CN107126368B - Intelligent feeding device - Google Patents

Intelligent feeding device Download PDF

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Publication number
CN107126368B
CN107126368B CN201710310855.8A CN201710310855A CN107126368B CN 107126368 B CN107126368 B CN 107126368B CN 201710310855 A CN201710310855 A CN 201710310855A CN 107126368 B CN107126368 B CN 107126368B
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adjustable base
container
feeding
layer
intelligent control
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CN107126368A (en
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李整民
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Song Ahui
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Song Ahui
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J9/00Feeding-bottles in general

Abstract

The invention provides an intelligent feeding device which comprises a nipple, an areola part, a cover body, a container and an intelligent control structure, wherein the intelligent control structure comprises an intelligent control end, a display end, an adjustable base and an intelligent water injection structure. The adjustable base comprises an adjustable base upper layer, an adjustable base middle layer, an adjustable base lower layer, an adjustable base middle column, threads and a sealing body. The intelligent water injection structure comprises a control chip, a liquid level sensor, a temperature sensor, a heating element and a water injection device. Can improve the comfort level of feeding the object through above-mentioned structure, be convenient for formulate scientific, normative feeding scheme, and can obtain corresponding direction and help, market prospect is huge.

Description

Intelligent feeding device
Technical Field
The invention relates to an intelligent feeding device which is suitable for feeding liquids such as milk, fruit juice, vitamin preparations and the like of infants and special crowds.
Background
At present, with the progress and development of society, higher requirements are put forward on the scientific feeding of infants. The variety of the feeding food is greatly expanded, such as milk, fruit juice, vitamin preparations, liquid food for feeding and medicines are gradually enriched. For feeding infants, various appliances including feeding bottles, cups and the like are commonly used. Of course, the care of special people, such as patients, the elderly, disabled people, etc., is also needed.
Because formula milk fed to infants is generally drunk after being mixed with water, the existing feeding devices have single functions. With the widespread use of formula milk feeding, users find that the existing milk bottles have many defects, and therefore, many manufacturers aim at the defects
The defects are made into a plurality of complementary matched products, but the problems cannot be really overcome. There are a number of problems with current feeding devices.
1. The nursing bottle is not suitable for the posture of milk drinking, for example, when an infant lies or leans against, the nursing bottle needs to be erected to drink all milk, the nursing bottle is supported by arms all the time, the arms are easy to fatigue, the experience of the infant is reduced, and the emotion of anorexia is easy to generate.
2. The residual liquid can not flow to the nipple always, so that waste is caused, meanwhile, bacterial virus can be bred due to untimely cleaning of the residual liquid, and if the residual liquid is not cleaned completely, residual milk or water drops can appear in the cleaning process.
3. Due to the existence of hot air, when the cover is opened, the milk powder is flushed out together with the hot air, so that the infants are frightened, and the feeding experience is influenced. Meanwhile, the hot air and the hot milk are easy to scald or choke the infants, which endangers life and health.
4. Feeding is not intelligent enough. Variations in age, sex, and weight of the infant during the various stages of the infant can cause variations and changes in the frequency and amount of feeding, as well as other people's care. Especially, many parents are older or have limited cultural knowledge level, and do not know how to feed, so that feeding is blindness. The existing baby bottle in the market has single function, and the milk feeding amount per time cannot be recorded, and the data is very important for the healthy growth of the baby. If the milk feeding amount can be obtained at the same time of feeding milk each time, the data is recorded for a long time, and the data is further processed and analyzed, the growth condition of the infant can be effectively mastered, and the infant feeding in the future can be guided.
5. For the process of preparing the infant milk powder, warm water at 40-60 ℃ is generally better to be used for preparing the infant milk powder. The temperature is favorable for accelerating the speed of chemical reaction, promoting the dissolution of sugar, milk powder and the like in liquid, and blending more uniform solution, and can ensure that the nutrient substances in the milk powder are not damaged. However, the existing baby feeding bottle in the market does not have the function of active temperature adjustment or heat preservation, so that the time is spent for preparing warm water with proper temperature in the process of preparing the baby milk powder, and a lot of troubles are added in the process of preparing the baby milk powder.
The intelligent, scientific and fine feeding work is seriously influenced by the existence of the problems.
Disclosure of Invention
In order to overcome the defects of the prior art, the invention provides an intelligent management and control system and method based on a safety helmet. The invention is realized by the following technical scheme:
the utility model provides an intelligence feeding device, includes nipple, areola part, lid, container to and intelligent control structure, its characterized in that: the nipple is an eccentric nipple, namely the center of the nipple is not positioned on the central axis of the container, but is close to the edge of the container.
Further, the upper portion of the container is inclined relative to the lower portion, and the inclination forms an incline with the cap, areola portion, and nipple to which the upper portion is attached. The upper part accounts for 1/3-2/3 of the whole container, and the corresponding lower part accounts for 1/3-2/3 of the whole container, and the proportion can be volume or height. The inclination is such that the upper container central axis and the lower container central axis form an inclination of 10-40 °, preferably any angle between 11 ° -39 ° (12 °, 13 °, 14 °, 15 °, 16 °, 17 °, 18 °, 19 °, 20 °, 21 °, 22 °, 23 °, 24 °, 25 °, 26 °, 27 °, 28 °, 29 °, 30 °, 31 °, 32 °, 33 °, 34 °, 35 °, 36 °, 37 °, 38 °, 39 °).
Correspondingly, in order to balance the intelligent feeding device as a whole, a weight is added at the lower part of the intelligent feeding device, and the weight can be used for increasing the density of the used materials at the lower part or increasing the thickness of the container at the lower part or increasing the density or the thickness of the used materials on the container wall at the opposite position of the inclination.
The inner wall of the upper part of the container 4 is provided with a diversion trench. The diversion trench is positioned in the inclined direction of the upper part container. The guiding gutter includes two parts, shallow guiding gutter 5 and dark guiding gutter 6, shallow guiding gutter 5 is many, and the degree of depth is lighter, and many shallow guiding gutters 5 are the ray form, assemble the liquid everywhere to dark guiding gutter 6, and dark guiding gutter 6 is a whole groove, and it is slightly dark for shallow guiding gutter 5 for will follow the leading-in areola part 2 of the liquid that shallow guiding gutter 5 assembled, and then leading-in nipple 1.
Preferably, the inner wall of the container is made of hydrophobic material.
Preferably, the inner wall of the container, especially the part of the diversion groove, is treated by a plasma treatment technology to make the surface of the container have hydrophobic characteristics.
Several areola protrusions 7 are formed in the area of the areola part 2, the number of areola protrusions 7 being typically chosen to be 1, 2, 3, 4, 5, while correspondingly forming recesses. At the edge of areola portion 2, a number of hot air holes 8 are formed, generally 1, 2, 3, 4, 5 …, hot air holes 8 communicating the inside of container 4 with the outside of the air, designed: when the air pressure in the container 4 exceeds a certain value, the heat gas can be released outwards, meanwhile, the outflow of the liquid can be prevented, and the inflow of the external liquid can also be prevented.
Preferably, the hot air holes 8 are inclined outwards to avoid injury, and the inclination angle is 30-60 degrees relative to the vertical direction, and is generally 40 degrees, 45 degrees, 50 degrees and 55 degrees.
Alternatively, the areola part 2 or the areola protrusion 7 is made of a material with better expansion and contraction performance, or is called an elastic material, and the material enables the areola part 2 or the areola protrusion 7 to expand and contract along with the air pressure in the container 4 and adapt to the air pressure in the container.
The intelligent control structure comprises an intelligent control end and a display end, and feeding information is input through operation of the intelligent control end. The content of the input information can be the month age, the weight and the sex of the infant, and the intelligent control terminal can match the feeding time and the feeding amount and the feeding materials according to the input information. The user can also directly input the feeding time and amount into the intelligent control terminal, so that the feeding can be directly carried out according to the requirements of the user.
The display end is arranged on the outer side of the container 4, is provided with a graduated number mark, and is designed with a display form marked by colors and/or flashing lights at each integral graduated position (multiple positions of 10 ml).
The display end comprises a signal receiving chip and a wireless communication terminal, and is connected with the intelligent control end in a wireless mode to receive the instruction signal of the intelligent control end.
The scale display bar 10 is an integral part of the display end.
When the intelligent feeding device works, the intelligent control end sends information of feeding amount to the display end in advance according to set time, and the display end marks the container 4 through color and/or flashing light, so that a user can conveniently mix milk, fruit juice, other nutrient substances and medicines. The above amount may be plural, such as the amount of water, the total amount after preparation, and the like.
When the feeding is finished, the display end automatically finishes the prompt according to the set time or finishes the prompt according to the instruction of the intelligent control end.
Feeding information is recorded and is used for carrying out statistical analysis on feeding conditions and guiding feeding work.
As an optimization, the intelligent control structure further comprises a server, and the server is connected with the intelligent control end through a network. After the user inputs information at the intelligent control end, the server pushes the matched feeding scheme, the user can select and adjust the feeding scheme, and the feeding scheme is recorded for feeding after being determined by the user. The feeding method in the server mainly comes from the recommendation of an authoritative health organization and the recommendation of related experts and individuals. The database collection and arrangement work of the feeding scheme is required to be carried out in advance.
The server also predicts and analyzes the body conditions and other situations of infants or special crowds, gives theoretical values or reasonable values and helps users to perform self-evaluation. The server can also help the user to establish contact with related experts and/or medical organizations, and realize multiple help for the user.
The intelligent control structure comprises an adjustable base.
The adjustable base comprises an adjustable base upper layer 91, an adjustable base middle layer 92, an adjustable base lower layer 93, an adjustable base center pillar 94, threads 95 and a sealing body 96. The three-layer structure of the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93 is arranged in parallel, each layer is cylindrical, the adjustable base middle column 94 is also cylindrical and vertically arranged, and the diameter of the adjustable base middle column is smaller than that of the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93. The adjustable base center pillar 94 connects the adjustable base upper layer 91 and the adjustable base lower layer 93 and penetrates through the adjustable base middle layer 92, so that the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93 form a whole. The adjustable base upper layer 91 and the adjustable base middle layer 92 are provided with sealing bodies 96 at the circumference, so that when the adjustable base upper layer 91 and the adjustable base middle layer 92 are arranged in the container 4, the adjustable base upper layer 91 and the adjustable base middle layer 92 can be tightly combined to the inner side of the container wall 41. There is the round fender that encloses around adjustable base lower floor 93, and the diameter of adjustable base lower floor 93 is greater than adjustable base upper strata 91, adjustable base middle level 92 for when adjustable base upper strata 91, the adjustable base middle level 92 were placed in container 4, enclose the fender and just in time wrap up in the outside of container wall 41. The container wall 41 has a plurality of matching threads 95 at the location where it contacts the surround. By rotating the adjustable base lower layer 93, the adjustable base can be moved up and down along the container wall 41, thereby adjusting the volume of the container 4. Meanwhile, due to the existence of the sealing body 96, the container 4 is kept in a watertight state, the sealing bodies are arranged on the outer edges of the upper layer 91 of the adjustable base and the middle layer 92 of the adjustable base, double guarantee is formed, a gap between the two layers can contain a part of seepage water, and liquid is prevented from overflowing.
The display end comprises a scale display bar 10 mounted on the outside of the container wall 41. After the feeding scheme is determined, the intelligent control end can control the scale display bar 10 to display two scales, namely an upper scale and a lower scale, wherein the upper scale can be the highest scale position of the container, and the lower scale is dynamically displayed according to the feeding amount. When the lower line scale is determined, the user needs to adjust the container amount to the corresponding position by rotating the lower layer 93 of the adjustable base.
Preferably, the outer side of the enclosure is knurled to increase friction.
Preferably, the rotation can be automatically realized by matching with a wireless control motor, so that the intelligence is further improved.
Preferably, the adjustable base is internally provided with a hollow structure, and is made of heat insulation materials for storing hot water or cold water, or milk powder, or stirring tools and a spoon in a heat insulation manner.
The adjustable mount may also take the form of:
the adjustable base comprises an adjustable base upper layer 91, an adjustable base middle layer 92, an adjustable base lower layer 93, an adjustable base center pillar 94, threads 95 and a sealing body 96. The three-layer structure of the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93 is arranged in parallel, each layer is cylindrical, the adjustable base middle column 94 is also cylindrical and vertically arranged, and the diameter of the adjustable base middle column is smaller than that of the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93.
The adjustable base center pillar 94 connects the adjustable base upper layer 91 and the adjustable base lower layer 93 and penetrates through the adjustable base middle layer 92, so that the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93 form a whole. The adjustable base upper layer 91 and the adjustable base middle layer 92 are provided with sealing bodies 96 at the circumference, so that when the adjustable base upper layer 91 and the adjustable base middle layer 92 are arranged in the container 4, the adjustable base upper layer 91 and the adjustable base middle layer 92 can be tightly combined to the inner side of the container wall 41.
The height of the adjustable base lower layer 93 is higher than that of the adjustable base upper layer 91 and that of the adjustable base middle layer 92, and the upper part of the outer side of the cylinder of the adjustable base lower layer 93 is provided with a thread 95 which is matched with the thread at the bottom of the inner side of the container wall 41. When the upper adjustable base layer 91 and the middle adjustable base layer 92 are placed in the container 4, the matching threads are tightly combined, and the sealing body 96 is tightly combined with the inner side of the container wall 41.
By rotating the adjustable base lower layer 93, the adjustable base can be moved up and down along the container wall 41, thereby adjusting the volume of the container 4. Meanwhile, due to the existence of the sealing body 96, the container 4 is kept in a watertight state, the sealing bodies 96 are arranged on the outer edges of the upper layer 91 of the adjustable base and the middle layer 92 of the adjustable base, double guarantee is formed, a gap between the two layers can contain a part of seepage water, and liquid is prevented from overflowing.
The intelligent control structure comprises an intelligent water injection structure.
The intelligent water injection structure comprises a control chip, a liquid level sensor, a temperature sensor, a heating element and a water injection device.
The water injection device comprises two storages, wherein the first storage stores purified water, the second storage stores warm water and hot water, the heating element is arranged at the bottom of the second storage and is externally connected with a power supply through a circuit, and the heating process is controlled by the control chip. Liquid level sensors and temperature sensors are arranged in the two storages. The control chip is connected with the intelligent control end through a network, receives signals of the intelligent control end and receives control of the intelligent control end. After the control chip is connected with a feeding scheme sent by the intelligent control end, the feeding amount (such as 120ml) and the brewing temperature (40-60 ℃ is the optimal brewing temperature, and the brewing temperature is one temperature between 40-60 ℃), the respective water storage amount and temperature are obtained through the two liquid level sensors and the temperature sensor, the water storage amount and temperature information are fed back to the control chip, the control chip matches the amount of cold water and warm water required by analysis, water is injected through the water injection pipelines of the first storage device and the second storage device, and the water is injected into the container 4, so that the mixed water temperature is +/-1 ℃. And when the temperature of the warm water in the second storage is not enough, the heating element is triggered to heat.
The container wall 41 is provided with a temperature-sensitive element, and when the liquid temperature is cooled to 35-38 ℃ (at the optimal drinking temperature), the temperature-sensitive element emits light of a certain color, such as any one of red, yellow, green, purple and the like, or flickers; in particular, the temperature sensitive color changing strip can be used. To remind the user to feed.
According to the technical scheme, the invention has the following beneficial effects:
1. is suitable for various postures of the fed subject, provides comfort for the fed subject, and avoids producing anorexic emotion.
2. Avoiding the residue of the feed, avoiding the breeding of bacteria and being beneficial to the health of the fed subjects.
3. Avoid the flatulence of the feeding container and reduce the damage caused by hot air.
4. Is convenient for formulating scientific and normative feeding schemes and can obtain corresponding guidance and help. The data is recorded, so that the growth condition of the feeding object can be effectively mastered, and the future feeding work can be guided.
5. Convenient brewing, and ensures that the nutrient substances are not damaged by using proper brewing temperature.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a prior art feeding set configuration;
FIG. 2 is a schematic view of a flow channel of the present invention;
FIGS. 3a-3b are schematic views of a portion of an areola in accordance with the present invention;
FIG. 4 is a schematic view of an adjustable base in combination with a container according to the present invention;
FIG. 5 is a schematic view of another form of the adjustable base of the present invention in combination with a container.
Reference numerals: the nipple comprises a nipple part-1, an areola part-2, a cover body-3, a container-4, a container wall-41, a shallow diversion trench-5, a deep diversion trench-6, an areola protrusion-7, a hot air hole-8, an adjustable base upper layer-91, an adjustable base middle layer-92, an adjustable base lower layer-93, an adjustable base center pillar-94, a thread-95, a sealing body-96 and a scale display strip-10.
Detailed Description
The system and the method for operating the same according to the present invention will be described in detail by way of example with reference to the accompanying drawings. It should be noted that the description of the embodiments is provided to help understanding of the present invention, but the present invention is not limited thereto.
The term "and/or" herein is merely an association describing an associated object, meaning that three relationships may exist, e.g., a and/or B, may mean: a exists alone, B exists alone, and A and B exist at the same time, and the term "/and" is used herein to describe another association object relationship, which means that two relationships may exist, for example, A/and B, may mean: a alone, and both a and B alone, and further, the character "/" in this document generally means that the former and latter associated objects are in an "or" relationship.
Example one
The invention mainly introduces a main structure of an intelligent feeding device.
This is the general configuration of prior art feeding apparatus, as shown in figure 1. The present invention is an improvement over this primary feeding structure.
An intelligent feeding device comprises a nipple, an areola part, a cover body, a container and an intelligent control structure, wherein the nipple is an eccentric nipple, namely the center of the nipple is not positioned on the central axis of the container but is close to the edge of the container, so that the nipple is closer to a user, and the user can contact the nipple with less strength.
Further, the upper portion of the container is inclined relative to the lower portion, and the inclination forms an incline with the cap, areola portion, and nipple to which the upper portion is attached. The upper part accounts for 1/3-2/3 of the whole container, and the corresponding lower part accounts for 1/3-2/3 of the whole container, and the proportion can be volume or height. The inclination is such that the upper container central axis and the lower container central axis form an inclination of 10-40 °, preferably any angle between 11 ° -39 ° (12 °, 13 °, 14 °, 15 °, 16 °, 17 °, 18 °, 19 °, 20 °, 21 °, 22 °, 23 °, 24 °, 25 °, 26 °, 27 °, 28 °, 29 °, 30 °, 31 °, 32 °, 33 °, 34 °, 35 °, 36 °, 37 °, 38 °, 39 °).
Correspondingly, in order to balance the intelligent feeding device as a whole, a weight is added at the lower part of the intelligent feeding device, and the weight can be used for increasing the density of the used materials at the lower part or increasing the thickness of the container at the lower part or increasing the density or the thickness of the used materials on the container wall at the opposite position of the inclination.
Through the eccentric nipple and the inclined design, a user can more easily contact the nipple, and particularly when the user lies down and leans against the nipple, the supporting height of the user on the feeding device is reduced, labor is saved, fatigue is reduced, user experience is improved, and anorexia is avoided.
Example two
This embodiment is based on embodiment 1 described above, and mainly describes the residue prevention structure of the present invention.
The inner wall of the upper part of the container 4 is provided with a diversion trench. The diversion trench is positioned in the inclined direction of the upper part container.
As shown in fig. 2, the guiding grooves include two portions, namely a shallow guiding groove 5 and a deep guiding groove 6, the shallow guiding grooves 5 are multiple and shallow in depth, the multiple shallow guiding grooves 5 are in a radial shape, and converge the liquid at each position to the deep guiding groove 6, and the deep guiding groove 6 is an integral groove which is slightly deeper than the shallow guiding groove 5 and is used for guiding the liquid converged from the shallow guiding groove 5 into the areola portion 2 and further into the nipple 1.
Preferably, the inner wall of the container is made of hydrophobic material.
Preferably, the inner wall of the container, especially the part of the diversion groove, is treated by a plasma treatment technology to make the surface of the container have hydrophobic characteristics.
Through the design, the liquid residue is avoided.
EXAMPLE III
This example was carried out on the basis of the foregoing example 1 or 2, and mainly describes the areola portion of the present invention.
As shown in fig. 3a-3b, several areola protrusions 7 are formed in the area of the areola portion 2, the number of areola protrusions 7 being typically selected to be 1, 2, 3, 4, 5, with corresponding recesses. At the edge of areola portion 2, a number of hot air holes 8 are formed, generally 1, 2, 3, 4, 5 …, hot air holes 8 communicating the inside of container 4 with the outside of the air, designed: when the air pressure in the container 4 exceeds a certain value, the heat gas can be released outwards, meanwhile, the outflow of the liquid can be prevented, and the inflow of the external liquid can also be prevented. The prior art has been able to accomplish this.
Fig. 3a illustrates the case of a multi-stage areola design on a non-eccentric teat and fig. 3b illustrates the case of a multi-stage areola design on an eccentric teat.
Preferably, the hot air holes 8 are inclined outwards to avoid injury, and the inclination angle is 30-60 degrees relative to the vertical direction, and is generally 40 degrees, 45 degrees, 50 degrees and 55 degrees.
Alternatively, the areola part 2 or the areola protrusion 7 is made of a material with better expansion and contraction performance, or is called an elastic material, and the material enables the areola part 2 or the areola protrusion 7 to expand and contract along with the air pressure in the container 4 and adapt to the air pressure in the container.
After the areola structure is adopted, the feeding device can contain more hot air, the output of the hot air is convenient, and the flatulence and the damage caused by the hot air are avoided. The areola prominence and depression degree in the drawing of the invention is exaggerated, and can be more gentle in the actual using process.
Example four
This embodiment is performed on the basis of the foregoing embodiment 1, 2 or 3, or any combination of the foregoing embodiments, and mainly describes an intelligent control structure of the present invention.
The intelligent control structure comprises an intelligent control end and a display end, and feeding information is input through the operation of the intelligent control end. The content of the input information can be the month age, the weight and the sex of the infant, and the intelligent control terminal can match the feeding time and the feeding amount and the feeding materials according to the input information. The user can also directly input the feeding time and amount into the intelligent control terminal, so that the feeding can be directly carried out according to the requirements of the user.
The display end is arranged on the outer side of the container 4, is provided with a graduated number mark, and is designed with a display form marked by colors and/or flashing lights at each integral graduated position (multiple positions of 10 ml).
The display end comprises a signal receiving chip and a wireless communication terminal, and is connected with the intelligent control end in a wireless mode to receive the instruction signal of the intelligent control end.
As shown in fig. 4-5, the scale display bar 10 is an integral part of the display end.
When the intelligent feeding device works, the intelligent control end sends information of feeding amount to the display end in advance according to set time, and the display end marks the container 4 through color and/or flashing light, so that a user can conveniently mix milk, fruit juice, other nutrient substances and medicines. The above amount may be plural, such as the amount of water, the total amount after preparation, and the like.
When the feeding is finished, the display end automatically finishes the prompt according to the set time or finishes the prompt according to the instruction of the intelligent control end.
Feeding information is recorded and is used for carrying out statistical analysis on feeding conditions and guiding feeding work.
As an optimization, the intelligent control structure further comprises a server, and the server is connected with the intelligent control end through a network. After the user inputs information at the intelligent control end, the server pushes the matched feeding scheme, the user can select and adjust the feeding scheme, and the feeding scheme is recorded for feeding after being determined by the user. The feeding method in the server mainly comes from the recommendation of an authoritative health organization and the recommendation of related experts and individuals. The database collection and arrangement work of the feeding scheme is required to be carried out in advance.
The server also predicts and analyzes the body conditions and other situations of infants or special crowds, gives theoretical values or reasonable values and helps users to perform self-evaluation.
The server can also help the user to establish contact with related experts and/or medical organizations, and realize multiple help for the user.
EXAMPLE five
This embodiment is performed on the basis of the foregoing embodiment 1 or 2 or 3 or 4, or any combination of the foregoing embodiments, and mainly describes the adjustable base of the intelligent control structure of the present invention.
The intelligent control structure comprises an adjustable base.
As shown in fig. 4, the adjustable base comprises an upper adjustable base layer 91, a middle adjustable base layer 92, a lower adjustable base layer 93, a center post 94, threads 95 and a sealing body 96. The three-layer structure of the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93 is arranged in parallel, each layer is cylindrical, the adjustable base middle column 94 is also cylindrical and vertically arranged, and the diameter of the adjustable base middle column is smaller than that of the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93.
The adjustable base center pillar 94 connects the adjustable base upper layer 91 and the adjustable base lower layer 93 and penetrates through the adjustable base middle layer 92, so that the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93 form a whole. The adjustable base upper layer 91 and the adjustable base middle layer 92 are provided with sealing bodies 96 at the circumference, so that when the adjustable base upper layer 91 and the adjustable base middle layer 92 are arranged in the container 4, the adjustable base upper layer 91 and the adjustable base middle layer 92 can be tightly combined to the inner side of the container wall 41.
There is the round fender that encloses around adjustable base lower floor 93, and the diameter of adjustable base lower floor 93 is greater than adjustable base upper strata 91, adjustable base middle level 92 for when adjustable base upper strata 91, the adjustable base middle level 92 were placed in container 4, enclose the fender and just in time wrap up in the outside of container wall 41. The container wall 41 has a plurality of matching threads 95 at the location where it contacts the surround.
By rotating the adjustable base lower layer 93, the adjustable base can be moved up and down along the container wall 41, thereby adjusting the volume of the container 4. Meanwhile, due to the existence of the sealing body 96, the container 4 is kept in a watertight state, the sealing bodies are arranged on the outer edges of the upper layer 91 of the adjustable base and the middle layer 92 of the adjustable base, double guarantee is formed, a gap between the two layers can contain a part of seepage water, and liquid is prevented from overflowing.
Through the design, the capacity of the container 4 can be customized, and the feeding customization is realized.
The display end comprises a scale display bar 10 mounted on the outside of the container wall 41. After the feeding scheme is determined, the intelligent control end can control the scale display bar 10 to display two scales, namely an upper scale and a lower scale, wherein the upper scale can be the highest scale position of the container, and the lower scale is dynamically displayed according to the feeding amount. When the lower line scale is determined, the user needs to adjust the container amount to the corresponding position by rotating the lower layer 93 of the adjustable base.
Preferably, the outer side of the enclosure is knurled to increase friction.
Preferably, the rotation can be automatically realized by matching with a wireless control motor, so that the intelligence is further improved.
Preferably, the adjustable base is internally provided with a hollow structure, and is made of heat insulation materials for storing hot water or cold water, or milk powder, or stirring tools and a spoon in a heat insulation manner.
EXAMPLE six
This embodiment is based on the foregoing embodiment 1 or 2 or 3 or 4 or 5, or any combination of the foregoing embodiments, and mainly describes another form of the adjustable base of the intelligent control structure of the present invention.
The intelligent control structure comprises an adjustable base.
As shown in fig. 5, the adjustable base comprises an upper adjustable base layer 91, a middle adjustable base layer 92, a lower adjustable base layer 93, a center post 94, threads 95 and a sealing body 96. The three-layer structure of the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93 is arranged in parallel, each layer is cylindrical, the adjustable base middle column 94 is also cylindrical and vertically arranged, and the diameter of the adjustable base middle column 94 is smaller than that of the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93.
The adjustable base center pillar 94 connects the adjustable base upper layer 91 and the adjustable base lower layer 93 and penetrates through the adjustable base middle layer 92, so that the adjustable base upper layer 91, the adjustable base middle layer 92 and the adjustable base lower layer 93 form a whole. The adjustable base upper layer 91 and the adjustable base middle layer 92 are provided with sealing bodies 96 at the circumference, so that when the adjustable base upper layer 91 and the adjustable base middle layer 92 are arranged in the container 4, the adjustable base upper layer 91 and the adjustable base middle layer 92 can be tightly combined to the inner side of the container wall 41.
The height of the adjustable base lower layer 93 is higher than that of the adjustable base upper layer 91 and that of the adjustable base middle layer 92, and the upper part of the outer side of the cylinder of the adjustable base lower layer 93 is provided with a thread 95 which is matched with the thread at the bottom of the inner side of the container wall 41. When the upper adjustable base layer 91 and the middle adjustable base layer 92 are placed in the container 4, the matching threads are tightly combined, and the sealing body 96 is tightly combined with the inner side of the container wall 41.
By rotating the adjustable base lower layer 93, the adjustable base can be moved up and down along the container wall 41, thereby adjusting the volume of the container 4. Meanwhile, due to the existence of the sealing body 96, the container 4 is kept in a watertight state, the sealing bodies 96 are arranged on the outer edges of the upper layer 91 of the adjustable base and the middle layer 92 of the adjustable base, double guarantee is formed, a gap between the two layers can contain a part of seepage water, and liquid is prevented from overflowing.
Through the design, the capacity of the container 4 can be customized, and the feeding customization is realized.
The display end comprises a scale display bar 10 mounted on the outside of the container wall 41. After the feeding scheme is determined, the intelligent control end can control the scale display bar 10 to display two scales, namely an upper scale and a lower scale, wherein the upper scale can be the highest scale position of the container, and the lower scale is dynamically displayed according to the feeding amount. When the lower line scale is determined, the user needs to adjust the container amount to the corresponding position by rotating the lower layer 93 of the adjustable base.
Preferably, the lower cylindrical outer portion of the lower adjustable base layer 93 is knurled to increase friction.
Preferably, the rotation can be automatically realized by matching with a wireless control motor, so that the intelligence is further improved.
Preferably, the adjustable base is internally provided with a hollow structure, and is made of heat insulation materials for storing hot water or cold water, or milk powder, or stirring tools and a spoon in a heat insulation manner.
EXAMPLE seven
This embodiment is performed on the basis of the foregoing embodiment 1, 2, 3, 4, 5, or 6, or any combination of the foregoing embodiments, and mainly describes the intelligent water injection structure of the present invention.
The intelligent control structure comprises an intelligent water injection structure.
The intelligent water injection structure comprises a control chip, a liquid level sensor, a temperature sensor, a heating element and a water injection device.
The container wall 41 is provided with a temperature-sensitive element, and when the liquid temperature is cooled to 35-38 ℃ (at the optimal drinking temperature), the temperature-sensitive element emits light of a certain color, such as any one of red, yellow, green, purple and the like, or flickers; in particular, the temperature sensitive color changing strip can be used. To remind the user to feed.
Through the technical scheme, intelligent water injection is realized, and good control of brewing temperature and drinking temperature is realized.
For example, the present invention may be implemented by using a conventional method, and the details of the implementation of the method are not described herein.
As described above, the present invention can be preferably realized. It will be apparent to those skilled in the art that the inventive teaching of the dot matrix digital pen-based group teaching system and its working method in different forms need no creative work. Variations, modifications, substitutions, integrations and variations of these embodiments may be made without departing from the principle and spirit of the invention, and still fall within the scope of the invention.

Claims (4)

1. The utility model provides an intelligence feeding device, includes nipple, areola part, lid, container to and intelligent control structure, its characterized in that: the nipple is an eccentric nipple, namely the center of the nipple is not positioned on the central axis of the container but close to the edge of the container;
forming a plurality of areola protrusions in the range of the areola part, wherein the number of the areola protrusions is 2 or 3, and simultaneously correspondingly forming concave parts; at the edge of areola part, form a plurality of hot gas hole, the quantity is 1 or 23, and the inside and outside air of container of hot gas hole UNICOM, this hot gas hole design is: when the air pressure in the container exceeds a certain value, the heat gas can be released outwards, and meanwhile, the outflow of liquid can be prevented, and the inflow of external liquid can also be prevented; the hot air holes are inclined outwards to avoid hurting people, and the inclination angle of the hot air holes is 45 degrees or 50 degrees relative to the vertical direction;
the intelligent control structure comprises an adjustable base; the adjustable base comprises an adjustable base upper layer, an adjustable base middle layer, an adjustable base lower layer, an adjustable base middle column, threads and a sealing body; the adjustable base upper layer, the adjustable base middle layer and the adjustable base lower layer are arranged in parallel, and each layer is cylindrical; the adjustable base middle column is also cylindrical and vertically arranged, and the diameter of the adjustable base middle column is smaller than the diameters of the adjustable base upper layer, the adjustable base middle layer and the adjustable base lower layer; the adjustable base middle column is connected with the adjustable base upper layer and the adjustable base lower layer and penetrates through the adjustable base middle layer, so that the adjustable base upper layer, the adjustable base middle layer and the adjustable base lower layer form a whole; the sealing bodies are arranged on the circumferences of the upper layer and the middle layer of the adjustable base, so that when the upper layer and the middle layer of the adjustable base are arranged in the container, the upper layer and the middle layer of the adjustable base can be tightly combined to the inner side of the container wall; the lower layer of the adjustable base is higher than the upper layer of the adjustable base and the middle layer of the adjustable base, the upper part of the outer side of the lower layer of the adjustable base is provided with a thread, and the thread is matched with the thread at the bottom of the inner side of the container wall; when the upper layer of the adjustable base and the middle layer of the adjustable base are arranged in the container, the matched threads are just tightly combined, meanwhile, the sealing body is tightly combined with the inner side of the container wall, the lower layer of the adjustable base is rotated to enable the adjustable base to move up and down along the container wall, and further, the capacity of the container is adjusted, meanwhile, due to the existence of the sealing body, the container is kept in a watertight state, the sealing bodies are arranged on the outer edges of the upper layer of the adjustable base and the middle layer of the adjustable base, double guarantee is formed, a gap between the two layers can also contain a part of seepage water, and the overflow of liquid is;
the upper portion of the container is inclined relative to the lower portion and the inclination brings the cap, areola portion and nipple connected with the upper portion together to form an inclination; the proportion of the upper part in the whole container is as follows: 1/3-2/3, the proportion of the corresponding lower part in the whole container is: 1/3-2/3, the above ratio can be volume or height; the inclination makes the central axis of the upper container and the central axis of the lower container form an inclination angle of 10-40 degrees;
in order to balance the intelligent feeding device as a whole, a weight is added at the lower part of the intelligent feeding device, and the weight can be used for increasing the density of the used materials at the lower part or increasing the thickness of the container at the lower part or increasing the density or the thickness of the used materials on the container wall at the position opposite to the inclined position;
the intelligent control structure also comprises an intelligent control end and a display end, and feeding information is input through the operation of the intelligent control end; the content of the input information is the month age, weight and sex of the infant; the intelligent control end matches feeding time and amount and feeding materials according to the input information; the user directly inputs the feeding time and amount into the intelligent control end, so that the feeding is directly carried out according to the requirements of the user; the display end is arranged on the outer side of the container, is provided with a graduated number mark, and is designed with a display form marked by color and/or flashing light at each integral graduated position; the display end comprises a signal receiving chip and a wireless communication terminal, and is connected with the intelligent control end in a wireless mode to receive the instruction signal of the intelligent control end;
the intelligent control structure also comprises a server, and the server is connected with the intelligent control end through a network; after the user inputs information at the intelligent control end, the server pushes a matched feeding scheme, the user can select and adjust the feeding scheme, and the feeding scheme is recorded for feeding after being determined by the user; feeding methods in the server, recommendations from authoritative health organizations, and recommendations of related experts and individuals; the database collection and arrangement work of the feeding scheme is required to be carried out in advance;
the server also predicts and analyzes the body conditions and other situations of infants or special crowds, gives a theoretical value or a reasonable value and helps a user to perform self evaluation;
the server can also help the user to establish contact with related experts and/or medical organizations, and realize multiple help for the user.
2. The intelligent feeding apparatus of claim 1, wherein: a diversion trench is designed on the inner wall of the upper part of the container; the diversion trench is positioned in the inclined direction of the upper part container; the guiding gutter includes two parts, shallow guiding gutter and dark guiding gutter, shallow guiding gutter is many, and the degree of depth is lighter, and many shallow guiding gutters are the ray form, assemble the liquid everywhere to dark guiding gutter, and dark guiding gutter is an integral groove, and it is slightly dark for shallow guiding gutter into areola part for the liquid that assembles from shallow guiding gutter, and then leading-in nipple.
3. The intelligent feeding apparatus of claim 2, wherein: the diversion trench is processed by a plasma processing technology, so that the surface of the diversion trench has a hydrophobic characteristic.
4. The intelligent feeding apparatus of claim 1, wherein: the intelligent control structure comprises an intelligent water injection structure; the intelligent water injection structure comprises a control chip, a liquid level sensor, a temperature sensor, a heating element and a water injection device.
CN201710310855.8A 2017-05-05 2017-05-05 Intelligent feeding device Active CN107126368B (en)

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