CN210170426U - Physical therapy device - Google Patents
Physical therapy device Download PDFInfo
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- CN210170426U CN210170426U CN201821502233.1U CN201821502233U CN210170426U CN 210170426 U CN210170426 U CN 210170426U CN 201821502233 U CN201821502233 U CN 201821502233U CN 210170426 U CN210170426 U CN 210170426U
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Abstract
The utility model relates to a physiotherapy device, it is used for massaging the human body position, the physiotherapy device includes power supply module, drive assembly and light wave subassembly, power supply module and drive assembly, light wave subassembly correspond electric connection respectively and supply power for it, the physiotherapy device still includes transparent massage head, drive assembly with one end fixed connection of transparent massage head, drive assembly can drive transparent massage head carries out reciprocating motion along a direction, transparent massage head has the cavity, light wave subassembly is acceptd in the cavity; the physical therapy device can effectively improve the elasticity of skin by utilizing the irradiation of specific light waves and combining the reciprocating massage on the surface of the human body part, thereby greatly improving the physical therapy effect.
Description
[ technical field ] A method for producing a semiconductor device
The utility model relates to a massage health care field, in particular to a physiotherapy device.
[ background of the invention ]
People are also more and more sophisticated in developing massage devices, gradually changing from massage of a large area of a human body to massage of a specific part of the human body, and the massage effect of the massage device is more and more in line with the demand of people for the massage device. However, the existing products with single massage function can not meet the requirements of users for other functions besides massage, such as physiotherapy, health care and the like.
Therefore, it is desired to provide a novel physiotherapy apparatus having various functions.
[ Utility model ] content
In order to overcome the problem that the prior physiotherapy device can not satisfy the massage and simultaneously carry out the light wave irradiation, the utility model provides a novel physiotherapy device.
The utility model discloses a solve above-mentioned technical problem and provide following scheme: a physiotherapy device is used for massaging human body parts and comprises a power supply assembly, a driving assembly, a massage assembly and a light wave assembly, wherein the power supply assembly, the driving assembly and the light wave assembly are respectively electrically connected correspondingly and supply power to the power supply assembly; the light wave component can emit light waves with at least three different wavelength ranges to human body parts.
Preferably, light with different wavelengths emitted by the light wave component is emitted outwards through the transparent massage head; the light wave component comprises a blue light LED light emitting piece, a red light LED light emitting piece and a yellow light LED light emitting piece, wherein the yellow light LED light emitting piece and the red light LED light emitting piece are evenly distributed around the blue light LED light emitting piece; the wavelength of the blue light LED luminous element is 410nm-480nm, the wavelength of the yellow light LED luminous element is 580nm-595nm, and the wavelength of the red light LED luminous element is 630nm-650 nm.
Preferably, the blue light LED light emitting element, the red light LED light emitting element and the yellow light LED light emitting element are distributed in an array, and the distance between the blue light LED light emitting element, the red light LED light emitting element and the yellow light LED light emitting element which are adjacently arranged is 2-15 mm.
Preferably, the distance between the LED luminous element in the light wave component and the outer surface of the transparent massage head is 2-12 mm.
Preferably, the physiotherapy device comprises a second sensing module, and the second sensing module is arranged on the outer surface of the transparent massage head.
Preferably, the driving assembly comprises a coil and a magnetic cylinder, one end of the magnetic cylinder penetrates through the coil, the other end of the magnetic cylinder is fixedly connected with the transparent massage head, the coil generates a pushing and pulling force on the magnetic cylinder under the condition of supplying power to enable the magnetic cylinder to reciprocate in the axial direction of the coil, and meanwhile, the magnetic cylinder drives the transparent massage head to reciprocate.
Preferably, the quantity of coil can be two, the magnetism cylinder is kept away from the one end of massage subassembly runs through in two coils, two the coil current opposite direction under the power supply condition, the magnetism cylinder include magnet steel and with the transmission shaft that magnet steel one end is connected, the transmission shaft is kept away from the one end and the massage subassembly fixed connection of magnet steel, magnet steel corresponds for N utmost point and S utmost point along the both ends of the axial direction of two coils.
Preferably, the physiotherapy device still includes annotates the liquid subassembly, annotate the liquid subassembly and include stock solution chamber and conveyer pipe, the conveyer pipe includes both ends, and its one end inserts in the stock solution intracavity, the other end inserts in the massage subassembly to make the liquid in stock solution chamber can pass through the conveyer pipe, the massage subassembly reaches human position skin surface.
Preferably, the physiotherapy device comprises a control circuit and a switch, the control circuit is connected with and controls the driving component, the massage component and the light wave component, the switch is connected with the control circuit, and the switch sends different electric signals to the control circuit to adjust the driving component or the light wave component; the physiotherapy device also comprises a communication module connected with the control circuit and used for realizing remote connection and control with peripheral electronic equipment.
Preferably, the control circuit includes: the function selection module is used for switching the physical therapy device into a massage mode or a physical therapy mode; the light wave control module is used for controlling the light emitting time and the light emitting wavelength of each LED light emitting piece in the light wave component; the data storage module is used for storing the identity information of the user and the light wave wavelength, time and massage frequency data matched with the identity information of the user so as to form a database; and the detection data acquisition and processing module is used for acquiring and processing the operating signals of the light wave component and the driving component and storing the operating signals into the data storage module.
Compared with the prior art, the utility model provides a physiotherapy device has following beneficial effect:
the utility model provides a physiotherapy device, it is used for massaging the human body position, physiotherapy device includes power supply module, drive assembly and light wave subassembly, and power supply module corresponds electric connection and supplies power for drive assembly, light wave subassembly respectively, physiotherapy device still includes transparent massage head, drive assembly with one end fixed connection of transparent massage head, drive assembly can drive transparent massage head carries out reciprocating motion along a direction, transparent massage head has the cavity, light wave subassembly is acceptd in the cavity; the light wave component can emit light waves with at least three different wavelength ranges to human body parts. The specific light wave irradiation is utilized, and the reciprocating massage is combined with the surface of the human body part, so that the elasticity of the skin can be effectively improved, and the physical therapy effect is greatly improved.
[ description of the drawings ]
Fig. 1 is a functional block diagram of a physiotherapy apparatus according to a first embodiment of the present invention.
Fig. 2 is a functional block schematic diagram of the control circuit shown in fig. 1.
FIG. 3 is a schematic diagram of the distribution of LED illuminators in the lightwave module of FIG. 1.
Fig. 4A is a schematic view of an internal structure of a physiotherapy apparatus according to a second embodiment of the present invention.
Fig. 4B is a schematic view of the internal structure of another variation of the physiotherapy apparatus shown in fig. 4A.
Fig. 5A is one of the movement diagrams of the energized state of the coil and the magnetic cylinder of the physiotherapy device shown in fig. 4A.
Figure 5B is a second schematic diagram of the movement of the coil and the magnetic column of the physiotherapy apparatus shown in figure 4A in the energized state.
Fig. 6A is a flowchart illustrating a physiotherapy method according to a third embodiment of the present invention.
Fig. 6B is a schematic diagram illustrating the detailed steps of another embodiment of the physiotherapy method shown in fig. 6A.
The attached drawings indicate the following:
10. a physical therapy device; 11. a drive assembly; 12. a power supply component; 13. a massage assembly; 14. a light wave component; 141. a blue LED light emitting element; 142. a red LED light emitting member; 143. a yellow LED emitter; 15. a control circuit; 151. A function selection module; 152. a light wave control module; 153. a data storage module; 154. a detection data acquisition and processing module; 16. a switch; 18. a communication module; 19. a sensing module;
30. a physical therapy device; 31. a drive assembly; 311. a coil; 3111. a first coil; 3112. a second coil; 312. a magnetic cylinder; 3121. magnetic steel; 3122. a drive shaft; 33. a massage assembly; 331. a transparent massage head; 332. A hollow cavity; 34. a light wave component; 341. an LED light emitting member; 37. a housing assembly; 371. elastic pleats; 32. a power supply component; 35. a control circuit; 351. a function selection module; 38. a second sensing module; 39. a liquid injection module; 391. a liquid storage cavity; 392. a delivery pipe;
b. distance between adjacently arranged LED luminous elements
h2, LED luminous element and the outer surface of the transparent massage head.
[ detailed description ] embodiments
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and the embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1, a physiotherapy apparatus 10 according to a first embodiment of the present invention includes a driving component 11, a power component 12, a massage component 13 and a light wave component 14, the power component 12, the driving component 11 and the light wave component 14 are electrically connected to each other and supply power to the driving component 11 and the light wave component 14, and the driving component 11 and the massage component 13 are fixedly connected to each other.
As shown in fig. 1, the physiotherapy apparatus 10 further includes a control circuit 15 and a switch 16, the control circuit 15 is connected to and controls the driving component 11, the massage component 13 and the light wave component 14, the switch 16 is connected to the control circuit 15, and the switch 16 sends different electrical signals to the control circuit 15 to adjust the driving component 11 or the light wave component 14; the physiotherapy apparatus 10 further comprises a communication module 18 connected to the control circuit 15 for remotely connecting and controlling the peripheral electronic devices. Wherein the communication module can be any one of wifi signal, bluetooth signal, 2.4G signal module.
As shown in fig. 1, the physiotherapy apparatus 10 further comprises a sensing module 19, wherein the sensing module 19 can sense the pressure and temperature changes of the body of the human body part to the massage assembly 13 of the physiotherapy apparatus 10, and upload the related sensing data to the control circuit 15.
As shown in fig. 2, the control circuit 15 may further include a function selection module 151, a light wave control module 152, a data storage module 153, and a detection data collecting and processing module 154.
Wherein the function selection module 151 may be used to switch the physiotherapy apparatus 10 to a massage mode or a physiotherapy mode, and the function selection module 151 may be controlled based on control information input by a user based on the switch 16 or based on information fed back by the massage assembly 13.
The light wave control module 152 is configured to control the light emitting time and the light emitting wavelength of each LED light emitting element in the light wave module 14.
The data storage module 153 is configured to store the identity information of the user and the data such as the wavelength and time of light waves, the massage frequency, and the time matched with the identity information of the user, and store and record corresponding data states in different massage modes or physical therapy modes to form a database.
The detection data collecting and processing module 154 is used for collecting and processing the operation signals of the light wave module 14 and the driving module 11, and storing the operation signals into the data storage module 153. The detection data collecting and processing module 154 can collect data such as pressure, temperature, etc. detected by the massage assembly 13. Taking the pressure sensing value as an example, the pressure sensing value can be divided into 5 steps based on the magnitude of the pressure sensing value, which are: grade 1, 0-75 mmHg; grade 2, 76-100 mmHg; level 3, 101-; level 4, 120-; the 5 th order is 140mmHg or more.
In the present invention, the larger the detected pressure value is, the longer the time for the physiotherapy apparatus 10 to provide the user with the "force" prompt is, and the shorter the time for the physiotherapy apparatus 10 to provide the user with the "relaxation" prompt is.
Since the pressure value of the user detected by the massage component 13 is detected and processed in real time, the physiotherapy apparatus 10 can be divided into its corresponding gears based on the pressure sensing values fed back from the user's body, and output different user prompts through the communication module 18, control the light wave component 14 to emit light with different wavelengths through the light wave control module 152, and control the frequency of driving the massage component 13 by the driving component 11 through the function selection module 151. Therefore, the physiotherapy apparatus 10 can automatically adjust to the real-time status of the user to obtain a physiotherapy plan suitable for its own variation.
Further, the user can also utilize the mobile device APP or the server connected to the physiotherapy apparatus 10 to customize the gear range of the detected pressure value, the time of corresponding indication of "effort" and "relaxation", the number of massage cycles, and the like, so that a physiotherapy scheme with higher personalization and matching degree can be obtained, and a better physiotherapy effect can be obtained.
Fig. 3 is a schematic diagram showing the unfolded state of the lightwave module 14, and in practical applications, the lightwave module 14 can be curled or bent according to the design requirements of the actual product. In this embodiment, the light wave component 14 includes a blue LED emitting element 141, a red LED emitting element 142, and a yellow LED emitting element 143, wherein the yellow LED emitting element 143 and the red LED emitting element 142 are evenly distributed around the blue LED emitting element 141. In other embodiments of the present embodiment, the lightwave module 14 may further comprise LED emitters emitting other lightwave wavelengths.
In one embodiment, the blue LED lighting element 141 is disposed between the yellow LED lighting element 143 and the red LED lighting element 142.
The wavelength of the blue LED emitting member 141 is 410nm to 480nm, and specifically, the wavelength of the blue LED emitting member 141 may be 410nm, 420nm, 430nm, 435nm, 440nm, 450nm, 460nm, 467nm, or 480 nm. Wherein, the blue light wave in the wavelength range has the effects of tranquilizing and diminishing inflammation and inhibiting the breeding of bacteria, and the wavelength of the blue light wave can be 410nm-415 nm.
The wavelength of the yellow light LED illuminating part 143 is 577nm-597nm, and the wavelength of the yellow light LED illuminating part 143 can also be 577nm, 580nm, 581nm, 585nm, 588nm, 590nm, 595nm or 597 nm. The yellow light wave in the wavelength range has the function of improving the exchange rate of cell nutrients, can supplement energy to the skin of a human body part, and is beneficial to removing toxicity by lymph and improving the rough degree of the skin. The wavelength range of the yellow light LED emitting component 143 is preferably 590nm-595 nm.
The wavelength of the red LED emitter 142 is 630nm to 650 nm. The wavelength of the red LED emitting component 142 can be 630nm, 632nm, 635nm, 637nm, 640nm, 643nm, 647nm or 650 nm. The red light wave in this wavelength range can stimulate skin blood to flow, promote collagen's growth, and the stimulation cell activity promotes the growth of renewing, and the utility model discloses in further preferred ruddiness LED illuminating part 142's wavelength range be 630nm-650 nm.
As shown in fig. 3, the blue LED emitting elements 141, the red LED emitting elements 142, and the yellow LED emitting elements 143 are arranged in an array and spaced apart from each other, and a distance b between the adjacent LED emitting elements is 2mm to 15 mm. In particular, the distance b may also be 2mm, 3.5mm, 4mm, 5mm, 6.5mm, 7mm, 8.6mm, 9mm, 10mm, 11mm, 12mm, 13mm, 14mm or 15 mm. Thereby allowing the lightwave module 14 to emit a more uniform lightwave.
In some embodiments, the blue LED lighting elements 141 may be arranged in a zigzag arrangement in a specific direction, that is, when viewed from a blue LED lighting element 141, two other blue LED lighting elements 141 arranged in different columns are arranged on the upper right and upper left or the lower right and lower left.
Referring to fig. 4A-4B, a second embodiment of the present invention provides a physiotherapy apparatus 30, which is different from the first embodiment in that: the massage component 33 includes a transparent massage head 331 having a hollow cavity 332, the light wave component 34 is accommodated in the hollow cavity 332, and light with different wavelengths emitted by the light wave component 34 is emitted out through the transparent massage head 331; one end of the driving component 31 is fixedly connected with one end of the transparent massage head 331, and the driving component 31 reciprocates to drive the transparent massage head 331 to synchronously reciprocate.
As shown in FIG. 4A, the distance h2 between the LED light emitting element 341 in the lightwave module 34 and the outer surface of the transparent massage head 331 is 2-12 mm. Specifically, the distance h2 between the LED light emitting member 341 and the outer surface of the transparent massage head 331 may also be 2mm, 3.5mm, 4mm, 5mm, 6.5mm, 7mm, 8.6mm, 9mm, 10mm, 11mm, or 12 mm.
As further shown in FIG. 4A, the physiotherapy apparatus 30 includes a housing assembly 37, and the housing assembly 37 has a housing space (not numbered) therein for accommodating the massage unit 33, the power unit 32 and the control circuit 35. The shell subassembly 37 with transparent massage head 331 meets and locates to be equipped with elasticity fold 371, elasticity fold 371 is in extend when the magnetism cylinder 312 stretches out, elasticity fold 371 is in folding when the magnetism cylinder 312 is withdrawed, such setting can improve transparent massage head 331 is in reciprocating motion's smoothness degree under the drive of magnetism cylinder 312, and can improve physiotherapy device's life.
As shown in fig. 4A, in order to better acquire the feedback information of the human body part during the massage process and match the corresponding data based on the feedback information, in some embodiments of the present invention, a second sensing module 38 may be disposed on the outer surface of the transparent massage head 331, and the second sensing module 38 may be electrically connected to the detection data collecting and processing module (reference numeral shown in fig. 2) in the control circuit 35; the second sensing module 38 can be used for sensing the pressure, temperature and other change data of the outer surface of the transparent massage head 331, and transmitting the change data to the detection data collecting and processing module (labeled as fig. 2) for corresponding operation processing.
Further, in some other embodiments of the present invention, as shown in fig. 4B, the physiotherapy device 30 further includes a liquid injection module 39, the liquid injection module 39 further includes a liquid storage cavity 391 and a delivery pipe, the liquid injection module 39 is electrically connected to the control circuit 35, the delivery pipe includes two ends, one end of the delivery pipe is connected to the liquid storage cavity 391, and the other end of the delivery pipe is connected to a through hole (not shown) provided on the outer surface of the transparent massage head 331. The control circuit 35 controls the liquid storage cavity 391 to supply liquid or gel such as lubricating liquid, liquid medicine and the like to the outer surface of the transparent massage head 331 through the delivery pipe. For example, a bactericide is filled in the liquid storage cavity 391, and the bactericide can play a role in sterilizing the skin surface of a human body part, so that inflammation can be prevented and treated, and a health care and physical therapy effect is realized.
In some specific embodiments of this embodiment, as shown in fig. 4A and 4B, the driving assembly 31 includes a coil 311 and a magnetic cylinder 312, one end of the magnetic cylinder 312 penetrates through the coil 311, and the other end of the magnetic cylinder 312 is fixedly connected to the transparent massage head 331, and the coil 311 generates a pushing and pulling force on the magnetic cylinder 312 when power is supplied to make the magnetic cylinder 312 reciprocate in the axial direction of the coil 311, and the magnetic cylinder 312 carries the transparent massage head 331 to reciprocate at the same time.
In some other embodiments of the present invention, as shown in fig. 5A-5B, the number of the coils 311 may be two, the end of the magnetic cylinder 312 away from the massage component 33 is penetrated through the two coils 311, two current directions of the coils 311 under the power supply condition are opposite, the magnetic cylinder 312 includes a magnetic steel 3121 and a transmission shaft 3122 connected to one end of the magnetic steel 3121, the end of the transmission shaft 3122 away from the magnetic steel 3121 is fixedly connected to the massage component 33, and the magnetic steel 3121 corresponds to an N pole and an S pole along two axial directions of the two coils 311.
As further shown in fig. 5A-5B, the coil 311 may be specifically divided into a first coil 3111 and a second coil 3112.
When the first coil 3111 is switched on with a forward current and the second coil 3112 is switched on with a reverse current, as shown in fig. 5A, according to a right-hand rule, the first coil 3111 generates left S and right N magnetic force directions, the second coil 3112 generates left N and right S magnetic force directions, and according to the characteristics of like magnetic force repelling and opposite magnetic force attracting, the magnetic steel 3121 receives the like-to-right repulsive force of the first coil 3111 and the right opposite magnetic force of the second coil 3112, so that the magnetic steel 3121 is forced to move to the right, that is, the magnetic steel 3121 moves to the second coil 3112 direction.
Similarly, when the second coil 3112 is switched on by a forward current and the first coil 3111 is switched on by a reverse current, as shown in fig. 5B, according to the right-hand rule, the second coil 3112 generates a left S and a right N magnetic force direction, the first coil 3111 generates a left N and a right S magnetic force direction, and at this time, the magnetic steel 3121 receives the same-polarity left repulsive force of the second coil 3112 and the left opposite attractive force of the first coil 3111, so that the magnetic steel 3121 is forced to move to the left, that is, the magnetic steel 3121 moves to the first coil 3111.
It should be noted that the terms "forward direction", "reverse direction", "left direction" and "right direction" used herein are based on the orientation shown in the drawings, and are only used for explanation and not for limitation of the orientation of the present invention.
Based on the above principle, the current direction and frequency of the first coil 3111 and the second coil 3112 are programmed by the function selection module 351 in the control circuit 35, so that the reciprocating direction and frequency of the magnetic steel 3121 can be easily and effectively controlled.
Referring to fig. 6A, a third embodiment of the present invention provides a massage health-care method, which takes the physiotherapy apparatus provided in the second embodiment as an example, and the massage health-care method can be embodied as follows:
step S11, function selection; the functions of the physiotherapy device can be divided into a massage function, a physiotherapy health-care function and the like, and the selection of the functions can be matched based on the input of the switch by a user or based on user information stored by the control circuit so as to switch to a proper function or be controlled based on information fed back by the massage component.
When the physiotherapy device enters a massage mode, the physiotherapy device can comprise the following steps:
step S121, entering a massage mode;
step S122, selecting a massage mode;
and step S123, outputting the vibration massage.
(II) when the physiotherapy device enters the physiotherapy mode, the physiotherapy device can further comprise the following steps:
step S111, entering a physical therapy mode;
step S112, detecting the fitness of the user and matching a corresponding physical therapy mode;
step S113, light wave irradiation and/or vibration massage;
step S114, carrying out secondary detection; and
step S115, collecting detection signals and feedback effects;
after the step S115, the therapy mode corresponding to the feedback result may be further adjusted based on the collected and detected signals and the feedback result, so as to adjust the corresponding massage mode/therapy mode based on the actual requirements of different users.
Specifically, in the step S112, the detection of the user fitness is based on that the emitted pressure sensing values are divided into 5 steps during the operation of the physiotherapy apparatus, which are respectively: grade 1, 0-75 mmHg; grade 2, 76-100 mmHg; level 3, 101-; level 4, 120-; the 5 th order is 140mmHg or more.
In step S113, the light wave irradiation and/or the vibration massage are performed, and the control circuit controls the light wave module and/or the driving module accordingly.
In step S115, specifically, after each user uses the physical therapy apparatus, the user information storage module in the control circuit may automatically store the data detected this time, the corresponding light wavelength, light irradiation time, massage frequency, massage time, and the like in a database, and when the user uses the physical therapy apparatus again, the control circuit may automatically retrieve the matched mode from the database for the user to select quickly.
In practical use, different pressure sensing value gears correspond to different user operation prompts, reciprocating motion cycle times, reciprocating motion interval time, time corresponding to the completion of one treatment course and the like.
Some specific physiotherapy methods may be as shown in table 1:
TABLE 1 relationship table between pressure detection value and light wave and massage in physiotherapy method
The above relation table is only an example, and is not a limitation of the present invention, and in practical applications, there may be a custom rule.
In the user operation prompt, the term "power" means that the user actively puts the muscles in a tight state after receiving the "power" instruction, and the term "relax" means that the user actively relaxes the muscles after receiving the "relax" instruction.
The light based on different light wave lengths can produce different influences on human body parts, so that after the human body enters a physical therapy mode, different massage circulation times and massage modes can be matched, and different light wave irradiation can be matched, so that different health care physical therapy effects can be obtained.
For example, in some specific embodiments of the present invention, the physiotherapy mode may specifically include the following:
physical therapy mode 1:
when the pressure sensing value fed back by the human body part is detected to be 50mmHg, the range is classified as 1, at the moment, the physiotherapy device can provide prompts that the duration of 'strength' or 'relaxation' is 2 seconds and 5 seconds respectively for a user, in addition, the light wave components can also be started simultaneously, wherein when the 'strength' indication is sent out, the yellow LED luminous element sends out yellow light, and when the 'relaxation' indication is sent out, the red LED luminous element sends out red light. Yellow light can improve the exchange rate of cell nutrients, while red light can stimulate the blood flow of skin and promote the growth of collagen when muscles of human body are relaxed.
Meanwhile, the driving component of the physiotherapy device can drive the massage component to carry out reciprocating massage for 10 times, and the time interval of each time is 10 seconds; at intervals, the blue light emitting LED can emit blue light to play a role in calming and diminishing inflammation.
Physical therapy mode 2:
it differs from the above physical therapy mode 1 in that: when the pressure sensing value fed back by the human body part is 90mmHg, the range is classified as 2, and the physical therapy device provides the user with prompts that the duration of the 'exertion' or 'relaxation' is 2.5 seconds and 4.5 seconds respectively.
Physical therapy mode 3:
it differs from the above physical therapy mode 1 in that: when the pressure sensing value fed back by the human body part is 110mmHg, the range is classified into 3, at the moment, the physiotherapy device can provide prompts that the duration of 'exerting force' or 'relaxing' is 3 seconds and 4 seconds respectively for a user, the driving component of the physiotherapy device can drive the massage component to carry out reciprocating massage for 15 times, and the time interval of each time is 10 seconds.
Physical therapy mode 4:
it differs from the above physical therapy mode 1 in that: when the pressure sensing value fed back by the human body part is detected to be 130mmHg, the range is classified into 4, at the moment, the physiotherapy device can provide prompts that the duration of 'exerting force' or 'relaxing' is 4 seconds and 3.5 seconds respectively for a user, the driving assembly of the physiotherapy device can drive the massage assembly to carry out reciprocating massage for 15 times, and the time interval of each time is 10 seconds.
And a physical therapy mode 5:
it differs from the above physical therapy mode 1 in that: when the pressure sensing value fed back by the human body part is detected to be 150mmHg, the range is 5, at the moment, the physiotherapy device can provide prompts that the duration of 'exerting force' or 'relaxing' is 6 seconds and 3 seconds respectively for a user, the driving component of the physiotherapy device can drive the massage component to carry out reciprocating massage for 20 times, and the time interval of each time is 10 seconds.
It can be seen that the greater the detected pressure value, the longer the physiotherapy device provides a "power" prompt to the user, and the shorter the physiotherapy device provides a "relaxation" prompt to the user.
The detected pressure value of the user is detected and fed back in real time, so that the physical therapy device can divide the gear to which the user belongs based on the pressure value fed back by the body of the user and corresponds to different user prompting, illumination and massage frequencies. Therefore, the physiotherapy device can realize automatic adjustment aiming at the real-time states of different users so as to obtain a physiotherapy scheme suitable for the change of the physiotherapy device.
Further, the user can also utilize the mobile device APP or the server connected with the physiotherapy device to self-define the gear range of the detected pressure value, the corresponding indication of 'force' and 'relaxation' time, the massage cycle number and the like, so that a physiotherapy scheme with high personalization and matching degree can be obtained, and a better physiotherapy effect can be obtained.
The above-listed examples of the present invention are merely examples and are not intended to limit the present invention.
Further, referring to fig. 6B, in some specific embodiments of the present embodiment, the performing of health care physiotherapy by using the physiotherapy apparatus may further include the following steps:
step Q11, starting up; namely, the physiotherapy device is started;
step Q12, sterilizing; the blue light LED luminous element in the light wave component is utilized to sterilize the skin of the human body part to be subjected to health care physical therapy.
Step Q13, selecting the working mode; that is, the corresponding operation mode is selected according to the content set by the user or based on the matching information originally stored in the system, and if massage is needed, the step goes to step Q21, and if physiotherapy is needed, the step goes to step Q14.
Step Q21, entering a massage mode; the specific steps are as described in steps S121 to S123, and are not described herein again.
Step Q14, detecting pressure and temperature; the physical therapy device is characterized in that a first sensing component arranged on the outer surface of the transparent massage head or a second sensing component arranged on the inner wall of the transparent colloid is used for detecting pressure detection data and temperature detection data obtained by contacting the physical therapy device with the skin of a human body part.
Step Q15, uploading the detection data to the mobile device APP/server; and uploading the obtained pressure detection data and temperature detection data to a mobile device APP or a server at the mobile device end.
Step Q16, the mobile device APP/server feeds back matched medicine or treatment course signals to the user and the control circuit; that is, the mobile device APP/server may feed back matching operational information to the user and the control circuitry separately or simultaneously based on the detection data. For example, the user may know that a corresponding operation needs to be performed based on the mobile device APP on the mobile device wirelessly matched with the physiotherapy apparatus.
Step Q17, the user operates according to the prompt, and the control circuit controls the driving component and/or the light wave component to adapt to the operation; in particular, the control circuit may control the drive assembly and the lightwave assembly to adapt to the operation of the user. As shown in table 1, the operation may be performed with different frequencies and times of light wave irradiation or massage corresponding to different pressure detection values.
Step Q18, detecting the pressure and the temperature again; after the step Q17 is completed, the first sensing component arranged on the outer surface of the transparent massage head or the second sensing component arranged on the inner wall of the transparent colloid is used for detecting the pressure detection data and the temperature detection data which are obtained by contacting the physiotherapy device with the skin of the human body part.
Step Q19, collecting and feeding back secondary detection data; the control circuit acquires and feeds back the obtained pressure detection data and/or temperature detection data, and then the step Q22 is carried out; and
and step Q22, uploading the secondary detection data to the mobile equipment APP/server, and ending the primary physiotherapy process.
When the next physiotherapy process is required, the above steps Q11-Q22 may be repeated.
In order to better verify the utility model provides a physiotherapy device and effect of physiotherapy method thereof, the utility model provides an experimental research to specific part massage and light wave shine
Subject: 50 female patients who need massage and physical therapy are treated together, and the age is 35-50 years old.
Evaluation standard of health care curative effect:
1. the inflammation or bacterial amount of human body parts is reduced by 80%; 2. the elasticity of the skin is increased; 3. the pressure value detected by the massage component is improved by more than 50% compared with the pressure value initially detected by a physical therapy device;
the clinical observation results are as follows: the utility model provides a physiotherapy device lasts three months of use, and the observation result reaches 31 examples totally of above-mentioned three kinds of assessment standards, wherein, can only reach wherein two kinds of assessment standards have 5 examples, can only reach 8 examples of above-mentioned one of them assessment standard, and invalid has 6 examples, and the effective rate can reach 88%, and is visible, the utility model provides a physiotherapy device has the effect of the health care that is showing and physiotherapy, and safety, no toxic or side effect.
Compared with the prior art, the utility model provides a physiotherapy device has following beneficial effect:
the utility model provides a physiotherapy device, it is used for massaging the human body position, physiotherapy device includes power supply module, drive assembly and light wave subassembly, and power supply module corresponds electric connection and supplies power for drive assembly, light wave subassembly respectively, physiotherapy device still includes transparent massage head, drive assembly with one end fixed connection of transparent massage head, drive assembly can drive transparent massage head carries out reciprocating motion along a direction, transparent massage head has the cavity, light wave subassembly is acceptd in the cavity; the light wave component can emit light waves with at least three different wavelength ranges to human body parts. The specific light wave irradiation is utilized, and the reciprocating massage is combined with the surface of the human body part, so that the elasticity of the skin can be effectively improved, and the physical therapy effect is greatly improved.
In the physiotherapy device provided by the utility model, the light wave component comprises a blue light LED luminous element, a red light LED luminous element and a yellow light LED luminous element, wherein the yellow light LED luminous element and the red light LED luminous element are evenly distributed around the blue light LED luminous element; the wavelength of the blue light LED luminous element is 410nm-480nm, the wavelength of the yellow light LED luminous element is 580nm-595nm, and the wavelength of the red light LED luminous element is 630nm-650 nm. The light waves with different wavelengths have different effects, for example, blue light can play a role in calming and diminishing inflammation and can inhibit the breeding of bacteria, yellow light can supplement energy to the skin of a human body part, lymph toxin removing can be facilitated, the roughness of the skin is improved, red light can stimulate the blood flow of the skin, the growth of collagen is promoted, and the activity of cells is stimulated to promote the regeneration and growth. Based on different massage states and the actual state of the user, different light waves can be selected for irradiation, so that the optimal physiotherapy effect is obtained.
The utility model discloses in, blue light LED luminous element the ruddiness LED luminous element reaches yellow light LED luminous element is the array distribution, and the distance is 2mm-15mm between the adjacent LED luminous element, and the injecing of its distance can improve physiotherapy device's the light irradiation degree of consistency and effect.
Further, in order to enable the human body part to be uniformly irradiated by light waves while massaging, the light wave assembly is arranged on the inner wall of the cylinder body and surrounds the transparent colloid structure, and the distance between the light wave assembly and the inner wall of the hollow cavity of the transparent colloid is 2-12 mm.
In some other embodiments of the present invention, the light wave module is accommodated in the hollow cavity, and the light with different wavelengths emitted by the light wave module is emitted outwards through the transparent massage head; the distance between the LED luminous element in the light wave component and the outer surface of the transparent massage head is 2-12 mm. The driving component can drive the massage component to do reciprocating motion so as to realize the combination of reciprocating massage and light wave irradiation.
The utility model discloses in, drive assembly includes coil and the magnetism cylinder that two coaxial intervals set up, and two coils can promote magnetism cylinder reciprocating motion when the circular telegram, and the noise is little and can reach the effect that the massage position was treated in the massage. The utility model discloses in, the setting of twin coil still can further improve the massage dynamics size of massage appearance.
With two the current direction sets up to opposite reversal under the power supply condition, can realize two the current direction and the frequency of coil program to the realization carries out effective control to the reciprocating motion of magnet steel, experiences with the massage that provides better.
The utility model discloses in, the physiotherapy device is still including annotating the liquid subassembly, annotate the liquid subassembly and include stock solution chamber and conveyer pipe, the conveyer pipe includes both ends, and its one end inserts in the stock solution intracavity, and the other end inserts in the massage subassembly to make the liquid in stock solution chamber can pass through the conveyer pipe massage subassembly reachs human position skin surface. Utilize annotate the liquid subassembly, can the physiotherapy device can be convenient for pour into lubricating liquid or medicine into at the in-process of reciprocal massage, under the effect of light wave irradiation, reciprocal massage, can stimulate skin blood to flow to can improve the medicine by the absorptive efficiency of human position skin, reciprocal massage still can further make the medicine more even, thereby can improve its physiotherapy effect greatly.
The physiotherapy device provided by the utility model comprises a control circuit and a switch, wherein the control circuit is connected with and controls the driving component, the massage component and the light wave component, the switch is connected with the control circuit, and the switch sends different electric signals to the control circuit to adjust the driving component or the light wave component; the physiotherapy device also comprises a communication module connected with the control circuit and used for realizing remote connection and control with peripheral electronic equipment. Through setting up switch, control circuit and communication module, can be convenient for the user to use the operation physiotherapy device to realize the remote control to physiotherapy device.
Wherein, communication module can be any kind in wifi signal, bluetooth signal, 2.4G signal module, has wider suitability.
The utility model provides an among the physiotherapy device control circuit still includes: the function selection module, the light wave control module, the data storage module and the detection data acquisition and processing module are arranged, and the multi-module arrangement can improve the control efficiency and accuracy of the physiotherapy device.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, and improvements made within the principle of the present invention should be included within the protection scope of the present invention.
Claims (10)
1. A physiotherapy device, it is used for massaging human body position, its characterized in that: the physiotherapy device comprises a power supply assembly, a driving assembly, a massage assembly and a light wave assembly, wherein the power supply assembly, the driving assembly and the light wave assembly are respectively and electrically connected and supply power to the power supply assembly; the light wave component can emit light waves with at least three different wavelength ranges to human body parts.
2. The physical therapy device according to claim 1, wherein: the light with different wavelengths emitted by the light wave component is emitted outwards through the transparent massage head; the light wave component comprises a blue light LED luminous element, a red light LED luminous element and a yellow light LED luminous element, wherein the yellow light LED luminous element and the red light LED luminous element are evenly distributed around the blue light LED luminous element; the wavelength of the blue light LED luminous element is 410nm-480nm, the wavelength of the yellow light LED luminous element is 580nm-595nm, and the wavelength of the red light LED luminous element is 630nm-650 nm.
3. The physiotherapy apparatus according to claim 2, wherein: the blue light LED luminous element, the red light LED luminous element and the yellow light LED luminous element are distributed in an array mode, and the distance between the blue light LED luminous element, the red light LED luminous element and the yellow light LED luminous element which are adjacently arranged is 2-15 mm.
4. The physiotherapy apparatus according to claim 2, wherein: the distance between the LED luminous element in the light wave component and the outer surface of the transparent massage head is 2-12 mm.
5. The physical therapy device according to claim 1, wherein: the physiotherapy device comprises a second sensing module, and the second sensing module is arranged on the outer surface of the transparent massage head.
6. The physical therapy device according to claim 1, wherein: the driving assembly comprises a coil and a magnetic column body, one end of the magnetic column body penetrates through the coil, the other end of the magnetic column body is fixedly connected with the transparent massage head, the coil generates push-pull force on the magnetic column body under the condition of power supply to enable the magnetic column body to reciprocate in the axial direction of the coil, and meanwhile the magnetic column body drives the transparent massage head to reciprocate.
7. The physical therapy device according to claim 6, wherein: the quantity of coil can be two, the magnetism cylinder is kept away from the one end of massage subassembly runs through in two coils, two the coil current opposite direction under the power supply condition, the magnetism cylinder include magnet steel and with the transmission shaft that magnet steel one end is connected, the transmission shaft is kept away from the one end and the massage subassembly fixed connection of magnet steel, the magnet steel corresponds for N utmost point and S utmost point along the axial direction' S of two coils both ends.
8. The physical therapy device according to claim 1, further comprising: the physiotherapy device still includes annotates the liquid subassembly, annotate the liquid subassembly and include stock solution chamber and conveyer pipe, the conveyer pipe includes both ends, and its one end inserts in the stock solution intracavity, the other end inserts in the massage subassembly to make the liquid in stock solution chamber can pass through the conveyer pipe massage subassembly reachs human position skin surface.
9. The physiotherapy apparatus according to any one of claims 1 to 8, wherein: the physiotherapy device comprises a control circuit and a switch, the control circuit is connected with and controls the driving component, the massage component and the light wave component, the switch is connected with the control circuit, and the switch sends different electric signals to the control circuit to adjust the driving component or the light wave component; the physiotherapy device also comprises a communication module connected with the control circuit and used for realizing remote connection and control with peripheral electronic equipment.
10. The physical therapy device according to claim 9, further comprising: the control circuit includes:
the function selection module is used for switching the physical therapy device into a massage mode or a physical therapy mode;
the light wave control module is used for controlling the light emitting time and the light emitting wavelength of each LED light emitting piece in the light wave component;
the data storage module is used for storing the identity information of the user and the light wave wavelength, time and massage frequency data matched with the identity information of the user so as to form a database;
and the detection data acquisition and processing module is used for acquiring and processing the operating signals of the light wave component and the driving component and storing the operating signals into the data storage module.
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CN201821502233.1U CN210170426U (en) | 2018-09-13 | 2018-09-13 | Physical therapy device |
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CN201821502233.1U CN210170426U (en) | 2018-09-13 | 2018-09-13 | Physical therapy device |
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CN201821502233.1U Expired - Fee Related CN210170426U (en) | 2018-09-13 | 2018-09-13 | Physical therapy device |
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