,尤其是对于刚分娩的使用者来说,使用这种吸奶器明显地感觉力不从心。
其次,吸奶器的罩杯多是塑料制品或者硅胶制品,当吸奶器处于非使用状态下,由于吸奶器的罩杯暴露在外部环境中,从而使得吸奶器的罩杯的温度和周围环境的温度相仿,尤其是在冬季较为寒冷的季节时,吸奶器的罩杯的表面温度会非常低,这导致使用者无法直接使用吸奶器进行吸奶,否则会对乳房的乳腺组织造成不良刺激,以至于抑制催乳素和催产素的分泌而导致泌乳量减少,并对使用者的身体造成伤害。因此,使用者在使用吸奶器之前会想办法将吸奶器的罩杯的温度升高,现在的做法是将罩杯放置在热水中浸泡或者蒸煮,以使罩杯的温度升高,然而这种做法不仅十分麻烦,而且罩杯的温度很难被维持,当使用吸奶器超 过一定的时间时,罩杯的温度会持续且快速地降低,尤其是在冬季较为寒冷的季节,罩杯的温度下降的更快。也就是说,现在的这种做法无法使吸奶器的罩杯维持在合理的温度范围。
另外,使用者在使用吸奶器将母乳从乳房中排出体外之前,需要放松乳房周围的乳房皮肤和乳腺组织,尤其是在冬季较为寒冷的季节,更是需要对乳房周围的乳房皮肤和乳腺组织进行放松,现在的做法是使用热毛巾对乳房进行热敷,这种做法也存在很多的问题,一方面,使用热毛巾对乳房进行热敷需要先使用热水对毛巾进行浸泡,从而导致这一过程十分的麻烦,并且在热毛巾变冷后,产妇容易受凉,另一方面,热毛巾的水分含量比较多,在热敷的过程中会比较容易弄湿衣服或者被褥,且在热敷完成之后,会有较多的水分留在乳房皮肤的表面,因此,在使用热毛巾热敷完成之后,需要使用干毛巾将乳房皮肤擦拭干,而这一过程可能会导致细菌污染乳房的乳房皮肤,在使用吸奶器吸奶的过程中,这些细菌会进入被吸出的母乳中而导致母乳被进一步污染,从而导致母乳的安全性被降低。
乳腺病是一种女性常见疾病,举例地但不限于小叶增生、乳腺纤维瘤、乳腺囊肿以及乳腺癌等。近年来,乳腺病的发病率更是呈现出日益上升的趋势。另外,处于哺乳期的女性也会出现乳汁淤积而引起的乳房肿胀、乳腺炎或者母乳不足的情况。为了预防乳腺病和降低乳腺病的发病率以及提高母乳喂养的质量,需要通过坚持按摩乳房以刺激乳腺组织和适度刺激与乳腺组织相关联的人体穴位,以达到放松乳腺组织和使乳腺组织充满活力的目的。众所周知的是,乳房是女性较为隐私的器官,尽管现在有专门提供乳房按摩保健服务的机构,大多数女性还是通过本人利用手工按摩的方式对乳房进行按摩,但是这种纯手工按摩的方式存在着很多的缺陷。
首先,由于社会上缺少乳房手工按摩手法知识的专业培训,导致女性很难学习科学的乳房按摩手法,这进一步导致女性在通过手工按摩乳房时可能是以不科学的、甚至是错误的手法对乳房进行按摩,这不仅不能够放松乳腺组织,而且还可能对乳腺组织造成伤害。其次,女性在通过手工按摩乳房时很难做到每天坚持按摩一段时间,而且在按摩的过程中也很难保证以合理的频率对乳房进行按摩,以至于导致按摩效率低下。更为重要的是,女性在通过手工按摩乳房的同时无法同步地刺激与乳腺组织相关联的穴位,即,女性无法同时做到按摩乳房和刺激与乳腺组织相关联的穴位,而医学研究表面,只有在乳房被按摩的同时刺激与乳腺组织相关联的穴位才能够具有更好放松乳腺组织和使乳腺组织更加充满活力的效果。另外,为了保证乳房的卫生性,在使用手工按摩乳房之前需要使用清水对手部进行清洗,在多数情况下,尤其是在冬季等较为寒冷的天气条件下,使用清水冲洗手部之后会导致手部的温度与乳房的温度差较大,当女性的手部与乳房皮肤接触时会造成乳房皮肤的不适,从而导致在冬 季等较为寒冷的天气条件下,通过手工按摩乳房的方式更难以被坚持。另外,手工按摩还有以下缺陷:
1、手工按摩时用力轻重不好掌握,由于乳腺组织比较敏感和脆弱,手工按摩易对乳腺组织造成隐形伤害。
2、手工按摩不易达到气血调理的效果。
3、手工按摩需要配合热毛巾才有可能达到较好的效果,这导致手工按摩的过程非常的麻烦,不易坚持。
4、手工按摩只能够提供单一作用,然而,乳房保健需要热敷、振动等多种方式同时进行才能够达到理想的保健效果。
发明内容
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器提供至少一乳房容纳装置,所述乳房容纳装置的温度能够被维持在适宜温度范围,以避免所述吸奶器在被使用时,由于所述乳房容纳装置与乳房皮肤接触而对乳房皮肤和乳腺组织产生不良刺激。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中在使用所述吸奶器进行吸奶之前,所述乳房容纳装置能够被预热,以使所述乳房容纳装置的温度被加热到和被维持在与乳房皮肤的温度适当,从而避免对乳房皮肤和乳腺组织产生刺激。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房容纳装置的温度能够被维持在适宜温度范围,从而在使用所述吸奶器进行吸奶之前,与使用者的乳房皮肤接触的所述乳房容纳装置能够通过使乳房皮肤和乳腺组织的温度升高的方式,放松乳房皮肤和乳腺组织。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中通过所述乳房容纳装置放松乳房皮肤和乳腺组织的方式,能够在使用所述吸奶器的过程中使使用者的乳房始终保持干燥。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房容纳装置贴附于乳房皮肤的周围,以使使用者的乳房皮肤和乳腺组织均匀地受热。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房容纳装置与使用者的乳房之间产生一热量维持空间,所述热量维持空间形成于使用者的乳房的周围,以使使用者的乳房皮肤和乳腺组织均匀地受热。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中在使用所述吸奶器进行吸奶之前,不需要使用热水浸泡或者蒸煮的方式升高所述乳房容纳装置的温度,以使所述吸奶器的使用更为方便。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器提供一维持装置,所述维持装置用于使所述乳房容纳装置的温度升高和使所述乳房容纳装置的温度被维持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房容纳装置提供一均热空间,所述维持装置提供一发热空间,所述均热空间连通于所述发热空间,所述维持装置通过使所述发热空间的温度升高且使所述均热空间和所述发热空间产生的热量交换的方式,使所述乳房容纳装置的温度升高且使所述乳房容纳装置的温度被维持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述维持装置提供一温度维持元件,所述温度维持元件被设置于所述乳房容纳装置,以藉由所述温度维持元件维持所述乳房容纳装置的温度在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房容纳装置提供一均热元件,所述维持装置提供一发热元件,所述均热元件被可导热地连接于所述发热元件,其中所述发热元件将产生的热量传导至所述均热元件,以使所述乳房容纳装置的温度升高和使所述乳房容纳装置的温度被维持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述发热元件被设置于所述乳房容纳装置,所述发热元件在被供应能量后产生热量,以使所述乳房容纳装置的温度升高和使所述乳房容纳装置的温度被维持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器提供一吸奶器主体,所述乳房容纳装置连接于所述吸奶器主体,其中所述吸奶器主体在所述乳房容纳装置的所述热量维持空间形成一维持负压,以使所述乳房容纳装置不会从使用者的乳房自动地脱落,从而使使用者能够轻松地使用所述吸奶器。换言之,所述吸奶器主体使所述乳房容纳装置的所述容纳空间的内部和外部产生压力差并且使所述压力差在使用者使用所述吸奶器的过程中始终存在。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器主体通过使所述容纳空间形成所述维持负压的方式,能够按摩使用者的乳房,以使使用者的乳房皮肤和乳腺组织进一步被放松。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器提供一清洗装置,所述清洗装置能够清洗一细长的连接管,例如吸奶器的连接管或者奶瓶的连接管。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述清洗装置能够通过使流体进入所述连接管的内部的方式,清洗依附于所述连接管的内壁的灰尘、细菌、奶渍等污染物。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述清洗装置能够通过使流体在所述连接管的内部流动的方式,冲刷所述连接管的内壁,从而清洗依附于所述连接管的内壁的灰尘、细菌、奶渍等污染物。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述清洗装置能够使流体不会残留在所述连接管的内部,从而保证所述连接管的卫生性。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述清洗装置能够通过使进入所述连接管的内部的流体的流速产生快慢交替变化的方式,有效地清洗依附于所述连接管的内壁的灰尘、细菌、奶渍等污染物。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述清洗装置包括一清洗本体以及一真空发生器,所述清洗本体具有一进流口以及一出流口,所述真空发生器连通于所述清洗本体的所述进流口和所述出流口,并且所述真空发生器能够使流体自所述清洗本体的所述进流口进入和自所述清洗本体的所述出流口排出,所述连接管可以被连通所述清洗本体的所述进流口或所述出流口,以在所述真空发生器使流体自所述清洗本体的所述进流口进入和自所述清洗本体的所述出流口排出时,对所述连接管的内部进行清洗。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述清洗装置包括一压力释放器,其中所述压力释放器连通于所述清洗本体和所述真空发生器形成的一流体通路,当所述真空发生器使流体自所述清洗本体的所述进流口进入所述流体通路时,所述压力释放器使流体在所述流体通路内的流体产生快慢交替的变化。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中流体也可以进入所述压力释放器,以清洗所述压力释放器的内部空间。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述清洗装置包括一电力供应元件,所述真空发生器被电连接于所述电力供应元件,以使所述电力供应元件向所述真空发生器供应电力。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述压力释放器也可以被电连接于所述电力供应元件,以使所述电力供应元件向所述压力释放器供应电力。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述清洗装置包括一壳体,其中所述清洗本体、所述真空发生器、所述压力释放器和所述电力供应元件可以被设置于所述壳体,以形成一体式结构。另外,所述清洗本体也可以形成所述壳体。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中至少一乳房容纳装置被连通于所述流体通路,以形成所述吸奶器,其中所述真空发生器使每个所述乳房容纳装置的容纳空间形成负压环境,以将母乳从被容纳于所述容纳空间的乳房内排出体外。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器包括一盛奶器,所述盛奶器被设置连通于所述乳房容纳装置的所述容纳空间,以将母乳自所述乳房容纳装置的容纳空间导流至所述盛奶器。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器包括一支撑架,所述乳房容纳装置、所述盛奶器和所述清洗装置分别被设置于所述支撑架,以使所述吸奶器便于携带和使用。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器提供一乳房护理装置,所述乳房护理装置能够同时按摩乳房和刺激与乳腺组织相关联的穴位,以提高按摩效果。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房护理装置能够同时刺激与乳腺组织相关联的两个以上的穴位,以进一步提高按摩效果。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房护理装置便于使用和携带,以使所述乳房护理装置使用方便,从而能够被使用者长期坚持使用,从而有利于保证使用者的乳房健康。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房护理装置提供至少一乳房容纳构件,其中所述乳房容纳构件能够被预热,以在所述乳房容纳构件与乳房的乳房皮肤接触时,所述乳房容纳构件的温度和乳房的乳房皮肤的温度一致,从而提高所述乳房护理装置被使用时的舒适性。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房护理装置在被使用时,所述乳房容纳构件能够持续地发热,以进一步提高所述乳房护理装置在被使用时的舒适性,并且所述乳房护理装置特别适于在气温较低的条件下被使用。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房容纳构件包括一容纳主体以及一发热元件,所述容纳主体具有一容纳空间以供容纳乳房,所述发热元件被设置于所述容纳主体,以在所述发热元件产生热量时,使所述容纳主体发热和使所述容 纳空间的温度升高。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述发热元件没有位于所述容纳空间,从而使用者在使用所述乳房护理装置时,所述发热元件产生的热量需要通过所述容纳主体后作用于乳房的乳房皮肤,从而避免所述发热元件烫伤乳房等不良现象的出现,以保证所述乳房护理装置的安全性和可靠性。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述容乳房容纳构件提供一温度维持部,所述温度维持部被设置于所述容纳主体,并且所述温度维持部能够使所述乳房容纳构件的温度被维持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中在所述乳房容纳构件被所述发热元件产生的热量预热后,仅需要供应较少的电力至所述发热元件就能够使所述乳房容纳构件的温度被保持在适宜温度范围,从而减少对电力的消耗和提高所述乳房护理装置的续航能力。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述发热元件具有一内侧和对应于所述内侧的一外侧,其中所述温度维持部位于所述发热元件的外侧,以使所述发热元件产生的热量只能够辐射至所述容纳主体的内侧部和辐射至所述容纳空间,所述乳房护理装置通过所述温度维持部阻止所述发热元件产生的热量辐射至所述容纳主体的外侧部和外部环境的方式,使所述发热元件产生的热量被高效率地利用,从而能够使所述乳房容纳构件被快速地预热和在消耗更少的电力的情况下使所述乳房容纳构件的温度被保持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房护理装置提供一护理本体,所述乳房容纳构件被设置于所述护理本体,其中所述护理本体提供一电力供应部,以藉由所述电力供应部供应电力至所述发热元件而产生热量。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述护理本体进一步提供一驱动部,其中所述驱动部被电连接于所述电力供应部,以藉由所述电力供应部供应电力至所述驱动部而提供振动,该振动被阐述至所述容纳主体以通过使所述容纳主体产生振动的方式按摩乳房。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述振动部也可以被设置于所述容纳主体,以在所述电力供应部供应电力至所述驱动部时,所述驱动部产生振动以按摩乳房。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用置,其中所述乳房容纳构 件被可拆卸地设置于所述护理本体,通过这样的方式,使用者可以选择合适尺寸的所述乳房容纳构件。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房容纳构件被可拆卸地设置于所述护理本体,通过这样的方式,当所述乳房容纳构件和所述护理本体中的任何一个损坏时,仅需更换损坏的一个即可,从而降低所述乳房护理装置的使用成本。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房护理装置提供至少一电极构件,其中所述电极构件被连接于所述护理本体的一低频脉冲部,其中所述低频脉冲部产生的低频脉冲能够通过所述电极构件的正极端和负极端作用于与乳腺组织相关联的穴位。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器提供一负压按摩装置,所述负压按摩装置能够在一按摩负压状态和一维持负压状态之间切换,以对人体组织的局部位置进行按摩。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压按摩装置提供一负压发生单元和一按摩单元,所述按摩单元被连接于所述负压发生单元,其中所述负压发生单元使所述按摩单元的一按摩空间内交替形成一按摩负压和一维持负压,从而使所述负压按摩装置在所述按摩负压状态和所述维持负压状态之间来回切换。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压按摩装置在被使用时,所述按摩空间内始终形成负压环境,通过这样的方式,能够缓解所述负压按摩装置在被使用时对人体组织造成的紧张感,以提高所述负压按摩装置的舒适性。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压发生单元提供一负压发生器,其中所述负压发生器能够使所述按摩空间交替形成所述按摩负压和所述维持负压。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压发生单元提供一负压发生器和一压力释放器,其中所述负压发生器和所述压力释放器相互连接以形成一通气路,所述按摩空间连通于所述通气路。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压发生器能够使所述按摩空间内持续地形成负压环境,所述压力释放器通过在一开启状态和一关闭状态来回切换的方式使所述按摩空间内交替形成所述按摩负压和所述维持负压。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压按摩装置提供一振动单元,以对人体组织进行按摩。例如当所述按摩空间形成负压环境并作用于人体 组织的局部位置时,所述振动单元能够提供振动并同时作用于人体组织的该位置,以增强对人体组织的按摩效果。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压按摩装置提供一低频脉冲单元,以对人体组织进行按摩或者对相应穴位进行刺激,从而增强对人体组织的按摩效果。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述按摩单元在与人体组织接触之前能够被预热,以提高所述负压按摩装置在被使用时的舒适性,并且通过这样的方式,所述负压按摩装置特别适于在天气较冷的条件下被使用。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中在所述负压按摩装置被使用时,所述按摩单元和所述按摩空间的温度能够被保持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述按摩单元提供一按摩主体和一热量供应主体,所述按摩主体提供所述按摩空间,所述热量供应主体和所述按摩主体相互连接,以藉由所述热量供应主体加热所述按摩主体和使所述按摩主体以及所述按摩空间的温度被保持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述按摩主体隔离所述热量供应主体和人体组织,以在所述负压按摩装置被使用时,避免所述热量供应主体和人体组织直接接触,这样,能够避免人体组织被所述热量供应主体伤害。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述热量供应主体提供一加热元件,其中所述加热元件被设置加热所述按摩主体和使所述按摩主体以及所述按摩空间的温度被保持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述加热元件被设置于所述按摩主体,当所述加热元件被供应电力时,所述加热元件能够加热所述按摩主体和使所述按摩主体以及所述按摩空间的温度被保持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述按摩主体提供一均热空间,所述加热元件通过向所述均热空间提供温度较高的流体的方式,加热所述按摩主体和使所述按摩主体以及所述按摩空间的温度被保持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述热量供应主体提供一温度维持部,其中所述温度维持部被保持在所述加热元件的外部,以通过阻止所述加热元件产生的热量通过所述温度维持部辐射至外部环境的方式,使所述按摩主体和所述按摩空间的温度被保持在适宜温度范围。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压按摩装置特别适于按摩乳房的乳腺组织。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压按摩装置能够将母乳从乳房中排出。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述所述吸奶器为一排奶器,所述排奶器提供一乳房容纳装置,所述乳房容纳装置提供一柔性的排奶单元,所述排奶单元具有一排奶空间,当乳房被容纳于所述排奶空间时,所述排奶单元能够产生变形,以模拟婴儿的吮吸动作,从而将母乳从乳房中排出。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述排奶单元每次的变形方向被可控,以更好地模拟婴儿的吮吸动作,从而将母乳从乳房中排出。也就是说,所述排奶单元每次都可以向同一个方向产生变形。优选地,所述排奶单元每次的变形幅度一致。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述排奶单元每次的变形位置被可控,以更好地模拟婴儿的吮吸动作,从而将母乳从乳房中排出。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述排奶单元呈椭圆形,以使所述排奶单元每次的变形方向被可控。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述排奶单元提供一排奶部,所述排奶部提供至少一成型部和两变形引导部,其中每个所述变形引导部相互对称,以引导所述排奶单元的变形方向,从而使两个所述成型部做相对运动,或者使所述成型部的上部和下部做相对运动,以模拟婴儿的吮吸动作。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中位于上部的所述成型部是一上成型部,位于下部的所述成型部是一下成型部,其中所述下成型部的变形幅度可以大于所述上成型部的变形幅度,以更好地模拟婴儿的吮吸动作。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳房容纳装置提供一加热单元,所述加热单元能够预热所述乳房容纳装置,通过这样的方式,不仅能够提高所述乳房容纳装置的舒适性,而且还能够使所述排奶器特别适于在气温较低的条件下被使用。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述加热单元提供一加热部,所述加热部被设置于所述排奶单元,以加热所述排奶单元和所述排奶单元形成的所述排奶空间。例如所述加热部可以形成于所述排奶单元的内部或者所述加热部重叠地设置 于所述排奶单元的外壁。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,当乳房被容纳于所述排奶单元的所述排奶空间时,所述排奶单元用于隔离所述加热部和乳房的乳房皮肤,从而避免所述加热部因温度过高而对乳房的乳房皮肤和乳腺组织造成不良刺激,以提高所述乳房容纳装置在被使用时的可靠性和稳定性。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述加热部也可以形成一加热空间,所述排奶单元被保持在所述加热空间,从而当所述加热部产生热量时,所述排奶单元和所述排奶单元的所述排奶空间均被加热。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述加热单元提供一温度维持部,所述温度维持部被保持在所述加热部的外壁,以阻止所述加热部产生的温度通过所述温度维持部被辐射至外部环境,从而提高所述加热部产生的热量的利用率,并且有利于节省被供应至所述加热部的电力,进而提高所述排奶器的续航能力。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述排奶器提供一排奶装置,其中所述排奶装置提供一负压发生器,所述负压发生器形成一通气路,所述排奶单元被设置所述排奶装置,以使所述排奶空间连通于所述通气路,所述负压发生器通过使所述通气路形成负压环境的方式使所述排奶空间形成负压环境,从而使所述排奶单元产生变形以模拟婴儿的吮吸动作。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述负压发生器被实施为一真空发生器,以使所述排奶单元的所述排奶空间形成负压环境,从而使所述排奶单元产生变形以模拟婴儿的吮吸动作。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述排奶装置提供一压力释放器,所述压力释放器被连接于所述负压发生器,以形成所述通气路,其中当所述负压发生器使所述通气路形成负压环境时,所述压力释放器通过在开启状态和关闭状态切换的方式使所述排奶空间产生一挤奶负压和一维持负压。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中当所述排奶空间内形成所述挤奶负压时,所述排奶单元能够将母乳从乳房中排出,当所述排奶空间内形成所述维持负压时,能够使所述乳房容纳装置被保持在乳房的维持,通过这样的方式,会提高所述排奶器在被使用时的舒适性。也就是说,一旦所述排奶器被使用,所述排奶空间内始终是负压环境,以提高所述排奶器在被使用时的舒适性。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述排奶装置提供 一供电单元,其中所述负压发生器和所述压力释放器均被电连接于所述供电单元。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述加热部也可以被电连接于所述供电单元,以在所述供电单元提供电力至所述加热部时产生热量。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述排奶装置提供一泄压阀,所述泄压阀连通于所述通气路,其中通过所述泄压阀能够快速地使所述排奶空间恢复常压。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述吸奶器提供一乳头矫正装置,所述乳头矫正装置具有一通气路,其中所述通气路形成一矫正端,一待矫正乳头对应于所述矫正端,以在所述通气路内产生负压环境时,所述待矫正乳头被提拉到所述矫正端,从而矫正所述待矫正乳头。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳头矫正装置在被使用时,当所述待矫正乳头被提拉到所述矫正端之后会始终被保持在所述矫正端,通过这样的方式,能够有效地提高矫正效果。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳头矫正装置在被使用时,所述通气路内始终处于负压状态,通过这样的方式,不仅让使用者在使用所述乳头矫正装置矫正所述待矫正乳头时感觉舒适,而且能够提高所述乳头矫正装置在被使用时的安全性和可靠性。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳头矫正装置提供一真空发生器、一压力释放器以及一圆筒状的矫正器,所述矫正器被设置于所述真空发生器,以藉由所述真空发生器和所述矫正器形成所述通气路,其中所述矫正器形成所述矫正端,所述压力释放器连通于所述通气路,并且所述压力释放器使所述通气路的负压产生大小交替变化。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述矫正器一体地形成于所述真空发生器。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述矫正器被可拆卸地设置于所述真空发生器,以让使用者能够根据需要选择不同尺寸的所述矫正器。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述矫正器被可拆卸地设置于所述真空发生器,从而在使用者使用所述乳头矫正装置之前和之后,都可以对所述矫正器进行清洗,以保证所述乳头矫正装置的卫生性。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述真空发生器能 够使所述通气路内产生负压,所述压力释放器能够使所述通气路内交替产生一矫正负压和一维持负压,其中当所述通气路内产生所述矫正负压时提拉所述待矫正乳头和当所述通气路内产生所述维持负压时防止被提拉到所述矫正端的所述待矫正乳头缩回,通过这样的方式,能够有效地提高矫正效果。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述矫正器形成一保持部,当所述待矫正乳头被提拉到所述矫正端之后能够通过被卡在所述保持部的方式,使所述待矫正乳头在被矫正的过程中一直保持在所述矫正端,从而有利于提高矫正效果。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述保持部呈台阶状,并且所述保持部优选为环绕所述矫正器的一周,以使所述保持部能够在所述待矫正乳头的一周卡住所述待矫正乳头,从而提高所述乳头矫正装置的舒适性。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述矫正器的内壁倾斜地自所述矫正器的自由端向安装端延伸,以利于所述待矫正乳头被提拉到所述保持部而被保持在所述矫正端。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述矫正器的安装端形成所述保持部,或者所述矫正器的内部形成所述保持部。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述矫正器具有一第一内壁、一第二内壁以及一第三内壁,其中所述第一内壁自所述矫正器的自由端向安装端方向延伸,所述第三内壁自所述矫正器的安装端向自由端方向延伸,所述第二内壁连接于所述第一内壁和所述第三内壁,并且所述第二内壁和所述第一内壁与所述第三内壁分别具有夹角。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述第一内壁和所述第二内壁的夹角为锐角,以利于所述待矫正乳头被提拉到所述保持部而被保持在所述矫正端。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述第一内壁和所述第二内壁的连接位置呈圆滑状,从而不仅有利于所述待矫正乳头被提拉到所述保持部而且还有利于所述待矫正乳头从所述保持部脱离,并且在这两个过程中均不会对所述待矫正乳头造成任何伤害。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳头矫正装置提供一供电元件,所述真空发生器和所述压力释放器均被电连接于所述供电元件。
本发明的一个目的在于提供一吸奶器和乳房护理装置及其应用,其中所述乳头矫正装置 提供一泄压阀,以连通于所述通气路,其中所述乳头矫正装置在被使用时,能够通过所述泄压阀快速地使所述通气路内恢复常压,以避免所述通气路内的负压过大而对所述待矫正乳头造成伤害,从而提高所述乳头矫正装置在被使用时的安全性和可靠性。
依本发明的一个方面,本发明提供一吸奶器,其包括:
一吸奶器主体;
至少一乳房容纳装置,其中所述乳房容纳装置具有一容纳空间和一吸奶通道,其中所述乳房容纳装置被连接于所述吸奶器主体,并且所述吸奶通道连通所述容纳空间和所述吸奶器主体,以藉由所述吸奶器主体通过所述吸奶通道使所述容纳空间形成负压环形;以及
一维持装置,其中所述乳房容纳装置被连接于所述维持装置,其中所述维持装置被设置使所述乳房容纳装置的温度被保持在适宜温度范围。
根据本发明的一个实施例,所述维持装置包括至少一发热元件,所述发热元件被设置于所述乳房容纳装置,并且所述发热元件环绕在所述容纳空间的四周,其中当所述发热元件被供应电力时产生热量,以加热所述乳房容纳装置和使所述乳房容纳装置的温度被保持在适宜温度范围。
根据本发明的一个实施例,所述乳房容纳装置包括一内侧部和一外侧部,所述发热元件被设置在相互重叠的所述内侧部和所述外侧部之间,其中所述乳房容纳装置的所述内侧部形成所述吸奶通道和所述容纳空间。
根据本发明的一个实施例,所述乳房容纳装置包括一内侧部和一外侧部,所述发热元件一体地形成在相互重叠的所述内侧部和所述外侧部之间,其中所述乳房容纳装置的所述内侧部形成所述吸奶通道和所述容纳空间。
根据本发明的一个实施例,所述维持装置包括至少一温度维持元件,其中所述温度维持元件被保持在所述加热元件的外侧。
根据本发明的一个实施例,所述温度维持元件被设置于所述加热元件和所述外侧部之间,或者所述温度维持元件形成于所述加热元件和所述外侧部之间,以使所述温度维持元件被保持在所述加热元件的外侧。
根据本发明的一个实施例,所述吸奶器进一步包括一电力供应装置,其中所述发热元件被电连接于所述电力供应装置。
根据本发明的一个实施例,所述吸奶器进一步包括一导电装置,其中所述导电装置包括一第一导电构件和一第二导电构件,其中所述第一导电构件被电连接于所述电力供应装置,所述第二导电构件被电连接于所述加热元件,其中所述第二导电构件得以被电连接于所述第 一导电构件,以导通所述电力供应装置和所述发热元件。
根据本发明的一个实施例,所述第一导电构件和所述第二导电构件均是导电片;或者所述第一导电构件和所述第二导电构件均是导电触点;或者所述第一导电构件和所述第二导电构件中的一个导电构件时导电片,另一个导电构件时导电触点。
根据本发明的一个实施例,所述吸奶器主体包括一盛奶器和一负压发生组件,其中所述盛奶器具有一盛奶空间、至少一进奶口以及一负压发生通道,所述进奶口和所述负压发生通道分别连通于所述盛奶空间,其中所述负压发生组件连通于所述盛奶器的所述负压发生通道,所述乳房容纳装置被安装于所述吸奶器主体的所述盛奶器,以使所述乳房容纳装置的所述吸奶通道连通于所述盛奶器的所述进奶口,其中所述负压发生组件使所述乳房容纳装置的所述容纳空间内形成负压环境。
根据本发明的一个实施例,所述负压发生组件被电连接于所述电力供应装置。
根据本发明的一个实施例,所述吸奶器进一步包括一壳体,其中所述负压发生组件和所述电力供应装置分别被设置于所述壳体,其中所述第一导电构件被设置于所述壳体,且所述第一导电构件的至少一部分裸露于所述壳体的表面,所述第二导电构件被设置于所述乳房容纳装置,且所述第二导电构件的至少一部分裸露于所述乳房容纳装置的表面,其中当所述壳体安装于所述吸奶器主体的所述盛奶器时,所述第一导电构件和所述第二导电构件相互接触而被导通。
根据本发明的一个实施例,所述乳房容纳装置具有一均热空间、至少一第一交换通道以及至少一第二交换通道,所述第一交换通道和所述第二交换通道分别连通于所述均热空间,其中所述维持装置包括一容器和一加热元件,所述容器具有一发热空间,以供容纳流体,所述加热元件被设置于所述容器,其中所述第一交换通道连通于所述发热空间,其中当所述加热元件被供应电力而通过加热所述发热空间内的流体的方式使流体的温度升高,,温度被升高的流体通过所述第一交换通道进入所述均热空间,以在温度被升高的流体在所述均热空间释放热量时加热所述乳房容纳装置,其中释放热量后的流体通过所述第二交换通道被排出所述均热空间。
根据本发明的一个实施例,所述第二交换通道连通于所述发热空间,以使释放热量后的流体通过所述第二交换通道被回收至所述发热空间。
根据本发明的一个实施例,所述乳房容纳装置包括一均热元件,所述均热元件环绕在所述容纳空间的四周,其中所述维持装置包括一发热元件,所述均热元件被可导热地连接于所述发热元件,其中当所述发热元件被供应电力而产生热量时,热量被传导至所述均热元件, 以加热所述乳房容纳装置和使所述乳房容纳装置的温度被保持在适宜温度范围。
根据本发明的一个实施例,所述维持装置包括至少一热量传导元件,其中所述热量传导元件被可导热地连接于所述均热元件和所述发热元件。
依本发明的另一个方面,本发明进一步提供一使一吸奶器的乳房容纳装置发热的方法,其中所述发热方法包括如下步骤:
供应电力至被设置于所述乳房容纳装置的一发热元件,以使所述发热元件产生热量而加热所述乳房容纳装置;和
阻止所述发热元件产生的热量辐射至所述乳房容纳装置的外部环境,以使所述乳房容纳装置的温度被保持在适宜温度范围。
根据本发明的一个实施例,在所述步骤(b)中,在所述发热元件的外侧设置一温度维持元件,以藉由所述温度维持元件阻止所述发热元件产生的热量辐射至所述乳房容纳装置的外部环境,从而使所述乳房容纳装置的温度被保持在适宜温度范围。
根据本发明的一个实施例,在所述步骤(b)中,在所述发热元件的外侧形成一温度维持元件,以藉由所述温度维持元件阻止所述发热元件产生的热量辐射至所述乳房容纳装置的外部环境,从而使所述乳房容纳装置的温度被保持在适宜温度范围。
根据本发明的一个实施例,在所述步骤(a)中,使所述发热元件被设置在相互重叠的所述乳房容纳装置的外侧部和内侧部之间,且使所述发热元件环绕在所述乳房容纳装置的内侧部,其中所述发热元件产生的热量能够在四周同时且同幅度地加热所述乳房容纳装置。
依本发明的另一个方面,本发明进一步提供一吸奶方法,其中所述吸奶方法包括如下步骤:
在一乳房被容纳于一乳房容纳装置的一容纳空间时,通过一吸奶器主体使所述容纳空间形成一吸附负压以将母乳从乳房中排出体外;和
通过所述吸奶器主体使所述容纳空间形成一维持负压以使所述乳房容纳装置被保持在所述乳房,其中所述吸附负压的数值大于所述维持负压的数值,并且所述吸附负压和所述维持负压交替形成。
依本发明的另一个方面,本发明进一步提供一吸奶方法,其中所述吸奶方法包括如下步骤:
(i)预热一乳房容纳装置和使所述乳房容纳装置的温度被维持在适宜温度范围;
(ii)使一乳房被保持在所述乳房容纳装置的一容纳空间;以及
(iii)通过被连接于所述乳房容纳装置的一吸奶器主体使所述容纳空间内形成负压环 境,以将母乳从乳房中排出体外。
根据本发明的一个实施例,在所述步骤(ii)中,使所述乳房容纳装置的内侧部贴合于所述乳房的乳房皮肤,以使所述乳房容纳装置直接将热量传导至所述乳房的乳房皮肤,从而在所述步骤(iii)中,在吸出积聚在所述乳房的乳腺组织中的母乳的同时,放松所述乳房的乳房皮肤和乳腺组织。
根据本发明的一个实施例,在所述步骤(iii)中,所述吸奶器主体使所述容纳空间形成一吸附负压以吸出积聚在所述乳房的乳腺组织中的母乳,和使所述容纳空间形成一维持负压以使所述乳房容纳装置被保持在所述乳房,其中所述吸附负压的数值大于所述维持负压的数值,并且所述吸附负压和所述维持负压交替形成。
依本发明的另一个方面,本发明进一步提供一吸奶器,其包括:
一吸奶器主体;和
至少一乳房容纳装置,其中每个所述乳房容纳装置分别具有一容纳空间和一吸奶通道,所述吸奶通道连通于所述容纳空间,所述容纳空间供容纳一乳房,其中每个所述乳房容纳装置分别被设置于所述吸奶器主体,以使所述容纳空间通过所述吸奶通道连通于所述吸奶器主体,其中所述吸奶器主体被设置使所述容纳空间形成一吸附负压以将母乳从乳房中排出体外,和使所述容纳空间形成一维持负压以使所述乳房容纳装置被保持在所述乳房的位置,其中所述吸附负压的数值大于所述维持负压的数值,并且所述吸附负压和所述维持负压交替形成于所述容纳空间。
根据本发明的一个实施例,所述吸奶器主体包括一盛奶器和一真空发生器,其中所述盛奶器具有一盛奶空间、至少一进奶口以及一负压发生通道,每个所述进奶口和所述负压发生通道分别连通于所述盛奶空间,其中所述真空发生器连通于所述盛奶器的所述负压发生通道,每个所述乳房容纳装置分别被安装于所述吸奶器主体的所述盛奶器,以使每个所述乳房容纳装置的所述吸奶通道分别连通于所述盛奶器的每个所述进奶口,其中所述真空发生器在被供应电力时使每个所述乳房容纳装置的所述容纳空间交替形成所述吸附负压和所述维持负压。
根据本发明的一个实施例,所述吸奶器进一步包括一维持装置,其中所述维持装置包括至少一发热元件,每个所述发热元件分别被设置于每个所述乳房容纳装置,以使所述发热元件环绕在所述容纳空间的四周,其中当所述发热元件被供应电力时产生热量,以加热所述乳房容纳装置和使所述乳房容纳装置的温度被保持在适宜温度范围。
根据本发明的一个实施例,所述维持装置包括至少一温度维持元件,其中所述温度维持 元件被重叠地设置于所述乳房容纳装置,或者所述温度维持元件形成于所述乳房容纳装置,以阻止所述发热元件产生的热量被辐射至所述乳房容纳装置的外部环境。
根据本发明的一个实施例,所述吸奶器进一步包括一电力供应装置,其中每个所述发热元件和所述真空发生器分别被电连接于所述电力供应装置,以使所述电力供应装置分别向每个所述发热元件和所述真空发生器供电。
根据本发明的一个实施例,所述吸奶器进一步包括一导电装置,其中所述导电装置包括一第一导电构件和一第二导电构件,其中所述第一导电构件被电连接于所述电力供应装置,所述第二导电构件被电连接于所述加热元件,其中所述第二导电构件得以被电连接于所述第一导电构件,以导通所述电力供应装置和所述发热元件。
根据本发明的一个实施例,所述吸奶器进一步包括一壳体,其中所述真空发生器和所述电力供应装置分别被设置于所述壳体,其中所述第一导电构件被设置于所述壳体,且所述第一导电构件的至少一部分裸露于所述壳体的表面,所述第二导电构件被设置于所述乳房容纳装置,且所述第二导电构件的至少一部分裸露于所述乳房容纳装置的表面,其中当所述壳体安装于所述吸奶器主体的所述盛奶器时,所述第一导电构件和所述第二导电构件相互接触而被导通。
依本发明的另一个方面,本发明提供一乳房护理装置,其包括:
一护理本体;和
一乳房容纳构件,其中所述乳房容纳构件被设置于所述护理本体,其中所述乳房容纳构件包括一发热元件和一容纳主体以及具有一容纳空间,其中所述容纳主体进一步包括一内侧部和被重叠地安装于所述内侧部的外侧的一外侧部,所述发热元件被设置在所述内侧部和所述外侧部之间,并且所述容纳主体的所述内侧部形成所述容纳主体的所述容纳空间。
根据本发明的一个实施例,所述乳房容纳构件的所述容纳主体的所述内侧部和所述外侧部通过卡合或者粘合的方式被安装在一起,以使所述发热元件被设置在所述内侧部和所述外侧部之间。
根据本发明的一个实施例,所述乳房容纳构件进一步包括一温度维持部,其中所述温度维持部位于所述发热元件的外侧。
根据本发明的一个实施例,所述乳房容纳构件进一步包括一温度维持部,其中所述温度维持部位于所述发热元件的外侧。
根据本发明的一个实施例,所述温度维持部被保持在所述发热元件和所述容纳主体的所述外侧部之间,以使所述温度维持部位于所述发热元件的外侧。
根据本发明的一个实施例,所述护理本体包括一壳体和被设置于所述壳体的一电力供应部,其中所述乳房容纳构件的所述容纳主体被可拆卸地安装于所述壳体,和所述乳房容纳构件的所述发热元件被电连接于所述电力供应部。
根据本发明的一个实施例,所述乳房护理装置进一步包括一导电构件,其中所述导电构件包括一第一导电部和一第二导电部,所述第一导电部被连接于所述护理本体的所述电力供应部,所述第二导电部被连接于所述乳房容纳构件的所述发热元件,其中在所述乳房容纳构件的所述容纳主体被安装于所述护理本体的所述壳体时,所述第二导电部被自动地导通所述第一导电部。
根据本发明的一个实施例,所述乳房护理装置进一步包括至少一电极构件,其中所述电极构件包括两连接线、一正极端以及一负极端,所述正极端和所述负极端分别被设置于每个所述连接线的自由端,并且所述正极端和所述负极端分别贴附于与乳房的乳腺组织相关联的穴位,其中所述护理本体包括一低频脉冲部,所述低频脉冲部被设置于所述壳体,并且所述低频脉冲部被电连接于所述电力供应部,所述电极构件的每个所述连接线分别被连接于所述低频脉冲部,其中所述低频脉冲部在被供应电力时产生低频脉冲,以通过所述电极构件的所述正极端和所述负极端作用于穴位。
依本发明的另一个方面,本发明进一步提供一乳房护理装置,其包括:
一护理本体;和
一乳房容纳构件,其中所述乳房容纳构件被设置于所述护理本体,其中所述乳房容纳构件进一步包括:
一发热元件;
一温度维持部;以及
一容纳主体,其中所述容纳主体包括一内侧部,所述内侧部形成所述乳房容纳构件的一容纳空间,其中所述发热元件位于所述内侧部的外侧,所述温度维持部位于所述发热元件的外侧,以使所述发热元件被保持在所述内侧部和所述温度维持部之间。
根据本发明的一个实施例,所述温度维持部形成于所述发热元件的外侧;或者所述温度维持部被设置于所述发热元件的外侧。
依本发明的另一个方面,本发明提供一清洗装置,以供清洗一连接管,其中所述清洗装置包括:
一真空发生器;和
一清洗本体,其中所述清洗本体包括一进流端和一出流端,所述进流端具有一进流口, 所述出流端具有一出流口,其中所述真空发生器被连接于所述清洗本体的所述进流端和所述出流端,以形成一流体通路,其中所述进流端的所述进流口和所述出流端的所述出流口分别在所述流体通路的两个端部连通于所述流体通路;
其中,所述连接管的一个端部被安装于所述清洗本体的所述进流端或所述出流端,以使所述连接管自所述流体通路的所述进流口或所述出流口连通于所述流体通路,其中所述真空发生器使所述流体通路内产生负压环境,以使流体自所述连接管的一个端部进入所述连接管的内部空间和自所述连接管的另一个端部排出所述连接管的内部空间,从而清洗所述连接管。
根据本发明的一个实施例,所述清洗装置进一步包括一压力释放器,其中所述压力释放器被设置间歇性地连通所述流体通路和所述清洗装置的外部环境,其中在所述真空发生器处于持续的工作状态时,所述压力释放器使所述流体通路内交替产生一第一负压和一第二负压,其中所述第一负压的数值和所述第二负压的数值均大于0,且所述第一负压的数值大于所述第二负压的数值。
根据本发明的一个实施例,所述压力释放器具有一进气口和一出气口,所述压力释放器的所述进气口连通于所述流体通路的所述进流口,所述压力释放器的所述出气口连通于所述清洗装置的外部环境。
根据本发明的一个实施例,所述压力释放器具有一进气口和一出气口,所述压力释放器的所述进气口连通于所述流体通路的所述出流口,所述压力释放器的所述出气口连通于所述清洗装置的外部环境。
根据本发明的一个实施例,所述压力释放器具有一进气口和一出气口,所述压力释放器的所述进气口连通于所述流体通路的所述进流口,所述压力释放器的所述出气口连通于所述流体通路的所述出流口。
根据本发明的一个实施例,所述压力释放器是电磁阀。
根据本发明的一个实施例,所述清洗装置进一步包括一电力供应元件,其中所述真空发生器被电连接于所述电力供应元件。
根据本发明的一个实施例,所述清洗装置进一步包括一电力供应元件,其中所述压力释放器被电连接于所述电力供应元件。
根据本发明的一个实施例,所述真空发生器被电连接于所述电力供应元件。
根据本发明的一个实施例,所述清洗装置进一步包括一壳体,其中所述清洗本体、所述真空发生器、所述压力释放器和所述电力供应元件均被设置于所述壳体。
根据本发明的一个实施例,所述清洗本体的所述进流端和所述出流端均突出于所述壳体。
依本发明的另一个方面,本发明进一步提供一带有清洗装置的吸奶器,其包括:
至少一乳房容纳装置,其中所述乳房容纳装置具有一容纳空间,以供容纳一乳房;和
一清洗装置,其中所述清洗装置形成一流体通路和分别连通于所述流体通路的两个端部的一进流口以及一出流口,其中所述乳房容纳装置的所述容纳空间通过所述清洗装置的所述进流口连通于所述流体通路,所述清洗装置的所述出流口连通于所述吸奶器的外部环境,其中所述容纳空间内与所述流体通路内同步地形成负压环境,以将母乳从乳房中排出体外。
根据本发明的一个实施例,所述清洗装置进一步包括一真空发生器和一清洗本体,所述清洗本体包括一进流端和一出流端,所述进流端具有所述进流口,所述出流端具有所述出流口,其中所述真空发生器被连接于所述清洗本体的所述进流端和所述出流端,以形成所述流体通路,其中所述真空发生器使所述流体通路内形成负压环境。
根据本发明的一个实施例,所述清洗装置包括一压力释放器,所述压力释放器被设置间歇性地连通所述流体通路和所述清洗装置的外部环境,其中在所述真空发生器处于持续的工作状态时,所述压力释放器使所述流体通路内交替产生一第一负压和一第二负压,其中所述第一负压的数值和所述第二负压的数值均大于0,且所述第一负压的数值大于所述第二负压的数值。
根据本发明的一个实施例,所述的吸奶器,进一步包括一盛奶器,其中所述盛奶器具有一盛奶空间和连通于所述盛奶空间的一开口,其中所述乳房容纳装置的所述容纳空间和所述流体通路的所述进流口分别通过所述开口连通于所述盛奶空间。
根据本发明的一个实施例,所述吸奶器进一步包括一支撑架,其中所述支撑架具有一第一通道和一第二通道,其中所述盛奶器和所述清洗装置分别被安装于所述支撑架,以使所述第一通道连通于所述盛奶器的所述盛奶空间和所述流体通路的所述进流口,其中所述乳房容纳装置被安装于所述支撑架,以使所述第二通道连通于所述盛奶器的所述盛奶空间和所述乳房容纳装置的所述容纳空间。
根据本发明的一个实施例,所述支撑架具有一第一安装位、一第二安装位以及一第三安装位,其中所述第一通道连通于所述第一安装位和所述第三安装位,所述第二通道连通于所述第二安装位和所述第三安装位,其中所述清洗装置被可分离地安装于所述第一安装位,所述乳房容纳装置被可分离地安装于所述第二安装位,所述盛奶器被可分离地安装于所述第三安装位。
依本发明的另一个方面,本发明进一步提供一通过一清洗装置清洗一连接管的方式,其中所述清洗方法包括如下步骤:
(a)使所述清洗装置的一真空发生器连通于一清洗本体的一进流口和一出流口,以形成一流体通路;
(b)将所述连接管的一个端部通过所述清洗本体的所述进流口或所述出流口连通于所述流体通路;以及
(c)通过所述真空发生器使所述流体通路产生负压环境,以使流体自所述连接管的一个端部进入所述连接管的内部空间和自所述连接管的另一个端部排出所述连接管的内部空间,从而清洗所述连接管。
根据本发明的一个实施例,在所述步骤(c)中,进一步通过所述清洗装置的一压力释放器使所述流体通路内交替产生一第一负压和一第二负压,以使流体在所述连接管的内部空间以快慢交替的方式冲刷所述连接管的内壁,其中所述第一负压的数值和所述第二负压的数值均大于0,且所述第一负压的数值大于所述第二负压的数值。
根据本发明的一个实施例,在上述方法中,使所述压力释放器的进气口连通于所述流体通路的所述出流口,和使所述压力释放器的出气口连通于所述流体通路的进液口,从而使流体流经所述压力释放器以同步地清洗所述压力释放器。
根据本发明的一个实施例,所述连接管的内径尺寸大小范围是1mm~10mm,所述连接管的长度尺寸大小范围是10mm~1000mm。
依本发明的另一个方面,本发明提供一乳房护理装置,其包括:
至少一乳房容纳构件,其中所述乳房容纳构件具有一容纳空间,以供容纳乳房;以及
一护理本体,其中所述护理本体进一步包括:
一壳体;
一电力供应部;以及
一驱动部,其中所述驱动部被电连接于所述电力供应部,并且所述驱动部和所述电力供应部分别被设置于所述壳体,所述乳房容纳构件被设置于所述护理本体的所述壳体,其中所述驱动部在被供应电力时产生振动,以带动所述乳房容纳构件同步地振动,从而按摩被容纳于所述乳房容纳构件的所述容纳空间的乳房。
根据本发明的一个实施例,所述乳房容纳构件包括一容纳主体和一发热元件,其中所述容纳主体形成所述容纳空间,所述发热元件被设置于所述容纳主体,并且所述发热元件被电连接于所述电力供应部,其中所述发热元件在被供应电力时产生热量,以加热所述容纳主体 和使所述容纳空间的温度升高。
根据本发明的一个实施例,所述容纳主体包括一内侧部和一外侧部,所述内侧部形成所述容纳空间,所述发热元件被保持在相互重叠的所述内侧部和所述外侧部之间,其中所述发热元件产生的热量能够加热所述内侧部和通过所述内侧部辐射至所述容纳空间,以使所述容纳空间的温度被升高。
根据本发明的一个实施例,所述乳房容纳构件包括一温度维持部,其中所述温度维持部被保持在所述发热元件和所述外侧部之间。
根据本发明的一个实施例,所述乳房护理装置进一步包括一导电构件,其中所述导电构件包括一第一导电元件和一第二导电元件,所述第一导电元件被电连接于所述电力供应部,所述第二导电元件被连接于所述发热元件,其中所述乳房容纳构件的所述容纳主体被可拆卸地安装于所述护理本体的所述壳体,其中当所述乳房容纳构件的所述容纳主体安装于所述护理本体的所述壳体时,所述第一导电元件和所述第二导电元件被导通地连接。
根据本发明的一个实施例,所述第一导电元件被设置于所述壳体,所述容纳主体设有一安装部,所述第二导电元件被设置于所述安装部,其中当所述容纳主体的所述安装部被安装于所述壳体时,所述第一导电元件和所述第二导电元件被导通地连接。
根据本发明的一个实施例,所述第一导电元件裸露于所述壳体的表面,所述第二导电元件裸露于所述安装部的表面,其中当所述容纳主体的所述安装部被安装于所述壳体时,所述第一导电元件和所述第二导电元件通过物理接触的方式被导通地连接。
根据本发明的一个实施例,所述第一导电元件和所述第二导电元件均是导电片;或者所述第一导电元件和所述第二导电元件具有是导电凸起;或者所述第一导电元件和所述第二导电元件中的一个导电元件是导电凸起,另一个导电元件是导电片。
根据本发明的一个实施例,所述壳体具有一安装空间,所述容纳主体设有一安装部,其中所述容纳主体的所述安装部被可拆卸地安装于所述壳体的所述安装空间。
根据本发明的一个实施例,所述容纳主体具有一安装空间,所述壳体设有一安装部,其中所述壳体的所述安装部被可拆卸地安装于所述容纳主体的所述安装空间。
根据本发明的一个实施例,所述乳房护理装置进一步包括一连接构件,其中所述连接构件包括一磁性的第一连接元件和一磁性的第二连接元件,所述壳体具有一安装空间,所述第一连接元件被设置于所述壳体且位于所述安装空间,其中所述容纳主体设有一安装部,所述第二连接元件被设置于所述安装部,其中当所述容纳主体的所述安装部被安装于所述壳体的所述安装空间时,所述第一连接元件和所述第二连接元件相互吸附以使所述容纳主体的所述 安装部被保持在所述壳体的所述安装空间。
根据本发明的一个实施例,所述第一连接元件和所述第二连接元件均是磁铁;或者所述第一连接元件和所述第二连接元件中的一个连接元件为磁铁,另一个连接元件为磁性元件。
根据本发明的一个实施例,所述乳房护理装置进一步包括至少一电极构件,其中所述电极构件包括两连接线、一正极端以及一负极端,所述正极端和所述负极端分别被设置于每个所述连接线的自由端,并且所述正极端和所述负极端分别贴附于与乳房的乳腺组织相关联的穴位,其中所述护理本体包括一低频脉冲部,所述低频脉冲部被设置于所述壳体,并且所述低频脉冲部被电连接于所述电力供应部,所述电极构件的每个所述连接线分别被连接于所述低频脉冲部,其中所述低频脉冲部在被供应电力时产生低频脉冲,以通过所述电极构件的所述正极端和所述负极端作用于穴位。
依本发明的另一个方面,本发明进一步提供一乳房护理装置,其包括:
至少一乳房容纳构件,其中所述乳房容纳构件具有一容纳空间,以供容纳乳房;
至少一电极构件,其中所述电极构件包括两连接线、一正极端以及一负极端,所述正极端和所述负极端分别被设置于每个所述连接线的自由端,并且所述正极端和所述负极端分别被贴附于与乳房的乳腺组织相关联的穴位;以及
一护理本体,其中所述乳房容纳构件被设置于所述护理本体,每个所述连接线的连接端分别被连接于所述护理本体,其中所述护理本体被设置使所述乳房容纳构件振动以按摩被容纳于所述容纳空间的乳房,并且所述护理本体被设置产生低频脉冲以通过所述电极构件的所述正极端和所述负极端作用于穴位。
根据本发明的一个实施例,所述护理本体包括一壳体、一电力供应部以及一驱动部,所述驱动部被电连接于所述电力供应部,并且所述驱动部和所述电力供应部分别被设置于所述壳体,其中所述乳房容纳构件被设置于所述壳体,其中所述驱动部在被供应电力时产生振动以带动所述乳房容纳构件同步地振动,从而按摩被容纳于所述乳房容纳构件的所述容纳空间的乳房。
根据本发明的一个实施例,所述护理本体包括一壳体、一电力供应部以及一驱动部,所述驱动部被电连接于所述电力供应部,所述电力供应部被设置于所述壳体,所述驱动部被设置于所述乳房容纳构件,其中所述乳房容纳构件被设置于所述壳体,其中所述驱动部在被供应电力时产生振动以带动所述乳房容纳构件同步地振动,从而按摩被容纳于所述乳房容纳构件的所述容纳空间的乳房。
根据本发明的一个实施例,所述护理本体包括一低频脉冲部,其中所述低频脉冲部被电 连接于所述电力供应部,并且所述电极构件的每个所述连接线的连接端被连接于所述低频脉冲部,其中所述低频脉冲部在被供应电力时产生低频脉冲以通过所述电极构件的所述正极端和所述负极端作用于穴位。
依本发明的另一个方面,本发明提供一负压按摩装置,其包括:
一按摩单元,其中所述按摩单元具有一按摩空间;和
一负压发生单元,其中所述负压发生单元被连接于所述按摩单元,其中所述负压发生单元被设置能够使所述按摩单元的所述按摩空间内交替形成一按摩负压和一维持负压,以按摩对应于所述按摩空间的人体组织,其中所述按摩负压的数值大于所述维持负压的数值。
根据本发明的一个实施例,所述负压发生单元包括一负压发生器和一压力释放器,所述负压发生器和所述压力释放器相互连通以形成一通气路,所述按摩单元的所述按摩空间连通于所述负压发生单元的所述通气路,其中所述负压发生器通过所述通气路使所述按摩空间内形成负压环境,所述压力是释放器通过在一开启状态和一关闭状态之间来回切换的方式使所述按摩空间内交替形成所述按摩负压和所述维持负压。
根据本发明的一个实施例,所述负压发生单元包括一泄压阀,其中所述泄压阀被可操作地连通于所述通气路,以通过所述泄压阀使所述按摩空间内恢复常压。
根据本发明的一个实施例,所述按摩单元包括一按摩主体和一热量供应主体,所述按摩主体具有所述按摩空间,所述热量供应主体被连接于所述按摩主体以加热所述按摩主体。
根据本发明的一个实施例,所述热量供应主体包括一加热元件,其中所述加热元件被设置于所述按摩主体,以在所述加热元件被供应电力时,所述加热元件加热所述按摩主体。
根据本发明的一个实施例,所述热量供应主体包括一温度维持部,其中所述温度维持部被保持在所述加热元件的外部,以阻止所述加热元件产生的热量通过所述温度维持部辐射至外部环境。
根据本发明的一个实施例,所述负压按摩装置进一步包括一供电单元,其中所述加热元件被电连接于所述供电单元,以在所述供电单元供应电力至所述加热元件时,所述加热元件产生热量,从而加热所述按摩主体。
根据本发明的一个实施例,所述负压按摩装置进一步包括一导电单元,其中所述导电单元包括一第一导电组件和一第二导电组件,所述第一导电组件被电连接于所述供电单元,所述第二导电组件被连接于所述加热元件,其中所述第一导电组件和所述第二导电组件被相互导通,以使所述供电单元供应电力至所述加热元件。
根据本发明的一个实施例,所述负压按摩装置进一步包括一安装单元,其中所述安装单 元包括一壳体,所述供电单元被设置于所述壳体的内部,其中所述第一导电组件被设置于所述壳体,所述第二导电组件被设置于所述按摩主体,其中当所述按摩主体和所述壳体相互靠近时,所述第一导电组件和所述第二导电组件被相互导通。
根据本发明的一个实施例,所述第一导电组件的至少一部分裸露在所述壳体的外部,所述第二导电组件的至少一部分裸露在所述按摩主体的外部,从而当所述按摩主体和所述壳体相互靠近时,所述第一导电组件和所述第二导电组件通过物理接触的方式被相互导通。
根据本发明的一个实施例,所述第一导电组件和所述第二导电组件分别是导电片或者导电凸起。
根据本发明的一个实施例,所述负压按摩装置进一步包括一振动单元,其中所述振动单元被设置于所述壳体的内部,并且所述振动单元被电连接于所述供电单元,其中所述振动单元在被供应电力时产生振动,该振动通过所述壳体带动所述按摩主体同步振动。
根据本发明的一个实施例,所述负压按摩装置进一步包括一低频脉冲单元,其中所述低频脉冲单元包括一脉冲发生器和一传导组件,所述传导组件被连接于所述脉冲发生器,所述低频脉冲器被设置于所述壳体的内部,并且所述低频脉冲器被电连接于所述供电单元,其中所述低频脉冲器在被供应电力时产生低频脉冲,所述传导组件将所述低频脉冲传导至人体组织或者相应穴位。
根据本发明的一个实施例,所述负压按摩装置进一步包括一低频脉冲单元,其中所述低频脉冲单元包括一脉冲发生器和一传导组件,所述传导组件被连接于所述脉冲发生器,所述低频脉冲器被设置于所述壳体的内部,并且所述低频脉冲器被电连接于所述供电单元,其中所述低频脉冲器在被供应电力时产生低频脉冲,所述传导组件将所述低频脉冲传导至人体组织或者相应穴位。
根据本发明的一个实施例,所述传导组件包括两传导线、一正极端以及一负极端,每个所述传导线的连接端分别被连接于所述脉冲发生器,所述正极端和所述负极端分别被设置于每个所述传导线的自由端。
根据本发明的一个实施例,所述负压按摩装置进一步包括一安装单元,其中所述安装单元包括一壳体、一支承主体和一容纳主体,其中所述负压发生器和所述压力释放器分别被设置于所述壳体的内部,其中所述支承主体具有一第一安装位、一第二安装位、一第三安装位、一第一通道以及一第二通道,所述第一通道连通所述第一安装位和所述第三安装位,所述第二通道连通所述第二安装位和所述第三安装位,其中所述容纳主体具有一盛奶空间,其中所述壳体被安装于所述支承主体的所述第一安装位,以使所述通气路连通于所述第一通道,所 述按摩单元被安装于所述支承主体的所述第二安装位,以使所述按摩空间连通于所述第二安装位,其中所述容纳主体被安装于所述支承主体的所述第三安装位,以使所述盛奶空间分别连通所述第一通道和所述第二通道。
依本发明的另一个方面,本发明进一步提供一负压按摩方法,其中所述负压按摩方法包括如下步骤:
将人体组织对应于一按摩单元的一按摩空间,以使人体组织封闭所述按摩空间的开口;和
通过一负压发生单元时所述按摩空间内交替形成一按摩负压和一维持负压,以按摩对应于所述按摩空间的人体组织。
依本发明的另一个方面,本发明进一步提供一负压按摩方法,其中所述负压按摩方法包括如下步骤:
(A)将人体组织对应于一按摩主体的一按摩空间,以使人体组织封闭所述按摩空间的开口;
(B)通过一负压发生单元使所述按摩空间内形成负压环境,以按摩对应于所述按摩空间的人体组织;以及
(C)通过一热量供应主体加热所述按摩主体至适宜范围。
根据本发明的一个实施例,在上述方法中,所述步骤(C)在所述步骤(A)之前,从而首先通过所述热量供应主体预热所述按摩主体,以使所述按摩主体的温度被升高至适宜范围,然后再使人体组织封闭所述按摩空间的开口。
根据本发明的一个实施例,在所述步骤(C)中,所述热量供应主体持续地加热所述按摩主体,以使所述按摩主体和所述按摩空间的温度被保持在适宜范围。
根据本发明的一个实施例,在所述步骤(B)中,进一步包括步骤:
(B.1)通过所述负压发生单元的一负压发生器使所述按摩空间内形成负压环境;和
(B.2)通过所述负压发生单元的一压力释放器在一开启状态和一关闭状态之间来回切换,以使所述按摩空间内交替形成一按摩负压和一维持负压。
依本发明的另一个方面,本发明提供一用于排奶器的乳房容纳装置,其包括:
一柔性的排奶单元,其中所述排奶单元进一步包括一排奶部,所述排奶部进一步包括至少一成型部和两变形引导部以及具有一排奶腔,每个所述变形引导部分别位于所述成型部的两侧,以用于引导所述成型部的变形方向,其中一乳房能够被容纳于所述排奶腔,当所述排奶部受力时,所述成型部在每个所述变形引导部的引导下产生变形,以在所述乳房的乳晕的 下部向上托住所述乳房的乳晕,和在所述乳房的乳晕的上部向下挤压所述乳房的乳晕,从而母乳从所述乳房中排出体外。
根据本发明的一个实施例,所述成型部的数量是一个,每个所述变形引导部分别被对称地设置于所述成型部的两侧,或者每个所述变形引导部分别一体地形成于所述成型部的两侧,以供引导所述成型部的变形方向。
根据本发明的一个实施例,所述成型部的数量是两个,其中位于上部的所述成型部被定义为一上成型部,位于下部的所述成型部被定义为一下成型部,其中每个所述变形引导部被对称地设置于所述上成型部的两侧,并且每个所述变形引导部被对称地设置于所述下成型部的两侧,以藉由每个所述变形引导部引导所述上成型部和所述下成型部具有相互靠近的趋势和位移。
根据本发明的一个实施例,所述变形引导部的厚度薄于所述成型部的厚度。
根据本发明的一个实施例,所述乳房容纳装置进一步包括一加热单元,其中所述加热单元包括一加热部,所述加热部被设置于所述排奶部的内部,其中所述加热部在被供应电力之后能够产生热量以使所述排奶部和所述排奶部的所述排奶腔发热,其中所述加热部是电加热膜。
根据本发明的一个实施例,所述加热单元包括一温度维持部,其中所述温度维持部被保持在所述加热部的外壁,以阻止所述加热部产生的热量通过所述温度维持部辐射至外部环境。
依本发明的另一个方面,本发明进一步提供一排奶器,其包括:
一排奶装置,其中所述排奶装置包括一通气路;和
一乳房容纳装置,其中所述乳房容纳装置包括一柔性的排奶单元,所述排奶单元进一步包括:
一安装部,其中所述安装部具有一排奶通道,所述安装部被安装于所述排奶装置,以使所述排奶通道连通于所述通气路;和
一排奶部,其中所述排奶部和所述安装部一体地形成,并且所述排奶部进一步包括至少一成型部和两变形引导部以及具有一排奶腔,所述排奶腔连通于所述排奶通道,每个所述变形引导部分别位于所述成型部的两侧,以用于引导所述成型部的变形方向,其中一乳房能够被容纳于所述排奶腔,的那个所述通气路形成负压环境时,所述排奶腔形成负压环境以使所述排奶部受力,从而所述成型部在每个所述变形引导部的引导下产生变形,以在所述乳房的 乳晕的下部向上托住所述乳房的乳晕,和在所述乳房的乳晕的上部向下挤压所述乳房的乳晕,从而将母乳从所述乳房中排出体外。
根据本发明的一个实施例,所述排奶装置包括一负压发生器,其中所述负压发生器形成所述通气路,所述负压发生器能够通过使所述通气路形成负压环境的方式使所述排奶腔形成负压环境。
根据本发明的一个实施例,所述排奶装置包括一负压发生器和一压力释放器,其中所述负压发生器和所述压力释放器相互连通以形成所述通气路,其中所述负压发生器通过使所述通气路形成负压环境的方式使所述排奶腔形成负压环境,所述压力释放器通过在开启状态和关闭状态切换的方式使所述排奶腔形成一挤奶负压和一维持负压,其中所述挤奶负压的数值大于所述维持负压的位置。
根据本发明的一个实施例,所述排奶装置包括一供电单元,其中所述负压发生器和所述压力释放器分别被电连接于所述供电单元。
根据本发明的一个实施例,所述排奶装置包括一泄压阀,其中所述泄压阀能够连通于所述通气路,其中当所述泄压阀处于打开状态时,所述通气路内是常压状态。
根据本发明的一个实施例,所述排奶装置包括一泄压阀,其中所述泄压阀能够连通于所述通气路,其中当所述泄压阀处于打开状态时,所述通气路内是常压状态。
根据本发明的一个实施例,所述排奶装置包括一支承单元和一盛奶器,其中所述支承单元具有一第一安装位、一第二安装位、一第三安装位、一第一通道以及一第二通道,所述第一通道连通所述第一安装位和所述第三安装位,所述第二通道连通所述第二安装位和所述第三安装位,其中所述盛奶器具有一盛奶空间,并且所述盛奶器被安装于所述支承单元的所述第三安装位,以使所述第一通道和所述第二通道均连通所述盛奶空间,其中所述安装部被安装于所述第二安装位,以使所述排奶通道连通所述第二通道,其中所述负压发生器和所述压力释放器被安装于所述第一安装位,以使所述通气路连通所述第一通道。
根据本发明的一个实施例,所述成型部的数量是一个,每个所述变形引导部分别被对称地设置于所述成型部的两侧,或者每个所述百年星引导部分别一体地形成于所述成型部的两侧,以供引导所述成型部的变形方向。
根据本发明的一个实施例,所述成型部的数量是两个,其中位于上部的所述成型部被定义为一上成型部,位于下部的所述成型部被定义为一下成型部,其中每个所述变形引导部被对称地设置于所述上成型部的两侧,并且每个所述变形引导部被对称地设置于所述下成型部的两侧,以藉由每个所述变形引导部引导所述上成型部和所述下成型部具有相互靠近的趋势 和位移。
根据本发明的一个实施例,所述乳房容纳装置进一步包括一加热单元,其中所述加热单元包括一加热部,所述加热部被设置于所述排奶部的内部,其中所述加热部在被供应电力之后能够产生热量以使所述排奶部和所述排奶部的所述排奶腔发热,其中所述加热部是电加热膜。
依本发明的另一个方面,本发明进一步提供一排奶方法,其中所述排奶方法包括如下步骤:
在一乳房被容纳于一排奶部的一排奶腔时,使所述乳房的乳晕的至少一部分和所述排奶部的内壁之间形成一变形空间;和
使所述排奶部沿着相互对称的两个变形引导部的位置产生变形,以使所述排奶部在所述乳房的乳晕的下部向上托住乳晕,和在所述乳房的乳晕的上部向下挤压乳晕,从而将母乳从所述乳房中排出体外。
依本发明的另一个方面,本发明提供一乳头矫正装置,其包括:
一真空发生器;
一矫正器,其中所述矫正器被设置于所述真空发生器,以藉由所述矫正器和所述真空发生器形成一通气路,并且所述矫正器形成一矫正端;以及
一压力释放器,其中所述压力释放器具有一释放器进气口和一释放器排气口,所述释放器进气口连通于所述通气路,所述释放器排气口连通于外部环境或者所述释放器排气口连通于所述通气路,其中当所述真空发生器使所述通气路内形成负压环境时,所述压力释放器使所述通气路交替产生一矫正负压和一维持负压,并且当所述通气路内产生所述矫正负压时,对应于所述矫正端的一待矫正乳头被提拉至所述矫正端的内部,当所述通气路内产生所述维持负压时,所述待矫正乳头被保持在所述矫正端的内部。
根据本发明的一个实施例,所述矫正器具有一矫正通道和形成一保持部,所述保持部位于所述矫正通道内,其中所述待矫正乳头被提拉至所述矫正通道且在穿过所述保持部时,所述保持部能够卡住所述待矫正乳头,以使所述待矫正乳头被保持在所述矫正端。
根据本发明的一个实施例,所述矫正器具有一内壁和一安装面,所述内壁连接于所述安装面,并且在所述内壁和所述安装面之间具有夹角θ,以形成一保持部,所述内壁形成一矫正通道,其中所述待矫正乳头被提拉至所述矫正通道内并且在穿过所述保持部时,所述保持部能够卡住所述待矫正乳头,以使所述待矫正乳头被保持在所述矫正端。
根据本发明的一个实施例,所述内壁和所述安装面形成的夹角θ为锐角。
根据本发明的一个实施例,所述内壁和所述安装面的连接位置呈圆滑状。
根据本发明的一个实施例,所述矫正器具有一内壁,以形成所述矫正通道,其中所述保持部呈环形地凸出在所述矫正器的所述内壁。
根据本发明的一个实施例,所述矫正器具有一内壁,以形成所述矫正通道,其中所述内壁进一步具有一第一内壁、一第二内壁以及一第三内壁,所述第一内壁自所述矫正器的自由端向安装端方向延伸,所述第三内壁自所述矫正器的安装端向自由端方向延伸,所述第二内壁分别连接于所述第一内壁和所述第二内壁,并且所述第一内壁和所述第二内壁之间形成夹角β,所述第二内壁和所述第三内壁之间形成夹角γ,以在所述第二内壁的位置形成所述保持部。
根据本发明的一个实施例,所述第一内壁和所述第二内壁之间形成的夹角β为锐角。
根据本发明的一个实施例,所述第一内壁和所述第二内壁的连接位置呈圆滑状。
根据本发明的一个实施例,所述真空发生器包括一真空发生管和一真空发生主体,所述真空发生管具有一第一端部和一第二端部,所述真空发生主体被设置于所述真空发生管,以使所述真空发生管内形成负压环境,其中所述矫正器被设置于所述真空发生管的所述第一端部,所述真空发生管的所述第二端部连通于外部环境。
根据本发明的一个实施例,所述矫正器和所述真空发生管的所述第一端部一体地形成。
根据本发明的一个实施例,所述矫正器具有一安装槽,所述真空发生管的所述第一端部被安装于所述矫正器的所述安装槽。
根据本发明的一个实施例,所述真空发生管的所述第一端部具有一安装槽,所述矫正器的安装端被安装于所述真空发生管的所述第一端部的所述安装槽。
根据本发明的一个实施例,所述乳头矫正装置进一步包括一供电元件,其中所述真空发生器和所述压力释放器分别被电连接于所述供电元件。
根据本发明的一个实施例,所述乳头矫正装置进一步包括一壳体,其中所述真空发生器和所述压力释放器分别被设置于所述壳体的内部,所述矫正器位于所述壳体的外部。
根据本发明的一个实施例,所述乳头矫正装置进一步包括一振动电机,其中所述振动电机被设置于所述壳体的内部,当所述振动电机被供应电力时,所述振动电机产生振动以按摩被容纳于所述矫正端的所述待矫正乳头。
依本发明的另一个方面,本发明进一步提供一乳头矫正装置,其包括:
一真空发生器;和
一矫正器,其中所述矫正器被设置于所述真空发生器,以藉由所述矫正器和所述真空发 生器形成一通气路,并且所述矫正器形成一矫正端和一保持部,其中当真空发生器使所述通气路内产生负压环境时,对应于所述矫正端的一待矫正乳头得以被提拉至所述矫正端内,并且当所述待矫正乳头穿过所述保持部后被所述保持部卡住,以在矫正所述待矫正乳头的过程中,所述待矫正乳头始终被保持在所述矫正端。
根据本发明的一个实施例,所述矫正器具有一内壁和一安装面,所述内壁连接于所述安装面,并且在所述内壁和所述安装面之间具有夹角θ,以形成所述保持部。
根据本发明的一个实施例,所述内壁和所述安装面形成的夹角θ为锐角。
根据本发明的一个实施例,所述内壁和所述安装面的连接位置呈圆滑状。
根据本发明的一个实施例,所述矫正器具有一内壁,所述内壁进一步具有一第一内壁、一第二内壁以及一第三内壁,所述第一内壁自所述矫正器的自由端向安装端方向延伸,所述第三内壁自所述矫正器的安装端向自由端方向延伸,所述第二内壁分别连接于所述第一内壁和所述第二内壁,并且所述第一内壁和所述第二内壁之间形成夹角β,所述第二内壁和所述第三内壁之间形成夹角γ,以在所述第二内壁的位置形成所述保持部。
根据本发明的一个实施例,所述第一内壁和所述第二内壁之间形成的夹角β为锐角。
根据本发明的一个实施例,所述第一内壁和所述第二内壁的连接位置呈圆滑状。
依本发明的另一个方面,本发明进一步提供一乳头矫正装置的矫正器,其中所述矫正器具有一内壁和一矫正通道以及形成一保持部,其中所述内壁形成所述矫正通道,并且所述内壁自所述矫正器的自由端向安装端倾斜地延伸,以使一待矫正乳头在被提拉时能够轻松地进入所述矫正通道,并且当所述待矫正乳头穿过所述保持部时,所述保持部卡住所述待矫正乳头以使所述待矫正乳头被保持在所述矫正通道。
根据本发明的一个实施例,所述矫正器具有一安装面,所述内壁连接于所述安装面,并且在所述内壁和所述安装面之间具有夹角θ以形成所述保持部。
根据本发明的一个实施例,所述内壁和所述安装面形成的夹角θ为锐角。
根据本发明的一个实施例,所述内壁和所述安装面的连接位置呈圆滑状。
根据本发明的一个实施例,所述内壁进一步具有一第一内壁、一第二内壁以及一第三内壁,所述第一内壁自所述矫正器的自由端向安装端方向延伸,所述第三内壁自所述矫正器的安装端向自由端方向延伸,所述第二内壁分别连接于所述第一内壁和所述第二内壁,并且所述第一内壁和所述第二内壁之间形成夹角β,所述第二内壁和所述第三内壁之间形成夹角γ,以在所述第二内壁的位置形成所述保持部。
根据本发明的一个实施例,所述第一内壁和所述第二内壁之间形成的夹角β为锐角。
根据本发明的一个实施例,所述第一内壁和所述第二内壁的连接位置呈圆滑状。
附图说明
图1A是依本发明的一较佳实施例的一吸奶器的立体示意图。
图1B是依本发明的上述较佳实施例的所述吸奶器的第一个变形实施方式的立体示意图。
图1C是依本发明的上述较佳实施例的所述吸奶器的第二个变形实施方式的立体示意图。
图1D是依本发明的上述较佳实施例的所述吸奶器的第三个变形实施方式的立体示意图。
图1E是依本发明的上述较佳实施例的所述吸奶器的第三个变形实施方式的剖视示意图。
图2是依本发明的上述较佳实施例的所述吸奶器的使用状态的示意图,其描述了所述吸奶器的一乳房容纳装置与使用者的乳房的一个关系。
图3是依本发明的上述较佳实施例的所述吸奶器的使用状态的示意图,其描述了所述吸奶器的所述乳房容纳装置与使用者的乳房的另一个关系。
图4是依本发明的上述较佳实施例的所述吸奶器的使用状态的示意图,其描述了所述吸奶器的一维持装置与所述乳房容纳装置以及使用者的乳房的关系。
图5A和图5B是依本发明的上述较佳实施例的所述吸奶器的吸奶过程示意图。
图6A是依本发明的另一较佳实施例的一吸奶器的分解示意图。
图6B是依本发明的上述较佳实施例的所述吸奶器的剖视示意图。
图7A是依本发明的上述较佳实施例的所述吸奶器在S位置的放大示意图。
图7B是依本发明的上述较佳实施例的所述吸奶器在S位置的一个变形实施方式的放大示意图。
图7C是依本发明的上述较佳实施例的所述吸奶器在S位置的另一个变形实施方式的放大示意图。
图8是依本发明的上述较佳实施例的所述吸奶器的使用状态的示意图,其描述了所述吸奶器的一乳房容纳装置与使用者的乳房的一个关系。
图9是依本发明的上述较佳实施例的所述吸奶器的使用状态的示意图,其描述了所述吸奶器的所述乳房容纳装置与使用者的乳房的另一个关系。
图10是依本发明的上述较佳实施例的所述吸奶器的使用状态的示意图,其描述了所述吸奶器的一维持装置与所述乳房容纳装置以及使用者的乳房的关系。
图11是依本发明的再一较佳实施例的一吸奶器的立体示意图。
图12是依本发明的上述较佳实施例的所述吸奶器的分解示意图。
图13是依本发明的上述较佳实施例的所述吸奶器的剖视示意图。
图14是依本发明的上述较佳实施例的所述吸奶器在S’位置的放大示意图。
图15是依本发明的上述较佳实施例的所述吸奶器在S’位置的一个变形实施方式的放大示意图。
图16是依本发明的上述较佳实施例的所述吸奶器在S’位置的一个变形实施方式的放大示意图。
图17是依本发明的上述较佳实施例的所述吸奶器在S’位置的一个变形实施方式的放大示意图。
图18是依本发明的上述较佳实施例的所述吸奶器的使用状态的示意图,其描述了所述吸奶器的一乳房容纳装置与使用者的乳房的一个关系。
图19是依本发明的上述较佳实施例的所述吸奶器的使用状态的示意图,其描述了所述吸奶器的所述乳房容纳装置与使用者的乳房的另一个关系。
图20是依本发明的上述较佳实施例的所述吸奶器的使用状态的示意图,其描述了所述吸奶器的一维持装置与所述乳房容纳装置以及使用者的乳房的关系。
图21是依本发明的一较佳实施例的一清洗装置的示意图。
图22A是依本发明的上述较佳实施例的所述清洗装置的第一个实施方式的概念示意图。
图22B是依本发明的上述较佳实施例的所述清洗装置的第二个实施方式的概念示意图。
图22C是依本发明的上述较佳实施例的所述清洗装置的第三个实施方式的概念示意图。
图23A和图23B是依本发明的上述较佳实施例的所述清洗装置的一个清洗方式的示意图。
图24A和图24B是依本发明的上述较佳实施例的所述清洗装置的一个清洗方式的示意图。
图25是依本发明的上述较佳实施例的通过所述清洗装置清洗一连接管的清洗方法的流程示意图。
图26是依本发明的上述较佳实施例的一带有清洗装置的吸奶器的立体示意图。
图27是依本发明的上述较佳实施例的所述带有清洗装置的吸奶器的剖视示意图。
图28A和图28B是依本发明的上述较佳实施例的所述带有清洗装置的吸奶器的吸奶过程示意图。
图29是依本发明的一较佳实施例的一乳房护理装置的立体示意图。
图30是依本发明的上述较佳实施例的所述乳房护理装置的分解示意图。
图31是依本发明的上述较佳实施例的所述乳房护理装置的剖视示意图。
图32是依本发明的上述较佳实施例的所述乳房护理装置的使用状态的示意图。
图33是依本发明的上述较佳实施例的所述乳房护理装置的第一个变形实施方式的一乳房容纳构件的分解示意图。
图34是依本发明的上述较佳实施例的所述乳房护理装置的第二个变形实施方式的所述乳房容纳构件的分解示意图。
图35是依本发明的上述较佳实施例的所述乳房护理装置的第三个变形实施方式的剖视示意图。
图36是依本发明的上述较佳实施例的所述乳房护理装置的第四个变形实施方式的剖视示意图。
图37是依本发明的上述较佳实施例的所述乳房护理装置的第五个变形实施方式的剖视示意图。
图38是依本发明的上述较佳实施例的所述乳房护理装置的第六个变形实施方式的剖视示意图。
图39是依本发明的上述较佳实施例的所述乳房护理装置的第七个变形实施方式的剖视示意图。
图40是依本发明的上述较佳实施例的所述乳房护理装置的第八个变形实施方式的剖视示意图。
图41是依本发明的上述较佳实施例的所述乳房护理装置的第九个变形实施方式的剖视示意图。
图42是依本发明的上述较佳实施例的所述乳房护理装置的第十个变形实施方式的剖视示意图。
图43是依本发明的上述较佳实施例的所述乳房护理装置的第十一个变形实施方式的剖视示意图。
图44是依本发明的上述较佳实施例的所述乳房护理装置的第十二个变形实施方式的剖视示意图。
图45是依本发明的上述较佳实施例的所述乳房护理装置的第十三个变形实施方式的剖视示意图。
图46是依本发明的一较佳实施例的一负压按摩装置的立体示意图。
图47是依本发明的上述较佳实施例的所述负压按摩装置的剖视示意图。
图48是依本发明的上述较佳实施例的所述负压按摩装置的原理示意图,其描述了所述负压按摩装置的一负压发生单元使一按摩单元的一按摩空间内交替形成一按摩负压和一维持负压的原理。
图49是依本发明的上述较佳实施例的所述负压按摩装置的一个使用状态的示意图,其示意了所述负压按摩装置的所述按摩空间内没有形成负压环境时的状态。
图50是依本发明的上述较佳实施例的所述负压按摩装置的另一个使用状态的示意图,其示意了所述负压按摩装置的所述按摩空间内形成按摩负压时的状态。
图51是依本发明的上述较佳实施例的所述负压按摩装置的另一个使用状态的示意图,其示意了所述负压按摩装置的所述按摩空间内形成维持负压时的状态。
图52是依本发明的上述较佳实施例的所述负压按摩装置的一个变形实施方式的剖视示意图。
图53是依本发明的上述较佳实施例的所述负压按摩装置的另一个变形实施方式的剖视示意图。
图54是依本发明的一个较佳实施例的一排奶器的立体示意图。
图55是依本发明的另一较佳较佳实施例的一排奶器的立体示意图。
图56A是依本发明的上述较佳实施例的所述排奶器的分解示意图。
图56B是依本发明的上述较佳实施例的所述排奶器的一通气路的原理示意图。
图57是依本发明的上述较佳实施例的所述排奶器的立体剖视示意图。
图58A是依本发明的上述较佳实施例的所述排奶器的一排奶单元的立体示意图。
图58B是依本发明的上述较佳实施例的所述排奶器的所述排奶单元的一个变形实施方式立体示意图。
图59A至图59C分别是依本发明的上述较佳实施例的所述排奶器的所述排奶单元的剖视示意图。
图60是依本发明的上述较佳实施例的所述排奶器的一个使用过程示意图。
图61是依本发明的上述较佳实施例的所述排奶器的另一个使用过程示意图。
图62是依本发明的上述较佳实施例的所述排奶器的一个变形实施方式的剖视示意图。
图63是依本发明的上述较佳实施例的所述排奶器的另一个变形实施方式的剖视示意图。
图64是依本发明的上述较佳实施例的所述排奶器的另一个变形实施方式的剖视示意图。
图65是依本发明的上述较佳实施例的所述排奶器的另一个变形实施方式的剖视示意图。
图66是依本发明的上述较佳实施例的所述排奶器的另一个变形实施方式的剖视示意图。
图67是依本发明的一较佳实施例的一乳头矫正装置的立体示意图。
图68是依本发明的上述较佳实施例的所述乳头矫正装置的分解示意图。
图69A是依本发明的上述较佳实施例的所述乳头矫正装置的剖视示意图。
图69B是图69A的局部位置的放大示意图。
图70A是依本发明的上述较佳实施例的所述乳头矫正装置的一个使用状态的剖视示意图。
图70B是依本发明的上述较佳实施例的所述乳头矫正装置的另一个使用状态的剖视示意图。
图70C是依本发明的上述较佳实施例的所述乳头矫正装置的再一个使用状态的剖视示意图。
图71A是依本发明的上述较佳实施例的所述乳头矫正装置的第一个变形实施方式的剖视示意图。
图71B是图71A的局部位置的放大示意图。
图72A是依本发明的上述较佳实施例的所述乳头矫正装置的第二个变形实施方式的剖视示意图。
图72B是图72A的局部位置的放大示意图。
图73是依本发明的上述较佳实施例的所述乳头矫正装置的第三个变形实施实施方式的剖视示意图。
具体实施方式
以下描述用于揭露本发明以使本领域技术人员能够实现本发明。以下描述中的优选实施例只作为举例,本领域技术人员可以想到其他显而易见的变型。在以下描述中界定的本发明 的基本原理可以应用于其他实施方案、变形方案、改进方案、等同方案以及没有背离本发明的精神和范围的其他技术方案。
本领域技术人员应理解的是,在本发明的揭露中,术语“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”等指示的方位或位置关系是基于附图所示的方位或位置关系,其仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此上述术语不能理解为对本发明的限制。
可以理解的是,术语“一”应理解为“至少一”或“一个或多个”,即在一个实施例中,一个元件的数量可以为一个,而在另外的实施例中,该元件的数量可以为多个,术语“一”不能理解为对数量的限制。
参考本发明的说明书附图之图1A至图5B,依本发明的一较佳实施例的一吸奶器在接下来的描述中被阐述,其中所述吸奶器包括一吸奶器主体10和至少一乳房容纳装置20,其中每个所述乳房容纳装置20分别被连接于所述吸奶器主体10。每个所述乳房容纳装置20分别具有一容纳空间21,以供容纳一乳房100,其中所述吸奶器主体10能够使每个所述乳房容纳装置20的所述容纳空间21形成负压环境,将母乳从所述乳房100中排出体外。
本领域的技术人员可以理解的是,所述吸奶器主体10可以通过被手动操作的方式使每个所述乳房容纳装置20的所述容纳空间21形成负压环境,以将母乳从所述乳房100中排出体外。另外,所述吸奶器主体10也可以通过被自动操作的方式(例如被供应电力而被操作)使每个所述乳房容纳装置20的所述容纳空间21形成负压环境,以将母乳从所述乳房100中排出体外。
优选地,当所述乳房100被容纳于每个所述乳房容纳装置20的所述容纳空间21时,所述吸奶器主体10能够使每个所述乳房容纳装置20的所述容纳空间21形成一吸附负压以将母乳从所述乳房100中排出体外,和使每个所述乳房容纳装置20的所述容纳空间21形成一维持负压以使所述乳房容纳装置20被保持在所述乳房100的位置,其中所述吸附负压的数值大于所述维持负压的数值,并且所述吸附负压和所述维持负压交替形成。可以理解的是,所述吸附负压的数值和所述维持负压的数值均大于0。
在本发明的所述吸奶器中,所述吸奶器主体10使每个所述乳房容纳装置20的所述容纳空间21内形成所述维持负压的方式,能够使每个所述乳房容纳装置20在不需要用手扶持或者握持的情况下,使每个所述乳房容纳装置20被保持在所述乳房100的位置,以避免每个所述乳房容纳装置20从所述乳房100的位置脱落的不良现象出现,从而使吸奶过程更加方 便。
值得一提的是,所述吸奶器主体10使每个所述乳房容纳空间20的所述容纳空间21内形成的所述吸附负压和所述维持负压交替形成的方式,能够使每个所述乳房容纳装置20不需要在外力的维持下被保持在所述乳房100的位置,以方便吸奶,这是现有技术的吸奶器意料不到的,并且对于提高吸奶的便捷性和舒适度来说特别的重要。
另外,所述吸奶器主体10使每个所述乳房容纳装置20的所述容纳空间21内形成的所述吸附负压和所述维持负压交替形成的方式,能够使所述乳房100在被吸奶的过程中得到按摩,以放松所述乳房100的乳房皮肤和乳腺组织,并有利于使用者的所述乳房100的健康。另外,所述吸奶器主体10使每个所述乳房容纳装置20的所述容纳空间21内形成的所述吸附负压和所述维持负压交替形成的方式,能够使所述乳房100的乳房皮肤逐渐地适应所述容纳空间21内的负压环境,以避免在藉由本发明的所述吸奶器进行吸奶的过程中对所述乳房100的乳房皮肤和乳腺组织造成较大的压力。
在本发明的所述吸奶器的优选示例中,所述乳房容纳装置20被实施为喇叭状或者漏斗状,从而使所述乳房容纳装置20形成所述容纳空间21,以供容纳所述乳房100。当然,本领域的技术人员可以理解的是,所述乳房容纳装置20也可以被实施为其他可能的形状,本发明的所述吸奶器在这方面不受限制。
更优选地,所述乳房容纳装置20的所述容纳空间21的形状与所述乳房100的形状相互匹配,以便于所述乳房容纳装置20和所述乳房100更好地贴合在一起,从而使所述乳房容纳装置20的所述容纳空间21内始终存在负压和使吸奶过程更为舒适。
每个所述乳房容纳装置20被可拆卸地连接于所述吸奶器主体10,通过这样的方式,一方面,在所述吸奶器被使用后,使用者能够分别对所述吸奶器的所述乳房容纳装置20和所述吸奶器主体10进行清洗和消毒,另一方面,所述吸奶器允许使用者根据需要选择和更换具有不同尺寸的所述容纳空间21的所述乳房容纳装置20。
进一步地,所述吸奶器包括一维持装置30,其中每个所述乳房容纳装置20分别被连接于所述维持装置30,以藉由所述维持装置30使每个所述乳房容纳装置20的温度升高和使每个所述乳房容纳装置20的温度被维持在适宜温度范围。
值得一提的是,在本发明的所述吸奶器中所涉及的适宜温度范围,是指所述乳房容纳装置20的温度与所述乳房100的乳房皮肤的温度相当,即,所述乳房容纳装置20的温度不过分地高于所述乳房100的乳房皮肤的温度,也不过分地低于所述乳房100的乳房皮肤的温度。
在每个所述乳房容纳装置20未与所述乳房100的乳房皮肤贴合之前,所述维持装置30 能够使每个所述乳房容纳装置20的温度升高至适宜温度范围,从而在每个所述乳房容纳装置20贴合于所述乳房100的乳房皮肤时,所述乳房容纳装置20不会对所述乳房100的乳房皮肤和乳腺组织造成不良刺激。换言之,所述乳房容纳装置20能够被预热。
另外,所述乳房容纳装置20还可以使所述乳房100的乳房皮肤的温度升高,以起到放松和按摩所述乳房100的乳房皮肤和乳腺组织的作用,而且所述乳房容纳装置20还会刺激大脑产生催产素和催乳素,从而在使用本发明的所述吸奶器吸奶的过程中,所述吸奶器不仅能够使使用者感觉舒适,而且还能够有效地提高吸奶效果和保证母乳质量。
所述乳房容纳装置20的数量在本发明的所述吸奶器中不受限制,例如在附图1A示出的所述吸奶器的示例中,所述乳房容纳装置20的数量可以是一个;在附图1B示出的所述吸奶器的示例中,所述乳房容纳装置20的数量可以是两个;在附图1C示出的所述吸奶器的示例中,所述乳房容纳装置20的数量也可以超过两个,例如所述维持装置30可以被预设在医院的产房内,使用者在使用所述吸奶器时,可以将所述乳房容纳装置20连接于所述维持装置30,以藉由所述维持装置30使所述乳房容纳装置20的温度升高和使所述乳房容纳装置20的温度被维持在适宜温度范围,在使用者使用完所述吸奶器之后,还可以将所述乳房容纳装置20从所述维持装置30上拆卸下来。
值得一提的是,在本发明接下来的描述中,以所述乳房容纳装置20的数量被实施为一个,并且所述吸奶器主体10、所述乳房容纳装置20和所述吸奶器主体10被组装在一起而形成的所述吸奶器为例,继续阐述本发明的所述吸奶器的特征和优势。
具体地说,参考附图1D和图1E所示,所述乳房容纳装置20被可拆卸地安装于所述吸奶器主体10,其中在所述乳房容纳装置20被安装于所述吸奶器主体10后,所述乳房容纳装置20被连接于所述吸奶器主体10。
所述维持装置30被可拆卸地安装于所述吸奶器主体10,且所述维持装置30被可分离地连接于所述乳房容纳装置20,其中在所述维持装置30被连接于所述乳房容纳装置20后,所述维持装置30能够使所述乳房容纳装置20的温度升高和使所述乳房容纳装置20的温度被维持在适宜温度范围。
所述乳房容纳装置20具有一均热空间22、至少一第一交换通道23和至少一第二交换通道24,其中每个所述第一交换通道23和每个所述第二交换通道24分别连通于所述均热空间22。所述维持装置30具有一发热空间31,其中所述乳房容纳装置20的每个所述第一交换通道23分别连通于所述维持装置30的所述发热空间31。
在本发明的所述吸奶器的一个示例中,所述维持装置30使所述发热空间31内的温度升 高,以增加所述维持装置30的所述发热空间31内的气压,从而使所述维持装置30的所述发热空间31内的温度较高的流体(例如但不限于液体、气体、气液混合物)通过所述乳房容纳装置20的每个所述第一交换通道23进入所述均热空间22,以使所述均热空间22内的温度较低的流体通过每个所述第二交换通道24被排出所述均热空间22,从而温度较高的气体使所述乳房容纳装置20的温度升高。
所述维持装置30的所述发热空间31内的温度较高的流体持续地通过所述乳房容纳装置20的每个所述第一交换通道23进入所述均热空间22,且所述均热空间22的流体持续地通过每个所述第二交换通道24被排出所述均热空间22,以使所述乳房容纳装置20的温度被维持在适宜温度范围。
优选地,所述乳房容纳装置20的每个所述第二交换通道24分别连通于所述维持装置30的所述发热空间31,从而所述乳房容纳装置20的所述均热空间22内的流体可以通过每个所述第二交换通道24被排入到所述维持装置30的所述发热空间31,以实现气体的回收和再利用。也就是说,所述维持装置30的所述发热空间31、所述乳房容纳装置20的每个所述第一交换通道23、所述均热空间22和每个所述第二交换通道24形成一个流体循环回路,以实现热量交换。
例如,在本发明的所述吸奶器的另一个示例中,所述维持装置30可以通过使位于所述发热空间31内的水或者其他液体形成蒸气的方式来升高所述乳房容纳装置20的温度和使所述乳房容纳装置20的温度被维持在适宜温度范围。
具体地说,所述维持装置30使位于所述发热空间31内的水或者其他液体形成所述蒸气,其中所述蒸气通过所述乳房容纳装置20的每个所述第一交换通道23进入所述均热空间22,通过所述蒸气在所述均热空间22由气态转化为液态以释放热量的方式使所述乳房容纳装置20的温度升高,且转化为液态的水或者其他液体自所述乳房容纳装置20的每个所述第二交换通道24被回收至所述维持装置30的所述发热空间31,以实现水或者其他液体的回收和再利用。
也就是说,所述维持装置30的所述发热空间31、所述乳房容纳装置20的每个所述第一交换通道23、所述均热空间22和每个所述第二交换通道24形成一个液路循环回路,以实现热量交换。
所述维持装置30持续地通过使位于所述发热空间31内的水或者其他液体形成所述蒸气和持续地使所述蒸气进入所述乳房容纳装置20的所述均热空间22的方式,使所述乳房容纳装置20的温度被维持在适宜温度范围。
进一步地,所述维持装置30包括一容器32和一加热元件33,其中所述容器32具有所述发热空间31,以供容纳水或者其他液体,所述加热元件33被设置于所述容器32,且所述加热元件33被供应能量(例如被供应电力)后用于将被容纳于所述容器32的所述发热空间31内的水或者其他液体加热,以使水或者其他液体在形成所述蒸气后通过所述乳房容纳装置20的每个所述第一交换通道23进入所述均热空间22,从而使所述乳房容纳装置20的温度升高和使所述乳房容纳装置20的温度被维持在适宜温度范围。
所述乳房容纳装置20包括一内侧部25和一外侧部26,其中所述乳房容纳装置20的所述内侧部25和所述外侧部26相互重叠地设置,以在所述内侧部25和所述外侧部26之间形成所述均热空间22和分别连通于所述均热空间22的每个所述第一交换通道23和每个所述第二交换通道24。所述乳房容纳装置20的所述内侧部25形成所述容纳空间21和连通于所述容纳空间21的一吸奶通道27。
值得一提的是,在本发明的所述吸奶器的一个较佳示例中,所述乳房容纳装置20的所述内侧部25和所述外侧部26可以一体地形成,以在所述内侧部25和所述外侧部26之间形成所述均热空间22和分别连通于所述均热空间22的每个所述第一交换通道23和每个所述第二交换通道24。
在本发明的所述吸奶器的另一个较佳示例中,所述乳房容纳装置20的所述内侧部25和所述外侧部26也可以被分别制得,然后通过将所述内侧部25和所述外侧部26相互重叠地组装在一起的方式,在所述内侧部25和所述外侧部26之间形成所述均热空间22和分别连通于所述均热空间22的每个所述第一交换通道23和每个所述第二交换通道24。
另外,所述第一交换通道23和所述第二交换通道24也可以同时形成于所述内侧部25或者所述外侧部26,从而使所述第一交换通道23和所述第二交换通道24分别连通形成在所述内侧部25和所述外侧部26之间的所述均热空间22。或者,所述第一交换通道23和所述第二交换通道24中的一个交换通道形成于所述内侧部25,另一个交换通道形成于所述外侧部26,从而使所述第一交换通道23和所述第二交换通道24分别连通形成在所述内侧部25和所述外侧部26之间的所述均热空间22。
因此,本领域的技术人员可以理解的是,所述乳房容纳装置20的形成方式在本发明的所述吸奶器中不受限制。
所述维持装置30进一步包括一温度维持元件34,其中所述温度维持元件34被设置于所述乳房容纳装置20,或者所述温度维持元件34形成于所述乳房容纳装置20,以藉由所述温度维持元件34维持所述乳房容纳装置20的温度在适宜温度范围。优选地,所述温度维持 元件34由隔热较好的材料制得,例如所述温度维持元件34可以是但不限于隔热棉。
参考附图2至图4示出的所述吸奶器的一个示例中,所述温度维持元件34可以是一个单独的部件,其在形成后被重叠地设置于所述乳房容纳装置20的所述外侧部26,以用于阻止所述乳房容纳装置20的所述均热空间22内的温度通过所述乳房容纳装置20的所述外侧部26和所述乳房容纳装置20的外部环境交换,从而使所述乳房容纳装置20的温度被维持在适宜温度范围。
值得一提的是,所述温度维持元件34可以被重叠地设置于所述乳房容纳装置20的所述外侧部26的内表面,以使所述温度维持元件34被保持在所述均热空间22内。所述温度维持元件34也可以被重叠地设置于所述乳房容纳装置20的所述外侧部26的外表面。
在本发明的所述吸奶器的其他示例中,所述温度维持元件34也可以一体地形成于所述乳房容纳装置20的所述外侧部26,例如所述温度维持元件34可以一体地形成于所述乳房容纳装置20的所述外侧部26的内表面和/或外表面。具体地说,可以将一隔热材料施凃于所述乳房容纳装置20的所述外侧部26的内表面和/或外表面,以使所述隔热材料形成重叠于所述外侧部26的内表面和/或外表面的所述温度维持元件34,从而藉由所述温度维持元件34阻止所述乳房容纳装置20的所述均热空间22内的温度和所述乳房容纳装置20的外部环境交换,进而使所述乳房容纳装置20的温度被维持在适宜温度范围。
在本发明的所述吸奶器的其他示例中,所述维持装置30的所述温度维持元件34和所述乳房容纳装置20的所述外侧部26是一体式结构。例如,所述乳房容纳装置20的所述外侧部26可以具有隔热能力,以阻止所述乳房容纳装置20的所述均热空间22内的热量通过所述乳房容纳装置20的所述外侧部26与外部环境交换,从而使所述乳房容纳装置20的温度被维持在适宜温度范围。
所述吸奶器主体10包括一盛奶器11和一负压发生组件12,其中所述盛奶器11具有一盛奶空间111、一进奶口112以及一负压发生通道113,其中所述进奶口112和所述负压发生通道113分别连通于所述盛奶空间111,所述负压发生组件12被设置于所述盛奶器11,且所述负压发生组件12连通于所述盛奶器11的所述负压发生通道113。所述乳房容纳装置20被安装于所述吸奶器主体10的所述盛奶器11,且所述乳房容纳装置20的所述吸奶通道27连通于所述盛奶器11的所述进奶口112。所述负压发生组件12在被供应能量(例如被供应电力)后能够使所述乳房容纳装置20的所述容纳空间21内形成负压环境,以进行吸奶操作。
值得一提的是,所述负压发生组件12的控制方式在本发明的所述吸奶器中不被限制, 例如所述负压发生组件12可以包括真空发生器和电磁阀,其中真空发生器和电磁阀能够相互配合,以使所述负压发生组件12的状态被改变,从而使得所述负压发生组件12能够使所述乳房容纳装置20的所述容纳空间21交替产生所述吸附负压和所述维持负压。
所述吸奶器进一步包括一电力供应装置40,其中所述负压发生组件12被电连接于所述电力供应装置40,以藉由所述电力供应装置40向所述负压发生组件12供应电力,从而使所述负压发生组件12工作以进一步使所述乳房容纳装置20的所述容纳空间21内形成负压环境。
值得一提的是,所述电力供应装置40的类型不受限制,其只要能够向所述负压发生组件12供应电力即可。例如所述电力供应装置40可以被实施为干电池、锂电池等,另外,所述电力供应装置40也可以被实施为一次性电池、可充电电池。优选地,在本发明的所述吸奶器的这个具体示例中,所述电力供应装置40被实施为可充电电池,以允许将外部电能补充到所述电力供应装置40,从而降低所述吸奶器的使用成本。
进一步地,所述维持装置30也可以被电连接于所述电力供应装置40,以藉由所述电力供应装置40向所述维持装置30供应电力,从而使所述维持装置30的所述发热空间31的气体温度或者水或者其他液体的温度能够被升高。优选地,所述维持装置30的所述加热元件33被连接于所述电力供应装置40,以在所述电力供应装置40供应的电力的作用下使所述加热元件33产生热量,从而通过加热被容纳于所述发热空间31内的水或者其他液体的方式使水或者其他液体转化为所述蒸气。
另外,所述吸奶器还可以包看一壳体50,其中所述电力供应装置40、所述吸奶器主体10的所述负压发生组件12和所述维持装置30可以被设置于所述壳体50以集成为一体。在所述壳体50被安装于所述吸奶器主体10的所述盛奶器11时,所述负压发生组件12连通于所述盛奶器11的所述负压发生通道113。
尽管如此,本领域的技术人员可以理解的是,在本发明的所述吸奶器的其他示例中,也可以仅将所述电力供应装置40和所述吸奶器主体10的所述负压发生组件12集成在所述壳体50。
参考附图2,使用者在使用所述吸奶器时,被容纳于所述乳房容纳装置20的所述容纳空间21的所述乳房100贴合于所述乳房容纳装置20的所述内侧部25,以使所述乳房容纳装置20环绕在所述乳房100的四周。当所述维持装置30在被供应电力后使所述乳房容纳装置20的温度升高时,所述乳房容纳装置20通过与所述乳房100的乳房皮肤直接接触的方式,使所述乳房100的乳房皮肤和乳腺组织的温度同步地升高,从而放松所述乳房100的乳房皮 肤和乳腺组织。
参考附图3和图4,在使用者使用所述吸奶器时,被容纳于所述乳房容纳装置20的所述容纳空间21的所述乳房100和所述乳房容纳装置20的所述内侧部25之间产生一热量维持空间200,其中所述热量维持空间200环绕在所述乳房100的四周。当所述维持装置30在被供应电力后使所述乳房容纳装置20的温度升高时,所述乳房容纳装置20的温度与所述热量维持空间200的温度相互交换,以进一步使所述热量维持空间200的温度升高,从而使所述乳房100的乳房皮肤的温度同步地升高,进而放松所述乳房100的乳房皮肤和乳腺组织。
值得一提的是,尽管所述吸奶器能够在所述乳房100和所述乳房容纳装置20的所述内侧部25之间产生所述热量维持空间200,由于所述乳房100自身的重力,所述乳房100的下侧部可能会接触或者贴合于所述乳房容纳装置20的所述内侧部25,而仅在所述乳房100的上侧部和/或两侧与所述乳房容纳装置20的所述内侧部25之间形成所述热量维持空间200。
附图5A和图5B示出了使用者在温度较低的环境中使用所述吸奶器的过程。
向所述维持装置30供应电力,以藉由所述维持装置30使所述乳房容纳装置20的温度升高。可以理解的是,所述电力供应装置40可以被用于向所述维持装置30供应电力。当所述乳房容纳装置20的温度与所述乳房100的乳房皮肤温度相当时,将所述乳房容纳装置20放置在所述乳房100的位置,以使所述乳房100被容纳于所述乳房容纳装置20的所述容纳空间21。优选地,当所述乳房100被容纳于所述乳房容纳装置20的所述容纳空间21后,在所述乳房容纳装置20的所述内侧部25和所述乳房100之间产生所述热量维持空间200。
值得一提的是,所述维持装置30被持续地供应电力,以使所述乳房容纳装置20的温度被维持在适宜温度范围。可以理解的是,被设置于所述乳房容纳装置20的所述温度维持元件34能够阻止所述乳房容纳装置20的温度与外界环境交换,从而所述温度维持元件34能够使所述乳房容纳装置20的温度被维持在适宜温度范围,并减少所述维持装置30对电能的消耗,以提高所述吸奶器的续航能力和降低所述吸奶器的使用成本。
向所述吸奶器主体10的所述负压发生组件12供应电力,以使所述负压发生组件12在所述乳房容纳装置20的所述容纳空间21内形成负压环境。可以理解的是,所述电力供应装置40可以被用于向所述负压发生组件12供应电力。参考附图5A,所述负压发生组件12能够使所述乳房容纳装置20的所述容纳空间21形成所述维持负压以使所述乳房容纳装置20被保持在所述乳房100的位置,从而即便是使用者没有通过手扶持或者握持所述吸奶器时,所述乳房容纳装置20也不会从所述乳房100上脱落,以提高所述吸奶器被使用时的可 靠性。参考附图5B,所述负压发生组件12能够使所述乳房容纳装置20的所述容纳空间21形成所述吸附负压以将母乳从所述乳房100中排出体外。可以理解的是,所述负压发生组件12使所述乳房容纳装置20的所述容纳空间21内交替地形成所述吸附负压和所述维持负压,以提高吸奶效果。
参考本发明的说明书附图之图6A至图10,依本发明的另一较佳实施例的一吸奶器在接下来的描述中将被阐述,其中所述吸奶器包括一吸奶器主体10A和至少一乳房容纳装置20A,其中每个所述乳房容纳装置20A分别被连接于所述吸奶器主体10A。每个所述乳房容纳装置20A分别具有一容纳空间21A,以供容纳一乳房100A,其中所述吸奶器主体10A能够使每个所述乳房容纳装置20A的所述容纳空间21A内形成负压环境,以将母乳从所述乳房100A中排出体外。
值得一提的是,所述乳房容纳装置20A的数量在本发明的所述吸奶器中不受限制,在本发明的接下来的描述中,以所述乳房容纳装置20A被实施为一个为例,来阐述本发明的所述吸奶器的特征和优势,因此,本领域的技术人员可以理解的是,在附图6A至图10中示出的所述吸奶器和接下来的描述中示出的所述吸奶器并不应被视为对本发明的所述吸奶器的内容和范围的限制。
具体地说,当所述乳房100A被容纳于所述乳房容纳装置20A的所述容纳空间21A时,所述吸奶器主体10A能够使每个所述乳房容纳装置20A的所述容纳空间21A形成一吸附负压以将母乳从所述乳房100A中排出体外,和使所述乳房容纳装置20A的所述容纳空间21A形成一维持负压以使所述乳房容纳装置20A被保持在所述乳房100A的位置,其中所述吸附负压的数值大于所述维持负压的数值,并且所述吸附负压和所述维持负压交替形成。可以理解的是,所述吸附负压的数值和所述维持负压的数值均大于0。
换言之,使用者在使用所述吸奶器的整个过程中,所述吸奶器主体10A均可以使所述乳房容纳装置20A的所述容纳空间21A内形成负压环境,通过这样的方式,能够使所述乳房容纳装置20A在不需要用手扶持或者握持的情况下,使所述乳房容纳装置20A被保持在所述乳房100A的位置而不会从所述乳房100A的位置脱落,从而使吸奶过程更加方便。
与本发明的第一个较佳实施例的所述吸奶器类似,在本发明的第二个较佳实施例提供的所述吸奶器中,所述吸奶器的所述乳房容纳装置20A也可以被实施为喇叭状或者漏斗状,从而使所述乳房容纳装置20A形成所述容纳空间21A,以供容纳所述乳房100A。优选地,所述乳房容纳装置20A的所述容纳空间21A的形状与所述乳房100A的形状相互匹配,以便于所述乳房容纳装置20A和所述乳房100A更好地贴合在一起。
优选地,所述乳房容纳装置20A被可拆卸地连接于所述吸奶器主体10A,通过这样的方式,一方面,使用者在使用完所述吸奶器后,能够分别对所述乳房容纳装置20A和所述吸奶器主体10A进行清洗和消毒,另一方面使用者能够根据需要更换具有不同尺寸的所述容纳空间21A的所述乳房容纳装置20A。
继续参考附图6A至图10,所述吸奶器进一步包括一维持装置30A,其中所述乳房容纳装置20A被连接于所述维持装置30A,以藉由所述维持装置30A使所述乳房容纳装置20A的温度升高和使所述乳房容纳装置20A的温度被维持在适宜温度范围。
值得一提的是,在本发明的所述吸奶器中所涉及的适宜温度范围,是指所述乳房容纳装置20A的温度与所述乳房100A的乳房皮肤的温度相当,即,所述乳房容纳装置20A的温度不过分地过于所述乳房100A的乳房皮肤的温度,也不过分地低于所述乳房100A的乳房皮肤的温度,这样,使用者在使用所述吸奶器时,所述乳房容纳装置20A的温度会有效地增加所述吸奶器的舒适性和亲和力。
在所述乳房容纳装置20A未与所述乳房100A的乳房皮肤贴合之前,所述维持装置30A能够使所述乳房容纳装置20A的温度升高至适宜温度范围,从而在所述乳房容纳装置20A被操作贴合于所述乳房100A的乳房皮肤时,所述乳房100A的乳房皮肤和乳腺组织不会被所述乳房容纳装置20A刺激。
在另外的示例中,所述乳房容纳装置20A的温度可以稍高于所述乳房100A的乳房皮肤的温度,这样,当所述乳房容纳装置20A被操作贴合于所述乳房100A的乳房皮肤时,所述乳房容纳装置20A能够使所述乳房100A的乳房皮肤的温度升高,以放松和按摩所述乳房100A的乳房皮肤和乳腺组织,从而在使用本发明的所述吸奶器的过程中,不仅使使用者感觉舒适,而且还能够有效地提高吸奶效果和保证母乳的质量。
参考附图6A,所述乳房容纳装置20A被可拆卸地安装于所述吸奶器主体10A,其中在所述乳房容纳装置20A被安装于所述吸奶器主体10A后,所述乳房容纳装置20A被连接于所述吸奶器主体10A。
所述维持装置30A被可拆卸地安装于所述吸奶器主体10A,且所述维持装置30A被可分离地连接于所述乳房容纳装置20A,其中在所述维持装置30A被连接于所述乳房容纳装置20A后,所述维持装置30A能够使所述乳房容纳装置20A的温度升高和使所述乳房容纳装置20A的温度被维持在适宜温度范围。
所述乳房容纳装置20A包括一内侧部25A、一外侧部26A以及一均热元件28A,其中所述均热元件28A被设置于相互重叠的所述内侧部25A和所述外侧部26A之间,并且所述 内侧部25A形成所述容纳空间21A和形成连通于所述容纳空间21A的一吸奶通道27A。优选地,所述均热元件28A环绕在所述容纳空间21A的四周,当热量被供应到所述均热元件28A时,所述均热元件28A能够使热量均匀地辐射到所述容纳空间21A,以提高所述容纳空间21A内的温度。当然,所述均热元件28A还能够将热量均匀地辐射到所述内侧部25A,以提高所述内侧部25A的温度。
在本发明的所述吸奶器的一个示例中,所述乳房容纳装置20A的所述内侧部25A、所述外侧部26A和所述均热元件28A分别被制作,然后将所述均热元件28A设置在相互重叠的所述内侧部25A和所述外侧部26A之间,例如所述内侧部25A和所述外侧部26A可以通过相互卡合的方式被连接在一起,以使所述均热元件28A被保持在所述内侧部25A和所述外侧部26A之间,或者所述内侧部25A的边缘和所述外侧部26A的边缘被粘合在一起,以使所述均热元件28A被保持在所述内侧部25A和所述外侧部26A之间。
在本发明的所述吸奶器的另一个示例中,所述乳房容纳装置20A的所述内侧部25A、所述外侧部26A和所述均热元件28A也可以一体地形成,例如首先将所述均热元件28A放置在一成型模具的一成型空间内,然后通过向所述成型空间内加入一成型材料,以使所述成型材料包裹所述均热元件28A,从而当所述成型材料在所述成型空间内固化后,所述成型材料在所述均热元件28A的内侧和外侧分别形成所述内侧部25A和所述外侧部26A,即,所述内侧部25A、所述均热元件28A和所述外侧部26A可以通过嵌入射出工艺一体地成型。当然,其他的成型工艺也可以使所述均热元件28A一体地成型在所述内侧部25A和所述外侧部26A之间,以形成所述乳房容纳装置20A。
本领域的技术人员可以理解的是,上述例举的所述乳房容纳装置20A的制作方式仅为举例,其并不应被视为对本发明的所述吸奶器的内容和范围的限制。
所述维持装置30A包括一发热元件35A,所述乳房容纳装置20A的所述均热元件28A被可导热地连接于所述维持装置30A的所述发热元件35A,其中当所述发热元件35A被供应能量(例如被供应电力)时,所述发热元件35A能够将该能量转化为热量,并且所述发热元件35A产生的该热量被传导至所述乳房容纳装置20A的所述均热元件28A,从而提高所述乳房容纳装置20A的温度。
可以理解的是的,当所述发热元件35A持续地产生该热量且将该热量传导至所述乳房容纳装置20A的所述均热元件28A时,所述乳房容纳装置20A的温度被维持在适宜温度范围。
所述维持装置30A进一步包括一温度维持元件34A,其中所述温度维持元件34A被设 置于所述乳房容纳装置20A,以藉由所述温度维持元件34A维持所述乳房容纳装置20A的温度在适宜温度范围。
参考附图7A,在本发明的所述吸奶器的这个示例中,所述维持装置30A的所述温度维持元件34A是一个单独的部件,在所述吸奶器的一个具体示例中,所述温度维持元件34A被重叠地设置于所述均热元件28A,所述乳房容纳装置20A的所述内侧部25A被重叠地设置于所述均热元件28A,所述乳房容纳装置20A的所述外侧部26A被重叠地设置于所述温度维持元件34A,且在所述乳房容纳装置20A的所述内侧部25A和所述外侧部26A被连接在一起,以使所述温度维持元件34A和所述均热元件28A被保持在所述乳房容纳装置20A的所述外侧部26A和所述内侧部25A之间。
也就是说,所述乳房容纳装置20A从外部向内部依次是所述外侧部26A、所述温度维持元件34A、所述均热元件28A和所述内侧部25A,通过这样的方式,当该热量被传导至所述均热元件28A时,所述温度维持元件34A能够阻止所述均热元件28A将该热量辐射到所述乳房容纳装置20A的所述外侧部26A,而仅使所述均热元件28A将该热量辐射到所述乳房容纳装置20A的所述内侧部25A,即,所述温度维持元件34A可以具有良好的隔热性,例如所述温度维持元件34A可以被实施为但不限于隔热棉或者其他具有隔热功能的元件。
本领域的技术人员可以理解的是,所述温度维持元件34A不仅能够使所述乳房容纳装置20A的温度快速地升高,而且在所述乳房容纳装置20A的温度升高以后,所述温度维持元件34A在所述发热元件35A提供少量的热量时也能够使所述乳房容纳装置20A的温度被维持在适宜温度范围,以节省能源,并提高所述吸奶器的续航能力。
在所述吸奶器的另一个具体示例中,也可以先将所述温度维持元件34A和所述均热元件28A重叠在一起后放入所述成型模具的所述成型空间,从而所述温度维持元件34A和所述均热元件28A在所述成型空间内被加入所述成型空间的所述成型材料包裹,从而在所述成型材料固化后在所述均热元件28A侧形成所述乳房容纳装置20A的所述内侧部25A和在所述温度维持元件34A侧形成所述乳房容纳装置20A的所述外侧部26A。
参考附图7B,在本发明的所述吸奶器的其他示例中,所述温度维持元件34A可以一体地形成于所述乳房容纳装置20A的所述均热元件28A。具体地说,可以将一隔热材料施凃于所述均热元件28A的朝向所述乳房容纳装置20A的所述外侧部26A的一侧,以使所述隔热材料形成重叠于所述均热元件28A的所述温度维持元件34A,从而藉由所述温度维持元件34A阻止所述均热元件28A向所述乳房容纳装置20A的所述外侧部26A辐射该热量。也就是说,所述温度维持元件34A可以是一个隔热层。
参考附图7C,在本发明的所述吸奶器的其他示例中,所述温度维持元件34A也可以一体地形成于所述乳房容纳装置20A的所述外侧部26A,从而藉由所述温度维持元件34A阻止所述均热元件28A向所述乳房容纳装置20A的所述外侧部26A辐射该热量。例如,所述温度维持元件34A可以一体地形成于所述乳房容纳装置20A的所述外侧部26A的内表面和/或外表面,以藉由所述温度维持元件34A阻止所述均热元件28A向所述乳房容纳装置20A的所述外侧部26A辐射该热量。
所述乳房容纳装置20A的所述均热元件28A和所述维持装置30A的所述发热元件35A可以被直接连接在一起,从而在所述维持装置30A的所述发热元件35A被供应能量而产生该热量后,该热量能够被直接传导至所述均热元件28A。
另外,所述维持装置30A也可以包括至少一热量传导元件36A,其中每个所述热量传导元件36A分别被连接于所述发热元件35A。所述乳房容纳装置20A的所述均热元件28A能够被连接于每个所述热量传导元件36A,以藉由每个所述热量传导元件36A将所述发热元件28产生的热量传导至所述均热元件28A。优选地,相邻所述热量传导元件36A之间的间距相等,从而所述发热元件35A产生的热量能够被均匀地传导至所述均热元件28A。在所述吸奶器的另外一个示例中,每个所述热量传导元件36A也可以被连接于所述均热元件28A,以在将所述乳房容纳装置20A和所述维持装置30A相互连接时,每个所述热量传到元件36A能够被连接于所述发热元件35A。
本领域的技术人员可以理解的是,所述热量传导元件36A可以由导热性良好的材料制得,以使得所述发热元件35A产生的热量能够被快速地传导至所述均热元件28A,且在该热量被所述热量传导元件36A传导时减少损失,通过这样的方式,能够有效地提高所述维持装置30A使所述乳房容纳装置20A的温度升高的效率。
所述吸奶器进一步包括一电力供应装置40A,其中所述维持装置30A的所述发热元件35A被电连接于所述电力供应装置40A,以在所述电力供应装置40A向所述维持装置30A的所述发热元件35A供应电力时,所述发热元件35A能够产生该热量,并且所述发热元件35A产生的该热量能够直接或者通过每个所述热量传导元件36A被传导至所述均热元件28A,以升高所述乳房容纳装置20A的温度和使所述乳房容纳装置20A的温度被维持在适宜温度范围。
值得一提的是,所述电力供应装置40A的类型不受限制,其只要能够向所述维持装置30A的所述发热元件35A供应电力即可。例如所述电力供应装置40A可以被实施为干电池、锂电池等,另外,所述电力供应装置40A也可以被实施为一次性电池、可充电电池。优选 地,在本发明的所述吸奶器的这个具体示例中,所述电力供应装置40A被实施为可充电电池,以允许将外部电能补充到所述电力供应装置40A,从而降低所述吸奶器的使用成本。
另外,所述吸奶器进一步包括一壳体50A,其中所述电力供应装置40A和所述维持装置30A的所述发热元件35A以及每个所述热量传导元件36A可以分别被设置于所述壳体50A,以藉由所述壳体50A将所述电力供应装置40A和所述维持装置30A的所述发热元件35A以及每个所述热量传导元件36A集成为一体。
进一步地,所述吸奶器主体10A包括一盛奶器11A和一负压发生组件12A,其中所述盛奶器11A具有一盛奶空间111A、一进奶口112A以及一负压发生通道113A,其中所述进奶口112A和所述负压发生通道113A分别连通于所述盛奶空间111A,所述负压发生组件12A被设置于所述盛奶器11A,且所述负压发生组件12A连通于所述盛奶器11A的所述负压发生通道113A。
优选地,所述负压发生组件12A也可以被设置于所述壳体50A,以在所述壳体50A安装于所述吸奶器主体10A的所述盛奶器11A时,所述负压发生组件12A连通于所述盛奶器11A的所述负压发生通道113A。更优选地,所述负压发生组件12A被电连接于所述电力供应装置40A,以藉由所述电力供应装置40A向所述负压发生组件12A供应电力。
所述乳房容纳装置20A具有所述吸奶通道27A,其中所述乳房容纳装置20A被安装于所述吸奶器主体10A的所述盛奶器11A,且所述乳房容纳装置20A的所述吸奶通道27A连通于所述盛奶器11A的所述进奶口112A,所述负压发生组件12A在被供能后能够使所述乳房容纳装置20A的所述容纳空间21A内形成负压环境,以进行吸奶操作,被从所述乳房100A的乳腺组织吸出的母乳依次通过所述吸奶通道27A和所述进奶口112A后进入和被存储在所述盛奶空间111A。
值得一提的是,所述吸奶器主体10A的所述负压发生组件12A能够被控制以使所述乳房容纳装置20A的所述容纳空间21A交替性地形成所述吸附负压和所述维持负压,其中所述负压发生组件12A的控制方式在本发明的所述吸奶器中不被限制,例如所述负压发生组件12A能够通过电磁阀被控制。
参考附图8,在使用者使用所述吸奶器时,被容纳于所述乳房容纳装置20A的所述容纳空间21A的所述乳房100A贴合于所述乳房容纳装置20A的所述内侧部25A,以使所述乳房容纳装置20A环绕在所述乳房100A的四周。所述维持装置30A的所述发热元件35A被供应电力后产生该热量,且该热量被直接或者通过每个所述热量传导元件36A被传导至所述均热元件28A,以使所述乳房容纳装置20A的温度升高,其中所述乳房容纳装置20A通 过与所述乳房100A的乳房皮肤直接接触的方式,使所述乳房100A的乳房皮肤的温度同步地升高,从而放松所述乳房100A的乳房皮肤和乳腺组织。
参考附图9和图10,在使用者使用所述吸奶器时,被容纳于所述乳房容纳装置20A的所述容纳空间21A的所述乳房100A和所述乳房容纳装置20A的所述内侧部25A之间也可以产生一热量维持空间200A,其中所述热量维持空间200A环绕在所述乳房100A的四周。所述维持装置30A的所述发热元件35A被供应电力后产生该热量,且该热量被直接或者通过每个所述热量传导元件36A被传导至所述均热元件28A,所述均热元件28A将热量辐射至所述热量维持空间200A,以进一步使所述热量维持空间200A的温度升高,从而使所述乳房100A的乳房皮肤的温度同步地升高,进而放松所述乳房100A的乳房皮肤和乳腺组织。
值得一提的是,尽管所述吸奶器能够在所述乳房100A和所述乳房容纳装置20A的所述内侧部25A之间产生所述热量维持空间200A,由于所述乳房100A自身的重力,所述乳房100A的下侧部可能会接触或者贴合于所述乳房容纳装置20A的所述内侧部25A,而仅在所述乳房100A的上侧部和/或两侧与所述乳房容纳装置20A的所述内侧部25A之间形成所述热量维持空间200A。
值得一提的是,附图6A至图10示出的所述吸奶器的吸奶器的过程与附图1A至图5B示出的所述吸奶器的吸奶过程一致。
参考本发明的说明书附图之图11至图20,依本发明的再一较佳实施例的一吸奶器在接下来的描述中将被阐述,其中所述吸奶器包括一吸奶器主体10B和至少一乳房容纳装置20B,其中每个所述乳房容纳装置20B分别被连接于所述吸奶器主体10B。每个所述乳房容纳装置20B分别具有一容纳空间21B,以供容纳一乳房100B,其中所述吸奶器主体10B能够使每个所述乳房容纳装置20B的所述容纳空间21B内形成负压环境,以将母乳从所述乳房100B中排出体外。
值得一提的是,所述乳房容纳装置20B的数量在本发明的所述吸奶器中不受限制,例如所述乳房容纳装置20B的数量可以是一个,也可以是两个。尽管在附图11至图20以及在接下来的描述中仅以所述吸奶器包括一个所述乳房容纳装置20B为例,来阐述本发明的所述吸奶器的特征和优势,本领域的技术人员应当理解,附图11至图20以及在接下来的描述中示出的所述吸奶器并不应被视为对本发明的所述吸奶器的内容和范围的限制。
还值得一提的是,所述吸奶器主体10B可以通过被手动操作的方式使所述乳房容纳装置20B的所述容纳空间21B内形成负压环境,以将母乳从所述乳房100B中排出体外。另外,所述吸奶器主体10B也可以通过被自动操作的方式(例如被供应电力而被操作)使所述乳 房容纳装置20B的所述容纳空间21B内形成负压环境,以将母乳从所述乳房100B中排出体外。
进一步地,参考附图11至图13,所述乳房容纳装置20B被可拆卸地安装于所述吸奶器主体10B,通过这样的方式,一方面,使用者在使用完所述吸奶器之后,能够将所述乳房容纳装置20B和所述吸奶器主体10B拆卸后分别进行清洗和消毒,另一方面,所述吸奶器允许使用者根据需要选择和更换具有不同尺寸的所述容纳空间21B的所述乳房容纳装置20B。另外,本领域的技术人员可以理解的是,当所述乳房容纳装置20B和所述吸奶器主体10B中的任何一个损坏时或者不适于继续被使用时,使用者可以仅更换损坏的或者不适于被继续使用的一个即可,这样,可以降低所述吸奶器的使用成本。
更进一步地,所述吸奶器主体10B包括一盛奶器11B和一负压发生组件12B,其中所述负压发生组件12B被设置于所述盛奶器11B,所述乳房容纳装置20B被可拆卸地安装于所述吸奶器主体10B的所述盛奶器11B,所述负压发生组件12B能够使所述乳房容纳装置20B的所述容纳空间21B内形成负压环境。优选地,所述负压发生组件12B被可拆卸地安装于所述盛奶器11B。
所述盛奶器11B具有一盛奶空间111B、一吸奶口112B以及一负压发生通道113B,其中所述吸奶口112B和所述负压发生通道113B分别连通于所述盛奶空间111B,所述负压发生组件12B在被安装于所述盛奶器11B后,所述负压发生组件12B通过所述负压发生通道113B连通于所述盛奶空间111B,从而所述负压发生组件12B能够通过所述盛奶器11B使所述容纳空间21B形成负压环境。
所述乳房容纳装置20B具有一吸奶通道27B,其中所述吸奶通道27B连通于所述容纳空间21B。在所述乳房容纳装置20B被安装于所述吸奶器主体10B的所述盛奶器11B后,所述乳房容纳装置20B的所述吸奶通道27B通过所述盛奶器11B的所述吸奶口112B连通于所述盛奶器11B的所述盛奶空间111B,以使所述负压发生组件12B和所述乳房容纳装置20B的所述容纳空间21B连通,从而藉由所述负压发生组件12B使所述容纳空间21B内形成负压环境。
当使用所述吸奶器吸奶时,所述乳房100B被容纳于所述乳房容纳装置20B的所述容纳空间21B内,所述负压发生组件12B被供应能量(例如被供应电力)以使所述乳房容纳装置20B的所述容纳空间21B形成一吸附负压以将母乳从所述乳房100B中排出体外,和使所述乳房容纳装置20B的所述容纳空间21B形成一维持负压以使所述乳房容纳装置20B被保持在所述乳房100B的位置,其中所述吸附负压的数值大于所述维持负压的数值,并且所述 吸附负压和所述维持负压交替形成。可以理解的是,所述吸附负压的数值和所述维持负压的数值均大于0。
值得一提的是,在本发明的所述吸奶器中,所述吸奶器主体10B使所述乳房容纳装置20B的所述容纳空间21B内形成所述维持负压的方式,在使用者使用所述吸奶器的整个过程中,所述乳房容纳装置20B即便是在没有被用手扶持或者握持的情况下,也能够被保持在所述乳房100B的位置而不会从所述乳房100B的位置脱落,从而使得吸奶过程更加方便。
还值得一提的是,所述吸奶器主体10B使所述乳房容纳装置20B的所述容纳空间21B内形成的所述吸附负压和所述维持负压交替形成的方式,能够使所述乳房容纳装置20B在不需要外力维持的情况下被保持在所述乳房100B的位置,是现有技术的吸奶器意料不到的,这不仅对于提高吸奶的便捷性和舒适度特别的重要,而且在吸奶的过程中能够使得所述乳房100B得到按摩,以放松所述乳房100B的乳房皮肤和乳腺组织,进而有利于使用者的所述乳房100B的健康。
优选地,所述乳房容纳装置20B可以被实施为喇叭状或者漏斗状,以使所述乳房容纳装置20B形成所述容纳空间21B。当然,在所述吸奶器的其他示例中,所述乳房容纳装置20B还可以被实施为其他可能的形状。值得一提的是,喇叭状或者漏斗状的所述乳房容纳装置20B与使用者的所述乳房100B的形状相互匹配,以在所述乳房100B被容纳于所述乳房容纳装置20B的所述容纳空间21B之后,在所述乳房容纳装置20B和所述乳房100B的乳房皮肤之前不会产生缝隙,从而所述负压发生组件12B可以在提供较小的真空吸附力的前提下,使所述容纳空间21B内形成负压环境,通过这样的方式,所述吸奶器对所述负压发生组件12B的功率要求下降,以降低所述吸奶器的制造成本和使所述吸奶器小型化、轻便化。
所述吸奶器进一步包括一电力供应装置40B,其中所述负压发生组件12B被电连接于所述电力供应装置40B,以藉由所述电力供应装置40B向所述负压发生组件12B供应电力,从而藉由所述负压发生组件12B使所述乳房容纳装置20B的所述容纳空间21B交替形成所述吸附负压和所述维持负压。
本领域的技术人员应当理解的是,所述负压发生组件12B的控制方式在本发明的所述吸奶器中不受限制,例如所述负压发生组件12可以包括真空发生器和电磁阀,其中真空发生器和电磁阀能够相互配合,以使所述负压发生组件12的状态被改变,从而使得所述负压发生组件12能够使所述乳房容纳装置20的所述容纳空间21交替产生所述吸附负压和所述维持负压。
另外,所述电力供应装置40B的类型不受限制,其只要能够向所述负压发生组件12B供应电力即可,例如所述电力供应装置40B能够被实施为一次性电池或者被实施为可充电电池。优选地,所述电力供应装置40B被实施为可充电锂电池,以在允许外部电能被补充到所述电力供应装置40B,从而降低所述吸奶器的使用成本。
进一步地,所述吸奶器进一步包括一壳体50B,其中所述电力供应装置40B和所述负压发生组件12B中的至少一个被集成于所述壳体50B。优选地,所述电力供应装置40B和所述负压发生组件12B均被设置于所述壳体50B。
所述壳体50B被可拆卸地安装于所述吸奶器主体10B的所述盛奶器11B,其中当所述壳体50B被安装于所述吸奶器主体10B的所述盛奶器11B时,所述负压发生组件12B连通于所述盛奶器11B的所述负压发生通道113B。
参考附图11至图13,所述吸奶器进一步包括一维持装置30B,其中所述维持装置30B包括一发热元件35B,其中所述发热元件35B被设置于所述乳房容纳装置20B,其中当所述发热元件35B被供应能量(例如被供应电力)时,所述发热元件35B能够产生热量,以升高所述乳房容纳装置20B的温度。可以理解的是,当持续地向所述发热元件35B供应能量以使所述发热元件35B持续地产生热量时,所述乳房容纳装置20B的温度被维持在适宜温度范围。
在本发明的所述吸奶器的这个具体示例中,所述发热元件35B被电连接于所述电力供应装置40B,以藉由所述电力供应装置40B向所述发热元件35B供应电力,从而使所述发热元件35B产生热量。
在本发明的所述吸奶器的一个示例中,可以先将所述乳房容纳装置20B安装于所述吸奶器主体10B的所述盛奶器11B上,然后在将所述壳体50B安装于所述吸奶器主体10B的所述盛奶器11B上时,所述维持装置30B的所述发热元件35B被电连接于所述电力供应装置40B,从而所述电力供应装置40B能够向所述发热元件35B供应电力,以使所述发热元件35B产生热量。
在本发明的所述吸奶器的另一个示例中,也可以先将所述壳体50B安装于所述吸奶器主体10B的所述盛奶器11B上,然后在将所述乳房容纳装置20B安装于所述吸奶器主体10B的所述盛奶器11B上时,所述维持装置30B的所述发热元件35B被电连接于所述电力供应装置40B,从而所述电力供应装置40B能够向所述发热元件35B供应电力,以使所述发热元件35B产生热量。
所述吸奶器进一步包括一导电装置60B,其中所述导电装置60B包括一第一导电构件 61B和一第二导电构件62B,其中所述第一导电构件61B被电连接于所述电力供应装置40B,所述第二导电构件62B被电连接于所述维持装置30B的所述发热元件35B,其中所述第二导电构件62B能够被电连接于所述第一导电构件61B,以使所述导电装置60B将所述维持装置30B的所述发热元件35B和所述电力供应装置40B电连接在一起,从而藉由所述电力供应装置40B向所述维持装置30B的所述发热元件35B供应电力。
参考附图14,所述第一导电构件61B被设置于所述壳体50B,且所述第一导电构件61B的至少一部分裸露在所述壳体50B的表面。相应地,所述第二导电构件62B被设置于所述乳房容纳装置20B,且所述第二导电构件62B的至少一部分裸露在所述乳房容纳装置20B的表面。当所述壳体50B被安装于所述吸奶器主体10B的所述盛奶器11B时,所述第一导电构件61B和所述第二导电构件62B相互接触而导通所述电力供应装置40B和所述维持装置30B的所述发热元件35B,通过这样的方式,所述电力供应装置40B能够向所述维持装置30B的所述发热元件35B供应电力,以使所述发热元件35B产生热量。
也就是说,在本发明的所述吸奶器的这个具体示例中,在将所述壳体50B安装于所述吸奶器主体10B的所述盛奶器11B的同时,能够使所述第一导电构件61B和所述第二导电构件62B相互接触而导通所述电力供应装置40B和所述维持装置30B的所述发热元件35B。
值得一提的是,所述第一导电构件61B和所述第二导电构件62B可以同时被实施为导电片或者导电触点,或者所述第一导电构件61B和所述第二导电构件62B中的一个被实施为导电片,另一个被实施为导电触点,本发明的所述吸奶器在这方面不受限制。换言之,所述第一导电构件61B和所述第二导电构件62B的类型在本发明的所述吸奶器中不受限制,其只要能够相互接触而导通所述电力供应装置40B和所述维持装置30B的所述发热元件35B即可。
附图15示出了所述吸奶器的一个变形实施方式,其中所述第一导电构件61B可以被实施为一插入件或者所述第一导电构件61B被实施为包含所述插入件,所述第二导电构件62B可以被实施为一被插入件或者所述第二导电构件62B被实施为包含所述被插入件,以使所述第一导电构件61B通过插入所述第二导电构件62B的方式,藉由所述导电装置60B导通所述电力供应装置40B和所述维持装置30B的所述发热元件35B。
本领域的技术人员可以理解的是,当所述壳体50B安装于所述吸奶器主体10B的所述盛奶器11B时,所述第一导电构件61B插入到所述第二导电构件62B的内部,此时,所述第一导电构件61B和所述第二导电构件62B不仅能够导通所述电力供应装置40B和所述维持装置30B的所述发热元件35B,而且所述第一导电构件61B和所述第二导电构件62B还 能够相互配合以防止在所述吸奶器被使用时,所述壳体50B从所述吸奶器主体10B上脱落,从而保证所述吸奶器被使用时的可靠性和稳定性。
附图16示出了所述吸奶器的另一个变形实施方式,其中所述第一导电构件61B可以被实施为一被插入件或者所述第一导电构件61B被实施为包含所述被插入件,所述第二导电构件62B被实施为一插入件或者所述第二导电构件62B被实施为包含所述插入件,以使所述第二导电构件62B通过插入所述第一导电构件61B的方式,藉由所述导电装置60B导通所述电力供应装置40B和所述维持装置30B的所述发热元件35B,并且所述第一导电构件61B和所述第二导电构件62B还能够相互配合以防止在所述吸奶器被使用时,所述壳体50B从所述吸奶器主体10B上脱落,从而保证所述吸奶器被使用时的可靠性和稳定性。
附图17示出了所述吸奶器的再一个变形实施方式,其中所述第一导电构件61B和所述第二导电构件62B均可以被实施为一无线传输模块,其中所述第一导电构件61B被设置于所述壳体50B的内部,所述第二导电构件62B被设置于所述乳房容纳装置20B的内部,当所述壳体50B被安装于所述吸奶器主体10B的所述盛奶器11B时,所述第一导电构件61B和所述第二导电构件62B相互感应,以实现电力在所述电力供应装置40B和所述维持装置30B的所述发热元件35B之间的传输。
本领域的技术人员可以理解的是,在附图14至图17中示出的所述第一导电构件61B和所述第二导电构件62B的实施方式仅为举例以进一步阐述本发明的所述吸奶器的特征和优势,因此,所述第一导电构件61B和所述第二导电构件62B的实施方式并不应被视为对本发明的所述吸奶器的内容和范围的限制。
进一步地,所述乳房容纳装置20B包括一内侧部25B和一外侧部26B,其中所述发热元件35B可以被设置于相互重叠的所述内侧部25B和所述外侧部26B之间,以使所述发热元件35B被设置于所述乳房容纳装置20B。
在本发明的所述吸奶器的一个具体示例中,所述乳房容纳装置20B的所述内侧部25B和所述外侧部26B以及所述维持装置30B的所述发热元件35B可以被单独地制得,并且所述内侧部25B和所述外侧部26B可以通过卡合或者类似的方式使所述发热元件35B被保持在相互重叠的所述内侧部25B和所述外侧部26B之间。在本发明的所述吸奶器的另一个具体示例中,所述维持装置30B的所述发热元件35B和所述乳房容纳装置20B的所述内侧部25B和所述外侧部26B也可以一体地形成。
另外,所述维持装置30B进一步包括一温度维持元件34B,其中所述温度维持元件34B被设置于所述乳房容纳装置20B或者所述温度维持元件34B可以形成于所述乳房容纳装置 20B,以藉由所述温度维持元件34B维持所述乳房容纳装置20B的温度在适宜温度范围。优选地,所述温度维持元件34B由隔热较好的材料制得,例如所述温度维持元件34B可以是隔热棉。
所述温度维持元件34B可以是一个单独的部件,其在形成后被重叠地设置于所述温度维持元件34B的所述外侧部26B,以用于阻止所述乳房容纳装置20B的所述容纳空间21B内的温度通过所述乳房容纳装置20B的所述外侧部26B和所述乳房容纳装置20B的外部环境交换,从而使所述乳房容纳装置20B的温度被维持在适宜温度范围。
值得一提的是,所述温度维持元件34B可以被重叠地设置于所述乳房容纳装置20B的所述外侧部26B的内表面,以使所述温度维持元件34B被保持在所述容纳空间21B内。所述温度维持元件34B也可以被重叠地设置于所述乳房容纳装置20B的所述外侧部26B的外表面。
在本发明的所述吸奶器的其他示例中,所述温度维持元件34B也可以一体地形成于所述乳房容纳装置20B的所述外侧部26B,例如所述温度维持元件34B可以一体地形成于所述乳房容纳装置20B的所述外侧部26B的内表面和/或外表面。具体地说,可以将一隔热材料施凃于所述乳房容纳装置20B的所述外侧部26B的内表面和/或外表面,以在所述隔热材料固化后形成重叠于所述外侧部26B的所述温度维持元件34B,以藉由所述温度维持元件34B阻止所述乳房容纳装置20B的所述容纳空间21B内的温度和所述乳房容纳装置20B的外部环境交换,从而使所述乳房容纳装置20B的温度被维持在适宜温度范围。
在本发明的所述吸奶器的其他示例中,所述维持装置30B的所述温度维持元件34B和所述乳房容纳装置20B的所述外侧部26B是一体式结构。例如,所述乳房容纳装置20B的所述外侧部26B可以具有隔热能力,以阻止所述乳房容纳装置20B的所述容纳空间21B内的热量通过所述乳房容纳装置20B的所述外侧部26B与外部环境交换,从而使所述乳房容纳装置20B的温度被维持在适宜温度范围。
参考附图18,使用者在使用所述吸奶器时,被容纳于所述乳房容纳装置20B的所述容纳空间21B的所述乳房100B贴合于所述乳房容纳装置20B的所述内侧部25B,以使所述乳房容纳装置20B环绕在所述乳房100B的四周。当所述维持装置30B在被供应电力后使所述乳房容纳装置20B的温度升高时,所述乳房容纳装置20B通过与所述乳房100B的乳房皮肤直接接触的方式,使所述乳房100B的乳房皮肤的温度同步地升高,从而放松所述乳房100B的乳房皮肤和乳腺组织。
参考附图19和图20,在使用者使用所述吸奶器时,被容纳于所述乳房容纳装置20B的 所述容纳空间21B的所述乳房100B和所述乳房容纳装置20B的所述内侧部25B之间产生一热量维持空间200B,其中所述热量维持空间200B环绕在所述乳房100B的四周。当所述维持装置30B在被供应电力后使所述乳房容纳装置20B的温度升高时,所述乳房容纳装置20B的温度与所述热量维持空间200B的温度相互交换,以进一步使所述热量维持空间200B的温度升高,从而使所述乳房100B的乳房皮肤的温度同步地升高,进而放松所述乳房100B的乳房皮肤和乳腺组织。
值得一提的是,尽管所述吸奶器能够在所述乳房100B和所述乳房容纳装置20B的所述内侧部25B之间产生所述热量维持空间200B,由于所述乳房100B自身的重力,所述乳房100B的下侧部可能会接触或者贴合于所述乳房容纳装置20B的所述内侧部25B,而仅在所述乳房100B的上侧部和/或两侧与所述乳房容纳装置20B的所述内侧部25B之间形成所述热量维持空间200B。
值得一提的是,附图11至图20示出的所述吸奶器的吸奶器的过程与附图1A至图5B示出的所述吸奶器的吸奶过程一致。
根据本发明的另一个方面,本发明进一步提供一使一吸奶器的乳房容纳装置发热的方法,其中所述发热方法包括如下步骤:
(a)供应电力至被设置于所述乳房容纳装置20B的一发热元件35B,以使所述发热元件35B产生热量而加热所述乳房容纳装置20B;和(b)阻止所述发热元件35B产生的热量辐射至所述乳房容纳装置20B的外部环境,以使所述乳房容纳装置20B的温度被保持在适宜温度范围。
根据本发明的另一个方面,本发明进一步提供一吸奶方法,其中所述吸奶方法包括如下步骤:
在一乳房100B被容纳于一乳房容纳装置20B的一容纳空间21B时,通过一吸奶器主体10B使所述容纳空间21B形成一吸附负压以将母乳从所述乳房100中排出体外;和
通过所述吸奶器主体10B使所述容纳空间21B形成一维持负压以使所述乳房容纳装置20B被保持在所述乳房100B,其中所述吸附负压的数值大于所述维持负压的数值,并且所述吸附负压和所述维持负压交替形成。
根据本发明的另一个方面,本发明进一步提供一吸奶方法,其中所述吸奶方法包括如下步骤:
(i)预热一乳房容纳装置20B和使所述乳房容纳装置20B的温度被维持在适宜温度范围;
(ii)使一乳房100B被保持在所述乳房容纳装置20B的一容纳空间21B;以及
(iii)通过被连接于所述乳房容纳装置20B的一吸奶器主体10B使所述容纳空间21B内形成负压环境,以将母乳从所述乳房100中排出体外。
依本发明的另一个方面,本发明的所述吸奶器进一步提供一清洗装置510,参考本发明的说明书附图之图21至图25,依本发明的一较佳实施例的,所述清洗装置510在接下来的描述中被阐述,其中所述清洗装置510可以被用于清洗一连接管5100。
值得一提的是,所述连接管5100可以是但不限于用于吸奶器的各个部件之间的连接管、奶瓶的吸管等。本领域的技术人员可以理解的是,上述列举的所述连接管5100以及在附图23A至图24B示出的所述连接管5100仅为示例,以用于说明和阐述本发明的所述清洗装置510的特征和优势,因此,所述连接管5100的类型和用途并不应被视为对本发明的所述清洗装置510的内容和范围的限制。
通常情况下(并非全部),所述连接管5100呈细长状,例如所述连接管5100的内径尺寸大小范围是1mm~10mm。尽管如此,本领域的技术人员可以理解的是,本发明的所述清洗装置510不仅能够清洗内径尺寸为1mm的所述连接管5100,也可以清洗内径尺寸为10mm的所述连接管5100。当然,所述清洗装置510也可以用于清洗内径尺寸大于10mm的所述连接管5100,但是本领域的技术人员可以理解的是,当所述连接管5100的内径尺寸大于10mm时,使用者可以选择其他的清洗方式对所述连接管5100进行清洗。
优选地,所述清洗装置510适于被应用于清洗内径尺寸范围为1mm~5mm的所述连接管5100。更优选地,所述清洗装置510特别适于被应用于清洗内径尺寸为2mm或3mm的所述连接管5100。
另外,所述连接管5100的长度也可以不受限制,例如在本发明的所述清洗装置510中,所述清洗装置510适于被应用于清洗长度范围在10mm~100mm的所述连接管5100。优选地,所述清洗装置510适于被应用于清洗长度范围在10mm~500mm的所述连接管5100,例如所述连接管5100的尺寸范围可以选自10mm~50mm、50mm~100mm、100mm~150mm、150mm~200mm、200mm~250mm、250mm~300mm、300mm~350mm、350mm~400mm、400mm~450mm或450mm~500mm。
具体地,所述清洗装置510包括一清洗本体511和一真空发生器512,其中所述清洗本体511具有一进流端5111以及一出流端5112,其中所述真空发生器512被连接于所述清洗本体511的所述进流端5111和所述出流端5112,以使所述清洗本体511和所述真空发生器512形成一流体通路513。
更具体地,所述清洗本体511的所述进流端5111具有一进流口51110,所述出流端5112具有一出流口51120,其中被连接于所述清洗本体511的所述进流端5111和所述出流端5112的所述真空发生器512进一步被连通于所述进流口51110和所述出流口51120,以使所述清洗本体511和所述真空发生器512形成所述流体通路513。
在本发明的所述清洗装置510的一个示例中,所述真空发生器512可以是手动真空发生器,以在后续,通过手动操作所述真空发生器512的方式,使所述流体通路513形成一个负压环境,从而外部环境的流体能够自所述清洗本体511的所述进流端5111的所述进流口51110进入所述流体通路513,和自所述出流端5112的所述出流口51120排出所述流体通路513。
在本发明的所述清洗装置510的另一个示例中,所述真空发生器512也可以是电动真空发生器,其中当所述真空发生器512被供应电力时,所述真空发生器512可以使所述流体通路513形成一个负压环境,从而外部环境的流体能够自所述清洗本体511的所述进流端5111的所述进流口51110进入所述流体通路513,和自所述出流端5112的所述出流口51120排出所述流体通路513。
值得一提的是,所述真空发生器512的类型在本发明的所述清洗装置510中不受限制,其只要能够使所述流体通路513形成负压环境即可,在接下来的描述中,以所述真空发生器512被实施为电动真空发生器为例,对本发明的所述清洗装置510的特征和优势进一步作出阐述,尽管如此,本领域的技术人员可以理解的是,下述要描述的被实施为电动真空发生器的所述真空发生器512并不应被视为对本发明的所述清洗装置510的内容和范围的限制。
进一步地,所述清洗装置510进一步包括一电力供应元件514,其中所述真空发生器512被电连接于所述电力供应元件514,以在所述电力供应元件514供应电力至所述真空发生器512而驱动所述真空发生器512工作时,所述真空发生器512使所述流体通路513形成负压环境。
值得一提的是,所述电力供应元件514的类型在本发明的所述清洗装置510中不受限制,其只要能够供应电力至所述真空发生器512即可,例如所述电力供应元件514可以被实施为一次性电池或者可充电电池。优选地,所述电力供应元件514被实施为可充电锂电池,从而,使用者可以将外部电能(例如市电)补充到所述电力供应元件514,以降低所述清洗装置510的使用成本和提高所述清洗装置510的续航能力。
所述清洗本体511可以进一步包括一清洗主体5113,其中所述进流端5111和所述出流端5112分别一体地成型于所述清洗主体5113,并且所述进流端5111和所述出流端5112分 别突出于所述清洗主体5113,以便于在后续被用于安装所述连接管5100。也就是说,所述连接管5100的端部可以被可分离地安装于所述清洗本体511的所述进流端5111或所述出流端5112。所述真空发生器512可以被设置于所述清洗本体511的所述清洗主体5113的内部,以使所述真空发生器512在所述清洗主体5113的内部连接于所述进流端5111和所述出流端5112。
本领域的技术人员可以理解的是,所述清洗本体511的所述清洗主体5113可以不是一体式结构,以便于将所述真空发生器512设置于所述清洗主体5113的内部。
另外,所述电力供应元件514也可以被设置于所述清洗本体511的所述清洗主体5113的内部,以在所述清洗主体5113的内部,使所述真空发生器512被电连接于所述电力供应元件514。也就是说,所述清洗本体511的所述清洗主体5113可以形成所述清洗装置510的壳体。
参考附图21,所述清洗装置510也可以包括一壳体515,其中所述清洗本体511的所述进流端5111和所述出流端5112可以分别被设置于所述壳体515,并且所述进流端5111和所述出流端5112分别突出于所述壳体515,从而在后续便于安装所述连接管5100至所述进流端5111或所述出流端5112。优选地,所述清洗本体511的所述进流端5111和所述出流端5112也可以分别一体地成型于所述壳体515。
所述真空发生器512和所述电力供应元件514分别被设置于所述壳体515的内部,以使所述真空发生器512在所述壳体515的内部连接于所述清洗本体511的所述进流端5111和所述出流端5112,从而使所述真空发生器512和所述清洗本体511形成所述流体通路513,并且所述流体通路513的所述进流口51110和所述出流口51120分别连通于外部环境。另外,所述真空发生器512在所述壳体515的内部被电连接于所述电力供应元件514。
可以理解的是,所述清洗装置510进一步包括一控制开关516,其中所述控制开关516被可操作地设置于所述壳体515,并且所述真空发生器512和所述电力供应元件514分别被电连接于所述控制开关516,其中通过所述控制开关516可以控制所述电力供应元件514向所述真空发生器512的供电状态,即,当在所述壳体515的外部打开所述控制开关516时,可以使所述电力供应元件514向所述真空发生器512供电,当在所述壳体515的外部关闭所述控制开关516时,可以阻止所述电力供应元件514向所述真空发生器512供电。另外,所述控制开关516还可以控制所述真空发生器512的工作状态。
另外,所述清洗装置510进一步包括一充电端口517,所述充电端口517被设置于所述壳体515,并且所述充电端口517被电连接于所述电力供应元件514,通过所述充电端口517 可以将外部电能在所述壳体515的外部补充到所述电力供应元件514。值得一提的是,所述充电端口517的类型和位置在本发明的所述清洗装置510中不受限制。
参考附图22A、图22B和图22C,所述清洗装置510进一步包括一压力释放器518,其中所述压力释放器518被连通于所述流体通路513和外部环境,以在所述真空发生器512使所述流体通路513形成负压环境时,所述压力释放器518被设置使所述流体通路513内的压力产生交替变化,即,所述压力释放器518使所述流体通路513内产生一第一负压和一第二负压,其中所述第一负压的数值大于所述第二负压的数值,并且所述第一负压和所述第二负压的数值均大于0。
值得一提的是,所述压力释放器518的类型在本发明的所述清洗装置510中不受限制,例如所述压力释放器518可以被实施为电磁阀、继电器以及其他任何类型的能够释放所述流体通路513的压力的机构。在本发明的接下来的描述中,以所述压力释放器518被实施为电磁阀为例进一步阐述本发明的所述清洗装置510的特征和优势,本领域的技术人员可以理解的是,被实施为电磁阀的所述压力释放器518仅为举例,其并不应被视为对本发明所述清洗装置510的内部和范围的限制。
优选地,所述压力释放器518可以被实施为常闭型的电磁阀,其中所述压力释放器518被电连接于所述电力供应元件514,当所述电力供应元件514没有向所述压力释放器518供应电力时,所述压力释放器518处于关闭状态,此时,所述流体通路513内为所述第一负压。当所述电力供应元件514向所述压力释放器518供应电力时,所述压力释放器518处于打开状态,此时,所述流体通路513内为所述第二负压。更优选地,所述压力释放器518被设置于所述壳体515的内部。
值得一提的是,所述压力释放器518也可也被实施为常开型的电磁阀。本领域的技术人员可以理解的是的,当所述压力释放器518被实施为常闭型的电磁阀时,所述压力释放器518可以消耗更少的电能,从而有利于提高所述清洗装置510的续航能力,因此,在接下来的描述中,以所述压力释放器518被进一步实施为常闭型的电磁阀为例,进一步阐述本发明的所述清洗装置510的特征和优势。
在附图22A示出的所述清洗装置510的一个示例中,所述压力释放器518具有一进口端5181和一出口端5182,其中所述压力释放器518的所述进口端5181具有一进气口51810,所述出口端5182具有一出气口51820,其中所述压力释放器518的所述进口端5181被连接于所述真空发生器512的用于连接所述清洗本体511的所述进流端5111的端部或者所述压力释放器518的所述进口端5181被连接于所述清洗本体511的所述进流端5111,以使所述 压力释放器518的所述进口端5181的所述进气口51810连通于所述流体通路513,并且所述压力释放器518的所述出口端5182的所述出气口51820连通于外部环境。
在附图22B示出的所述清洗装置510的另一个示例中,所述压力释放器518的所述进口端5181被连接于所述真空发生器512的用于连接所述清洗本体511的所述出流端5112的端部或者所述压力释放器518的所述进口端5181被连接于所述清洗本体511的所述出流端5112,以使所述压力释放器518的所述进口端5181的所述进气口51810连通于所述流体通路513,并且所述压力释放器518的所述出口端5182的所述出气口51820连通于外部环境。
在附图22C示出的所述清洗装置510的另一个示例中,所述压力释放器518的所述进口端5181被连接于所述真空发生器512的用于连接所述清洗本体511的所述进流端5111的端部或者所述压力释放器518的所述进口端5181被连接于所述清洗本体511的所述进流端5111,以使所述压力释放器518的所述进口端5181的所述进气口51810连通于所述流体通路513,所述压力释放器518的所述出口端5182被连接于所述真空发生器512的用于连接所述清洗本体511的所述出流端5112的端部或者所述压力释放器518的所述出口端5182被连接于所述清洗本体511的所述出流端5112,以使所述压力释放器518的所述进口端5181的所述进气口51810和所述出口端5182的所述出气口51820均连通于所述流体通路513。
进一步地,参考附图21,所述清洗装置510进一步包括一泄压阀519,其中所述泄压阀519被设置于所述壳体515,并且所述泄压阀519连通于所述流体通路513。当在所述壳体515的外部操作所述泄压阀519而使所述泄压阀519处于打开状态时,外部环境通过处于打开状态的所述泄压阀519和所述流体通路513相互连通,从而使所述流体通路513的内部的压力和外部环境的压力一致,例如所述流体通路513的内部的气压和外部环境的气压一致。通常情况下,所述泄压阀519处于封闭状态,以在所述真空发生器512工作时使所述流体通路513内形成负压环境,例如在使用所述清洗装置510清洗所述连接管5100时,所述泄压阀519处于封闭状态,以在所述真空发生器512工作时使所述流体通路513内形成负压环境。
值得一提的是,所述泄压阀519可以是一个手动阀,也可以是一个电动阀,例如当所述泄压阀519被实施为电动阀时,可以将所述泄压阀519电连接于所述电力供应元件514。换言之,所述泄压阀519的类型在本发明的所述清洗装置510中不受限制。
参考附图23A和图23B所示,所述清洗装置510每次可以清洗一个所述连接管5100,其中所述连接管5100的端部可以被安装于所述清洗装置510的所述清洗本体511的所述进流端5111或所述出流端5112。参考附图24A和图24B所示,所述清洗装置510每次也可以清洗两个所述连接管5100,其中每个所述连接管5100的端部分别被安装于所述清洗装置510 的所述清洗本体511的所述进流端5111和所述出流端5112。在接下来的描述中,以所述清洗装置510每次清洗一个所述连接管5100,并且所述连接管5100的端部被安装于所述清洗装置510的所述清洗本体511的所述进流端5111为例,对所述清洗装置510被用于清洗所述连接管5100的过程进行说明,以进一步阐述本发明的所述清洗装置510的特征和优势。
另外,为了便于说明和理解,将所述连接管5100的端部分别定义为一安装端5101和一自由端5102,其中所述连接管5100的被用于安装于所述清洗本体511的所述进流端5111的端部被定义为所述安装端5101,所述连接管5100的另一个端部被定义为所述自由端5102。本领域的技术人员可以理解的是,将所述连接管5100的端部分别定义为所述安装端5101和所述自由端5102仅为了便于说明和阐述本发明的所述清洗装置510和利用所述清洗装置510清洗所述连接管5100的过程,其并不应被视为对本发明的所述清洗装置510的内容和范围的限制。
具体地,将所述连接管5100的所述安装端5101安装于所述清洗装置510的所述清洗本体511的所述进流端5111,以使所述连接管5100的内部空间在所述进流端5111通过所述进流口51110连通于所述流体通路513。将所述连接管5100的所述自由端5102置于一液面5201的下部,例如在一个容器5300内盛纳一液体5200,其中所述液面5201形成所述液面5201,将所述连接管5100的所述自由端5102插入到和保持在所述液面5201以下。
值得一提的是,在本发明的所述清洗装置510的这个示例中,流体可以被实施为所述液体5200,当然,在所述清洗装置510的其他示例中,流体也可以被实施为气体或者气体和液体的混合物,本发明的所述清洗装置510在这方面不受限制。
所述电力供应元件514向所述真空发生器512供应电力以使所述真空发生器512处于工作状态,此时,所述真空发生器512使所述流体通路513形成负压环境,以使被容纳于所述容器5300的所述液体5200自所述连接管5100的所述自由端5102进入所述连接管5100的内部空间,并自所述连接管5100的所述自由端5102排出所述连接管5100的内部空间,并使所述液体5200自所述清洗本体511的所述进流端5111进入所述流体通路513和自所述清洗本体511的所述出流端5112排出所述流体通路513,通过这样的方式,清洗所述连接管5100的内部空间。可以理解的是,所述流体通路513也可以被所述液体5200清洗。
值得一提的是,所述真空发生器512使所述流体通路513内产生的负压能够使所述液体5200在所述连接管5100的内部空间快速地流动,从而通过冲刷所述连接管5100的内壁的方式清洗依附于所述连接管5100的内壁的污染物,例如灰尘、细菌和奶渍等污染物。
优选地,所述电力供应元件514向所述压力释放器518供应电力,以使所述压力释放器 518处于工作状态,此时,所述压力释放器518使所述流体通路513内交替产生所述第一负压和所述第二负压。当所述压力释放器518使所述流体通路513内产生所述第一负压时,所述液体5200能够以较快的速度自所述连接管5100的所述自由端5102进入所述连接管5100的内部空间和自所述连接管5100的所述安装端5101排出所述连接管5100的内部空间,当所述压力释放器518使所述流体通路513内产生所述第二负压时,所述液体5200能够以较慢的速度自所述连接管5100的所述自由端5102进入所述连接管5100的内部空间和自所述连接管5100的所述安装端5101排出所述连接管5100的内部空间。
也就是说,所述压力释放器518通过使所述流体通路513内交替产生所述第一负压和所述第二负压的方式,能够使所述液体5200以快慢交替的方式进入所述连接管5100的内部空间而冲刷所述连接管5100的内壁,从而有效地清洗依附于所述连接管5100的内壁的灰尘、细菌和奶渍等污染物,这是现有技术的清洗所述连接管5100的方式也料不到的,并且对于提高所述连接管5100的内部空间的清洁性和卫生性来说特别的有效。
另外,在使用所述清洗装置510清洗所述连接管5100时,所述液体5200也可以进入所述真空发生器512和所述压力释放器518的内部,以清洗所述真空发生器和所述压力释放器518,从而进一步保证所述连接管5100被清洗后的可靠性。
可以理解的是,在使用所述清洗装置510清洗所述连接管5100的过程中,无论所述压力释放器518使所述流体通路513产生所述第一负压还是所述第二负压,所述流体通路513均是负压环境,以使所述液体5200能够源源不断地自所述连接管5100的所述自由端5102进入所述连接管5100的内部空间。所述压力释放器518使所述流体通路513产生的所述第一负压和所述第二负压能够使自所述连接管5100的所述自由端5102进入所述连接管5100的内部空间的所述液体5200产生快慢交替变化,以提供更好的冲刷效果。
当使用所述清洗装置510清洗所述连接管5100之后,可以停止向所述真空发生器512和所述压力释放器518供应电力,并通过所述泄压阀519使所述外部环境和所述流体通路513连通,以消除产生于所述流体通路513内的负压环境。
参考附图25,依本发明的另一个方面,本发明进一步提供一通过所述清洗装置510清洗所述连接管5100的方法500,其中所述清洗方法500包括如下步骤:
步骤510,(a)使所述清洗装置510的一真空发生器512连通于一清洗本体511的一进流口51110和一出流口51120,以形成一流体通路513;
步骤520,(b)将所述连接管5100的一个端部通过所述清洗本体511的所述进流口51110或所述出流口51120连通于所述流体通路513;以及
步骤530,(c)通过所述真空发生器512使所述流体通路513产生负压环境,以使流体自所述连接管5100的一个端部进入所述连接管5100的内部空间和自所述连接管5100的另一个端部排出所述连接管5100的内部空间,从而清洗所述连接管5100。
参考附图26至图28B,依本发明的另一个方面,本发明进一步提供一带有清洗装置的吸奶器,为了便于说明,本发明在接下来的描述中将所述带有清洗装置的吸奶器简称为所述吸奶器。具体地,所述吸奶器包括所述清洗装置510和至少一乳房容纳装置520,其中所述乳房容纳装置520具有一容纳空间521,以供容纳一乳房5400,所述乳房容纳装置520的所述容纳空间521被连通于所述清洗装置510的所述流体通路513,以使所述容纳空间521内形成负压环境,从而母乳从所述乳房5400中排出体外。
进一步地,所述吸奶器包括一盛奶器530,其中所述盛奶器530具有一盛奶空间531和一开口532,所述开口532连通于所述盛奶空间531,所述盛奶空间531通过所述开口532连通于所述乳房容纳装置520的所述容纳空间521,以在母乳被从所述乳房5400的乳腺组织中吸出后进一步被导流至和被存储在所述盛奶器530的所述盛奶空间531。
更进一步地,所述吸奶器包括一支撑架540,其中所述支撑架540具有一第一通道541和一第二通道542。所述支撑架540被安装于所述盛奶器530,并且所述支撑架540的所述第一通道541和所述第二通道542分别通过所述盛奶器530的所述开口532连通于所述盛奶器530的所述盛奶空间531。所述清洗装置510被安装于所述支撑架540,以使所述清洗装置510的所述清洗本体511的所述进流口51110连通于所述第一通道541,所述乳房容纳装置520被安装于所述支撑架540,以使所述乳房容纳装置520的所述容纳空间521连通于所述第二通道542。也就是说,所述乳房容纳装置520的所述容纳空间521依次通过所述第二通道542、所述盛奶空间531和所述第一通道541与所述清洗装置510的所述流体通路513连通,从而当所述流体通路513内形成负压环境时,所述乳房容纳装置520的所述容纳空间521形成负压环境。
具体地,所述支撑架540具有一第一安装位5401、一第二安装位5402以及一第三安装位5403,其中所述第一通道541连通于所述第一安装位5401和所述第三安装位5403,所述第二通道542连通于所述第二安装位5402和所述第三安装位5403。
所述盛奶器530被可分离地安装于所述支撑架540的所述第三安装位5403,以在所述盛奶器530安装于所述支撑架540的所述第三安装位5403时,所述第一通道541和所述第二通道542分别连通于所述盛奶器530的所述盛奶空间531。优选地,所述盛奶器530和所述支撑架540可以采用螺纹连接的方式被可分离地连接,尽管如此,所述盛奶器530和所述 支撑架540也可以通过诸如卡合的连接方式被可分离地连接。
所述清洗装置510被可分离地安装于所述支撑架540的所述第一安装位5401,以在所述清洗装置510被安装于所述支撑架540的所述第一安装位5401时,所述清洗装置510的所述清洗本体511的所述进流口51110连通于所述第一通道541,从而藉由所述第一通道541连通所述盛奶器530的所述盛奶空间531和所述清洗装置510的所述流体通路513。可以理解的是,当所述清洗装置510被安装于所述支撑架540的所述第一安装位5401时,所述清洗装置510的所述清洗本体511的所述进流端5111可以插入到所述支撑架540的所述第一通道541,从而使所述清洗本体511的所述进流口51110连通于所述支撑架540的所述第一通道541。
所述乳房容纳装置520被可分离地连通于所述支撑架540的所述第二安装位5402,以在所述乳房容纳装置520安装于所述支撑架540的所述第二安装位5402时,所述乳房容纳装置520的所述容纳空间521连通于所述支撑架540的所述第二通道542,从而所述支撑架540的所述第二通道542连通于所述乳房容纳装置520的所述容纳空间521和所述盛奶器530的所述盛奶空间531。
也就是说,当所述盛奶器530被安装于所述支撑架540的所述第三安装位5403,所述清洗装置510被安装于所述支撑架540的所述第一安装位5401和所述乳房容纳装置520被安装于所述支撑架540的所述第二安装位5402时,所述乳房容纳装置520的所述容纳空间521依次通过所述第二通道542、所述盛奶空间531和所述第一通道541与所述清洗装置510的所述流体通路513连通,从而当所述流体通路513内形成负压环境时,所述乳房容纳装置520的所述容纳空间521形成负压环境。
参考附图28A和图28B,所述吸奶器被应用于吸出积聚在所述乳房5400的乳腺组织中的母乳的过程被阐述。首先,使所述乳房5400被容纳于所述乳房容纳装置520的所述容纳空间521内。其次,供应电力至所述真空发生器512以使所述真空发生器512处于持续的工作状态,以使所述流体通路513产生负压环境,此时,所述压力释放器518也被供应电力以处于工作状态,从而使所述流体通路513具有所述第一负压,可以理解的是,当所述流体通路513内产生所述第一负压时,所述乳房容纳装置520的所述容纳空间521内同步地产生所述第一负压,以将母乳从所述乳房5400中排出体外,并使母乳被导流至和被存储至所述盛奶器530的所述盛奶空间531,后续,所述压力释放器518使所述流体通路513内产生所述第二负压,并且所述乳房容纳装置520的所述容纳空间521内同步地产生所述第二负压,此时,所述吸奶器可以不需要将母乳从所述乳房5400中吸出,而所述第二负压可以仅使所述 乳房容纳装置520被保持在所述乳房5400的位置,而防止所述乳房容纳装置520从所述乳房5400的位置脱落,从而便于使用所述吸奶器。
可以理解的是,所述压力释放器518使所述流体通路513内交替产生所述第一负压和所述负压,从而所述乳房容纳装置520的所述容纳空间521内也交替地产生所述第一负压和所述第二负压,当所述容纳空间521内产生所述第一负压时将母乳从所述乳房5400中排出体外,当所述容纳空间521内产生所述第二负压时使所述乳房容纳装置520被保持在所述乳房5400的位置,从而不仅便于使用者使用所述吸奶器,而且本发明的所述吸奶器提供的这种模拟婴儿吮吸母乳的方式还可以起到按摩所述乳房5400的作用,更为重要的是,在使用所述吸奶器吸奶的过程中,由于所述乳房容纳装置520被始终保持在所述乳房5400的位置,从而避免被从所述乳房5400的乳腺组织中吸出的母乳和空气接触而出现被污染的不良现象,从而有利于保证母乳的安全性。
参考本发明的说明书附图之图29至图32,依本发明的一较佳实施例的一乳房护理装置在接下来的描述中被阐述,其中所述乳房护理装置包括一护理本体610、至少一乳房容纳构件620以及至少一电极构件630,其中每个所述乳房容纳构件620和每个所述电极构件630分别被设置于所述护理本体610。
值得一提的是,所述乳房容纳构件620的数量可以是一个,也可以是两个,当所述乳房容纳构件620的数量被实施为两个时,所述乳房护理装置能够同时护理使用者的两侧的乳房。为了便于描述和说明本发明的所述乳房护理装置的特征和优势,在接下来的描述以及附图中,以所述乳房容纳构件620被实施为一个为例,因此,本领域的技术人员应当理解,所述乳房容纳构件620的数量并不应被视为对本发明的所述乳房护理装置的内容和范围的限制。
相似地,所述电极构件630的数量也可以不受限制,而且在接下来的描述以及附图中,以所述电极构件630的数量被实施为一个为例,来进一步阐述本发明的所述乳房护理装置的特征和优势,因此,本领域的技术人员可以理解的是,所述电极构件630的数量并被应被视为对本发明的所述乳房护理装置的内容和范围的限制。
优选地,所述乳房容纳构件620被可拆卸地设置于所述护理本体610,通过这样的方式,一方面,使用者可以选择适合尺寸的所述乳房容纳构件620,另一方面,当所述乳房容纳构件620和所述护理本体610中的任何一个损坏时,可以仅需更换损坏的一个即可,以降低所述乳房护理装置的使用成本。在接下来的描述中,会对所述乳房容纳构件620和所述护理本体610的安装方式进一步阐述。当然,本领域的技术人员可以理解的是,在附图45中示出 的所述乳房护理装置的一个变形实施方式中,所述乳房容纳构件620和所述护理本体610也可以是一体式结构,即,所述乳房容纳构件620和所述护理本体610不可拆卸。
相似地,所述电极构件630被可拆卸地设置于所述护理本体610,通过这样的方式,一方面,使用者可以选择适合长度的所述电极构件630,另一方面,当所述电极构件630和所述护理本体610中的任何一个损坏时,可以仅需更换损坏的一个即可,以降低所述乳房护理装置的使用成本。例如在本发明的所述乳房护理装置的一个示例中,所述护理本体610可以提供一个接口,所述电极构件630可以提供一个端子,当所述电极构件630的所述端子被插入和被保持在所述护理本体610的所述接口时,可以将所述电极构件630设置于所述护理本体610。尽管如此,所述护理本体610提供所述接口和所述电极构件630提供所述端子的方式仅为示例,以说明所述电极构件630和所述护理本体610能够被可拆卸地安装,其并不应被视为对本发明的所述乳房护理装置的内容和范围的限制。
具体地,参考附图29、图30和图31,所述乳房容纳构件620具有一容纳空间621,以供容纳乳房。另外,所述乳房容纳构件620能够被预热,以在所述乳房容纳构件620与乳房的乳房皮肤接触时,所述乳房容纳构件620的温度和乳房的乳房皮肤的温度一致,从而避免对乳房的乳腺组织产生不良刺激,以提高所述乳房护理装置被使用时的舒适度,并且使所述乳房护理装置特别适于在天气较冷的条件下被使用。
更具体地,所述乳房容纳构件620包括一容纳主体622和一发热元件623,其中所述容纳主体622具有所述容纳空间621,所述发热元件623被设置于所述容纳主体622,其中所述发热元件623在被供应电力时能够产生热量,以使所述容纳主体622的温度升高和使所述容纳空间621的温度升高,从而在所述乳房容纳构件620和乳房的乳房皮肤接触之前对所述乳房容纳构件620进行预热。
优选地,所述容纳主体622的形状可以是漏斗状,以使所述容纳主体622的形状与乳房的形状相匹配,从而当乳房被容纳于所述容纳空间621时,所述容纳主体622能够环绕在乳房的四周。当然,在所述乳房护理装置的其他示例中,所述容纳主体622被实施为半球状或者碗状也是有可能的,因此,所述容纳主体622的形状在本发明的所述乳房护理装置中不受限制。
进一步地,参考附图31和图38,所述容纳主体622进一步包括一内侧部6221,其中所述容纳主体622的所述内侧部6221形成所述容纳空间621,所述发热元件623被设置于所述容纳主体622的所述内侧部6221,且所述发热元件623没有位于所述容纳空间621。当乳房被容纳于所述发热元件623时,所述容纳主体622的所述内侧部6221隔离所述发热元件 623和乳房,从而避免所述发热元件623因与乳房直接接触而导致所述发热元件623产生的热量烫伤乳房的乳房皮肤的不良现象出现。
也就是说,所述发热元件623产生的热量通过所述容纳主体622的所述内侧部6221辐射至所述容纳空间621以使所述容纳空间621的温度升高,和所述发热元件623产生的热量通过所述容纳主体622的所述内侧部6221传导至乳房的乳房皮肤,通过这样的方式,能够提高所述乳房护理装置在被使用时的安全性和可靠性。
优选地,所述发热元件623是一体式结构,并且所述发热元件623环绕地设置在所述容纳主体622的所述内侧部6221,通过这样的方式,所述发热元件623产生的热量能够均匀地自所述容纳主体622的四周被辐射到所述容纳空间621和被传导至乳房的乳房皮肤,以提高所述乳房护理装置被使用时的舒适性。
参考附图33,在本发明的所述乳房护理装置的一个变形实施方式中,所述发热元件623的数量也可以被实施为多个,每个所述发热元件623分别沿着所述容纳主体622的所述内侧部6221的圆周方向排列,以使所述发热元件623围绕在所述容纳主体622的所述内侧部6221,从而,每个所述发热元件623产生的热量能够均匀地自所述容纳主体622的四周被辐射到所述容纳空间621和被传导至乳房的乳房皮肤,以提高所述乳房护理装置被使用时的舒适性。优选地,每个所述发热元件623相互间隔地设置。更优选地,相邻所述发热元件623之间的距离相等。
参考附图34,在本发明的所述乳房护理装置的另一个变形实施方式中,所述发热元件623可以进一步包括一第一发热件6231和一组第二发热件6232,其中所述第一发热件6231环绕地设置在所述容纳主体622的所述内侧部6221,每个所述第二发热件6232沿着所述容纳主体622的所述内侧部6221的圆周方向排列,以使每个所述第二发热件6232围绕在所述容纳主体622的所述内侧部6221,并且每个所述第二发热件6232分别一体地延伸于所述第一发热件6231的同一侧,从而,所述第一发热件6231和每个所述第二发热件6232产生的热量能够均匀地自所述容纳主体622的四周被辐射到所述容纳空间621和被传导至乳房的乳房皮肤,以提高所述乳房护理装置被使用时的舒适性。优选地,每个所述第二发热件6232相互间隔地设置。更优选地,相邻所述第二发热件6232之间的距离相等。
值得一提的是,所述发热元件623的类型不受限制,其能够在被供应电力后产生热量即可。
所述护理本体610包括一电力供应部611,其中所述发热元件623被电连接于所述电力供应部611。所述电力供应部611能够供应电力至所述发热元件623,以使所述发热元件623 产生热量。
在本发明的所述乳房护理装置的一个实施例中,所述电力供应部611可以被实施为一次性电池、可充电电池等,例如可充电锂电池,以藉由所述电力供应部611直接供应电力至所述发热元件623。
在本发明的所述乳房护理装置的另一个示例中,所述电力供应部611也可以是一个电力中转部,其能够将外部电力(例如市电)供应至所述发热元件623,以使所述发热元件623产生热量。另外,所述电力供应部611也可以提供变压和稳压的作用。
值得一提的是,所述电力供应部611的类型在本发明的所述乳房护理装置中不受限制,其能够向所述发热元件623供应电力即可。
更具体地,所述乳房护理装置可以进一步包括一导电构件640,其中所述导电构件640包括一第一导电部641和一第二导电部642,其中所述第一导电部641被设置于所述护理本体610,并且所述第一导电部641被电连接于所述电力供应部611,其中所述第二导电部642被设置于所述容纳主体622,并且所述第二导电部642被连接于所述发热元件623。当所述乳房容纳构件620被安装于所述护理主体10时,所述导电构件640的所述第一导电部641和所述第二导电部642被可导通地连接,以使所述电力供应部611能够将电力供应至所述发热元件623而使所述发热元件623产生热量。
在所述乳房护理装置的一个具体示例中,当所述乳房容纳构件620被安装于所述护理本体610时,所述导电构件640的所述第一导电部641和所述第二导电部642可以相互接触而被导通,而在所述乳房护理装置的另一个具体示例中,所述导电构件640的所述第一导电部641和所述第二导电部642均可以被实施为无线输电模块,以在所述第一导电部641和所述第二导电部642的距离在适宜范围时,所述第一导电部641和所述第二导电部642能够被直接导通。
进一步参考附图31,所述容纳主体622进一步包括一外侧部6222,其中所述发热元件623被设置于所述容纳主体622的相互重叠的所述内侧部6221和所述外侧部6222之间,以避免所述发热元件623裸露。
在所述乳房护理装置的一个示例中,所述容纳主体622的所述内侧部6221和所述外侧部6222以及所述发热元件623可以一体地形成。具体地,将所述发热元件623放置于一成型模具中,然后向所述成型模具中加入成型材料,以在成型材料固化后形成包裹于所述发热元件623两侧的所述容纳主体622的所述内侧部6221和所述外侧部6222。
在所述乳房护理装置的另一个示例中,所述容纳主体622的所述内侧部6221和所述外 侧部6222可以分别制得,然后通过将所述内侧部6221和所述外侧部6222重叠安装的方式使所述发热元件623位于所述内侧部6221和所述外侧部6222之间。例如,在所述容纳主体622的所述内侧部6221和所述外侧部6222被制成后,可以先将所述发热元件623重叠地设置于所述内侧部6221或将所述发热元件623重叠地设置于所述外侧部6222,并通过卡合或者粘合等类似的方式将所述内侧部6221和所述外侧部6222安装在一起,以使所述发热元件623被保持在相互重叠的所述内侧部6221和所述外侧部6222之间。
进一步参考附图31,所述乳房容纳构件620进一步包括一温度维持部624,其中所述温度维持部624被设置于所述容纳主体622,以藉由所述温度维持部624使所述乳房容纳构件620的温度被维持在适宜温度范围。
值得一提的是,本发明的所述乳房护理装置所涉及的适宜温度是指所述乳房容纳构件620的温度和乳房的乳房皮肤的正常温度一致,即,所述乳房容纳构件620的温度不会过分地高于乳房的乳房皮肤的正常温度,也不会过分地低于乳房的乳房皮肤的正常温度,通过这样的方式,使所述乳房护理装置在被使用时更舒适和可靠。
另外,所述乳房容纳构件620在被所述发热元件623因被供应电力而产生的热量预热后,所述温度维持部624使得所述乳房容纳构件620的所述发热元件623仅需要被供应较少的电力就能够使所述乳房容纳构件620的温度被保持在适宜温度范围,通过这样的方式,不仅能够减少对电力的消耗,而且还能够提高所述乳房容纳装置的续航能力。
具体地,所述发热元件623具有一内侧6233和对应于所述内侧6233的一外侧6234,其中所述发热元件623朝向所述容纳主体622的所述内侧部6221的一侧被定义为所述发热元件623的所述内侧6233,所述发热元件623的朝向所述容纳主体622的所述外侧部6222的一侧被定义为所述发热元件623的所述外侧6234。所述温度维持部624被保持在所述发热元件623的所述外侧6234,以使所述温度维持部624位于所述发热元件623的所述外侧6234,以使所述发热元件623因被供应电力而产生的热量只能够辐射至所述容纳主体622的所述内侧部6221和辐射至所述容纳空间621。
也就是说,所述温度维持部624是一个隔热层或者绝热层,其通过阻止所述发热元件623因被供应电力而产生的热量辐射至所述容纳主体622的所述外侧部6222和辐射至外部环境的方式,使得所述发热元件623因被供应电力而产生的热量被高效率地利用,从而能够使所述乳房容纳构件620被快速地预热和在消耗更好的电力的情况下使所述乳房容纳构件620的温度被保持在适宜温度范围。换言之,所述温度维持部624能够使所述乳房容纳构件620的温度更恒定,从而提高所述乳房护理装置被使用时的舒适度。
参考附图31,所述温度维持部624可以是一个单独的部件,其被重叠地设置于所述发热元件623的所述外侧6234,以使所述温度维持部624和所述发热元件623一起被保持在所述容纳主体622的相互重叠的所述内侧部6221和所述外侧部6222之间。例如在附图31示出的所述乳房护理装置的这个具体示例中,在将所述温度维持部624和所述发热元件623重叠之后可以通过注塑、模塑或者嵌入射出的方式在所述温度维持部624和所述发热元件623的两侧一体地形成所述容纳主体622的所述内侧部6221和所述外侧部6222。尽管如此,所述容纳主体622的所述内侧部6221和所述外侧部6222也可以分别制得,然后将重叠的所述温度维持部624和所述发热元件623安装在所述容纳主体622的相互重的所述内侧部6221和所述外侧部6222之间。
另外,附图35示出了所述乳房护理装置的一个变形实施方式,其中所述温度维持部624也可以形成在所述发热元件623的所述外侧6234。例如在所述乳房护理装置的一个具体示例中,所述温度维持部624可以被实施为一层重叠于所述发热元件623的所述外侧6234的隔热膜或者绝热膜。具体地,可以将呈液体状的隔热材料或者绝热材料施凃于所述发热元件623的所述外侧6234,以在隔热材料或者绝热材料固化后形成重叠于所述发热元件623的所述外侧6234的隔热膜或者绝热膜,后续通过一体地形成包裹所述发热元件623和所述温度维持部624的所述容纳主体622的所述内侧部6221和所述外侧部6222的方式,可以值得所述乳房容纳构件620,也可以通过将带有所述温度维持部624的所述发热元件623安装于所述容纳主体622的所述内侧部6221和所述外侧部6222的方式,值得所述乳房容纳构件620。
附图36和图37示出了所述乳房护理装置的另外两个变形实施方式,其中所述温度维持部624均可以被实施为一层重叠于所述容纳主体622的所述外侧部6222的隔热膜或者绝热膜,其中在附图36中,所述温度维持部624重叠于所述容纳主体622的所述外侧部6222的外壁,而在附图37中,所述温度维持部624重叠于所述容纳主体622的所述外侧部6222的内壁。
本领域的技术人员可以理解的是,在附图36示出的所述温度维持部624被重叠于所述容纳主体622的所述外侧部6222的外壁的示例中,所述容纳主体622的所述内侧部6221和所述外侧部6222可以和所述发热元件623在一体地形成后再将隔热材料或者绝热材料施凃于所述外侧部6222的外壁,以在隔热材料或者绝热材料固化后形成所述乳房容纳构件620,或者先在所述容纳主体622的所述外侧部6222的外壁形成所述温度维持部624,然后将在所述容纳主体622的所述外侧部6222和所述内侧部6221安装在一起并使所述发热元件623被保持在相互重叠的所述内侧部6221和所述外侧部6222之间而形成所述乳房容纳构件 620。在附图37示出的所述温度维持部624被重叠于所述容纳主体622的所述外侧部6222的内壁的示例中,所述容纳主体622的所述内侧壁221和所述外侧部6222需要先被制得,然后在所述容纳主体622的所述外侧部6222的内壁形成所述温度维持部624,然后再将所述容纳主体622的所述内侧部6221和所述外侧部6222安装在一起并使所述发热元件623被保持在相互重叠的所述内侧部6221和所述外侧部6222之间而形成所述乳房容纳构件620。
尽管如此,本领域的技术人员可以理解的是,在所述乳房护理装置的其他示例中,所述乳房容纳构件620的所述容纳主体622的所述外侧部6222可以形成所述温度维持部624,即,所述容纳主体622的所述外侧部6222可以由隔热材料或者绝热材料制得,以阻止所述发热元件623因被供应电力而产生的热量通过所述外侧部6222辐射至外部环境。
进一步参考附图31,所述护理本体610进一步包括一驱动部612,其中所述驱动部612被电连接于所述电力供应部611,以在所述电力供应部611供应电力至所述驱动部612时,所述驱动部612能够产生振动,并且该振动被进一步传导至所述乳房容纳构件620,以按摩被容纳于所述乳房容纳构件620的所述容纳空间621的乳房。可以理解的是,所述驱动部612可以被实施为一个振动电机,其在被供应电力时能够产生振动,并且该振动能够被进一步传导至所述乳房容纳构件620,从而按摩被容纳于所述乳房容纳构件620的所述容纳空间621的乳房。优选地,所述驱动部612能够提供稳定的振动频率,以在后续提供更好的按摩效果。更优选地,所述驱动部612的振动频率被可调,以便于使用者根据需要选择不同的振动频率。
所述护理本体610进一步包括一壳体613,其中所述电力供应部611和所述驱动部612可以分别被设置于所述壳体613的内部,并且所述乳房容纳构件620被可拆卸地安装于所述壳体613。
优选地,所述导电构件640的所述第一导电部641被设置于所述壳体613,并且所述第一导电部641被电连接于所述电力供应部611,所述第二导电部642被设置于所述乳房容纳构件620的所述容纳主体622,并且所述第二导电部642被连接于所述发热元件623,其中当所述乳房容纳构件620的所述容纳主体622被安装于所述护理本体610的所述壳体613时,所述第二导电部642能够被设置导通地连接于所述第一导电部641,从而所述电力供应部611能够通过所述导电构件640的被导通的连接的所述第一导电部641和所述第二导电部642供应至所述发热元件623,以使所述发热元件623产生热量。
更优选地,所述第一导电部641可以被实施为两个导电片或者导电凸起,并且所述第一 导电部641裸露于所述壳体613的表面,相应地,所述第二导电部642也可以被实施为两个导电片或者导电凸起,并且所述第二导电部642裸露于所述容纳主体622的表面,其中当所述乳房容纳构件620的所述容纳主体622被安装于所述护理本体610的所述壳体613时,所述第一导电部641和所述第二导电部642能够因相互接触而被导通。
值得一提的是,所述第一导电部641和所述第二导电部642可以被同时实施为导电片,或者所述第一导电部641和所述第二导电部642可以被同时实施为导电凸起,或者所述第一导电部641和所述第二导电部642中的一个导电部被实施为导电片,另一个导电部被实施为导电凸起,本发明的所述乳房护理装置在这方面不受限制。
还值得一提的是,本发明的所述乳房护理装置所涉及的所述第一导电部641裸露于所述壳体613的表面和所述第二导电部642裸露于所述容纳主体622的表面是指,在将所述容纳主体622安装于所述壳体613的同时,所述第一导电部641和所述第二导电部642能够以物理接触的方式被导通地连接,例如所述第一导电部641可以被可视化地设置于所述壳体613的表面和所述第二导电部642可以被可视化地设置于所述容纳主体622的表面,或者所述第一导电部641和所述第二导电部642也可也不可视化,即,所述第一导电部641隐藏于所述壳体613的内部,所述第二导电部642隐藏于所述容纳主体622的内部,并且在将所述容纳主体622安装于所述壳体613时,所述第一导电部641和所述第二导电部642也可以以物理接触的方式被导通地连接。
参考附图39,在本发明的所述乳房护理装置的这个示例中,所述驱动部612也可以没有被设置于所述壳体613,而是将所述驱动部612直接设置于所述乳房容纳构件620的所述容纳主体622,其中在将所述乳房容纳构件620的所述容纳主体622安装于所述护理本体610的所述壳体613时,所述驱动部612可以被电连接于所述电力供应部611,其中所述电力供应部611能够供应电力至所述驱动部612,以使所述驱动部612产生振动而带动所述乳房容纳构件620同步地振动,从而按摩被容纳于所述乳房容纳构件620的所述容纳空间621的乳房。
参考附图29、图30、图31和图32,所述护理本体610进一步包括一低频脉冲部614,其中所述低频脉冲部614被电连接于所述电力供应部611,其中所述电力供应部611在向所述低频脉冲部614供应电力时,所述低频脉冲部614能够产生低频脉冲。优选地,所述低频脉冲部614也被设置于所述壳体613的内部。
所述电极构件630被连接于所述低频脉冲部614,以藉由所述电极构件630将所述低频脉冲部614因被供应电力而产生的低频脉冲传输至与乳房的乳腺组织相关联的穴位,从而在 按摩乳房的同时藉由低频脉冲刺激与乳房的乳腺组织相关联的穴位,以提高按摩效果。
具体地,所述电极构件630包括两连接线631、一正极端632以及一负极端633,其中所述正极端632和所述负极端633分别被设置于每个所述连接线631的自由端,所述连接线631的连接端被连接于所述低频脉冲部614,其中在被使用时,所述电极构件630的所述正极端632和所述负极端633贴附在与乳房的乳腺组织相关联的穴位上,以在所述低频脉冲部614产生低频脉冲时通过所述电极构件630的所述正极端632和所述负极端633作用于穴位。
值得一提的是,在本发明的所述乳房护理装置中所涉及的低频是指频率范围在0HZ~100HZ。优选地,本发明的所述乳房护理装置中所涉及的低频是指平频率为80HZ~100HZ,例如本发明的所述乳房护理装置中所涉及的低频可以是92HZ。
另外,所述护理本体610还可以包括一控制部615,其中所述控制部615被可操作地设置于所述壳体613,以允许使用者在所述壳体613的外部操作所述控制部615。
在所述乳房护理装置的一个示例中,所述发热元件623、所述电力供应部611、所述驱动部612和所述低频脉冲部614可以分别被可操作地连接于所述控制部615,以通过所述控制部615控制所述电力供应部611分别向所述发热元件623、所述驱动部612和所述低频脉冲部614供电的状态。例如,所述控制部615的数量可以是一个,以在所述控制部615被打开时,所述电力供应部611可以同时向所述发热元件623、所述驱动部612和所述低频脉冲部614供应电力,或者所述控制部615的数量可以有多个,以通过每个所述控制部615分别单独地控制所述电力供应部611向所述发热元件、所述驱动部612和所述低频脉冲部614的供电状态。
参考附图32,在使用所述乳房护理装置时,可以先由所述电力供应部611向所述发热元件623供应电力,以使所述发热元件623产生热量从而预热所述乳房容纳构件620和使所述乳房容纳构件620的所述容纳空间621的温度升高。当所述乳房容纳构件620的温度被升高至适宜温度范围时,将乳房容纳于所述乳房容纳构件620的所述容纳空间621内。可以理解的是,所述乳房护理装置可以提供一个温度检测装置和一个显示屏幕,以在显示屏幕上显示藉由所述温度检测装置检测的所述乳房容纳构件620和所述容纳空间621的温度。另外,可以将所述电极构件630的所述正极端632和所述负极端633分别贴附在与乳房的乳腺组织相关联的穴位。
使所述电力供应部611分别向所述驱动部612和所述低频脉冲部614供应电力,其中所述驱动部612在被供应电力时产生振动,该振动被进一步传导至所述乳房容纳构件620以使所述乳房容纳构件620同步地振动,从而按摩被容纳于所述容纳空间621的乳房,其中所述 低频脉冲部614在被供应电力时产生低频脉冲,低频脉冲通过所述连接线631被传输至所述正极端632和所述负极端633,以刺激该穴位,从而,所述乳房护理装置能够在按摩乳房的同时刺激与乳房的乳腺组织相关联的穴位,以提高按摩效果。
值得一提的是,在使用所述乳房护理装置的过程中,所述温度维持部624能够阻止所述发热元件623产生的热量辐射到外部环境,从而使所述乳房容纳构件620的温度保持在适宜温度范围。
参考附图31,所述壳体613形成一安装空间6131,所述容纳主体622设有一安装部6223,其中所述容纳主体622的所述安装部6223被可拆卸地安装于所述壳体613的所述安装空间6131,以使所述乳房容纳构件620和所述护理本体610被安装在一起。可以理解的是,所述导电构件640的所述第一导电部641位于所述壳体613的所述安装空间6131,所述第二导电部642位于所述容纳主体622的所述安装部6223,以在所述容纳主体622的所述安装部6223安装于所述壳体613的所述安装空间6131时,所述第一导电部641和所述第二导电部642可以以物理接触的方式被导通地连接。
进一步地,所述壳体613的内壁可以设有至少一卡合凸起6132,所述容纳主体622的所述安装部6223设有至少一卡合凹槽6224,其中所述壳体613的所述卡合凸起6132的位置和数量与所述容纳主体622的所述卡合凹槽6224的位置和数量优选为一致,其中当所述容纳主体622的所述安装部6223被安装于所述壳体613的所述安装空间6131时,所述壳体613的每个所述卡合凸起6132可以分别被卡合于所述容纳主体622的每个所述卡合凹槽6224,从而防止在所述乳房护理装置被使用时所述乳房容纳构件620从所述护理本体610上脱离的情况出现,以保证所述乳房护理装置的可靠性。
本领域的技术人员可以理解的是,在安装所述乳房容纳构件620至所述护理本体610的过程中,可以通过使形成所述壳体613和所述容纳主体622的材料发生轻微变形的方式使所述壳体613和所述容纳主体622被安装在一起,拆卸所述乳房容纳构件620和所述护理本体610时也是通过形成所述壳体613和所述容纳主体622的材料发生轻微变形的方式使所述壳体613和所述容纳主体622被分离。
在附图40示出的所述乳房护理装置的一个变形实施方式中,所述壳体613的内壁可以设有至少一个所述卡合凹槽6224,所述容纳主体622的所述安装部6223可以设有至少一个所述卡合凸起6132,从而当所述容纳主体622的所述安装部6223安装于所述壳体613的所述安装空间6131时,每个所述卡合凸起6132分别卡合于每个所述卡合凹槽6224,以防止在所述乳房护理装置被使用时所述乳房容纳构件620从所述护理本体610上脱离的情况出 现,以保证所述乳房护理装置的可靠性。
在附图41示出的所述乳房护理装置的一个变形实施方式中,所述壳体613也可以设有一个所述安装部6223,所述容纳主体622形成一个所述安装空间6131,其中所述壳体613的所述安装部6223被可拆卸地安装于所述容纳主体622的所述安装空间6131,以使所述乳房容纳构件620和所述护理本体610被安装在一起。
进一步地,所述容纳主体622的内壁设有至少一个所述卡合凸起6132,所述壳体613的所述安装部6223设有至少一个所述卡合凹槽6224,其中当所述壳体613的所述安装部6223被安装于所述容纳主体622的所述安装空间6131时,所述容纳主体622的每个所述卡合凸起6132分别被卡合于所述壳体613的每个所述卡合凹槽6224,从而防止在所述乳房护理装置被使用时所述乳房容纳构件620从所述护理本体610上脱离的情况出现,以保证所述乳房护理装置的可靠性。
在附图42示出的所述乳房护理装置的另一个变形实施方式中,所述容纳主体622的内壁设有至少一个所述卡合凹槽6224,所述壳体613的所述安装部6223设有至少一个所述卡合凸起6132,其中当所述壳体613的所述安装部6223被安装于所述容纳主体622的所述安装空间6131时,所述安装部13的每个所述卡合凸起6132分别被卡合于所述容纳主体622的每个所述卡合凹槽6224,从而防止在所述乳房护理装置被使用时所述乳房容纳构件620从所述护理本体610上脱离的情况出现,以保证所述乳房护理装置的可靠性。
在附图43示出的所述乳房护理装置的另一个变形实施方式中,所述壳体613具有至少一锁槽6133,每个所述锁槽6133分别连通于所述安装空间6131,所述容纳主体622的所述安装部6223设有至少一锁扣6225,其中当所述容纳主体622的所述安装部6223被安装于所述壳体613的所述安装空间6131后,通过转动所述容纳主体622和/或所述壳体613的方式,能够使所述容纳主体622的每个所述锁扣6225分别安装于和保持在所述壳体613的每个所述锁槽6133,通过这样的方式,能够防止在所述乳房护理装置被使用时所述乳房容纳构件620从所述护理本体610上脱离的情况出现,以保证所述乳房护理装置的可靠性。
值得一提的是,所述护理本体610的所述壳体613和所述容纳主体622的所述安装部6223也可以通过螺纹连接等方式被安装在一起。
在附图44示出的所述乳房护理装置的另一个变形实施方式中,所述乳房护理装置进一步包括一连接构件650,其中所述连接构件650包括一磁性的第一连接元件651和一磁性的第二连接元件652,其中所述第一连接元件651被设置于所述壳体613,所述第二连接元件652被设置于所述容纳主体622的所述安装部6223,其中在安装所述乳房容纳构件620和所 述护理本体610的过程中,所述第一连接元件651和所述第二连接元件652能够相互吸附,以能够轻松地将所述容纳主体622的所述安装部6223安装于所述壳体613的所述安装空间6131,并且在这个过程中,使用者不需要专门使所述容纳主体622的所述安装部6223和所述壳体613的所述安装空间6131相互对应,当所述容纳主体622的所述安装部6223和所述壳体613的所述安装空间6131被安装在一起之后,所述第一连接元件651和所述第二连接元件652能够相互吸附,以使所述容纳主体622的所述安装部6223被保持在所述壳体613的所述安装空间6131,从而防止在所述乳房护理装置被使用时所述乳房容纳构件620从所述护理本体610上脱离的情况出现,以保证所述乳房护理装置的可靠性。
在本发明的所述乳房护理装置的一个示例中,所述第一连接元件651和所述第二连接元件652均可以是磁铁,这样,当所述第一连接元件651和所述第二连接元件652相互靠近时,在所述第一连接元件651和所述第二连接元件652之间能够产生相互吸附力,以使所述第一连接元件651和所述第二连接元件652具有相互靠近的趋势和位移,从而能够较为轻松地将所述乳房容纳构件620和所述护理本体610安装在一起。当所述第一连接元件651和所述第二连接元件652贴合在一起时,需要施加足够大的力并且在克服产生于所述第一连接元件651和所述第二连接元件652之间的吸附力的情况下才能够将所述乳房容纳构件620和所述护理本体610分离,从而使得在所述乳房护理装置被携带和被使用时,所述乳房容纳构件620和所述护理本体610不会分离,并且在更换所述乳房容纳构件620或者所述护理本体610时,只需要稍微施加大于产生于所述第一连接元件651和所述第二连接元件652之间的吸附力的外力,即可轻松地将所述乳房容纳构件620和所述护理本体610分离。本领域的技术人员可以理解的是,需要施加于所述乳房容纳构件620和所述护理本体610的外力的大小和所述连接构件650的所述第一连接元件651和所述第二连接元件652相关。
在本发明的所述乳房护装置的另外一个示例中,所述第一连接元件651和所述第二连接元件652中的一个连接元件是磁铁,另一个连接元件是磁性元件,例如铁质材料等任何能够与磁性相互作用以产生吸附力的材料。
依本发明的另一个方面,本发明的所述吸奶器包括一负压按摩装置,参考本发明的说明书附图之图46至图51,依本发明的一较佳实施例的一负压按摩装置在接下来的描述中被阐述,其中所述负压按摩装置包括一负压发生单元710和至少一按摩单元720,其中每个所述按摩单元720分别被连接于所述负压发生单元710,以对人体组织的局部位置进行按摩。
值得一提的是,所述按摩单元720的数量在本发明的所述负压按摩装置中不受限制,尽管在附图46至图51以及在本文接下来的描述中,以所述按摩单元720的数量被实施为一个 为例,来阐述本发明的所述负压按摩装置的内容和特征,本领域的技术人员应当理解,在所述负压按摩装置的其他可行的示例中,所述按摩单元720的数量也可以被实施为两个或者两个以上,因此,所述按摩单元720的数量并不应被视为对本发明的所述负压按摩装置的内容和范围的限制。
进一步地,所述负压发生单元710形成一通气路7100,所述按摩单元720提供一按摩空间7200,其中所述按摩单元720被连接于所述负压发生单元710,以使所述按摩空间7200连通于所述通气路7100,从而当所述负压发生单元710的所述通气路7100形成负压环境时,所述按摩单元720的所述按摩空间7200也能够形成负压环境,以按摩对应于所述按摩空间7200的人体组织的位置。
在本发明的所述负压按摩装置的一个实施例中,所述按摩单元720被可拆卸地连接于所述负压发生单元710,其中当所述按摩单元720被连接于所述负压发生单元710时,所述按摩单元720的所述按摩空间7200连通于所述负压发生单元710的所述通气路7100,以在后续能够使所述按摩单元720的所述按摩空间7200的压力状态和所述负压发生单元710的所述通气路7100的压力状态一致。可选地,所述按摩单元720和所述负压发生单元710可以分别被制作,然后在将所述按摩单元720和所述负压发生单元710安装在一起之后不允许拆卸。还可选地,所述按摩单元720和所述负压发生单元710也可以一体地形成。
进一步地,所述负压按摩装置包括一安装单元730,其中所述负压发生单元710和所述按摩单元720可以分别被安装于所述安装单元730,以通过所述安装单元730使所述负压发生单元710和所述按摩单元720安装在一起,从而形成便携式的所述负压按摩装置。
在所述负压发生装置的一个示例中,所述安装单元730不仅被用于安装所述负压发生单元710和所述按摩单元720,而且还能够被用于导通所述负压发生单元710的所述通气路7100和所述按摩单元720的所述按摩空间7200。
在所述负压发生装置的另一个示例中,所述安装单元730仅被用于安装所述负压发生单元710和所述按摩单元720,所述负压发生单元710的所述通气路7100和所述按摩单元720的所述按摩空间7200被直接导通,即通过使所述负压发生单元710被直接连接于所述按摩单元720的方式,使所述负压发生单元710的所述通气路7100和所述按摩单元720的所述按摩空间7200被直接导通,例如所述安装单元730在本发明的所述负压发生装置的这个实施例中可以被实施为一个壳体。
在所述负压发生装置的再一个示例中,所述安装单元730也可以没有被用于安装所述负压发生单元710和所述按摩单元720,而是使用所述安装单元730导通所述负压发生单元710 的所述通气路7100和所述按摩单元720的所述按摩空间7200,例如所述安装单元730在本发明的所述负压发生装置的这个实施例中可以被实施为一个连接管,例如软管,这样,能够使所述负压发生装置的使用方式更加灵活。尽管如此,在接下来的描述中,仍以所述安装单元730被用于安装所述负压发生单元710和所述按摩单元720为例,来阐述本发明的所述负压按摩装置的内容和特征。
可以理解的是,所述负压发生单元710、所述按摩单元720和所述安装单元730可以分别被制成,然后将所述负压发生单元710和所述按摩单元720分别安装于所述安装单元730,以形成所述负压按摩装置。可选地,所述负压发生单元710和所述按摩单元720中的至少一个能够与所述安装单元730可拆卸地安装在一起,例如可以将所述负压发生单元710安装于所述安装单元730的内部,将所述按摩单元720可拆卸地安装于所述安装单元730的外部,当然,也可以将所述按摩单元720安装于所述安装单元730的内部,而将所述负压发生单元710安装于所述安装单元730的外部。
还可选地,所述负压发生单元710和所述按摩单元720也可以在被安装于所述安装单元730之后不允许拆卸。另外可选地,所述负压发生单元710和所述按摩单元720中的至少一部分也可以和所述安装单元730一体地形成。本发明的所述负压按摩装置在这方面不受限制。
通常情况下(并非全部情况),所述按摩单元720呈漏斗状、水滴状或者半球状,从而使所述按摩单元720形成所述按摩空间7200。当然,在其他示例中,所述按摩单元720被实施为碗状也是有可能的,因此,所述按摩单元720的形状并不应被视为对本发明的所述负压按摩装置的内容和范围的限制。
例如,在本发明的所述负压按摩装置的一个具体示例中,所述按摩单元720的形状可以与乳房的形状一致,从而使本发明的所述负压按摩装置能够被用于按摩乳房。可以理解的是,所述按摩单元720能够被与所述负压发生单元710相互分离,从而让使用者可以根据需要更换具有不同尺寸的所述按摩空间7200的所述按摩单元720,以用于按摩乳房。尽管如此,本领域的技术人员应当理解,所述按摩单元720也可以有其他的形状,例如半橄榄球形等,因此,所述按摩单元720的形状在本发明的所述负压按摩装置中不受限制。
在所述负压按摩装置被使用时,所述按摩单元720和人体组织的局部位置接触,以藉由人体组织封闭所述按摩单元720的所述按摩空间7200的开口,所述负压发生单元710被设置能够使所述按摩单元720的所述按摩空间7200内交替形成一按摩负压和一维持负压,以按摩对应于所述按摩单元720的所述按摩空间7200的人体组织。
当所述负压发生单元710被设置使所述按摩单元720的所述按摩空间7200内形成所述按摩负压时,所述负压按摩装置处于一按摩负压状态,当所述负压发生单元710被设置使所述按摩单元720的所述按摩空间7200内形成所述维持负压时,所述负压按摩装置处于一维持负压状态,从而,当所述负压发生单元710被设置使所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压时,所述负压按摩装置在所述按摩负压状态和所述维持负压状态之间切换。
值得一提的是,所述按摩负压的数值大于所述维持负压的数值,从而当所述负压发生单元710被设置使所述按摩单元720的所述按摩空间7200内形成所述按摩负压时,对应于所述按摩空间7200的人体组织处于紧张状态,当所述负压发生单元710被设置使所述按摩单元720的所述按摩空间7200内形成所述维持负压时,对应于所述按摩空间7200的人体组织处于放松状态,进而当所述负压发生单元710被设置使所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压时,对应于所述按摩单元720的所述按摩空间7200的人体组织在紧张状态和放松状态之间来回切换,从而按摩对应于所述按摩单元720的所述按摩空间7200的人体组织。
可以理解的是,所述按摩负压的数值和所述维持负压的数值均大于0,也就是说,无论所述负压按摩装置处于所述按摩负压状态还是处于所述维持负压状态,所述按摩单元720的所述按摩空间7200内均形成负压环境。
与现有技术的负压按摩设备不同的是,本发明的所述负压按摩装置的所述按摩20的所述按摩空间7200内不仅持续地形成负压环境,而且所述按摩单元720的所述按摩空间7200内还能够交替形成所述按摩负压和所述维持负压,通过这样的方式,能够缓解所述负压按摩装置在被使用时对人体组织造成的紧张感,以提高所述负压按摩装置的舒适性,这是现有技术的负压按摩设备意料不到的,并且对于提高本发明的所述负压按摩装置的舒适性和提高所述负压按摩装置的按摩效果特别的有效。
例如在使用本发明的所述负压按摩装置对人体组织的局部位置进行按摩时,在所述负压按摩装置处于所述按摩负压状态时,即当所述负压发生单元710使所述按摩单元720的所述按摩空间7200内形成所述按摩负压时,人体组织被作用以使毛孔开始打开,在所述负压按摩状态处于所述维持负压状态时,即当所述负压发生单元710使所述按摩单元720的所述按摩空间7200内形成所述维持负压时,人体组织被作用以使毛孔被保持在打开后的状态,当所述负压按摩装置在所述按摩负压状态和所述维持负压状态之间来回切换多次之后,人体组织被作用以使毛孔全部打开,相对于现有的负压按摩设备使人体组织的毛孔一次性全部打开 的方式来说,本发明的所述负压按摩装置在使人体组织的毛孔打开的过程缓慢,以避免对人体组织造成强烈的不良刺激,从而使人体组织感觉舒适,并且不会对人体组织产生不良刺激和造成伤害。
本领域的技术人员可以理解的是,上述例举的通过所述负压按摩装置使人体组织的局部位置的毛孔打开过程仅为一个具体示例以用于阐述本发明的所述负压按摩装置的内容和特征,其并不应被视为对本发明的所述负压按摩装置的内容和范围的限制。
进一步地,所述负压发生单元710包括一负压发生器711,其中所述负压发生器711形成所述通气路7100,其中所述负压发生器711通过使所述通气路7100内形成负压环境的方式,使所述按摩单元720的所述按摩空间7200内形成负压环境。优选地,所述负压发生器711还可以通过所述通气路7100使所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压,以按摩对应于所述按摩单元720的所述按摩空间7200的人体组织。
值得一提的是,所述负压发生器711可以被实施为任何形式的负压装置,例如但不限于,所述负压发生器711可以是一个高速水流射出装置,其中所述负压发生器711通过射出高速水流的方式使所述通气路7100内形成负压环境,进而使所述按摩单元720的所述按摩空间7200内形成负压环境,可以理解的是,通过使所述负压发生器711射出的高速水流的速度快慢交替变化的方式,所述负压发生器711能够使所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压。例如,所述负压按摩装置可以被应用于浴缸或者花洒等洗浴设备中,以在使用者洗浴的过程中,通过本发明的所述负压按摩装置进行按摩。
可选地,所述负压发生器711也可以被实施为一个电动真空泵,通过向所述负压发生器711交替供应强弱电流的方式,能够藉由所述负压发生器711使所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压,从而使所述负压按摩装置在所述按摩负压状态和所述维持负压状态之间来回切换。
进一步地,所述负压发生单元710包括一压力释放器712,其中所述负压发生器711和所述压力释放器712相互连接以形成所述通气路7100,所述按摩单元720的所述按摩空间7200连通于所述通气路7100。
所述负压发生器711能够使所述按摩单元720的所述按摩空间7200内形成负压环境,所述压力释放器712通过在一开启状态和一关闭状态之间来回切换的方式,使所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压。优选地,所述负压发生器711在被供应电力时能够使所述按摩单元720的所述按摩空间7200内形成负压环境, 例如所述负压发生器711可以被实施为隔膜真空泵,所述压力释放器712在被供应电力时能够在所述开启状态和所述关闭状态之间来回的切换,以使所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压,例如所述压力释放器712可以被实施为电磁阀或者继电器等。
在本发明的所述负压按摩装置的一个具体示例中,所述压力释放器712可以被实施为常开型电磁阀,即,当没有电力被供应至所述压力释放器712时,所述压力释放器712处于所述打开状态,当供应电力至所述压力释放器712时,所述压力释放器712处于所述关闭状态。在本发明的所述负压按摩装置的另一个具体示例中,所述压力释放器712也可以被实施为常闭型电磁阀,即,当没有电力被供应至所述压力释放器712时,所述压力释放器712处于所述关闭状态,当供应电力至所述压力释放器712时,所述压力释放器712处于所述开启状态。
参考附图47和图48,所述负压发生器711具有一发生器进口端7111和一发生器出口端7112,所述压力释放器712具有一释放器进口端7121和一释放器出口端7122。
在本发明的所述负压按摩装置的一个具体示例中,所述按摩单元720的所述按摩空间7200自所述负压发生器711的所述发生器进口端7111连通所述通气路7100,外部环境自所述负压发生器711的所述发生器出口端7112连通所述通气路7100,所述压力释放器712的所述释放器进口端7121连通所述负压发生器711的所述发生器出口端7112,所述压力释放器712的所述释放器出口端7122连通所述负压发生器711的所述发生器进口端7111,参考附图48。当所述负压发生器711被供应电力时,所述负压发生器711通过所述通气路7100使所述按摩单元720的所述按摩空间7200形成负压环境,当所述压力释放器712处于所述开启状态时,所述按摩单元720的所述按摩空间7200内形成所述维持负压,其一方面能够缓解对人体组织造成的紧张感,另一方面能够使所述按摩单元720被保持在人体组织的局部位置,当所述压力释放器712处于所述关闭状态时,所述按摩单元720的所述按摩空间7200内形成所述按摩负压,以拉伸人体组织,从而当所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压时,按摩对应于所述按摩单元720的所述按摩空间7200的人体组织。
在本发明的所述负压按摩装置的另一个具体示例中,所述按摩单元720的所述按摩空间7200自所述负压发生器711的所述发生器进口端7111连通所述通气路7100,外部环境自所述负压发生器711的所述发生器出口端7112连通所述通气路7100,所述压力释放器712的所述释放器进口端7121连通所述负压发生器711的所述发生器进口端7111,所述压力释放器712的所述释放器出口端7122连通外部环境。可选地,所述压力释放器712的所述释放 器进口端7121连通所述负压发生器711的所述发生器出口端7112,所述压力释放器712的所述释放器出口端7122连通外部环境。
另外,所述负压发生单元710还可以包括一泄压阀713,其中所述泄压阀713能够被连通于所述通气路7100,当操作所述泄压阀713以使所述泄压阀713处于打开状态时,能够使所述通气路7100内快速地恢复常压状态,从而使所述按摩单元720的所述按摩空间7200内快速地恢复常压状态。所述泄压阀713可以被实施为手动泄压阀,也可以被实施为电动泄压阀,例如当供应电力至所述泄压阀713时,所述泄压阀713可以被打开,以使所述按摩单元720的所述按摩空间7200内快速地恢复常压状态,当没有供应电力至所述泄压阀713时,所述负压发生单元710的所述负压发生器711和所述压力释放器712能够使所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压。
所述负压按摩装置进一步提供一供电单元740,其中所述负压发生单元710的所述负压发生器711和所述压力释放器712可以分别被电连接于所述供电单元740,以藉由所述供电单元740分别供应电力至所述负压发生器711和所述压力释放器712。另外,所述泄压阀713也可以被电连接于所述供电单元740,以藉由所述供电单元740供应电力至所述泄压阀713。
所述供电单元740在本发明的所述负压按摩装置中不受限制,例如所述供电单元740可以被实施一次性电池、可充电电池等,例如可充电锂电池,另外,所述供电单元740也可以被实施为将外部电能(例如市电)分别供应至所述负压发生器711和所述压力释放器712的机构,例如当外部电能连接到所述供电单元740之后,所述供电单元740能够将外部电能分别供应至所述负压发生器711和所述压力释放器712,并且所述供电单元740可以提供变压和稳压的作用。也就是说,所述供电单元740可以被实施为直接向所述负压发生器711和所述压力释放器712供应电力的机构,也可以被实施为间接向所述负压发生器711和所述压力释放器712供应电力的机构。
所述负压发生器711、所述压力释放器712和所述供电单元740均可以设置于所述安装单元730的内部,以藉由所述安装单元730将所述负压发生器711、所述压力释放器712和所述供电单元740集成在一起。
具体地,所述安装单元730包括一壳体731,其中所述负压发生器711、所述压力释放器712和所述供电单元740均被设置于所述壳体731的内部,以藉由所述壳体731将所述负压发生器711、所述压力释放器712和所述供电单元740集成在一起。优选地,所述壳体731可以提供一充电口,以允许一个充电端子通过所述充电口插入到所述壳体731的内部,并电连接于至所述供电单元740,从而为所述供电单元740补充电力。所述泄压阀713被可操作 地设置于所述壳体731,以允许使用者在所述壳体731的外部操作所述泄压阀713。
继续参考附图46和图47,所述负压按摩装置还可以包括一控制单元750,其中所述控制单元750包括一控制本体751和一操作本体752,其中所述操作本体752被电连接于所述控制本体751,其中所述控制本体751被设置于所述壳体731的内部,所述操作本体752自所述壳体731的内部延伸至所述壳体731的外部,以允许使用者在所述壳体731的外部操作所述操作本体752。所述负压发生器711、所述压力释放器712、所述泄压阀713和所述供电单元740均被电连接于所述控制本体751,当操作所述操作本体752时,所述控制本体751能够根据使用者的选择分别供应电力至所述负压发生器711、所述压力释放器712和所述泄压阀713。另外,所述控制本体751还可以将强弱不同的电流分别供应至所述负压发生器711、所述压力释放器712和所述泄压阀713,本发明的所述负压按摩装置在这方面不受限制。
具体地,所述控制单元750的所述控制本体751可以被实施为一个电路板,例如PCB电路板、FPC电路板、软硬结合板等等,并且所述控制本体751可以设有电阻、电容、驱动器、处理器、继电器等电子元器件,以使所述控制本体751形成一个集成电路板。所述操作本体752可以是按钮式开关、旋钮式开关、触摸式开关、手势开关等。当使用者在所述壳体731的外部提供压力、扭力或者手势等作用于所述操作本体752时,所述操作本体752可以产生一个操作信号,所述控制本体751能够根据所述操作信号来选择分别供应电力至所述负压发生器711、所述压力释放器712和所述泄压阀713。另外,所述充电端子也可以通过所述充电口与所述控制本体751接触,从而为所述供电单元740补充电力。
继续参考附图47,所述负压按摩装置进一步提供一振动单元760,其中所述振动单元760可以被设置于所述壳体731的内部,当所述振动单元760在被供应电力时能够提供振动,并且该振动通过所述壳体731能够被传导至所述按摩单元720,从而对人体组织的被负压作用的位置同步地提供振动,以增强按摩效果。可选地,所述振动单元760也可以被设置于所述按摩单元720,从而当所述振动单元760在被供应电力以提供振动时,该振动直接通过所述按摩单元720作用于人体组织的被负压作用的位置。优选地,所述振动单元760被电连接于所述供电单元740,以藉由所述供电单元740提供电力至所述振动单元760。
所述振动单元760的类型在本发明的所述负压按摩装置中不受限制,例如所述振动单元760可以包括一个电机和一个偏心机构,所述偏心机构被可驱动地设置于所述电机,所述电机被电连接于所述供电单元740,其中当所述供电单元740供应电力至所述电机时,所述电机能够带动所述偏心机构转动以提供振动。
继续参考附图46和图47,所述负压按摩装置进一步包括一低频脉冲单元770,其中当 所述低频脉冲单元770被供应电力时能够产生低频脉冲,以对人体组织被负压作用的位置进行刺激或者对相应的穴位进行刺激,从而增强对人体组织的按摩效果。
优选地,所述低频脉冲单元770包括一脉冲发生器771和一传导组件772,所述传导组件772进一步包括两传导线7721、一正极端7722以及一负极端7723,所述正极端7722和所述负极端7723分别被设置于每个所述传导线7721的自由端,每个所述传导线7721的连接端分别被可分离地连接于所述脉冲发生器771。所述脉冲发生器771被设置于所述壳体731的内部,并且所述脉冲发生器771被电连接于所述供电单元740,其中所述传导组件7721的每个所述传导线7721的连接端能够分别在所述壳体731的外部被连接于所述脉冲发生器771,当所述供电单元740供应电力至所述脉冲发生器771时,所述脉冲发生器771能够产生低频脉冲,并且所述低频脉冲通过每个所述传导线7721、所述正极端7722和所述负极端7723作用于与所述正极端7722和所述负极端7723接触的穴位,以刺激该穴位,从而提高所述负压按摩装置的按摩效果。
继续参考附图46和图47,本发明的所述负压按摩装置的所述按摩单元720在与人体组织接触之前能够被预热,以提高所述负压按摩装置在被使用时的舒适性,并且通过这样的方式,所述负压按摩装置特别适于在天气较冷的条件下被使用,以避免刺激与所述按摩单元720直接接触的人体组织和皮下组织。可以理解的是,当使用者使用所述负压按摩装置进行按摩时,人体组织需要被按摩的位置裸露在外部环境中,尤其是在冬季等天气较冷的条件下,人体组织的该位置会感觉冰凉,因此,能够发热的所述按摩单元720可以缓解人体组织的这种冰凉感。另外,所述负压按摩装置在被使用时,所述按摩单元720的温度能够被保持在适宜温度范围,以进一步提高所述负压按摩装置在被使用时的舒适性。
值得一提的是,本发明所涉及的适宜温度是指所述按摩单元720的温度与人体组织的温度相适应,即所述按摩单元720的温度不会过分地高于人体组织,也不会过分地低于人体组织,从而提高本发明的所述负压按摩装置在被使用时的舒适性。
具体地,所述按摩单元720包括一按摩主体721和一热量供应主体722,其中所述按摩主体721提供所述按摩空间7200,所述热量供应主体722和所述按摩主体721相互连接,以藉由所述热量供应主体722加热所述按摩主体721和使所述按摩主体721以及所述按摩空间7200的温度被保持在适宜温度范围。优选地,所述热量供应主体722不会和人体组织直接接触,即,在所述负压按摩装置被使用时,所述按摩主体721用于隔离所述热量供应主体722和人体组织,以避免所述热量供应主体722的温度过高而对人体组织造成伤害,从而提高所述负压按摩装置的可靠性和稳定性。
参考附图47,所述热量供应主体722进一步包括一加热元件7221,其中所述加热元件7221被设置加热所述按摩主体721和使所述按摩主体721以及所述按摩空间7200的温度被保持在适宜温度范围。
具体地,所述加热元件7221被设置于所述按摩主体721的内部,并且当所述加热元件7221被供应电能时,所述加热元件7221能够产生热量,以加热所述按摩主体721和使所述按摩主体721以及所述按摩空间7200的温度被保持在适宜温度范围。也就是说,所述加热元件7221可以是一个电加热元件,即,一旦所述加热元件7221被供应电力,则所述加热元件7221就可以产生热量。例如,所述加热元件7221可以被实施为一电加热膜。优选地,所述加热元件7221被电连接于所述供电单元740,以在所述供电单元740供应电力至所述加热元件7221时,所述加热元件7221能够产生热量。
可选地,当其他元件将热量传导至所述加热元件7221时,所述加热元件7221也能够产生热量,以加入所述按摩主体721和使所述按摩主体721以及所述按摩空间7200的温度被保持在适宜温度范围。例如,所述加热元件7221可以被实施为一均热元件。
优选地,所述加热元件7221设置于所述按摩主体721一周,以使所述加热元件7221能够在所述按摩主体721的所有位置同时产生热量,并且优选地,所述加热元件7221在所述按摩主体721的每个位置产生的热量一致,通过这样的方式,能够进一步提高所述负压按摩装置的舒适性。
在本发明的所述负压按摩装置的一个具体示例中,所述加热元件7221和所述按摩主体721可以一体地形成,例如将所述加热元件7221放置在一个成型模具的成型空间内,通过向所述成型空间内注入成型材料,并且所述成型材料包裹在所述加热元件7221的内壁和外壁,从而当所述成型材料固化后形成包裹所述加热元件7221的内壁和外壁的所述按摩主体721。
在本发明的所述负压按摩装置的另一个具体示例中,所述加热元件7221和所述按摩主体721也可以分别制得。具体地说,所述按摩主体721包括一内侧部7211和一外侧部7212,其中所述加热元件7221被设置在相互重叠的所述内侧部7211和所述外侧部7212之间,并且所述按摩主体721的所述内侧部7211形成所述按摩空间7200。所述按摩主体721的所述内侧部7211和所述外侧部7212可以通过卡扣或者类似的安装方式被安装在一起。可选地,所述按摩主体721的所述内侧部7211和所述外侧部7212也可以通过超声波或者类似的方式被结合在一起,即,一旦所述按摩主体721的所述内侧部7211和所述外侧部7212被结合在一起,则所述按摩主体721的所述内侧部7211和所述外侧部7212不允许被拆卸。
另外,所述热量供应主体722还可以包括一温度维持部7222,其中所述温度维持部7222被保持在所述加热元件7221的外部,以通过阻止所述加热元件7221产生的热量通过所述温度维持部7222辐射至外部环境的方式,使所述按摩主体721和所述按摩空间7200的温度被保持在适宜温度范围。
在一个示例性的说明中,所述温度维持部7222可以是一个单独的元件,例如所述温度维持部7222可以被实施为一个隔热元件或者绝热元件,其中所述温度维持部7222可以通过重叠地设置于所述加热元件7221或者重叠地设置于所述按摩主体721的所述外侧部7212的方式,被保持在所述加热元件7221的外部,这样,当所述加热元件7221产生热量后,该热量不会经由所述温度维持部7222辐射至外部环境,以提高热量的利用率,通过这样的方式,所述供电单元740仅需要提供较少的电力就能够使所述按摩主体721和所述按摩空间7200的温度被维持在适宜温度范围,进而提高所述负压按摩装置的续航能力。
在另一个示例性的说明中,所述温度维持部7222也可以被实施为一层隔热膜或者绝热膜,例如可以通过在所述加热元件7221的外壁或者所述按摩主体721的所述外侧部7212的内壁和/或外壁刷涂一个隔热材料,以形成所述温度维持部7222,通过这样的方式,当所述加热元件7221产生热量后,该热量不会经由所述温度维持部7222辐射至外部环境,以提高热量的利用率。
进一步地,所述负压按摩装置还提供一导电单元780,其中所述导电单元780进一步包括一第一导电组件781和一第二导电组件782,其中所述第一导电组件781被电连接于所述供电单元740,所述第二导电组件782被电连接于所述加热元件7221,当所述第二导电组件782和所述第一导电组件781被导通时,所述供电单元740能够将电力供应至所述加热元件7221以产生热量。
优选地,所述第一导电组件781被设置于所述壳体731,并且所述第一导电组件781的至少一部分裸露在所述壳体731的外部,所述第二导电组件782被设置于所述按摩主体721,并且所述第二导电组件782的至少一部分裸露在所述按摩主体721的外部,从而当所述按摩单元720的所述按摩主体721和所述壳体731被安装在一起时,所述第一导电组件781和所述第二导电组件782可以通过物理接触的方式被导通。
可选地,所述第一导电组件781和所述第二导电组件782也可以被实施为无线输电模块,其中所述第一导电组件781可以被隐藏于所述壳体731的内部,所述第二导电组件782可以被隐藏于所述按摩主体721的内部,当所述按摩单元720的所述按摩主体721和所述壳体731被安装在一起时,所述第一导电组件781和所述第二导电组件782能够被导通。
可以理解的是,当所述第一导电组件781和所述第二导电组件782被实施为接触式导电组件时,在将所述按摩单元720和所述安装单元730安装在一起的同时,所述第一导电组件781和所述第二导电组件782能够因物理接触被导通。
所述第一导电组件781和所述第二导电组件782可以分别被实施为导电片或者导电凸起,以在所述第一导电组件781和所述第二导电组件782相互接触时被导通。例如在所述第一导电组件781可以被实施为导电片时,所述第二导电组件782可以被实施为导电片或者导电凸起,在所述第一导电组件781被实施为导电凸起时,所述第二导电组件782可以被实施为导电片或者导电凸起。
另外,所述第一导电组件781和所述第二导电组件782中的一个导电组件可以被实施为导电插头,另一个导电组件可以被实施为导电凹槽,从而当导电插头被插入和被保持在导电凹槽中时,所述第一导电组件781和所述第二导电组件782也可以因物理接触被导通。因此,本领域的技术人员可以理解的是,本发明所涉及的所述第一导电组件781的至少一部分裸露在所述壳体731的外部和所述第二导电组件782的至少一部分裸露在所述按摩主体721的外部,不局限于所述第一导电组件781和所述第二导电组件782被可视化地裸露,只要是所述第一导电组件781和所述第二导电组件782能够以物理接触的方式被导通的实施例均属于本发明的所述负压发生装置的内容和范围。
参考附图52,在本发明的所述负压按摩装置的这个变形的实施例中,所述热量供应主体722也可以没有所述加热元件7221。具体地,所述按摩主体721的所述内侧部7211和所述外侧部7212相互重叠地布置,以在所述按摩主体721的所述内侧部7211和所述外侧部7212之间形成一均热空间7213,其中所述按摩主体721还具有至少一第一交换通道7214和至少一第二交换通道7215,其中所述第一交换通道7214和所述第二交换通道7215分别连通于所述均热空间7213和所述热量供应主体722。所述热量供应主体722包括一流体供应元件7223,其中所述第一交换通道7214和所述第二交换通道7215连通于所述流体供应元件7223。所述热量供应主体722的所述流体供应元件7223能够提供温度较高的流体,并且所述流体自所述第一交换通道7214进入所述均热空间7213以在所述均热空间7213内释放热量,从而加热所述按摩主体721,冷却后的所述流体自所述第二交换通道7215被导流出所述均热空间7213。可以理解的是,当所述热量供应主体722持续地将温度较高的所述流体通过所述第一交换通道7214供应至所述均热空间7213和持续地将冷却后的所述流体导流出所述均热空间7213时,所述按摩主体721和所述按摩空间7200的温度被保持在适宜温度范围。
值得一提的是,所述流体的类型不受限制,例如所述流体可以是气体、液体或者气体和液体的混合物等。
优选地,所述负压按摩装置能够通过所述第二交换通道7215将冷却后的所述流体导流至所述流体供应元件7223,以对所述流体进行回收,并循环利用。更优选地,所述流体供应元件7223也可以被电连接于所述供电单元740,以在所述供电单元740提供电力时使所述流体的温度升高。
参考附图49至图51,在使用所述负压按摩装置时,可以先藉由所述热量供应主体722使所述按摩主体721的温度升高,然后再将所述按摩主体721和人体组织接触,以藉由人体组织封闭所述按摩主体721的所述按摩空间7200的开口。供应电力至所述负压发生器711和所述压力释放器712,以使所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压,其中参考附图50,当所述按摩单元720的所述按摩空间7200内形成所述按摩负压时,对应于所述按摩空间7200的人体组织处于紧张状态并且被拉伸至所述按摩空间7200内,参考附图51,当所述按摩单元720的所述按摩空间7200内形成所述维持负压时,对应于所述按摩空间7200的人体组织处于放松状态,并且所述按摩负压使所述按摩单元720能够被保持在人体组织的该维持,从而当所述按摩单元720的所述按摩空间7200内交替形成所述按摩负压和所述维持负压时,按摩对应于所述按摩空间7200的人体组织。值得一提的是,在这个过程中,所述热量供应主体722能够使所述按摩主体721和所述按摩空间7200的温度被保持在适宜温度范围。
在这个过程中,一方面所述振动单元50在被供应电力时能够提供振动以进一步增强按摩效果,另一方面所述低频脉冲单元770也能够产生所述低频脉冲以刺激对应于所述按摩空间7200的人体组织或者相应的穴位,以进一步提高按摩效果。
依本发明的另一个方面,本发明进一步提供一负压按摩方法,其中所述负压按摩方法包括如下步骤:
将人体组织对应于一按摩单元720的一按摩空间7200,以使人体组织封闭所述按摩空间7200的开口;和
通过一负压发生单元710时所述按摩空间7200内交替形成一按摩负压和一维持负压,以按摩对应于所述按摩空间7200的人体组织。
依本发明的另一个方面,本发明进一步提供一负压按摩方法,其中所述负压按摩方法包括如下步骤:
(A)将人体组织对应于一按摩主体721的一按摩空间7200,以使人体组织封闭所述按 摩空间7200的开口;
(B)通过一负压发生单元710使所述按摩空间7200内形成负压环境,以按摩对应于所述按摩空间7200的人体组织;以及
(C)通过一热量供应主体722加热所述按摩主体721至适宜温度范围。
值得一提的是,所述步骤(C)在所述步骤(A)之前,从而首先通过所述热量供应主体722预热所述按摩主体721,以使所述按摩主体721的温度被升高至适宜温度范围,然后再使人体组织封闭所述按摩空间7200的开口。
优选地,在所述步骤(C)中,所述热量供应主体722持续地加热所述按摩主体721,以使所述按摩主体721和所述按摩空间7200的温度被保持在适宜温度范围。
值得一提的是,本发明的所述负压按摩装置特别适于按摩乳房。还值得一提的是,所述负压按摩装置还能够将母乳从乳房中排出体外。具体地说,参考附图53,所述安装单元730进一步包括一支承主体732和一容纳主体733。
所述支承主体732具有一第一安装位7321、一第二安装位7322、一第三安装位7323、一第一通道7324以及一第二通道7325,其中所述第一通道7324连通于所述第一安装位7321和所述第三安装位7323,所述第二通道7325连通于所述第二安装位7322和所述第三安装位7323。所述容纳主体733具有一盛奶空间7331,其中所述容纳主体733能够被安装于所述支承主体732的所述第三安装位7323,以使所述第一通道7324和所述第二通道7325分别连通于所述盛奶空间7331。所述壳体731能够被安装于所述支承主体732的所述第一安装位7321,以使位于所述壳体731的内部的所述负压发生器711和所述压力释放器712形成的所述通气路7100连通于所述第一通道7324。所述按摩单元720能够被安装于所述支承主体732的所述第二安装位7322,以使所述按摩单元720的所述按摩空间7200连通于所述第二通道7325。
在使用时,将乳房容纳于所述按摩单元720的所述按摩空间7200内,然后所述负压发生器711和所述压力释放器712能够通过所述通气路7100、所述第一通道7324、所述盛奶空间7331和所述第二通道7325使所述按摩空间7200内交替形成所述按摩负压和所述维持负压,其中当所述按摩单元720的所述按摩空间7200内形成所述按摩负压时,母乳从乳房中被排出并由所述第二通道7325被导流至所述容纳主体733的所述盛奶空间7331内,当所述按摩单元720的所述按摩空间7200内形成所述维持负压时,所述按摩单元720被保持在乳房的位置。
值得一提的是,所述吸奶器可以是一排奶器,参考本发明的说明书附图之附图54至图 60,依本发明的一较佳实施例的所述排奶器在接下来的描述中被阐述,其中所述排奶器包括一排奶装置810以及至少一乳房容纳装置820,每个所述乳房容纳装置820分别被设置于所述排奶装置810。
值得一提的是,尽管在附图54至图60以及在接下来的描述中,以所述排奶器仅包括一个所述乳房容纳装置820为例,来阐述本发明的所述排奶器的内容和特征,但在其他的示例中,所述乳房容纳装置820的数量不限一个,例如所述乳房容纳装置820的数量可以是两个。另外,在一个特殊的情况下,所述乳房容纳装置820的数量也可以超过两个,例如所述排奶装置810可以被布置在产房中,使用者可以将所述乳房容纳装置820按需设置于所述排奶装置810。因此,本领域的技术人员可以理解的是,所述乳房容纳装置820的数量在本发明的所述排奶器中不受限制。
另外,所述乳房容纳装置820被可拆卸地设置于所述排奶装置810,通过这样的方式,不仅能够方便地分别清洗所述乳房容纳装置820和所述排奶装置810,而且还能够根据使用者的需要选择不同尺寸的所述乳房容纳装置820,并且当所述乳房容纳装置820和所述排奶装置810中的任何一个损坏时或者不能够被继续使用时,仅需更换损坏的或者不能够被继续使用的所述乳房容纳装置820和所述排奶装置810即可,以降低所述排奶器的使用成本。
可选地,所述乳房容纳装置820也可以被一体地设置于所述排奶装置810,例如可以分别制得所述乳房容纳装置820和所述排奶装置810,然后通过一次性的装配方式使所述乳房容纳装置820和所述排奶装置810被安装在一起,从而不允许使用者拆卸。
所述乳房容纳装置820包括一排奶单元821,其中所述排奶单元821具有一排奶空间8210,所述排奶单元821被设置于所述排奶装置810。优选地,所述排奶单元821被可拆卸地设置于所述排奶装置810。在所述排奶器被使用时,一乳房8100能够被容纳于所述排奶单元821的所述排奶空间8210,所述排奶装置810能够使所述排奶单元821的所述排奶空间8210内形成负压环境,以使所述排奶单元821产生变形,从而所述排奶单元821通过挤压所述乳房8100的方式将母乳从所述乳房8100中排出体外。
优选地,所述排奶单元821是柔性排奶单元,以在所述排奶单元821的所述排奶空间8210内形成负压环境时,因所述排奶单元821的所述排奶空间8210内的压力小于外部环境的压力,从而所述排奶单元821能够产生变形。所述排奶单元821被实施为柔性排奶单元,从而当所述排奶单元821的所述排奶空间8210内的压力稍微小于所述排奶单元821的外部环境的压力时,所述排奶单元821就能够产生变形,通过这样的方式,能够降低所述排奶器对所述排奶装置810的功率的要求。更优选地,所述排奶单元821由柔性材料制得,举例地 但不限于硅胶材料、橡胶材料、热塑性弹性材料等。
具体地,在附图54示出的所述排奶器的一个实施例中,所述排奶装置810可以被实施为一个手动负压发生器,其中通过手动操作所述排奶装置810的方式能够使所述排奶单元821的所述排奶空间8210内形成负压环境。
在附图55示出的所述排奶器的另一个实施例中,所述排奶装置810进一步包括一负压发生器811,其中所述负压发生器811形成一通气路8110。所述排奶单元821被设置于所述负压发生器811,并且所述排奶单元821的所述排奶空间8210连通于所述通气路8110。在所述排奶器被使用时,所述乳房8100能够被容纳于所述排奶单元821的所述排奶空间8210,所述负压发生器811能够通过使所述通气路8110形成负压环境的方式使所述排奶空间8210内形成负压环境,从而使所述排奶单元821产生变形,进而所述排奶单元821通过挤压所述乳房8100的方式将母乳从所述乳房8100中排出体外。例如,所述排奶单元821可以分别在所述乳房8100的乳晕的上部和下部挤压乳晕,以将母乳从所述乳房8100中排出体外。。
所述负压发生器811的类型在本发明的所述排奶器中不受限制,例如所述负压发生器811可以被实施为真空泵。在本发明的所述排奶器的这个示例中,以所述负压发生器811被实施为真空发生器为例来进一步阐述本发明的所述排奶器的内容和特征。本领域的技术人员可以理解的是,当所述负压发生器811被实施为真空发生器,并且所述负压发生器811处于持续的工作状态时,所述通气路8110内始终形成负压环境,并且所述排奶单元821的所述排奶空间8210内始终形成负压环境。
进一步地,所述排奶装置810包括一压力释放器812,其中所述压力释放器812被连接于所述负压发生器811,以形成所述通气路8110。也就是说,在所述排奶器的这个示例中,所述负压发生器811和所述压力释放器812同时形成所述通气路8110。
具体地,参考附图56B,所述负压发生器811具有一发生器进口端8111和一发生器出口端8112,所述压力释放器812具有一释放器进口端8121和一释放器出口端8122。
在所述排奶器的一个示例中,所述排奶单元821被可分离地连接于所述负压发生器811的所述发生器进口端8111,所述释放器进口端8121被连接于所述发生器出口端8112,所述释放器出口端8122被连接于所述发生器进口端8111,所述发生器出口端8112连通于外部环境。
在所述排奶器的另一个示例中,所述排奶单元821被可分离地连接于所述负压发生器811的所述发生器进口端8111,所述释放器进口端8121被连接于所述发生器进口端8111,所述发生器出口端8112和所述释放器出口端8122分别连通于外部环境。
在所述排奶器的另一个示例中,所述排奶单元821被可分离地连接于所述负压发生器811的所述发生器进口端8111,所述释放器进口端8121被连接于所述发生器出口端8112,所述发生器出口端8112和所述释放器出口端8122分别连通于外部环境。
当所述负压发生器811处于持续的工作状态时,所述通气路8110内始终形成负压环境,其中所述压力释放器812能够使所述通气路8110内形成一挤奶负压和一维持负压,进而所述压力释放器812能够使所述排奶单元821的所述排奶空间8210内形成所述挤奶负压和所述维持负压,其中所述挤奶负压的数值大于所述维持负压的数值,并且所述挤压负压的数量和所述维持负压的数值均大于0。例如所述压力释放器812可以通过在一开启状态和一关闭状态之间切换的方式,使所述排奶空间8210形成所述挤奶负压和所述维持负压。可以理解的是,所述压力释放器812可以在所述开启状态和所述关闭状态之间来回切换,从而使所述排奶单元821的所述排奶空间8210交替形成所述挤奶负压和所述维持负压。
具体地,当所述排奶单元821的所述排奶空间8210内形成所述挤奶负压时,所述排奶单元821能够产生较大幅度的变形以将母乳从所述乳房8100中排出体外,当所述排奶单元821的所述排奶空间8210内形成所述维持负压时,所述排奶单元821能够产生较小幅度的变形,并且使所述排奶单元821被保持在所述乳房8100的位置,通过这样的方式,能够有效地提高所述排奶器在被使用时的舒适性。可以理解的是,一旦所述排奶器被使用时,所述排奶单元821的所述排奶空间8210内可以始终是负压环境,从而有效地提高所述排奶器在被使用时的舒适性。当然,在其他示例中,所述排奶单元821的所述排奶空间8210内也可以间隙性地形成常压环境。
值得一提的是,所述压力释放器812的类型在本发明的所述排奶器中不受限制,只要所述压力释放器812能够使所述通气路8110内形成所述挤奶负压和所述维持负压,进而使所述排奶单元821的所述排奶空间8210内形成所述挤奶负压和所述维持负压即可。
例如在本发明的所述排奶器的一个示例中,所述压力释放器812可以被实施为继电器,而在本发明的所述排奶器的另一个示例中,所述压力释放器812还可以被实施为电磁阀。
更具体地,在所述排奶器的一个具体示例中,所述压力释放器812可以被实施为一个常闭型电磁阀,即,当没有电力被供应至所述压力释放器812时,所述压力释放器812处于所述关闭状态,此时,所述排奶单元821的所述排奶空间8210内形成所述挤奶负压,当供应电力至所述压力释放器812时,所述压力释放器812处于所述开启状态,此时,所述排奶单元821的所述排奶空间8210形成所述维持负压。
在所述排奶器的这个具体示例中,所述压力释放器812可以被实施为一个常开型电磁 阀,即,当没有电力被供应至所述压力释放器812时,所述压力释放器812处于所述开启状态,此时,所述排奶单元821的所述排奶空间8210内形成所述维持负压,当供应电力至所述压力释放器812时,所述压力释放器812处于所述关闭状态,此时,所述排奶单元821的所述排奶空间8210形成所述挤压负压。
进一步地,所述排奶装置810进一步提供一供电单元813,其中所述负压发生器811和所述压力释放器812分别被电连接于所述供电单元813,以在所述供电单元813供应电力至所述负压发生器811时,使所述通气路8110和所述排奶单元821的所述排奶空间8210内形成负压环境,和在所述供电单元813供应电力至所述压力释放器812时,使所述通气路8110和所述排奶单元821的所述排奶空间8210内形成所述挤奶负压和所述维持负压。
值得一提的是,所述供电单元813的类型在本发明的所述排奶器中不受限制,例如所述供电单元813可以具有储存电力的功能,如一次性电池或者可充电电池等,另外,所述供电单元813也可以将其他电能(例如市电)供应至所述负压发生器811和所述压力释放器812,而所述供电单元813可以提供变压和/或稳定电压的功能。因此,本领域的技术人员可以理解的是,所述供电单元813的类型在本发明的所述排奶器中不受限制,其只要能够向所述负压发生器811和所述压力释放器812供电即可。
进一步地,当所述排奶单元821的所述排奶空间8210形成负压环境时,所述排奶单元821的变形方向被可控。另外,所述排奶单元821的变形位置也可以被可控,以使所述排奶单元821更好地模拟婴儿的吮吸动作,例如,所述排奶单元821可以在两侧发生变形,以使所述排奶单元821的上部和下部具有相互靠近的趋势和位移,以分别模拟婴儿的上颚和下颚,从而模拟婴儿的吮吸动作,进而将母乳从所述乳房8100中排出。
具体地,当所述负压发生器811使所述排奶单元821的所述排奶空间8210形成负压环境时,所述排奶单元821的变形方向被可控,以使所述排奶单元821更好地模拟婴儿的吮吸动作,从而将母乳从所述乳房8100中排出体外。
更具体地,当所述负压发生器811和所述压力释放器812相互配合以使所述排奶单元821的所述排奶空间8210形成所述挤奶负压时,所述排奶单元821的变形方向被可控,当所述负压发生器811和所述压力释放器812相互配合以使所述排奶单元821的所述排奶空间8210形成所述维持负压时,所述排奶单元821的恢复变形方向被可控,当所述负压发生器811和所述压力释放器812相互配合以使所述排奶单元821的所述排奶空间8210交替形成所述挤奶负压和所述维持负压时,所述排奶单元821的变形方向和恢复变形方向均被可控,以使所述排奶单元821能够更好地模拟婴儿的吮吸动作,从而将母乳从所述乳房8100中排 出体外。
所述排奶单元821包括一排奶部8211和一安装部8212,其中所述排奶部8211具有一排奶腔82110,所述安装部8212具有一排奶通道82120,其中所述排奶部8211和所述安装部8212一体地形成,以使所述排奶通道82120连通于所述排奶腔82110,以形成所述排奶空间8210。所述排奶单元821的所述安装部8212被可拆卸地安装于所述排奶装置810,以使所述安装部8212的所述排奶通道82120连通于所述通气路8110,从而当所述通气路8110内形成负压环境时,所述排奶部8211的所述排奶腔82110形成负压环境,以将母乳从被容纳于所述排奶腔82110的所述乳房8100中排出体外。
可以理解的是,所述排奶单元821的所述排奶部8211呈喇叭状或者漏斗状,以使所述排奶单元821的所述排奶部8211的形状和所述乳房8100的形状相互匹配。
另外,可以理解的是,所述排奶单元821的所述排奶部8211和所述安装部8212的强度可以一致,优选地,所述排奶单元821的所述安装部8212的强度大于所述排奶部8211的强度,以在所述排奶腔82110内形成负压环境而使所述排奶部8211产生变形时,所述安装部8212可以不变形,通过这样的方式,能够防止外部环境的气体通过所述安装部8212和所述排奶装置810的安装位置进入所述通气路8110和/或所述排奶空间8210,这样,在使用所述排奶器的过程中,不仅能够保证所述排奶器的所述排奶空间8210内始终形成负压环境,而且还能够避免外部环境的气体夹杂的污染物污染母乳。
例如,在制作所述排奶单元821时,可以通过不同的材料分别形成所述排奶单元821的所述排奶部8211和所述安装部8212,从而使所述排奶部8211和所述安装部8212具有不同的强度;也可以使用同一种材料制作所述排奶部8211和所述安装部8212,通过使所述排奶部8211和所述安装部8212具有不同的厚度的方式,使所述排奶部8211和所述安装部8212具有不同的强度;也可以使用同一种材料制作所述排奶部8211和所述安装部8212,通过在所述安装部8212形成加强部(例如加强筋)或者设置加强部(例如加强筋)的方式,使所述排奶部8211和所述安装部8212具有不同的强度。
本领域的技术人员可以理解的是,上述列举的使所述排奶单元821的所述排奶部8211和所述安装部8212具有不同强度的方式,仅为示例以说明本发明的所述排奶器的内容和特征,其并不应被视为对本发明的所述排奶器的内容和范围的限制。
在本发明的所述排奶器的一个示例中,所述排奶单元821的所述排奶部8211的截面形状可以被实施为椭圆形,以使所述排奶部8211的每次的变形方形被可控。
在本发明的所述排奶器的另一个示例中,所述排奶单元821的所述排奶部8211的截面 形状也可以被实施为圆形,其中所述排奶单元821的所述排奶部8211进一步包括至少一成型部82111和两变形引导部82112,其中每个所述变形引导部82112相互对称地设置于所述成型部82111的两侧,或者每个所述变形引导部82112相互对称地形成于所述成型部82111的两侧,以在所述成型部82111和每个所述变形引导部82112之间形成所述排奶腔82110。
参考附图58A,所述成型部82111的数量可以是两个,其中两个所述成型部82111被上下布置,两个所述变形引导部82112被左右布置,并且每个所述成型部82111和每个所述变形引导部82112一体地成型,以形成所述排奶部8211的所述排奶腔82110,其中所述排奶部8211能够在每个所述变形引导部82112的位置产生变形,以使每个所述成型部211具有相互靠近的趋势和位移,从而模拟婴儿吮吸动作。
优选地,每个所述变形引导部82112被对称地设置于所述排奶部8211的两侧,或者每个所述变形引导部82112对称地形成于所述排奶部8211的两侧。另外,每个所述成型部82111也可以被对称地设置于所述排奶部8211的上部和下部,或者每个所述成型部211也可以对称地形成于所述排奶部8211的上部和下部。可选地,在其他的示例中,位于上部的所述成型部82111形成的一上成型部82111a和位于下部的所述成型部82111形成的一下成型部82111b也可以不对称,例如,所述上成型部82111a和所述下成型部82111b的形状和尺寸可以一致,也可以不一致,再例如,所述上成型部82111a的尺寸大于所述下成型部82111b的尺寸。
也就是说,在附图58A示出的所述排奶器的这个示例中,每个所述排奶部8211的每个所述成型部82111和每个所述变形引导部82112均一体地形成于所述安装部8212。
在附图58B示出的所述排奶器的这个示例中,所述排奶部8211的所述成型部82111的数量被实施为一个,其中仅所述排奶部8211的所述成型部82111一体地形成于所述安装部8212,其中每个所述变形引导部82112相互对称地形成于所述成型部82111的两侧,以在所述成型部82111和每个所述变形引导部82112之间形成所述排奶腔82110,或者每个所述变形引导部82112被相互对称地设置于所述成型部82111的两侧,以使所述成型部82111形成所述排奶腔82110。
每个所述变形引导部82112用于引导所述成型部82111的变形方向,以使所述成型部82111每次的变形方向被可控,从而使所述排奶单元821每次的变形方向被可控,进而使所述排奶单元821能够模拟婴儿的吮吸动作。
优选地,所述成型部82111和每个所述变形引导部82112一体地成型,即,每个所述变形引导部82112相互对称地形成于所述成型部82111的两侧,以在所述成型部82111和每个 所述变形引导部82112之间形成所述排奶腔82110。可选地,所述成型部82111和每个所述变形引导部82112也可以分别制得,然后将每个所述变形引导部82112相互对称地设置于所述成型部82111的两侧。
例如在附图58A示出的所述排奶器的这个示例中,当所述排奶腔82110内形成负压环境时,所述排奶单元821的所述排奶部8211能够在每个所述变形引导部82112的位置产生变形,从而使所述上成型部82111a和所述下成型部82111b具有相互靠近的趋势和位移,以模拟婴儿的吮吸动作。在附图58B示出的所述排奶器的这个示例中,当所述排奶腔82110内形成负压环境时,所述排奶单元821的所述排奶部8211能够在每个所述变形引导部82112的位置产生变形,从而使所述成型部82111的上部和下部具有相互靠近的趋势和位移,以模拟婴儿的吮吸动作。
尽管所述排奶单元821的所述排奶部8211的所述成型部82111和所述变形引导部82112能够分别制得,然后将两个所述变形引导部82112相互对称地设置于所述成型部82111的两侧,以在后续用于引导所述成型部82111的变形方向,在接下来的描述中,以所述成型部82111和所述变形引导部82112一体地成型为示例,来进一步阐述本发明的所述排奶器的内容和特征,本领域的技术人员可以理解的是,以所述成型部82111和所述变形引导部82112一体地成型而形成所述排奶单元821的所述排奶部8211并不应被视为对本发明的所述排奶器的内容和范围的限制。
参考附图58A和图59A,所述变形引导部82112的厚度小于所述成型部82111的厚度,从而当所述排奶部8211的所述排奶腔82110内形成负压环境时,所述排奶部8211会首先在厚度较薄的位置,即,在所述变形引导部82112的位置产生变形,从而使所述上成型部82111a和所述下成型部82111b具有相互靠近的趋势和位移,以使所述上成型部82111a和所述下成型部82111b分别模拟婴儿的上嘴唇和下嘴唇。另外,所述排奶部8211还可以在所述下成型部82111b形成一挤奶凸起82113,其中所述挤奶凸起82113位于所述排奶腔82110,以藉由所述挤奶凸起82113模拟婴儿的舌头,通过这样的方式,所述排奶单元821能够更好地模拟婴儿的吮吸动作。
可以理解的是,当所述排奶部8211的所述排奶腔82110内形成负压环境时,所述排奶部8211的所述变形引导部82112会产生变形,所述成型部82111也会产生变形。更优选地,所述下成型部82111b的变形幅度可以大于所述上成型部82111a的变形幅度,以使所述下成型部82111b带动所述挤奶凸起82113在所述乳房8100的乳晕的下部向上挤压乳晕,从而将母乳从所述乳房8100中排出。
参考附图59B,所述变形引导部82112也可以是引导槽,以在所述排奶部8211的所述排奶腔82110内形成负压环境时,所述排奶部8211会在所述变形引导部82112的位置产生变形。
参考附图59C,所述变形引导部82112也可以是引导筋,以在所述排奶部8211的所述排奶腔82110内形成负压环境时,所述排奶部8211会在所述变形引导部82112的位置产生变形。
在附图59A至图59C示出的所述排奶部8211的所述成型部82111和所述变形引导部82112被实施为的方式仅为示例,以说明所述排奶部8211能够首先在所述变形引导部82112的位置产生变形,但其并不应被视为对本发明的所述排奶器的内容和范围的限制。本领域的技术人员可以理解的是,任何能够在所述排奶腔82110内形成负压环境时,所述变形引导部82112能够引导所述排奶部8211在该位置产生变形的方式均可属于本发明的所述排奶器的内容和范围。
继续参考附图56A和图57,所述排奶装置810进一步包括一振动单元814,其中所述振动单元814被电连接于所述供电单元813,其中当所述供电单元813向所述振动单元814供应电力时,所述振动单元814能够产生振动,以带动所述排奶单元821产生振动,从而按摩所述乳房8100,以提高所述排奶器在被使用时的舒适性。
优选地,所述振动单元814可以被实施为一个振动电机。可选地,所述振动单元814不仅可以包括所述振动电机,还可以包括一个振动构件,例如偏心构件,当所述振动电机在被供应电力而输出动力时,所述振动电机能够使所述振动构件振动,从而带动所述排奶单元821产生振动。当然,本领域的技术人员可以理解的是,所述振动单元814还可以有其他的实施方式,其并不限制本发明的所述排奶器的内容和范围。
继续参考附图56A和图57,所述排奶装置810进一步包括一泄压阀815,其中所述泄压阀815能够被连通于所述通气路8110,其中通过打开所述泄压阀815能够使外部环境连通所述通气路8110,以通过使所述通气路8110恢复常压的方式使所述排奶空间8210恢复常压。
所述泄压阀815可以是一个手动泄压阀,也可以是一个电动泄压阀,例如当所述泄压阀815被实施为所述电动泄压阀时,所述泄压阀815可以被电连接于所述供电单元813。
所述排奶装置810进一步包括一壳体816,其中所述负压发生器811、所述压力释放器812、所述供电单元813和所述振动单元814均被设置于所述壳体816的内部,所述泄压阀815设置于所述壳体816,以允许使用者在所述壳体816的外部操作所述泄压阀815。另外, 所述壳体816还可以设有充电端口,以方便地将外部电能(市电)补充至所述供电单元813,所述壳体816也可以设有控制开关,以通过所述控制开关控制所述供电单元813向所述负压发生器811、所述压力释放器812、所述振动单元814和所述泄压阀815的供电状态。
进一步地,所述排奶装置810包括一支承单元817,其中所述支承单元817具有一第一安装位8171、一第二安装位8172、一第三安装位8173、一第一通道8174以及一第二通道8175,其中所述第一通道8174连通所述第一安装位8171和所述第三安装位8173,所述第二通道8175连通所述第二安装位8172和所述第三安装位8173。
所述壳体816被安装于所述支承单元817的所述第一安装位8171,以使所述负压发生器811的所述发生器进口端8111被连接于所述支承单元817,从而使所述通气路8110连通于所述第一通道8174,其中所述负压发生器811的所述发生器出口端8112连通外部环境,并且所述负压发生器811的所述发生器出口端8112的位置不受限制,只要其能够和外部环境连通即可。优选地,所述壳体816被可拆卸地安装于所述支承单元817的所述第一安装位8171。
所述排奶单元821的所述安装部8212被安装于所述支承单元817的所述第二安装位8172,以使所述安装部8212的所述排奶通道82120连通于所述支承单元817的所述第二通道8175。优选地,所述排奶单元821的所述安装部8212被可拆卸地安装于所述支承单元817的所述第二安装位8172。
所述排奶装置810进一步包括一盛奶器818,其中所述盛奶器818具有一盛奶空间8181,其中所述盛奶器818被安装于所述支承单元817的所述第三安装位8173,以使所述盛奶器818的所述盛奶空间8181分别连通所述第一通道8174和所述第二通道8175,从而使所述排奶单元821的所述排奶部8211的所述排奶腔82110连通于所述通气路8110。优选地,所述盛奶器818被可拆卸地安装于所述支承单元817的所述第三安装位8173。值得一提的是,所述盛奶器818可以是奶瓶,也可以是奶袋等。
参考附图60和图61,使用者在使用所述排奶器时,将所述乳房容纳装置820的所述排奶单元821放置在所述乳房8100的位置,以使所述乳房8100被容纳于所述排奶单元821的所述排奶部8211的所述排奶腔82110。优选地,所述排奶部8211的内壁和所述乳房8100的乳晕的至少一部分之间形成一变形空间8300。例如在一个示例中,所述排奶部8211的内壁和所述乳房8100的乳晕的后部接触,并且所述排奶部8211的内壁和所述乳房8100的乳晕的前部没有接触,从而在所述排奶部8211的内部和所述乳房8100的乳晕的前部之间形成所述变形空间8300。在另一个示例中,所述排奶部8211的内壁和所述乳房8100的乳晕没 有接触,从而在所述排奶部8211的内壁和所述乳房8100的乳晕之间形成所述排奶空间300。
使所述排奶单元821的所述排奶部8211的所述排奶腔82110形成负压环境,从而使所述排奶部8211在所述变形引导部82112的位置产生变形,进而使所述上成型部82111a和所述下成型部82111b具有相互靠近的趋势和位移,此时,所述下成型部82111b或者形成于所述下成型部82111b的所述挤奶凸起82113从所述乳房8100的乳晕的下部向上托住所述乳房8100的乳晕,所述上成型部82111a从所述乳房8100的乳晕的下部向下挤压所述乳房8100的乳晕,通过这样的方式,能够将母乳从所述乳房8100中排出体外。
例如,通过向所述负压发生器811和所述压力释放器812分别供应电力,以使所述负压发生器811和所述压力释放器812形成的所述通气路8110形成负压环境,由于所述排奶部8211的所述排奶腔82110通过所述第二通道8175、所述盛奶空间8181、所述第一通道8174和所述通气路8110相互连通,从而所述排奶腔82110也形成负压环境,从而使所述排奶部8211在所述变形引导部82112的位置产生变形,进而使所述上成型部82111a和所述下成型部82111b具有相互靠近的趋势和位移,此时,所述下成型部82111b或者形成于所述下成型部82111b的所述挤奶凸起82113从所述乳房8100的乳晕的下部向上托住所述乳房8100的乳晕,所述上成型部82111a从所述乳房8100的乳晕的下部向下挤压所述乳房8100的乳晕,通过这样的方式,能够将母乳从所述乳房8100中排出体外。
另外,在这个过程中,所述排奶单元821的所述安装部8212不会产生变形,从而避免外部环境的气体从所述安装部8212和所述支承单元817的安装位置进入所述通气路8110,从而不仅能够保证在所述排奶器被使用时,所述排奶腔82110始终形成负压环境,而且还能够避免母乳被污染。
同时,可以向所述振动单元814供应电力,以使所述排奶单元821同步地振动,通过这样的方式,能够按摩所述乳房8100和按摩所述乳房8100的乳晕。
被排出所述乳房8100的乳腺组织中的母乳由所述第二通道8175被引流至所述盛奶器818的所述盛奶空间8181进行存储。
当完成排奶过程中,通过手动操作所述泄压阀815或者向所述泄压阀815供应电力的方式,能够使所述排奶部8211的所述排奶腔82110内恢复常压,从而方便地将所述排奶器从所述乳房8100的位置取下。
参考附图62,在本发明的所述排奶器的另一个示例中,所述乳房容纳装置820进一步包括一加热单元822,其中所述加热单元822能够预热所述乳房容纳装置820,优选地,所述加热单元822能够预热所述排奶单元821,通过这样的方式,当所述排奶单元821和所述 乳房8100接触之前,所述排奶单元821的温度能够被升高,从而当所述排奶单元821和所述乳房8100接触时不会刺激所述乳房8100,并能够让使用者感觉舒适,以使所述排奶器特别适于在天气较冷的条件下被使用。
进一步地,所述加热单元822包括一加热部8221,其中所述加热部8221可以被设置于所述排奶单元821的所述排奶部8211的内部,当所述加热部8221被供应电力时,所述加热部8221能够产生热量,并且所述加热部8221产生的热量能够被辐射至所述排奶部8211和所述排奶部8211的所述排奶腔82110。例如所述加热部8221可以被实施为一电加热膜,这样,所述加热部8221在被供应电力之后能够产生热量,而且所述加热部8221也可以和所述排奶部8211同步地变形,以模拟婴儿的吮吸动作,从而将母乳从所述乳房8100中排出体外。
在本发明的这个实施例中,所述加热部8221可以和所述排奶部8211一体地成型,例如可以通过嵌入射出工艺或者模塑工艺使所述加热部8221一体地成型于所述排奶部811的内部。
可选地,参考附图63,所述加热部8221也可以重叠地设置于所述排奶部8211的外壁,或者所述加热部8221也可以重叠地形成于所述排奶部8211的外壁。本领域的技术人员可以理解的是,当所述乳房8100被容纳于所述排奶部8211的所述排奶腔82110时,所述排奶部8211用于隔离所述加热部8221和所述乳房8100,从而避免所述加热部8221因温度过高而对所述乳房8100的乳房皮肤造成伤害,并且,所述加热部8221产生的热量在通过所述排奶部8211作用于所述乳房8100的乳房皮肤和乳腺组织之后能够让使用者感觉更舒适。
更进一步地,所述加热单元822还可以包括一温度维持部8222,其中所述温度维持部8222被保持在所述加热部8221的外壁,以阻止所述加热部8221产生的热量通过所述温度维持部8222被辐射至外部环境,通过这样的方式,能够提高热量的利用率。也就是说,所述温度维持部8222可以是一个绝热部或者是一个隔热部。
优选地,所述加热部8221被电连接于所述供电单元813,其中当所述供电单元813被电连接于所述加热部8221时,所述加热部8221能够产生热量。
在附图62示出的所述排奶器的这个示例中,所述温度维持部8222可以是形成于所述加热部8221的外壁的隔热膜或者绝热膜,也可以是重叠地设置于所述加热部8221的外壁的隔热元件或者绝热元件,以使所述温度维持部8222被保持在所述加热部8221的外壁。
在附图63示出的所述排奶器的这个示例中,所述温度维持部8222可以是形成于所述排奶部8211的外壁的隔热膜或者绝热膜,也可以是重叠地设置于所述排奶部8211的外壁的隔热元件或者绝热元件,以使所述温度维持部8222被保持在所述加热部8221的外壁。
也就是说,被保持在所述加热部8221的外壁的所述温度维持部8222可于和所述加热部8221接触,也可以和所述加热部8221不接触,另外,被保持在所述加热部8221的外壁的所述温度维持部8222可以是一个单独的部件,也可以是一个与所述加热部8221一体成型的薄膜或者与所述排奶部8211一体成型的薄膜。
在附图64示出的所述排奶器的这个示例中,所述加热部8221也可以和所述排奶部8211不接触。具体地,所述加热部8221形成一个加热空间82210,其中所述紧排奶部8211被保持在所述加热部8221的所述加热空间82210,当所述加热部8221被供应电力时,所述加热部8221能够产生热量以使所述加热空间82210的温度被升高,进而使所述排奶部8221和所述排奶部8221的所述排奶腔82210的温度被升高。当然,本领域的技术人员可以理解的是,即便是所述排奶部8211在所述加热部8221的所述加热空间82210内和所述加热部8221的内壁接触时,所所述加热部8221产生的热量也能够使所述排奶部8211和所述排奶部8211的所述排奶腔82110的温度升高。
同样,所述温度维持部8222可以被实施为一个单独的部件,以使所述温度维持部8222被重叠地设置于所述加热部8221,或者所述温度维持部8222可以被实施为一体地成型于所述加热部8221的外壁的薄膜,从而藉由所述温度维持部8222阻止所述加热部8221产生的热量辐射至外部环境,以提高热量的利用效率。
在附图65示出的所述排奶器的这个示例中,所述加热单元822还可以包括一保护壳8223,其中所述加热部8221被设置于所述保护壳8223,以使所述加热部8221在被供应电力而产生的热量通过所述保护壳8223的内壁被辐射至所述排奶部8211,从而使所述排奶部8211和所述排奶部8211的所述排奶腔82110的温度升高。
可以理解的是,所述保护壳8223能够避免所述加热部8221裸露,从而提高所述排奶器在被使用时的安全性。另外,所述温度维持部8222可以被设置于所述保护壳8223的内部或者所述温度维持部8222形成于所述保护壳8223的内部。可选地,所述温度维持部8222可以被设置于所述保护壳8223的外部或者所述温度维持部8222形成于所述保护壳8223的外部。
在附图66示出的所述排奶器的这个示例中,所述加热单元822也可以没有所述加热部8221。具体地,所述保护壳8223具有一内侧部82231和一外侧部82232,其中所述内侧部82231和所述外侧部82232相互重叠,以在所述内侧部82231和所述外侧部82232之间形成一均热空间82233,所述内侧部82231形成所述加热空间82210,所述排奶部8211被保持在所述保护壳8223形成的所述加热空间82210。可以理解的是,所述排奶部8211在所述加热 空间82210内可以和所述保护壳8223接触,也可以不接触。
向所述均热空间82233内注入温度较高的流体,例如气体、液体、气液混合物等,温度较高的流体的温度会在所述均热空间82233内释放热量,该热量通过所述保护壳8223的所述内侧部82231被辐射至所述加热空间82210,从而使所述排奶部8211和所述排奶部8211的所述排奶腔82110的温度升高。本领域的技术人员可以理解的是,所述保护壳8223具有进流口和出流口分别连通于所述均热空间82233,以使流体能够自所述进流口进入所述均热空间82233和自所述出流口排出所述均热空间82233。
另外,所述温度维持部8222可以被设置于所述保护壳8223的所述外侧部82232,或者所述温度维持部8222可以形成于所述保护壳8223的所述外侧部82232,例如所述温度维持部8222可以形成于所述保护壳8223的所述外侧部82232的内壁和/或外壁,以阻止热量辐射至外部环境。
根据本发明的另一个方面,本发明进一步提供一排奶方法,其中所述排奶方法包括如下步骤:
(a)在一乳房8100被容纳于一排奶部8211的一排奶腔82110时,使所述乳房8100的乳晕的至少一部分和所述排奶部8211的内壁之间形成一变形空间8300;和
(b)使所述排奶部8211沿着相互对称的两个变形引导部82112的位置产生变形,以使所述排奶部8211在所述乳房8100的乳晕的下部向上托住乳晕,和在所述乳房8100的乳晕的上部向下挤压乳晕,从而将母乳从所述乳房8100中排出体外。
依本发明的另一个方面,本发明的所述吸奶器包括一乳头矫正装置,参考本发明的说明书附图之图67至图69B,依本发明的一较佳实施例的一乳头矫正装置被阐述,其中所述乳头矫正装置包括一矫正器910以及一真空发生器920,其中所述矫正器910被设置于所述真空发生器920,以藉由所述矫正器910和所述真空发生器920形成一通气路9100,其中所述矫正器910形成一矫正端930。
进一步地,所述矫正器910具有一矫正通道911、一自由端912以及一安装端913,其中所述矫正通道911连通于所述自由端912和所述安装端913。优选地,所述矫正器910呈圆筒状。优选地,所述矫正器910的所述矫正通道911的形状和尺寸与一待矫正乳头9200的形状和尺寸相仿。所述矫正器910的所述安装端913被设置于所述真空发生器920,以使所述矫正器910的所述矫正通道911连通于所述乳头矫正装置的所述通气路9100。
优选地,所述矫正器910可以由柔性材料制得,例如硅胶或者橡胶,从而使所述矫正器910形成一个硅胶矫正器或者橡胶矫正器。尽管如此,本领域的技术人员可以理解的是,所 述矫正器910还可以由其他的柔性材料制得。更优选地,所述矫正器910可以由温和的柔性材料制得,以使所述矫正器910与所述待矫正乳头9200接触时和在矫正所述待矫正乳头的过程中,使用者感觉更为舒适,从而提高所述乳头矫正装置的舒适性。
另外,所述乳头矫正装置进一步包括一压力释放器940,其中所述压力释放器940具有一释放器进气口941和一释放器排气口942,所述释放器进气口941连通于所述通气路9100,所述释放器排气口942连通于外部环境。所述压力释放器940具有一打开状态和一关闭状态,其中所述压力释放器940能够在所述打开状态和所述关闭状态之间切换。当所述压力释放器940处于所述打开状态时,所述压力释放器940通过所述释放器排气口942使所述通气路9100和外部环境相连通,当所述压力释放器940处于所述关闭状态时,所述压力释放器940不连通所述通气路9100和外部环境。
优选地,所述压力释放器940可以被实施为一电磁阀,例如常闭型电磁阀,即,在没有供应电力至所述压力释放器940时,所述压力释放器940可以处于所述关闭状态,当供应电力至所述压力释放器940时,所述压力释放器940可以处于打开状态,从而使所述压力释放器940在所述打开状态和所述关闭状态之间切换。可以理解的是,所述压力释放器940也可以被实施为常开型电磁阀,即,在没有供应电力至所述压力释放器940时,所述压力释放器940可以处于所述打开状态,当供应电力至所述压力释放器940时,所述压力释放器940可以处于所述关闭状态。
值得一提的是,上述所例举的被实施为所述电磁阀的所述压力释放器940仅为示例,以用于说明本发明的所述乳头矫正装置的特征和优势,在其他的示例中,所述压力释放器940也可以被实施为继电器或者其他的机构,其只要能够在所述打开状态和所述关闭状态之间切换即可。因此,在接下来的描述和附图中揭露的被实施为所述电磁阀的所述压力释放器940并不应被视为对本发明的所述乳头矫正装置的内容和范围的限制。
可以理解的是,在使用所述乳头矫正装置时,所述真空发生器920使所述通气路9100内形成负压环境,所述压力释放器940使所述通气路9100内产生一矫正负压和一维持负压。具体地,当所述压力释放器940处于所述关闭状态时,所述通气路9100内产生所述矫正负压,以将对应于所述矫正端930的所述待矫正乳头9200提拉至所述矫正端930,当所述压力释放器940处于所述打开状态时,所述通气路9100内产生所述维持负压,以使所述待矫正乳头9200被保持在所述矫正端930,通过这样的方式,能够提高矫正效果。
也就是说,在使用所述乳头矫正装置矫正所述待矫正乳头9200时,当所述待矫正乳头9200被提拉至所述矫正端930之后,所述待矫正乳头9200能够始终被保持在所述矫正端 930,直到矫正过程结束。
所述真空发生器920包括一真空发生管921和一真空发生主体922,其中所述真空发生管921具有一第一端部9211和一第二端部9212,所述真空发生主体922被设置于所述真空发生管921,以用于使所述真空发生管921内形成负压环境,其中所述矫正器910的所述安装端913被设置于所述真空发生管921的所述第一端部9211,以使所述真空发生管921的内部连通于所述矫正器910的所述矫正通道911,所述真空发生管921的所述第二端部9212连通于外部环境,从而藉由所述矫正器910和所述真空发生器920形成所述通气路9100。
优选地,所述真空发生主体922可以被实施为一个隔膜真空泵,以在所述真空发生主体922被供应电力时,能够使所述真空发生管921内形成负压环境。
在本发明的所述乳头矫正装置的一个具体示例中,所述压力释放器940的所述释放器进气口941可以在所述真空发生管921的所述第一端部9211连通于所述通气路9100。在本发明的所述乳头矫正装置的另一个具体示例中,所述压力释放器940的所述释放器进气口941也可以在所述真空发生管921的所述第二端部9212连通于所述通气路9100。在本发明的所述乳头矫正装置的这个具体示例中,所述压力释放器940的所述释放器进气口941在所述真空发生管921的所述第二端部9212连通于所述通气路9100,并且所述压力释放器940的所述释放器排气口942在所述真空发生管921的所述第一端部9211连通于所述通气路9100。
另外,所述乳头矫正装置进一步包括一供电元件950,其中所述真空发生器920的所述真空发生主体922和所述压力释放器940分别被电连接于所述供电元件950,以藉由所述供电元件950分别向所述真空发生主体922和所述压力释放器940供应电力,从而使所述真空发生主体922和所述压力释放器940处于工作状态,而使所述通气路9100内产生所述矫正负压和所述维持负压。
值得一提的是,所述供电元件950的类型在本发明的所述乳头矫正装置中不受限制,例如所述供电元件950可以是一次性电池,也可以是充电电池,例如可充电里充电,以利于降低所述乳头矫正装置的使用成本和使所述乳头矫正装置小型化,从而使所述乳头矫正装置便于携带和使用。尽管如此,可以理解的是,所述供电元件950也可以仅提供变压和稳压的作用,以使被接入到所述供电元件950的外部电能(例如市电)能够被供应至所述真空发生主体922和所述压力释放器940。因此,本领域的技术人员可以理解的是,所述供电元件950的类型并不应被视为对本发明的所述乳头矫正装置的内容和范围的限制。
还值得一提的是,所述供电元件950向所述真空发生主体922和所述压力释放器940的供电方式也不受限制,例如所述供电元件950可以被控制同时向所述真空发生主体922 和所述压力释放器940供应电力,以使所述真空发生主体922和所述压力释放器940同时处于工作状态,另外,所述供电元件950也可以被控制分别向所述真空发生主体922和所述压力释放器940供应电力,从而分别时所述真空发生主体922和所述压力释放器940处于工作状态。
所述乳头矫正装置进一步包括一泄压阀960,其中所述泄压阀960被可操作地连通于所述通气路9100,其中当所述通气路9100内形成负压环境时,可以通过所述泄压阀960使所述通气路9100内快速地恢复常压状态,通过遮掩搞得方式,能够避免所述通气路9100内的压力过大而对所述待矫正乳头造成伤害,从而提高所述乳头矫正装置在被使用时的安全性和可靠性。
值得一提的是,所述泄压阀960可以是手动阀也可以是电动阀,当所述泄压阀960被实施为电动阀时,所述泄压阀960可以被电连接于所述供电元件950。
进一步地,所述乳头矫正装置可以包括一壳体970,其中所述真空发生器920、所述压力释放器940和所述供电元件950分别被设置于所述壳体970的内部,所述泄压阀960被可操作地设置于所述壳体970的表面,以能够在所述壳体970的外部操作所述泄压阀960。另外,在所述壳体970的外部还可以分别设有电连接于所述供电元件950的控制开关和充电端口,以通过控制开关控制所述供电元件950向所述真空发生主体922和所述压力释放器940的供电状态,和通过充电端口向所述供电元件950补充电能。当然,所述泄压阀960、控制开关和充电端口在所述壳体970的位置不受限制。
另外,所述乳头矫正装置还可以包括一振动电机980,其中所述振动电机980被设置于所述壳体970的内部,并且所述振动电机980被电连接于所述供电元件950,其中当所述振动电机980被供应电力时能够产生振动,以按摩被容纳于所述矫正端930内的所述待矫正乳头,从而进一步提高矫正效果。
优选地,所述振动电机980的振动频率被可选择,以让使用者能够根据需要选择不同的频率来对被容纳于所述矫正端930的所述待矫正乳头进行按摩。可以理解的是,用于控制所述供电元件950向所述振动电机980的供电状态的控制开关也可以设在所述壳体970的外部,以便于操作。
在本发明的所述乳头矫正装置的一个示例中,所述真空发生管921的所述第一端部9211和所述第二端部9212都可以和所述壳体970一体地成型,并且所述真空发生管921的所述第一端部9211可以突出于所述壳体970的外部,以方便安装所述矫正器910。所述真空发生管921的所述第二端部9212可以突出于所述壳体970的外部也可以没有突出于所述壳体 970的外部,只要使所述真空发生管921的所述第二端部9212和外部环境相连通即可。
换言之,所述矫正器910的所述安装端913被可拆卸地安装于所述真空发生器920的所述真空发生管921的所述第一端部9211,通过这样的方式,一方面,所述乳头矫正装置允许使用者根据需要更换不同尺寸的所述矫正器910,另一方面,使用者在使用所述乳头矫正装置之前和之后都可以将所述矫正器910从所述真空发生器920上拆卸下来,以对其进行清洗,从而保证所述乳头矫正装置的卫生性,以进一步确保所述乳头矫正装置在被使用时的可靠性。
尽管如此,在本发明的所述乳头矫正装置的其他示例中,所述矫正器910也可以和所述真空发生器920的所述真空发生管921一体地形成,参考附图73。在接下来的描述中以所述矫正器910被可拆卸地安装于所述真空发生器920的所述真空发生管921为例,对本发明的所述乳头矫正装置作进一步的阐述和说明,其并不应被视为对本发明的所述乳头矫正装置的内容和范围的限制。
进一步地,参考附图69A和图69B,所述矫正器910形成一保持部914,其中当所述真空发生器920使所述通气路9100内形成负压环境时,所述待矫正乳头9200能够被提升至所述矫正端930,并且被卡在所述保持部914,以在矫正所述待矫正乳头9200的过程中,所述待矫正乳头9200始终被保持在所述矫正端930,通过这样的方式,能够极大地提高矫正所述待矫正乳头9200的效果。
在本发明的所述乳头矫正装置的这个具体示例中,所述保持部914形成于所述矫正器910的所述安装端913。
具体地说,所述矫正器910具有一内壁915以及一安装面916,其中所述矫正器910的所述内壁915用于形成所述矫正通道911,所述安装面916是所述安装端913的端面,其中所述矫正器910的所述内壁915和所述安装面916之间具有夹角θ,以形成所述保持部914,其中当所述待矫正乳头9200被提拉到所述矫正器910形成的所述矫正端930时,所述待矫正乳头9200的前端会被卡在所述保持部914,以藉由所述保持部914使所述待矫正乳头被保持在所述矫正端930。
优选地,所述矫正器910的所述内壁915和所述安装面916之间形成的夹角θ是锐角,以使所述矫正通道911在所述自由端912一侧的开口尺寸大于所述矫正通道911在所述安装端913一侧的开口尺寸,从而在矫正所述待矫正乳头9200时,便于所述待矫正乳头9200被提拉到所述矫正端930。也就是说,所述矫正器910的所述内壁915从所述自由端912向所述安装端913倾斜地延伸。
所述保持部914环绕所述矫正器910的一周,从而当所述待矫正乳头9200被卡在所述保持部914时,所述保持部914能够在所述待矫正乳头9200的一周卡住所述待矫正乳头9200,从而提高所述乳头矫正装置的舒适性。
更优选地,所述矫正器910的所述内壁915和所述安装面916呈圆滑状,以避免被卡在所述保持部914的所述待矫正乳头9200被伤害,从而保证所述乳头矫正装置在被使用时的可靠性和安全性。
另外,所述矫正器910的所述安装端913可以具有一安装槽917,其中所述真空发生器920的所述真空发生管921的所述第一端部9211被可拆卸地安装于所述矫正器910的所述安装槽917,通过这样的方式,能够将所述矫正器910安装于所述真空发生器920以形成所述通气路9100。
在附图71A和图71B示出的所述乳头矫正装置的这个变形实施方式中,所述保持部914也可以形成在所述矫正器910的中部。具体地说,所述矫正器910的所述内壁915具有一第一内壁9151、一第二内壁9152以及一第三内壁9153,其中所述第一内壁9151自所述矫正器910的所述自由端912向所述安装端913方向延伸,所述第三内壁9153自所述矫正器910的所述安装端913向所述自由端912方向延伸,所述第二内壁9152连接于所述第一内壁9151和所述第三内壁9153,并且所述第二内壁9152和所述第一内壁9151之间形成夹角β,以及在所述第二内壁9152和所述第三内壁9153之间形成夹角γ,以形成所述保持部914。当所述待矫正乳头9200被提拉到所述矫正端930时,所述待矫正乳头9200能够被卡在所述保持部914,从而使所述待矫正乳头9200被保持在所述矫正端930。
优选地,所述第一内壁9151和所述第二内壁9152之间形成的夹角β为锐角,以利于将所述待矫正乳头9200提拉到所述矫正端930。
更优选地,所述第一内壁9151和所述第二内壁9152的连接位置呈圆滑状,从而不仅有利于所述待矫正乳头9200被提拉到所述保持部914,而且还有利于所述待矫正乳头9200从所述保持部914脱离,并且在这两个过程中均不会对所述待矫正乳头9200造成伤害。
可以理解的是,所述矫正器910的所述安装端913也可以设有所述安装槽917,以便于将所述真空发生器21的所述第一端部9211安装于所述矫正器910的所述安装槽917,从而将所述矫正器910和所述真空发生器920安装在一起以形成所述通气路9100。
在本发明的所述乳头矫正装置的一些示例中,所述矫正器910的所述保持部914可以呈台阶状,而在本发明的所述乳头矫正装置的另一些示例中,所述矫正器910的所述保持部914可以是一个环形的凸起,参考附图72A和图72B,其中所述保持部914突出于所述矫正 器910的所述内壁915,以便于卡住所述待矫正乳头9200。另外,在所述乳头矫正装置的这个示例中,所述真空发生器920的所述真空发生管921的所述第一端部9211也可以通过插入所述矫正器910的所述安装端913的方式,使所述矫正器910被安装于所述真空发生器920以形成所述通气路9100。
参考附图70A、图70B和图70C,在使用所述乳头矫正装置时,由于所述待矫正乳头9200呈凹陷状,因此,可以使所述矫正器910形成的所述矫正端930对应于乳晕位置,并且使所述待矫正乳头9200对应于所述矫正器910的所述矫正通道911。供应电力至所述真空发生器920的所述真空发生主体922,以使所述通气路9100内形成负压环境,并且使所述压力释放器940处于所述关闭状态以使所述通气路9100内形成所述矫正负压,从而提拉所述待矫正乳头9200自所述矫正器910的所述自由端912向所述安装端913方向移动,并且当所述待矫正乳头9200通过所述保持部914时,由于所述待矫正乳头9200的尺寸可以稍微大于所述保持部914的尺寸,从而所述保持部914可以卡住所述待矫正乳头9200。当所述压力释放器940处于所述打开状态以使所述通气路9100内形成所述维持负压时,所述维持负压能够帮助所述保持部914使所述待矫正乳头9200被保持在所述矫正端930,以提高矫正效果。可以理解的是,在一些实例中,即便是所述矫正器910没有形成所述保持部914,所述维持负压也可以使所述待矫正乳头9200被保持在所述矫正端930。
值得一提的是,所述矫正负压的数值和所述维持负压的数值均大于0,并且所述矫正负压的数量大于所述维持负压的数值。
当使用者感觉所述通气路9100内的负压较大时,可以通过操作所述泄压阀960,使所述通气路9100与外部环境连通,从而使所述通气路9100内恢复常压,以避免对所述待矫正乳头9200造成伤害。
另外,在使用所述乳头矫正装置矫正呈凹陷状的所述待矫正乳头9200的过程中,所述振动电机980也可以提供振动以按摩所述待矫正乳头9200,从而进一步提高矫正效果。
本领域技术人员会明白附图中所示的和以上所描述的本发明实施例仅是对本发明的示例而不是限制。
由此可以看到本发明目的可被充分有效完成。用于解释本发明功能和结构原理的该实施例已被充分说明和描述,且本发明不受基于这些实施例原理基础上的改变的限制。因此,本发明包括涵盖在附属权利要求书要求范围和精神之内的所有修改。

Claims (130)

  1. 一吸奶器,其特征在于,包括:
    一吸奶器主体;
    至少一乳房容纳装置,其中所述乳房容纳装置具有一容纳空间和一吸奶通道,其中所述乳房容纳装置被连接于所述吸奶器主体,并且所述吸奶通道连通所述容纳空间和所述吸奶器主体,以藉由所述吸奶器主体通过所述吸奶通道使所述容纳空间形成负压环境;以及
    一维持装置,其中所述乳房容纳装置被连接于所述维持装置,其中所述维持装置被设置使所述乳房容纳装置的温度被保持在适宜温度范围。
  2. 根据权利要求1所述的吸奶器,其中所述维持装置包括至少一发热元件,所述发热元件被设置于所述乳房容纳装置,并且所述发热元件环绕在所述容纳空间的四周,其中当所述发热元件被供应电力时产生热量,以加热所述乳房容纳装置和使所述乳房容纳装置的温度被保持在适宜温度范围。
  3. 根据权利要求2所述的吸奶器,其中所述乳房容纳装置包括一内侧部和一外侧部,所述发热元件被设置在相互重叠的所述内侧部和所述外侧部之间,其中所述乳房容纳装置的所述内侧部形成所述吸奶通道和所述容纳空间。
  4. 根据权利要求2所述的吸奶器,其中所述乳房容纳装置包括一内侧部和一外侧部,所述发热元件一体地形成在相互重叠的所述内侧部和所述外侧部之间,其中所述乳房容纳装置的所述内侧部形成所述吸奶通道和所述容纳空间。
  5. 根据权利要求3或4所述的吸奶器,其中所述维持装置包括至少一温度维持元件,其中所述温度维持元件被保持在所述加热元件的外侧。
  6. 根据权利要求5所述的吸奶器,其中所述温度维持元件被设置于所述加热元件和所述外侧部之间,或者所述温度维持元件形成于所述加热元件和所述外侧部之间,以使所述温度维持元件被保持在所述加热元件的外侧。
  7. 根据权利要求6所述的吸奶器,进一步包括一电力供应装置,其中所述发热元件被电连接于所述电力供应装置。
  8. 根据权利要求7所述的吸奶器,进一步包括一导电装置,其中所述导电装置包括一第一导电构件和一第二导电构件,其中所述第一导电构件被电连接于所述电力供应装置,所述第二导电构件被电连接于所述加热元件,其中所述第二导电构件得以被电连接于所述第一导电构件,以导通所述电力供应装置和所述发热元件。
  9. 根据权利要求8所述的吸奶器,其中所述第一导电构件和所述第二导电构件均是导电片;或者所述第一导电构件和所述第二导电构件均是导电触点;或者所述第一导电构件和所述第二导电构件中的一个导电构件时导电片,另一个导电构件时导电触点。
  10. 根据权利要求1至9中任一所述的吸奶器,其中所述吸奶器主体包括一盛奶器和一负压发生组件,其中所述盛奶器具有一盛奶空间、至少一进奶口以及一负压发生通道,所述进奶口和所述负压发生通道分别连通于所述盛奶空间,其中所述负压发生组件连通于所述盛奶器的所述负压发生通道,所述乳房容纳装置被安装于所述吸奶器主体的所述盛奶器,以使所述乳房容纳装置的所述吸奶通道连通于所述盛奶器的所述进奶口,其中所述负压发生组件使所述乳房容纳装置的所述容纳空间内形成负压环境。
  11. 根据权利要求10所述的吸奶器,其中所述负压发生组件被电连接于所述电力供应装置。
  12. 根据权利要求8所述的吸奶器,进一步包括一壳体,其中所述负压发生组件和所述电力供应装置分别被设置于所述壳体,其中所述第一导电构件被设置于所述壳体,且所述第一导电构件的至少一部分裸露于所述壳体的表面,所述第二导电构件被设置于所述乳房容纳装置,且所述第二导电构件的至少一部分裸露于所述乳房容纳装置的表面,其中当所述壳体安装于所述吸奶器主体的所述盛奶器时,所述第一导电构件和所述第二导电构件相互接触而被导通。
  13. 根据权利要求1所述的吸奶器,其中所述乳房容纳装置具有一均热空间、至少一第一交换通道以及至少一第二交换通道,所述第一交换通道和所述第二交换通道分别连通于所述均热空间,其中所述维持装置包括一容器和一加热元件,所述容器具有一发热空间,以供容纳流体,所述加热元件被设置于所述容器,其中所述第一交换通道连通于所述发热空间,其中当所述加热元件被供应电力而通过加热所述发热空间内的流体的方式使流体的温度升高,,温度被升高的流体通过所述第一交换通道进入所述均热空间,以在温度被升高的流体在所述均热空间释放热量时加热所述乳房容纳装置,其中释放热量后的流体通过所述第二交换通道被排出所述均热空间。
  14. 根据权利要求13所述的吸奶器,其中所述第二交换通道连通于所述发热空间,以使释放热量后的流体通过所述第二交换通道被回收至所述发热空间。
  15. 根据权利要求1所述的吸奶器,其中所述乳房容纳装置包括一均热元件,所述均热元件环绕在所述容纳空间的四周,其中所述维持装置包括一发热元件,所述均热元件被可导热地连接于所述发热元件,其中当所述发热元件被供应电力而产生热量时,热量被传导至所 述均热元件,以加热所述乳房容纳装置和使所述乳房容纳装置的温度被保持在适宜温度范围。
  16. 根据权利要求15所述的吸奶器,其中所述维持装置包括至少一热量传导元件,其中所述热量传导元件被可导热地连接于所述均热元件和所述发热元件。
  17. 一使一吸奶器的乳房容纳装置发热的方法,其特征在于,所述发热方法包括如下步骤:
    (a)供应电力至被设置于所述乳房容纳装置的一发热元件,以使所述发热元件产生热量而加热所述乳房容纳装置;和
    (b)阻止所述发热元件产生的热量辐射至所述乳房容纳装置的外部环境,以使所述乳房容纳装置的温度被保持在适宜温度范围。
  18. 根据权利要求17所述的发热方法,其中在所述步骤(b)中,在所述发热元件的外侧设置一温度维持元件,以藉由所述温度维持元件阻止所述发热元件产生的热量辐射至所述乳房容纳装置的外部环境,从而使所述乳房容纳装置的温度被保持在适宜温度范围。
  19. 根据权利要求17所述的发热方法,其中在所述步骤(b)中,在所述发热元件的外侧形成一温度维持元件,以藉由所述温度维持元件阻止所述发热元件产生的热量辐射至所述乳房容纳装置的外部环境,从而使所述乳房容纳装置的温度被保持在适宜温度范围。
  20. 根据权利要求18或19所述的发热方法,其中在所述步骤(a)中,使所述发热元件被设置在相互重叠的所述乳房容纳装置的外侧部和内侧部之间,且使所述发热元件环绕在所述乳房容纳装置的内侧部,其中所述发热元件产生的热量能够在四周同时且同幅度地加热所述乳房容纳装置。
  21. 一吸奶方法,其特征在于,所述吸奶方法包括如下步骤:
    (A)在一乳房被容纳于一乳房容纳装置的一容纳空间时,通过一吸奶器主体使所述容纳空间形成一吸附负压以将母乳从所述乳房中排出体外;和
    (B)通过所述吸奶器主体使所述容纳空间形成一维持负压以使所述乳房容纳装置被保持在所述乳房,其中所述吸附负压的数值大于所述维持负压的数值,并且所述吸附负压和所述维持负压交替形成。
  22. 一吸奶方法,其特征在于,所述吸奶方法包括如下步骤:
    (i)预热一乳房容纳装置和使所述乳房容纳装置的温度被维持在适宜温度范围;
    (ii)使一乳房被保持在所述乳房容纳装置的一容纳空间;以及
    (iii)通过被连接于所述乳房容纳装置的一吸奶器主体使所述容纳空间内形成负压环 境,以将母乳从所述乳房中排出体外。
  23. 根据权利要求22所述的吸奶方法,其中在所述步骤(ii)中,使所述乳房容纳装置的内侧部贴合于所述乳房的乳房皮肤,以使所述乳房容纳装置直接将热量传导至所述乳房的乳房皮肤,从而在所述步骤(iii)中,在吸将母乳从所述乳房中排出体外的同时,放松所述乳房的乳房皮肤和乳腺组织。
  24. 根据权利要求22或23所述的吸奶方法,其中在所述步骤(iii)中,所述吸奶器主体使所述容纳空间形成一吸附负压以将母乳从所述乳房中排出体外,和使所述容纳空间形成一维持负压以使所述乳房容纳装置被保持在所述乳房,其中所述吸附负压的数值大于所述维持负压的数值,并且所述吸附负压和所述维持负压交替形成。
  25. 一乳房护理装置,其特征在于,包括:
    至少一乳房容纳构件,其中所述乳房容纳构件具有一容纳空间,以供容纳乳房;以及一护理本体,其中所述护理本体进一步包括:
    一壳体;
    一电力供应部;以及
    一驱动部,其中所述驱动部被电连接于所述电力供应部,并且所述驱动部和所述电力供应部分别被设置于所述壳体,所述乳房容纳构件被设置于所述护理本体的所述壳体,其中所述驱动部在被供应电力时产生振动,以带动所述乳房容纳构件同步地振动,从而按摩被容纳于所述乳房容纳构件的所述容纳空间的乳房。
  26. 根据权利要求25所述的乳房护理装置,其中所述乳房容纳构件包括一容纳主体和一发热元件,其中所述容纳主体形成所述容纳空间,所述发热元件被设置于所述容纳主体,并且所述发热元件被电连接于所述电力供应部,其中所述发热元件在被供应电力时产生热量,以加热所述容纳主体和使所述容纳空间的温度升高。
  27. 根据权利要求26所述的乳房护理装置,其中所述容纳主体包括一内侧部和一外侧部,所述内侧部形成所述容纳空间,所述发热元件被保持在相互重叠的所述内侧部和所述外侧部之间,其中所述发热元件产生的热量能够加热所述内侧部和通过所述内侧部辐射至所述容纳空间,以使所述容纳空间的温度被升高。
  28. 根据权利要求27所述的乳房护理装置,其中所述乳房容纳构件包括一温度维持部,其中所述温度维持部被保持在所述发热元件和所述外侧部之间。
  29. 根据权利要求26至28中任一所述的乳房护理装置,进一步包括一导电构件,其中所述导电构件包括一第一导电元件和一第二导电元件,所述第一导电元件被电连接于所述电 力供应部,所述第二导电元件被连接于所述发热元件,其中所述乳房容纳构件的所述容纳主体被可拆卸地安装于所述护理本体的所述壳体,其中当所述乳房容纳构件的所述容纳主体安装于所述护理本体的所述壳体时,所述第一导电元件和所述第二导电元件被导通地连接。
  30. 根据权利要求29所述的乳房护理装置,其中所述第一导电元件被设置于所述壳体,所述容纳主体设有一安装部,所述第二导电元件被设置于所述安装部,其中当所述容纳主体的所述安装部被安装于所述壳体时,所述第一导电元件和所述第二导电元件被导通地连接。
  31. 根据权利要求30所述的乳房护理装置,其中所述第一导电元件裸露于所述壳体的表面,所述第二导电元件裸露于所述安装部的表面,其中当所述容纳主体的所述安装部被安装于所述壳体时,所述第一导电元件和所述第二导电元件通过物理接触的方式被导通地连接。
  32. 根据权利要求31所述的乳房护理装置,其中所述第一导电元件和所述第二导电元件均是导电片;或者所述第一导电元件和所述第二导电元件具有是导电凸起;或者所述第一导电元件和所述第二导电元件中的一个导电元件是导电凸起,另一个导电元件是导电片。
  33. 根据权利要求29所述的乳房护理装置,其中所述壳体具有一安装空间,所述容纳主体设有一安装部,其中所述容纳主体的所述安装部被可拆卸地安装于所述壳体的所述安装空间。
  34. 根据权利要求29所述的乳房护理装置,其中所述容纳主体具有一安装空间,所述壳体设有一安装部,其中所述壳体的所述安装部被可拆卸地安装于所述容纳主体的所述安装空间。
  35. 根据权利要求29所述的乳房护理装置,进一步包括一连接构件,其中所述连接构件包括一磁性的第一连接元件和一磁性的第二连接元件,所述壳体具有一安装空间,所述第一连接元件被设置于所述壳体且位于所述安装空间,其中所述容纳主体设有一安装部,所述第二连接元件被设置于所述安装部,其中当所述容纳主体的所述安装部被安装于所述壳体的所述安装空间时,所述第一连接元件和所述第二连接元件相互吸附以使所述容纳主体的所述安装部被保持在所述壳体的所述安装空间。
  36. 根据权利要求35所述的乳房护理装置,其中所述第一连接元件和所述第二连接元件均是磁铁;或者所述第一连接元件和所述第二连接元件中的一个连接元件为磁铁,另一个连接元件为磁性元件。
  37. 根据权利要求25至36中任一所述的乳房护理装置,进一步包括至少一电极构件,其中所述电极构件包括两连接线、一正极端以及一负极端,所述正极端和所述负极端分别被 设置于每个所述连接线的自由端,并且所述正极端和所述负极端分别贴附于与乳房的乳腺组织相关联的穴位,其中所述护理本体包括一低频脉冲部,所述低频脉冲部被设置于所述壳体,并且所述低频脉冲部被电连接于所述电力供应部,所述电极构件的每个所述连接线分别被连接于所述低频脉冲部,其中所述低频脉冲部在被供应电力时产生低频脉冲,以通过所述电极构件的所述正极端和所述负极端作用于穴位。
  38. 一乳房护理装置,其特征在于,包括:
    至少一乳房容纳构件,其中所述乳房容纳构件具有一容纳空间,以供容纳乳房;
    至少一电极构件,其中所述电极构件包括两连接线、一正极端以及一负极端,所述正极端和所述负极端分别被设置于每个所述连接线的自由端,并且所述正极端和所述负极端分别被贴附于与乳房的乳腺组织相关联的穴位;以及
    一护理本体,其中所述乳房容纳构件被设置于所述护理本体,每个所述连接线的连接端分别被连接于所述护理本体,其中所述护理本体被设置使所述乳房容纳构件振动以按摩被容纳于所述容纳空间的乳房,并且所述护理本体被设置产生低频脉冲以通过所述电极构件的所述正极端和所述负极端作用于穴位。
  39. 根据权利要求38所述的乳房护理装置,其中所述护理本体包括一壳体、一电力供应部以及一驱动部,所述驱动部被电连接于所述电力供应部,并且所述驱动部和所述电力供应部分别被设置于所述壳体,其中所述乳房容纳构件被设置于所述壳体,其中所述驱动部在被供应电力时产生振动以带动所述乳房容纳构件同步地振动,从而按摩被容纳于所述乳房容纳构件的所述容纳空间的乳房。
  40. 根据权利要求38所述的乳房护理装置,其中所述护理本体包括一壳体、一电力供应部以及一驱动部,所述驱动部被电连接于所述电力供应部,所述电力供应部被设置于所述壳体,所述驱动部被设置于所述乳房容纳构件,其中所述乳房容纳构件被设置于所述壳体,其中所述驱动部在被供应电力时产生振动以带动所述乳房容纳构件同步地振动,从而按摩被容纳于所述乳房容纳构件的所述容纳空间的乳房。
  41. 根据权利要求40所述乳房护理装置,其中所述护理本体包括一低频脉冲部,其中所述低频脉冲部被电连接于所述电力供应部,并且所述电极构件的每个所述连接线的连接端被连接于所述低频脉冲部,其中所述低频脉冲部在被供应电力时产生低频脉冲以通过所述电极构件的所述正极端和所述负极端作用于穴位。
  42. 一乳房护理装置,其特征在于,包括:
    一护理本体;和
    一乳房容纳构件,其中所述乳房容纳构件被设置于所述护理本体,其中所述乳房容纳构件包括一发热元件和一容纳主体以及具有一容纳空间,其中所述容纳主体进一步包括一内侧部和被重叠地安装于所述内侧部的外侧的一外侧部,所述发热元件被设置在所述内侧部和所述外侧部之间,并且所述容纳主体的所述内侧部形成所述容纳主体的所述容纳空间。
  43. 根据权利要求42所述的乳房护理装置,其中所述乳房容纳构件的所述容纳主体的所述内侧部和所述外侧部通过卡合或者粘合的方式被安装在一起,以使所述发热元件被设置在所述内侧部和所述外侧部之间。
  44. 根据权利要求42所述的乳房护理装置,其中所述乳房容纳构件进一步包括一温度维持部,其中所述温度维持部位于所述发热元件的外侧。
  45. 根据权利要求43所述的乳房护理装置,其中所述乳房容纳构件进一步包括一温度维持部,其中所述温度维持部位于所述发热元件的外侧。
  46. 根据权利要求45所述的乳房护理装置,其中所述温度维持部被保持在所述发热元件和所述容纳主体的所述外侧部之间,以使所述温度维持部位于所述发热元件的外侧。
  47. 根据权利要求42至46中任一所述的乳房护理装置,其中所述护理本体包括一壳体和被设置于所述壳体的一电力供应部,其中所述乳房容纳构件的所述容纳主体被可拆卸地安装于所述壳体,和所述乳房容纳构件的所述发热元件被电连接于所述电力供应部。
  48. 根据权利要求47所述的乳房护理装置,进一步包括一导电构件,其中所述导电构件包括一第一导电部和一第二导电部,所述第一导电部被连接于所述护理本体的所述电力供应部,所述第二导电部被连接于所述乳房容纳构件的所述发热元件,其中在所述乳房容纳构件的所述容纳主体被安装于所述护理本体的所述壳体时,所述第二导电部被自动地导通所述第一导电部。
  49. 根据权利要求47所述的乳房护理装置,进一步包括至少一电极构件,其中所述电极构件包括两连接线、一正极端以及一负极端,所述正极端和所述负极端分别被设置于每个所述连接线的自由端,并且所述正极端和所述负极端分别贴附于与乳房的乳腺组织相关联的穴位,其中所述护理本体包括一低频脉冲部,所述低频脉冲部被设置于所述壳体,并且所述低频脉冲部被电连接于所述电力供应部,所述电极构件的每个所述连接线分别被连接于所述低频脉冲部,其中所述低频脉冲部在被供应电力时产生低频脉冲,以通过所述电极构件的所述正极端和所述负极端作用于穴位。
  50. 一乳房护理装置,其特征在于,包括:
    一护理本体;和
    一乳房容纳构件,其中所述乳房容纳构件被设置于所述护理本体,其中所述乳房容纳构件进一步包括:
    一发热元件;
    一温度维持部;以及
    一容纳主体,其中所述容纳主体包括一内侧部,所述内侧部形成所述乳房容纳构件的一容纳空间,其中所述发热元件位于所述内侧部的外侧,所述温度维持部位于所述发热元件的外侧,以使所述发热元件被保持在所述内侧部和所述温度维持部之间。
  51. 根据权利要求50所述的乳房护理装置,其中所述温度维持部形成于所述发热元件的外侧;或者所述温度维持部被设置于所述发热元件的外侧。
  52. 一清洗装置,以供清洗一个连接管,其特征在于,包括:
    一真空发生器;和
    一清洗本体,其中所述清洗本体包括一进流端和一出流端,所述进流端具有一进流口,所述出流端具有一出流口,其中所述真空发生器被连接于所述清洗本体的所述进流端和所述出流端,以形成一流体通路,其中所述进流端的所述进流口和所述出流端的所述出流口分别在所述流体通路的两个端部连通于所述流体通路;
    其中,所述连接管的一个端部被安装于所述清洗本体的所述进流端或所述出流端,以使所述连接管自所述流体通路的所述进流口或所述出流口连通于所述流体通路,其中所述真空发生器使所述流体通路内产生负压环境,以使流体自所述连接管的一个端部进入所述连接管的内部空间和自所述连接管的另一个端部排出所述连接管的内部空间,从而清洗所述连接管。
  53. 根据权利要求52所述的清洗装置,进一步包括一压力释放器,其中所述压力释放器被设置间歇性地连通所述流体通路和所述清洗装置的外部环境,其中在所述真空发生器处于持续的工作状态时,所述压力释放器使所述流体通路内交替产生一第一负压和一第二负压,其中所述第一负压的数值和所述第二负压的数值均大于0,且所述第一负压的数值大于所述第二负压的数值。
  54. 根据权利要求53所述的清洗装置,其中所述压力释放器具有一进气口和一出气口,所述压力释放器的所述进气口连通于所述流体通路的所述进流口,所述压力释放器的所述出气口连通于所述清洗装置的外部环境。
  55. 根据权利要求53所述的清洗装置,其中所述压力释放器具有一进气口和一出气口,所述压力释放器的所述进气口连通于所述流体通路的所述出流口,所述压力释放器的所述出 气口连通于所述清洗装置的外部环境。
  56. 根据权利要求53所述的清洗装置,其中所述压力释放器具有一进气口和一出气口,所述压力释放器的所述进气口连通于所述流体通路的所述进流口,所述压力释放器的所述出气口连通于所述流体通路的所述出流口。
  57. 根据权利要求53至56中任一所述的清洗装置,其中所述压力释放器是电磁阀。
  58. 根据权利要求52至56中任一所述的清洗装置,进一步包括一电力供应元件,其中所述真空发生器被电连接于所述电力供应元件。
  59. 根据权利要求53至56中任一所述的清洗装置,进一步包括一电力供应元件,其中所述压力释放器被电连接于所述电力供应元件。
  60. 根据权利要求59所述的清洗装置,其中所述真空发生器被电连接于所述电力供应元件。
  61. 根据权利要求60所述的清洗装置,进一步包括一壳体,其中所述清洗本体、所述真空发生器、所述压力释放器和所述电力供应元件均被设置于所述壳体。
  62. 根据权利要求61所述的清洗装置,其中所述清洗本体的所述进流端和所述出流端均突出于所述壳体。
  63. 一带有清洗装置的吸奶器,其特征在于,包括:
    至少一乳房容纳装置,其中所述乳房容纳装置具有一容纳空间,以供容纳一乳房;和
    一清洗装置,其中所述清洗装置形成一流体通路和分别连通于所述流体通路的两个端部的一进流口以及一出流口,其中所述乳房容纳装置的所述容纳空间通过所述清洗装置的所述进流口连通于所述流体通路,所述清洗装置的所述出流口连通于所述吸奶器的外部环境,其中所述容纳空间内与所述流体通路内同步地形成负压环境,以将母乳从乳房中排出体外。
  64. 根据权利要求63所述的吸奶器,其中所述清洗装置进一步包括一真空发生器和一清洗本体,所述清洗本体包括一进流端和一出流端,所述进流端具有所述进流口,所述出流端具有所述出流口,其中所述真空发生器被连接于所述清洗本体的所述进流端和所述出流端,以形成所述流体通路,其中所述真空发生器使所述流体通路内形成负压环境。
  65. 根据权利要求63所述的吸奶器,其中所述清洗装置包括一压力释放器,所述压力释放器被设置间歇性地连通所述流体通路和所述清洗装置的外部环境,其中在所述真空发生器处于持续的工作状态时,所述压力释放器使所述流体通路内交替产生一第一负压和一第二负压,其中所述第一负压的数值和所述第二负压的数值均大于0,且所述第一负压的数值大于所述第二负压的数值。
  66. 根据权利要求65所述的吸奶器,进一步包括一盛奶器,其中所述盛奶器具有一盛奶空间和连通于所述盛奶空间的一开口,其中所述乳房容纳装置的所述容纳空间和所述流体通路的所述进流口分别通过所述开口连通于所述盛奶空间。
  67. 根据权利要求66所述的吸奶器,进一步包括一支撑架,其中所述支撑架具有一第一通道和一第二通道,其中所述盛奶器和所述清洗装置分别被安装于所述支撑架,以使所述第一通道连通于所述盛奶器的所述盛奶空间和所述流体通路的所述进流口,其中所述乳房容纳装置被安装于所述支撑架,以使所述第二通道连通于所述盛奶器的所述盛奶空间和所述乳房容纳装置的所述容纳空间。
  68. 根据权利要求67所述的吸奶器,其中所述支撑架具有一第一安装位、一第二安装位以及一第三安装位,其中所述第一通道连通于所述第一安装位和所述第三安装位,所述第二通道连通于所述第二安装位和所述第三安装位,其中所述清洗装置被可分离地安装于所述第一安装位,所述乳房容纳装置被可分离地安装于所述第二安装位,所述盛奶器被可分离地安装于所述第三安装位。
  69. 一通过一清洗装置清洗一连接管的方式,其特征在于,所述清洗方法包括如下步骤:
    (a)使所述清洗装置的一真空发生器连通于一清洗本体的一进流口和一出流口,以形成一流体通路;
    (b)将所述连接管的一个端部通过所述清洗本体的所述进流口或所述出流口连通于所述流体通路;以及
    (c)通过所述真空发生器使所述流体通路产生负压环境,以使流体自所述连接管的一个端部进入所述连接管的内部空间和自所述连接管的另一个端部排出所述连接管的内部空间,从而清洗所述连接管。
  70. 根据权利要求69所述的清洗方法,其中在所述步骤(c)中,进一步通过所述清洗装置的一压力释放器使所述流体通路内交替产生一第一负压和一第二负压,以使流体在所述连接管的内部空间以快慢交替的方式冲刷所述连接管的内壁,其中所述第一负压的数值和所述第二负压的数值均大于0,且所述第一负压的数值大于所述第二负压的数值。
  71. 根据权利要求70所述的清洗方法,其中在上述方法中,使所述压力释放器的进气口连通于所述流体通路的所述出流口,和使所述压力释放器的出气口连通于所述流体通路的进液口,从而使流体流经所述压力释放器以同步地清洗所述压力释放器。
  72. 根据权利要求69至71中任一所述的清洗方法,其中所述连接管的内径尺寸大小范围是1mm~10mm,所述连接管的长度尺寸大小范围是10mm~1000mm。
  73. 一负压按摩装置,其特征在于,包括:
    一按摩单元,其中所述按摩单元具有一按摩空间;和
    一负压发生单元,其中所述负压发生单元被连接于所述按摩单元,其中所述负压发生单元被设置能够使所述按摩单元的所述按摩空间内交替形成一按摩负压和一维持负压,以按摩对应于所述按摩空间的人体组织,其中所述按摩负压的数值大于所述维持负压的数值。
  74. 根据权利要求73所述的负压按摩装置,其中所述负压发生单元包括一负压发生器和一压力释放器,所述负压发生器和所述压力释放器相互连通以形成一通气路,所述按摩单元的所述按摩空间连通于所述负压发生单元的所述通气路,其中所述负压发生器通过所述通气路使所述按摩空间内形成负压环境,所述压力是释放器通过在一开启状态和一关闭状态之间来回切换的方式使所述按摩空间内交替形成所述按摩负压和所述维持负压。
  75. 根据权利要求74所述的负压按摩装置,其中所述负压发生单元包括一泄压阀,其中所述泄压阀被可操作地连通于所述通气路,以通过所述泄压阀使所述按摩空间内恢复常压。
  76. 根据权利要求73至75中任一所述的负压按摩装置,其中所述按摩单元包括一按摩主体和一热量供应主体,所述按摩主体具有所述按摩空间,所述热量供应主体被连接于所述按摩主体以加热所述按摩主体。
  77. 根据权利要求76所述的负压按摩装置,其中所述热量供应主体包括一加热元件,其中所述加热元件被设置于所述按摩主体,以在所述加热元件被供应电力时,所述加热元件加热所述按摩主体。
  78. 根据权利要求77所述的负压按摩装置,其中所述热量供应主体包括一温度维持部,其中所述温度维持部被保持在所述加热元件的外部,以阻止所述加热元件产生的热量通过所述温度维持部辐射至外部环境。
  79. 根据权利要求78所述的负压按摩装置,进一步包括一供电单元,其中所述加热元件被电连接于所述供电单元,以在所述供电单元供应电力至所述加热元件时,所述加热元件产生热量,从而加热所述按摩主体。
  80. 根据权利要求79所述的负压按摩装置,进一步包括一导电单元,其中所述导电单元包括一第一导电组件和一第二导电组件,所述第一导电组件被电连接于所述供电单元,所述第二导电组件被连接于所述加热元件,其中所述第一导电组件和所述第二导电组件被相互导通,以使所述供电单元供应电力至所述加热元件。
  81. 根据权利要求80所述的负压按摩装置,进一步包括一安装单元,其中所述安装单 元包括一壳体,所述供电单元被设置于所述壳体的内部,其中所述第一导电组件被设置于所述壳体,所述第二导电组件被设置于所述按摩主体,其中当所述按摩主体和所述壳体相互靠近时,所述第一导电组件和所述第二导电组件被相互导通。
  82. 根据权利要求81所述的负压按摩装置,其中所述第一导电组件的至少一部分裸露在所述壳体的外部,所述第二导电组件的至少一部分裸露在所述按摩主体的外部,从而当所述按摩主体和所述壳体相互靠近时,所述第一导电组件和所述第二导电组件通过物理接触的方式被相互导通。
  83. 根据权利要求82所述的负压按摩装置,其中所述第一导电组件和所述第二导电组件分别是导电片或者导电凸起。
  84. 根据权利要求81所述的负压按摩装置,进一步包括一振动单元,其中所述振动单元被设置于所述壳体的内部,并且所述振动单元被电连接于所述供电单元,其中所述振动单元在被供应电力时产生振动,该振动通过所述壳体带动所述按摩主体同步振动。
  85. 根据权利要求81所述的负压按摩装置,进一步包括一低频脉冲单元,其中所述低频脉冲单元包括一脉冲发生器和一传导组件,所述传导组件被连接于所述脉冲发生器,所述低频脉冲器被设置于所述壳体的内部,并且所述低频脉冲器被电连接于所述供电单元,其中所述低频脉冲器在被供应电力时产生低频脉冲,所述传导组件将所述低频脉冲传导至人体组织或者相应穴位。
  86. 根据权利要求84所述的负压按摩装置,进一步包括一低频脉冲单元,其中所述低频脉冲单元包括一脉冲发生器和一传导组件,所述传导组件被连接于所述脉冲发生器,所述低频脉冲器被设置于所述壳体的内部,并且所述低频脉冲器被电连接于所述供电单元,其中所述低频脉冲器在被供应电力时产生低频脉冲,所述传导组件将所述低频脉冲传导至人体组织或者相应穴位。
  87. 根据权利要求86所述的负压按摩装置,其中所述传导组件包括两传导线、一正极端以及一负极端,每个所述传导线的连接端分别被连接于所述脉冲发生器,所述正极端和所述负极端分别被设置于每个所述传导线的自由端。
  88. 根据权利要求74或75所述的负压按摩装置,进一步包括一安装单元,其中所述安装单元包括一壳体、一支承主体和一容纳主体,其中所述负压发生器和所述压力释放器分别被设置于所述壳体的内部,其中所述支承主体具有一第一安装位、一第二安装位、一第三安装位、一第一通道以及一第二通道,所述第一通道连通所述第一安装位和所述第三安装位,所述第二通道连通所述第二安装位和所述第三安装位,其中所述容纳主体具有一盛奶空间, 其中所述壳体被安装于所述支承主体的所述第一安装位,以使所述通气路连通于所述第一通道,所述按摩单元被安装于所述支承主体的所述第二安装位,以使所述按摩空间连通于所述第二安装位,其中所述容纳主体被安装于所述支承主体的所述第三安装位,以使所述盛奶空间分别连通所述第一通道和所述第二通道。
  89. 一负压按摩方法,其特征在于,所述负压按摩方法包括如下步骤:
    (a)将人体组织对应于一按摩单元的一按摩空间,以使人体组织封闭所述按摩空间的开口;和
    (b)通过一负压发生单元时所述按摩空间内交替形成一按摩负压和一维持负压,以按摩对应于所述按摩空间的人体组织。
  90. 一负压按摩方法,其特征在于,所述负压按摩方法包括如下步骤:
    (A)将人体组织对应于一按摩主体的一按摩空间,以使人体组织封闭所述按摩空间的开口;
    (B)通过一负压发生单元使所述按摩空间内形成负压环境,以按摩对应于所述按摩空间的人体组织;以及
    (C)通过一热量供应主体加热所述按摩主体至适宜范围。
  91. 根据权利要求90所述的负压按摩方法,其中在上述方法中,所述步骤(C)在所述步骤(A)之前,从而首先通过所述热量供应主体预热所述按摩主体,以使所述按摩主体的温度被升高至适宜范围,然后再使人体组织封闭所述按摩空间的开口。
  92. 根据权利要求91所述的负压按摩方法,其中在所述步骤(C)中,所述热量供应主体持续地加热所述按摩主体,以使所述按摩主体和所述按摩空间的温度被保持在适宜范围。
  93. 根据权利要求90至92中任一所述的负压按摩方法,其中在所述步骤(B)中,进一步包括步骤:
    (B.1)通过所述负压发生单元的一负压发生器使所述按摩空间内形成负压环境;和
    (B.2)通过所述负压发生单元的一压力释放器在一开启状态和一关闭状态之间来回切换,以使所述按摩空间内交替形成一按摩负压和一维持负压。
  94. 一用于排奶器的乳房容纳装置,其特征在于,包括:
    一柔性的排奶单元,其中所述排奶单元进一步包括一排奶部,所述排奶部进一步包括至少一成型部和两变形引导部以及具有一排奶腔,每个所述变形引导部分别位于所述成型部的两侧,以用于引导所述成型部的变形方向,其中一乳房能够被容纳于所述排奶腔,当所述排 奶部受力时,所述成型部在每个所述变形引导部的引导下产生变形,以在所述乳房的乳晕的下部向上托住所述乳房的乳晕,和在所述乳房的乳晕的上部向下挤压所述乳房的乳晕,从而母乳从所述乳房中排出体外。
  95. 根据权利要求94所述的乳房容纳装置,其中所述成型部的数量是一个,每个所述变形引导部分别被对称地设置于所述成型部的两侧,或者每个所述变形引导部分别一体地形成于所述成型部的两侧,以供引导所述成型部的变形方向。
  96. 根据权利要求94所述的乳房容纳装置,其中所述成型部的数量是两个,其中位于上部的所述成型部被定义为一上成型部,位于下部的所述成型部被定义为一下成型部,其中每个所述变形引导部被对称地设置于所述上成型部的两侧,并且每个所述变形引导部被对称地设置于所述下成型部的两侧,以藉由每个所述变形引导部引导所述上成型部和所述下成型部具有相互靠近的趋势和位移。
  97. 根据权利要求96所述的乳房容纳装置,其中所述变形引导部的厚度薄于所述成型部的厚度。
  98. 根据权利要求94至97中任一所述的乳房容纳装置,进一步包括一加热单元,其中所述加热单元包括一加热部,所述加热部被设置于所述排奶部的内部,其中所述加热部在被供应电力之后能够产生热量以使所述排奶部和所述排奶部的所述排奶腔发热,其中所述加热部是电加热膜。
  99. 根据权利要求98所述的乳房容纳装置,其中所述加热单元包括一温度维持部,其中所述温度维持部被保持在所述加热部的外壁,以阻止所述加热部产生的热量通过所述温度维持部辐射至外部环境。
  100. 一排奶器,其特征在于,包括:
    一排奶装置,其中所述排奶装置包括一通气路;和
    一乳房容纳装置,其中所述乳房容纳装置包括一柔性的排奶单元,所述排奶单元进一步包括:
    一安装部,其中所述安装部具有一排奶通道,所述安装部被安装于所述排奶装置,以使所述排奶通道连通于所述通气路;和
    一排奶部,其中所述排奶部和所述安装部一体地形成,并且所述排奶部进一步包括至少一成型部和两变形引导部以及具有一排奶腔,所述排奶腔连通于所述排奶通道,每个所述变形引导部分别位于所述成型部的两侧,以用于引导所述成型部的变形方向,其中一乳房能够被容纳于所述排奶腔,的那个所述通气路形成负压环境时,所述排奶腔形 成负压环境以使所述排奶部受力,从而所述成型部在每个所述变形引导部的引导下产生变形,以在所述乳房的乳晕的下部向上托住所述乳房的乳晕,和在所述乳房的乳晕的上部向下挤压所述乳房的乳晕,从而将母乳从所述乳房中排出体外。
  101. 根据权利要求100所述的排奶器,其中所述排奶装置包括一负压发生器,其中所述负压发生器形成所述通气路,所述负压发生器能够通过使所述通气路形成负压环境的方式使所述排奶腔形成负压环境。
  102. 根据权利要求100所述的排奶器,其中所述排奶装置包括一负压发生器和一压力释放器,其中所述负压发生器和所述压力释放器相互连通以形成所述通气路,其中所述负压发生器通过使所述通气路形成负压环境的方式使所述排奶腔形成负压环境,所述压力释放器通过在开启状态和关闭状态切换的方式使所述排奶腔形成一挤奶负压和一维持负压,其中所述挤奶负压的数值大于所述维持负压的位置。
  103. 根据权利要求102所述的排奶器,其中所述排奶装置包括一供电单元,其中所述负压发生器和所述压力释放器分别被电连接于所述供电单元。
  104. 根据权利要求102所述的排奶器,其中所述排奶装置包括一泄压阀,其中所述泄压阀能够连通于所述通气路,其中当所述泄压阀处于打开状态时,所述通气路内是常压状态。
  105. 根据权利要求103所述的排奶器,其中所述排奶装置包括一泄压阀,其中所述泄压阀能够连通于所述通气路,其中当所述泄压阀处于打开状态时,所述通气路内是常压状态。
  106. 根据权利要求105所述的排奶器,其中所述排奶装置包括一支承单元和一盛奶器,其中所述支承单元具有一第一安装位、一第二安装位、一第三安装位、一第一通道以及一第二通道,所述第一通道连通所述第一安装位和所述第三安装位,所述第二通道连通所述第二安装位和所述第三安装位,其中所述盛奶器具有一盛奶空间,并且所述盛奶器被安装于所述支承单元的所述第三安装位,以使所述第一通道和所述第二通道均连通所述盛奶空间,其中所述安装部被安装于所述第二安装位,以使所述排奶通道连通所述第二通道,其中所述负压发生器和所述压力释放器被安装于所述第一安装位,以使所述通气路连通所述第一通道。
  107. 根据权利要求100至106中任一所述的排奶器,其中所述成型部的数量是一个,每个所述变形引导部分别被对称地设置于所述成型部的两侧,或者每个所述百年星引导部分别一体地形成于所述成型部的两侧,以供引导所述成型部的变形方向。
  108. 根据权利要求100至106中任一所述的排奶器,其中所述成型部的数量是两个,其中位于上部的所述成型部被定义为一上成型部,位于下部的所述成型部被定义为一下成型部,其中每个所述变形引导部被对称地设置于所述上成型部的两侧,并且每个所述变形引导 部被对称地设置于所述下成型部的两侧,以藉由每个所述变形引导部引导所述上成型部和所述下成型部具有相互靠近的趋势和位移。
  109. 根据权利要求100至106中任一所述的排奶器,其中所述乳房容纳装置进一步包括一加热单元,其中所述加热单元包括一加热部,所述加热部被设置于所述排奶部的内部,其中所述加热部在被供应电力之后能够产生热量以使所述排奶部和所述排奶部的所述排奶腔发热,其中所述加热部是电加热膜。
  110. 一排奶方法,其特征在于,所述排奶方法包括如下步骤:
    (a)在一乳房被容纳于一排奶部的一排奶腔时,使所述乳房的乳晕的至少一部分和所述排奶部的内壁之间形成一变形空间;和
    (b)使所述排奶部沿着相互对称的两个变形引导部的位置产生变形,以使所述排奶部在所述乳房的乳晕的下部向上托住乳晕,和在所述乳房的乳晕的上部向下挤压乳晕,从而将母乳从所述乳房中排出体外。
  111. 一乳头矫正装置,其特征在于,包括:
    一真空发生器;
    一矫正器,其中所述矫正器被设置于所述真空发生器,以藉由所述矫正器和所述真空发生器形成一通气路,并且所述矫正器形成一矫正端;以及
    一压力释放器,其中所述压力释放器具有一释放器进气口和一释放器排气口,所述释放器进气口连通于所述通气路,所述释放器排气口连通于外部环境或者所述释放器排气口连通于所述通气路,其中当所述真空发生器使所述通气路内形成负压环境时,所述压力释放器使所述通气路交替产生一矫正负压和一维持负压,并且当所述通气路内产生所述矫正负压时,对应于所述矫正端的一待矫正乳头被提拉至所述矫正端的内部,当所述通气路内产生所述维持负压时,所述待矫正乳头被保持在所述矫正端的内部。
  112. 根据权利要求111所述的乳头矫正装置,其中所述矫正器具有一矫正通道和形成一保持部,所述保持部位于所述矫正通道内,其中所述待矫正乳头被提拉至所述矫正通道且在穿过所述保持部时,所述保持部能够卡住所述待矫正乳头,以使所述待矫正乳头被保持在所述矫正端。
  113. 根据权利要求111所述的乳头矫正装置,其中所述矫正器具有一内壁和一安装面,所述内壁连接于所述安装面,并且在所述内壁和所述安装面之间具有夹角θ,以形成一保持部,所述内壁形成一矫正通道,其中所述待矫正乳头被提拉至所述矫正通道内并且在穿过所述保持部时,所述保持部能够卡住所述待矫正乳头,以使所述待矫正乳头被保持在所述矫正 端。
  114. 如权利要求111至113中任一所述的乳头矫正装置,其中所述真空发生器包括一真空发生管和一真空发生主体,所述真空发生管具有一第一端部和一第二端部,所述真空发生主体被设置于所述真空发生管,以使所述真空发生管内形成负压环境,其中所述矫正器被设置于所述真空发生管的所述第一端部,所述真空发生管的所述第二端部连通于外部环境。
  115. 根据权利要求114所述的乳头矫正装置,其中所述矫正器和所述真空发生管的所述第一端部一体地形成。
  116. 根据权利要求114所述的乳头矫正装置,其中所述矫正器具有一安装槽,所述真空发生管的所述第一端部被安装于所述矫正器的所述安装槽。
  117. 根据权利要求114所述的乳头矫正装置,其中所述真空发生管的所述第一端部具有一安装槽,所述矫正器的安装端被安装于所述真空发生管的所述第一端部的所述安装槽。
  118. 根据权利要求111至113中任一所述的乳头矫正装置,进一步包括一供电元件,其中所述真空发生器和所述压力释放器分别被电连接于所述供电元件。
  119. 根据权利要求111至113中任一所述的乳头矫正装置,进一步包括一壳体,其中所述真空发生器和所述压力释放器分别被设置于所述壳体的内部,所述矫正器位于所述壳体的外部。
  120. 根据权利要求9所述的乳头矫正装置,进一步包括一振动电机,其中所述振动电机被设置于所述壳体的内部,当所述振动电机被供应电力时,所述振动电机产生振动以按摩被容纳于所述矫正端的所述待矫正乳头。
  121. 一乳头矫正装置,其特征在于,包括:
    一真空发生器;和
    一矫正器,其中所述矫正器被设置于所述真空发生器,以藉由所述矫正器和所述真空发生器形成一通气路,并且所述矫正器形成一矫正端和一保持部,其中当真空发生器使所述通气路内产生负压环境时,对应于所述矫正端的一待矫正乳头得以被提拉至所述矫正端内,并且当所述待矫正乳头穿过所述保持部后被所述保持部卡住,以在矫正所述待矫正乳头的过程中,所述待矫正乳头始终被保持在所述矫正端。
  122. 根据权利要求121所述的乳头矫正装置,其中所述矫正器具有一内壁和一安装面,所述内壁连接于所述安装面,并且在所述内壁和所述安装面之间具有夹角θ,以形成所述保持部。
  123. 根据权利要求122所述的乳头矫正装置,其中所述内壁和所述安装面形成的夹角 θ为锐角。
  124. 根据权利要求123所述的乳头矫正装置,其中所述内壁和所述安装面的连接位置呈圆滑状。
  125. 根据权利要求121所述的乳头矫正装置,其中所述矫正器具有一内壁,所述内壁进一步具有一第一内壁、一第二内壁以及一第三内壁,所述第一内壁自所述矫正器的自由端向安装端方向延伸,所述第三内壁自所述矫正器的安装端向自由端方向延伸,所述第二内壁分别连接于所述第一内壁和所述第二内壁,并且所述第一内壁和所述第二内壁之间形成夹角β,所述第二内壁和所述第三内壁之间形成夹角γ,以在所述第二内壁的位置形成所述保持部。
  126. 根据权利要求125所述的乳头矫正装置,其中所述第一内壁和所述第二内壁之间形成的夹角β为锐角。
  127. 根据权利要求126所述的乳头矫正装置,其中所述第一内壁和所述第二内壁的连接位置呈圆滑状。
  128. 一乳头矫正装置的矫正器,其特征在于,所述矫正器具有一内壁和一矫正通道以及形成一保持部,其中所述内壁形成所述矫正通道,并且所述内壁自所述矫正器的自由端向安装端倾斜地延伸,以使一待矫正乳头在被提拉时能够轻松地进入所述矫正通道,并且当所述待矫正乳头穿过所述保持部时,所述保持部卡住所述待矫正乳头以使所述待矫正乳头被保持在所述矫正通道。
  129. 根据权利要求128所述的矫正器,其中所述矫正器具有一安装面,所述内壁连接于所述安装面,并且在所述内壁和所述安装面之间具有夹角θ以形成所述保持部。
  130. 根据权利要求129所述的矫正器,其中所述内壁和所述安装面形成的夹角θ为锐角。
PCT/CN2018/072930 2017-01-17 2018-01-17 吸奶器和乳房护理装置及其应用 WO2018133789A1 (zh)

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CN201720053620.0U CN207356246U (zh) 2017-01-17 2017-01-17 乳房护理装置
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CN201720053620.0 2017-01-17
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CN201720069869.0U CN207545542U (zh) 2017-01-17 2017-01-17 用于排奶器的乳房容纳装置及排奶器
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CN201720050422.9U CN207545541U (zh) 2017-01-17 2017-01-17 吸奶器
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CN201720050302.9U CN207125826U (zh) 2017-01-17 2017-01-17 乳头矫正装置及其矫正器
CN201710041073.9A CN108310492B (zh) 2017-01-17 2017-01-17 吸奶器和使吸奶器的乳房容纳装置发热的方法以及吸奶方法
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CN201710030483.3A CN108309735A (zh) 2017-01-17 2017-01-17 乳房护理装置
CN201720050524.0U CN207323781U (zh) 2017-01-17 2017-01-17 清洗装置以及带有清洗装置的吸奶器
CN201720050689.8U CN207384461U (zh) 2017-01-17 2017-01-17 负压按摩装置
CN201710041084.7A CN108310493A (zh) 2017-01-17 2017-01-17 清洗装置及其清洗方法以及带有清洗装置的吸奶器
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