Fascia moxibustion therapy instrument

By designing a fascia moxibustion therapy device with a heat-conducting cover that fits closely to the skin, the problem of burns caused by poor contact between the heat-conducting shell and the skin is solved, and accurate temperature perception and safe use are achieved.

CN114795932BActive Publication Date: 2025-10-17FASCIA MOXIBUSTION HEALTH IND (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202210306724.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-25
Publication Date
2025-10-17
Estimated Expiration
2042-03-25

AI Technical Summary

Technical Problem

When treating uneven areas, the existing wearable moxibustion fascia device has poor contact between the heat-conducting shell and the skin, resulting in inaccurate temperature perception and easily causing burns to the user.

Method used

A fascia moxibustion therapy device was designed. The thermal conductive cover protruded from the adhesive component on the side facing away from the main unit, close to the skin. Combined with the heating element and controller, temperature cycle control was achieved to ensure that the thermal conductive cover was always close to the skin, reducing the risk of burns.

Benefits of technology

It effectively reduces the risk of users being scalded, ensures accurate temperature perception, and improves safety of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a fascia moxibustion therapy instrument, which comprises a host computer, the host computer comprises a first accommodating cavity, the first accommodating cavity has an opening, the first accommodating cavity is used for placing moxa cakes, an adhesion assembly has a channel, and a heat-conducting cover is connected to the host computer and covers the opening, the heat-conducting cover has air holes in communication with the first accommodating cavity, the heat-conducting cover is connected to the adhesion assembly, penetrates through the channel, and protrudes from one side of the adhesion assembly away from the host computer. The application aims to solve the technical problem that the fascia moxibustion therapy instrument is easy to scald users during treatment.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of medical equipment, in particular to a fascia moxibustion instrument. BACKGROUND

[0002] In the treatment, the moxibustion fascia moxibustion instrument applies heat to the fascia and muscles around the moxibustion part and then massages to relax the fascia and muscles, and then performs moxibustion on the part. In the existing wearable moxibustion fascia moxibustion instrument, some products have a gel sheet attached to the user's skin. When the skin at the treatment site is not flat, the heat-conducting shell is in poor contact with the skin, and even a large gap appears. In this case, the temperature felt by the skin is lower than the temperature of the heat-conducting shell, and if the user moves, the higher-temperature heat-conducting shell will be close to the skin, causing the user to be scalded. SUMMARY

[0003] The present application provides a fascia moxibustion instrument, which aims to solve the technical problem that the fascia moxibustion instrument is easy to scald the user during treatment.

[0004] The present application provides a fascia moxibustion instrument, which aims to solve the technical problem that the fascia moxibustion instrument is easy to scald the user during treatment.

[0005] A host, the host comprising a first accommodating cavity, the first accommodating cavity having an opening; the first accommodating cavity is used for placing an ai cake;

[0006] An adhesive assembly, the adhesive assembly having a channel; and

[0007] A heat-conducting cover, the heat-conducting cover being connected to the host and covering the opening; and the heat-conducting cover having air holes communicating with the first accommodating cavity; the heat-conducting cover is connected to the adhesive assembly, passes through the channel, and protrudes from the side of the adhesive assembly away from the host.

[0008] Optionally, the heat-conducting cover has an integral base part and a cover part, the base part is connected to the host, the cover part passes through the channel and protrudes from the side of the adhesive assembly away from the host; the cover part covers the opening, and the cover part has a second accommodating cavity, the first accommodating cavity and the second accommodating cavity form an accommodating cavity body; the cover part has a plurality of air holes communicating with the accommodating cavity body.

[0009] Optionally, the heat-conducting cover further comprises a gland ring, the gland ring is sleeved on the outer wall of the cover part and at least partially located in the channel; the side of the gland ring away from the host protrudes from the side of the adhesive assembly away from the host.

[0010] Optionally, the side of the gland ring away from the host is located on the side of the base part away from the host.

[0011] Optionally, the edge of the base part is provided with at least one clamping body, and the main machine is provided with at least one clamping slot, and the clamping body is clamped into the corresponding clamping slot.

[0012] Optionally, the side of the base part away from the main machine has a positioning column, and the adhesive assembly has a first positioning hole, and the positioning column is inserted into the first positioning hole.

[0013] Optionally, the adhesive assembly includes a circuit board having a through hole in communication with the channel, and the cover part passes through the channel and the through hole; the first positioning hole is arranged on the circuit board; the gland ring has a second positioning hole, the positioning column is inserted into the second positioning hole, and the side of the gland ring facing the main machine is close to the side of the circuit board away from the main machine.

[0014] Optionally, the distance between the heat-conducting cover and the side of the adhesive assembly away from the main machine is greater than or equal to 1mm.

[0015] Optionally, the adhesive assembly includes: an electric treatment piece connected with the heat-conducting cover; the electric treatment piece includes an electrode sheet having a circuit layer with a heating resistor and / or an electric stimulation output conductor; a gel layer arranged on the side of the circuit layer away from the main machine, and the side of the gel layer away from the electric treatment piece is the plane.

[0016] Optionally, the fascia cupping therapy instrument further includes a heating piece arranged in the first accommodating cavity for heating the moxa cake; and a controller connected with the heating piece and configured to: in one temperature cycle period, heat the moxa cake to a first temperature by controlling the heating piece, maintain the temperature of the moxa cake at the first temperature in a first platform period, then reduce the temperature of the moxa cake to a second temperature, and maintain the temperature of the moxa cake at the second temperature in a second platform period; wherein the first temperature is greater than or equal to the carbonization temperature of the moxa cake, and the second temperature is less than the carbonization temperature of the moxa cake.

[0017] In the technical solution of the present application, the moxa cake is placed in the first accommodating cavity of the main machine, the heat-conducting cover is connected with the main machine and covers the opening of the first accommodating cavity; the heat-conducting cover is connected with the adhesive component, the heat-conducting cover has air holes communicating with the first accommodating cavity; and the heat-conducting cover protrudes from the side of the adhesive component away from the main machine. In the use process, when the moxa cake is heated, the medicinal ingredients of the moxa cake and the generated heat are conducted out of the heat-conducting cover and the air holes of the heat-conducting cover to act on the treatment part of the user. In the prior art, when some uneven parts are treated, there may be a gap between the heat-conducting cover and the skin, and the user cannot feel the real temperature of the heat-conducting cover, so that the user may be scalded when the skin contacts the heat-conducting cover with too high temperature. In the technical solution of the present application, since the heat-conducting cover protrudes from the side of the adhesive component away from the main machine, when the adhesive component is worn on the treatment part of the user, the heat-conducting cover will always closely adhere to the skin of the user, so that the actual temperature of the heat-conducting cover can be sensed in time, the risk of the user being scalded by the heat-conducting cover due to too high temperature is reduced, and even the user can be prevented from being scalded by the heat-conducting cover. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0019] Figure 1 is a sectional view of the fascia moxibustion therapy instrument provided in the embodiments of the present application;

[0020] Figure 2 is a perspective view of the fascia moxibustion therapy instrument provided in the embodiments of the present application;

[0021] Figure 3 is a structural schematic view of the heat-conducting cover provided in the embodiments of the present application;

[0022] Figure 4 is a schematic view of the connection between the heat-conducting cover and the adhesive component provided in the embodiments of the present application;

[0023] Figure 5 is a structural schematic view of the adhesive component provided in the embodiments of the present application;

[0024] Figure 6 is a structural schematic view of the main machine of the fascia moxibustion therapy instrument provided in the embodiments of the present application;

[0025] Figure 7 is Figure 1 is a local enlarged view of A in FIG. 8;

[0026] Figure 8 is a schematic diagram of the temperature change of the moxa cake of the fascia moxibustion instrument provided in the embodiments of the present application over time.

[0027] LIST OF REFERENCE NUMERALS

[0028]

[0029] DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0031] In the description of the present application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined as "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly and specifically limited.

[0032] In the present application, the word "exemplary" is used to mean "serving as an example, instance, or illustration." Any implementation described as "exemplary" in the present application is not necessarily to be construed as preferred or advantageous over other implementations. The following description is presented to enable any person skilled in the art to make and use the application. In the following description, for purposes of explanation, specific details are set forth. It will be apparent to those skilled in the art that the present application can be practiced without using these specific details. In other instances, well-known structures and processes are not described in detail in order to avoid obscuring the present application. Thus, the present application is not intended to be limited to the embodiments shown, but is to be accorded the widest scope consistent with the principles and features presented herein.

[0033] The myofascial moxibustion therapy instrument provided by the embodiment of the present application is particularly a moxa moxibustion myofascial moxibustion therapy instrument, and can be particularly used for massage treatment of the myofascial and / or muscle of a user.

[0034] In combination with Figure 1 , Figure 2 and Figure 6 , the myofascial moxibustion therapy instrument provided by the embodiment of the present application comprises:

[0035] a host 100, the host 100 comprises a first accommodating cavity 100a, the first accommodating cavity 100a has an opening 100b; the first accommodating cavity 100a is used for placing an moxa cake 400;

[0036] a heat-conducting cover 200, the heat-conducting cover 200 is connected to the host 100 and covers the opening 100b; the heat-conducting cover 200 has an air hole 200b-1 in communication with the first accommodating cavity 100a; and

[0037] an adhering assembly 300, the adhering assembly 300 has a channel 300c; the heat-conducting cover 200 is connected to the adhering assembly 300 and penetrates through the channel 300c and protrudes from a side of the adhering assembly 300 away from the host 100.

[0038] In the technical solution of the present application, the moxa cake 400 is placed in the first accommodating cavity 100a of the host 100, the heat-conducting cover 200 is connected to the host 100 and covers the opening 100b of the first accommodating cavity 100a; the heat-conducting cover 200 is connected to the adhering assembly 300 and penetrates through the channel 300c and protrudes from a side of the adhering assembly 300 away from the host 100. In the use process, when the moxa cake 400 is heated, the heat-conducting cover 200 has the air hole 200b-1 in communication with the first accommodating cavity 100a, and the medicinal components of the moxa cake 400 and the generated heat are conducted out of the heat-conducting cover 200 and the air hole 200b-1 to act on the treatment site of the user. In the prior art myofascial moxibustion therapy instrument, when some uneven parts are treated, there may be a gap between the heat-conducting cover 200 and the skin, and the user feels that the temperature of the heat-conducting cover 200 is lower than the actual temperature of the heat-conducting cover 200, so if the user moves slightly, the skin will contact the heat-conducting cover 200 with too high temperature and thus be scalded. In the technical solution of the present application, since the heat-conducting cover 200 protrudes from a side of the adhering assembly 300 away from the host 100, when the adhering assembly 300 is worn on the treatment site of the user, the heat-conducting cover 200 will always closely adhere to the skin of the user, so that the user can timely perceive the actual temperature of the heat-conducting cover 200, reduce the risk of being scalded by the heat-conducting cover 200 due to too high temperature, and even eliminate the scalding of the user by the heat-conducting cover 200.

[0039] As an optional implementation manner of the above embodiment, in combination withFigure 1 As shown, the side of the adhesive assembly 300 away from the main machine 100 is flat. The distance h by which the heat-conducting cover 200 protrudes from the flat surface is greater than or equal to 1 mm. Since the user's skin has a certain tension and elasticity, making the side of the adhesive assembly 300 away from the main machine 100 flat can make the contact surface of the adhesive assembly 300 with the skin larger, and can enable the main machine 100 to be worn on the user's body relatively stably; and making the distance h by which the heat-conducting cover 200 protrudes from the flat surface greater than or equal to 1 mm can enable the heat-conducting cover 200 to be tightly attached to the part of the user's body to be treated. In some alternative embodiments, the distance h by which the heat-conducting cover 200 protrudes from the flat surface is 2 mm, which can satisfy the treatment of most parts, and reduce the risk of the user being scalded by the heat-conducting cover 200 due to excessively high temperature, or even eliminate the risk of the user being scalded by the heat-conducting cover 200.

[0040] As an alternative implementation of the above embodiments, Figure 1 As shown, the adhesive assembly 300 includes an electric treatment piece 300b connected with the heat-conducting cover 200, and a gel layer 300a arranged on the side of the electric treatment piece 300b away from the main machine 100, and the side of the gel layer 300a away from the electric treatment piece 300b is flat. The gel layer 300a is pasted on the user's skin by adhesion. The gel layer 300a can adaptively deform in a small range according to the stress change, and thus can be adaptively and closely attached to the skin. The gel layer 300a is a common structure of a conductive adhesive electrode, such as the gel layer 300a of a disposable neutral electrode of a high-frequency electrotome and the gel layer 300a of a self-adhesive electrode of a nerve and muscle stimulator. The gel layer 300a can use conductive gel, which is actually not charged since it is not in contact with a charged conductor; or can use non-conductive gel. Regardless of the type of gel, the function is not affected. The thickness of the gel layer 300a is generally selected according to the part to be treated, and thus is not specifically limited here. Generally, the electric treatment piece includes a shell, and the shell forms a channel. The heat-conducting cover is arranged in the channel and connected with the shell of the electric treatment piece.

[0041] As an optional implementation of the above embodiment, the electrotherapy piece 300b comprises an electrode sheet having a circuit layer with heating resistors and / or with electric stimulation output conductors, and the circuit layer is covered with the gel layer 300a on the side away from the main machine 100. The circuit layer can be provided with heating resistors or with electric stimulation output conductors or both. The electrode sheet is generally of a common structure in the art, having a flexible circuit board with one side provided with heating resistors and the other side provided with two areas of copper coating separated from each other (two output ends of the electric stimulation output conductors are connected by an electrical connection mechanism) so that the electrotherapy piece 300b can preheat or electrically stimulate the tissue around the treatment site to achieve the effect of relaxing the muscles. For example, the specific structure of the electrode sheet can be that of a stimulator or a self-adhesive electrode sheet of a mid-frequency fascia moxibustion instrument.

[0042] As an optional implementation of the above embodiment, in combination with Figure 3 As shown in FIG. 4, the heat-conducting cover 200 has a base portion 200a and a cover portion 200b connected integrally, the base portion 200a is connected with the main machine 100, and the cover portion 200b penetrates through the passage 300c and protrudes from the side of the adhesive assembly 300 away from the main machine 100. Generally, the edge of the cover portion 200b is bent outwardly and extended to form the base portion 200a, the base portion 200a is connected with the main machine 100, and then the heat-conducting cover 200 is connected with the main machine 100. The cover portion 200b penetrates through the passage 300c and protrudes from the side of the adhesive assembly 300 away from the main machine 100, i.e., the opposite ends of the cover portion 200b are located on the opposite sides of the adhesive assembly 300, and the side of the cover portion 200b away from the main machine 100 protrudes from the adhesive assembly 300 for close contact with the user's skin.

[0043] Moreover, the cover portion 200b covers the opening 100b, and the cover portion 200b has a second accommodating cavity 200b-2, the first accommodating cavity 100a and the second accommodating cavity 200b-2 form an accommodating cavity S, and the cover portion 200b has a plurality of air holes 200b-1 communicating with the accommodating cavity S. That is, part of the moxa cake 400 is located in the first accommodating cavity 100a and the other part is located in the second accommodating cavity 200b-2. When the moxa cake 400 is carbonized, the generated drug components are volatilized from the air holes 200b-1 to directly act on the user's skin, and the heat generated by the carbonization of the moxa cake 400 can be directly conducted from the heat-conducting cover 200 to directly act on the user's skin.

[0044] As an optional implementation of the above embodiment, Figure 4 and Figure 6As shown, the edge of the base part 200a is provided with at least one clamping body 200a-1, and the host 100 is provided with at least one clamping slot 100c, and the clamping body 200a-1 is clamped into the corresponding clamping slot 100c. Generally, the host 100 is provided with a plurality of clamping slots 100c along the circumference thereof, and the edge of the base part 200a is correspondingly provided with a plurality of clamping bodies 200a-1, and the clamping body 200a-1 is clamped into the corresponding clamping slot 100c.

[0045] In some optional embodiments, the base part 200a is provided with a plurality of conductive elastic needle perforations 200a-2 arranged at intervals along the circumference thereof, and the host 100 is provided with a plurality of conductive elastic needles 100d arranged along the circumference thereof, and each conductive elastic needle 100d is inserted into the corresponding conductive elastic needle perforation 200a-2. The conductive elastic needle perforation 200a-2 is an arc-shaped waist-shaped hole. In assembly, each conductive elastic needle 100d is inserted into the corresponding conductive elastic needle perforation 200a-2, and the clamping body 200a-1 is clamped into the corresponding clamping slot 100c, so as to realize the connection between the host 100 and the heat-conducting cover 200.

[0046] As an optional embodiment of the above embodiment, Figure 3 As shown, the side of the base part 200a away from the host 100 is provided with a positioning column 200a-3, and the adhesion assembly 300 is provided with a first positioning hole 300d, and the positioning column is inserted into the first positioning hole 300d. Generally, the positioning columns 200a-3 are arranged at intervals along the circumference of the base part 200a, and the first positioning holes 300d are arranged at intervals along the axis of the channel 300c, and each positioning column 200a-3 is inserted into the corresponding first positioning hole 300d, so as to positionally connect the heat-conducting cover 200 to the adhesion assembly 300. Generally, the positioning column 200a-3 and the first positioning hole 300d can be a transition fit.

[0047] As an optional embodiment of the above embodiment, Figure 3 and Figure 4 As shown, the heat-conducting cover 200 further comprises a gland ring 200c, which is sleeved on the outer wall of the cover part 200b and at least partially located in the channel 300c. The side of the gland ring 200c away from the host 100 protrudes from the side of the adhesion assembly 300 away from the host 100; and the gland ring can reduce the shaking of the cover part 200b in the space outside the channel 300c, thereby reducing the risk of user scalding.

[0048] Generally, the side of the grommet 200c away from the main machine 100 protrudes from the side of the cover 200b away from the main machine 100. The side of the grommet 200c away from the main machine 100 can be in the same plane as the side of the cover 200b away from the main machine 100. Alternatively, the side of the grommet 200c away from the main machine 100 can be lower than the side of the cover 200b away from the main machine 100. In this case, the cover 200b is in contact with the user, and the user perceives a higher temperature. This is suitable for users with strong high-temperature resistance.

[0049] Further, the side of the grommet 200c away from the main machine 100 is located on the side of the base away from the main machine. The side of the grommet 200c away from the main machine 100 protrudes from the side of the cover 200b away from the main machine 100. Generally, when using the fascia moxibustion therapy instrument, the temperature of the moxa cake can reach a carbonization temperature or above, and the drug effect can be effectively exerted. At this time, the temperature of the cover 200b is relatively high. In order to avoid scalding the user and effectively exert the drug effect of the moxa cake, the side of the grommet 200c away from the main machine 100 protrudes from the side of the cover 200b away from the main machine 100. At this time, the grommet 200c with a lower temperature is directly in contact with the user to form support, and the cover 200b with a higher temperature has a certain gap with the user and does not directly contact the user. The drug components are absorbed by the user's skin through the limited space between the grommet 200c and the user. The moxa cake can be kept at a temperature above the carbonization temperature for a longer period of time, and the drug components are more easily exerted. The user can also reduce the risk of scalding the user by the cover 200b. Generally, the side of the grommet 200c away from the main machine 100 protrudes from the side of the cover 200b away from the main machine 100 by 0.5mm to 1mm.

[0050] The grommet 200c has a second positioning hole 200c-1, and the positioning column 200a-3 is inserted into the second positioning hole 200c-1. The grommet 200c has a ring structure, and the inner wall of the grommet 200c is tightly fitted with the outer wall of the cover 200b. For example, the outer wall of the cover 200b is provided with a plurality of positioning protrusions arranged in the circumferential direction, and the inner wall of the grommet 200c is provided with a plurality of positioning grooves arranged in the axial direction and matched with the positioning protrusions. The positioning protrusions are clamped into the corresponding positioning grooves, so that the cover 200b can be fixed axially relative to the adhesive assembly 300, and the cover 200b can be kept in close contact with the skin. The user can perceive the actual temperature of the heat-conducting cover 200 in real time. Generally, the positioning protrusions are elastic and can be embedded in the positioning grooves to tightly fit with the positioning grooves.

[0051] The gland ring 200c has a second positioning hole 200c - 1 , and the positioning column 200a - 3 passes through the section of the first positioning hole 300d and is inserted into the second positioning hole 200c - 1 , so that the gland ring 200c can remain circumferentially fixed relative to the thermal conductive cover 200 .

[0052] Specifically, the adhesive assembly includes a circuit board 300e having a through hole communicating with the channel 300c (see Figure 5 , due to the reasons of the drawing, the through hole is not marked with a figure), the covering portion 200b is arranged to pass through the channel 300c and the through hole; the first positioning hole 300d is provided on the circuit board 300e; the pressure cover ring 200c has a second positioning hole 200c-1, the positioning column 200a-3 is inserted into the second positioning hole 200c-1, and the side of the pressure cover ring 200c facing the host 100 is tightly attached to the side of the circuit board 300e away from the host 100, so that the pressure cover ring can be positioned and connected to the circuit board, so that the thermal conductive cover 200 is connected to the circuit board, and the circumferential and axial directions of the thermal conductive cover 200 are relatively fixed, which effectively reduces the displacement of the thermal conductive cover 200 relative to the user and avoids scalding the user.

[0053] The circuit board 300e is connected to the electrode sheet.

[0054] In the technical solution of the present application, there is no specific restriction on the number of the snap-in slot 100c, the snap-in body 200a-1, the positioning column 200a-3, the conductive elastic pin 100d, the first positioning hole 300d, the second positioning hole 200c-1, the conductive elastic pin through-hole 200a-2, the positioning protrusions and the positioning grooves.

[0055] As an alternative implementation of the above embodiment, Figure 1 As shown, the fascia moxibustion therapy instrument also includes a heating element 100e and a controller 100f. The heating element 100e is arranged in the first accommodating chamber 100a and is used to heat the moxa cake 400. Generally, the heating element 100e is a heating plate, which is fixed to the cavity wall of the first accommodating chamber 100a. When the moxa cake is placed in the first accommodating chamber 100a, it is close to the end of the moxa cake 400 away from the heat-conducting cover 200. In other embodiments, the heating element 100e can be a heating coil, which is fixed to the cavity wall of the first accommodating chamber 100a and is sleeved and close to the outer periphery of the moxa cake 400.

[0056] The heating element is temperature controlled by the controller 100f in the fascia moxibustion instrument to control the temperature of the moxa cake 400. Figure 8 As shown, the specific control method is:

[0057] In one temperature cycle, the controller 100f controls the heating element 100e to heat the moxa cake 400 to a first temperature, and maintain the temperature of the moxa cake 400 at the first temperature during the first platform cycle, then reduce the temperature of the moxa cake 400 to a second temperature, and maintain the temperature of the moxa cake 400 at the second temperature during the second platform cycle; wherein the first temperature is greater than or equal to the carbonization temperature of the moxa cake 400, and the second temperature is less than the carbonization temperature of the moxa cake 400. That is, in one temperature cycle T 循环 In the process, the moxa cake 400 is first heated to a first temperature, and the moxa cake 400 is kept at the first temperature state to work in the first platform period T1, and then the temperature of the moxa cake 400 is lowered to a second temperature, and the moxa cake 400 is kept at the second temperature state to work in the second platform period T2. In the first platform period, the moxa medicine is in a carbonized state when it is at the first temperature, and its effective ingredients can be fully exerted; after the first platform period is reached, the temperature of the moxa medicine is lowered to the second temperature, and the moxa medicine is kept at the second temperature to work in the second platform period. In the second platform period, the moxa medicine is at the second temperature, and the temperature is reduced. The heat conducted to the fascia moxibustion therapy instrument and the surroundings of the fascia moxibustion therapy instrument becomes lower, and the heat accumulated by the fascia moxibustion therapy instrument in the first platform period is dissipated. The temperature felt by the user is reduced, which can meet the needs of people with poor high temperature resistance, and can also reduce the risk of burns to the user.

[0058] Because the heat-conductive cover 200 in this application's technical solution always stays in close contact with the user's skin, allowing them to instantly sense the temperature. Therefore, in this application's technical solution, the temperature of the mugwort cake 400 is configured to be at a first temperature during the first plateau period and a second temperature during the second plateau period. Generally, the carbonization temperature of the mugwort cake 400 is 183 degrees Celsius, meaning the first temperature is greater than or equal to 183 degrees Celsius, ensuring that the mugwort cake 400 carbonizes and its medicinal properties are released. Generally, the first temperature is between 185 and 195 degrees Celsius, while the second temperature is less than 183 degrees Celsius. Typically, the second temperature is set below 120 degrees Celsius, or even below 100 degrees Celsius. Even if the heat-conductive cover 200 temperature rises when the mugwort cake 400 is at the first temperature, the user can still sense the actual high temperature. Therefore, the user can adjust the ratio of the first and second plateau periods to suit their individual heat tolerance, meeting their individual heat tolerance needs and ensuring the full release of the medicinal ingredients.

[0059] In order to ensure that the moxa cake 400 is in a carbonization state rather than a combustion state at the first temperature, so as to achieve effective and sufficient exertion of the medicinal ingredients, the radial gap between the moxa cake 400 and the first accommodating cavity 100a (and the second accommodating cavity 200b-2) is generally small, and the air in the gap is basically in a non-flowing state, so that the moxa cake 400 is in a non-combustion carbonization state. Figure 7 As shown, when the fascia moxibustion instrument is in a working state, the accommodating cavity is provided with the moxa cake, and the radial gap between the moxa cake and the accommodating cavity is smaller than the diameter of the air hole. For example, the radial gap between the moxa cake 400 and the first accommodating cavity 100a is smaller than the diameter of the air hole 200b-1. Generally, the radial gap between the moxa cake 400 and the accommodating cavity S is smaller than the diameter of the air hole 200b-1.

[0060] During the operation of the fascia moxibustion instrument, the controller 100f sets at least one temperature cycle period according to the user's selection. The temperature of the moxa cake 400 changes periodically over time. In multiple temperature cycle periods, from the initial time, the moxa cake 400 is heated from room temperature to the first temperature, kept at the first temperature, reduced to the second temperature, kept at the second temperature, from the second temperature to the first temperature, kept at the first temperature, reduced to the second temperature, kept at the second temperature, and so on until the end of the temperature cycle period.

[0061] Taking fascia treatment as an example, the controller 100f (such as MCU, CPU, etc.) of the fascia moxibustion instrument proposed in the embodiments of the present application can be connected with the terminal APP or applet through a communication module (such as a Bluetooth or Nb-Lot module); the terminal APP or applet can set the electrode sheet heating working time of the first step of moxibustion, the electrode sheet electric stimulation intensity of the second step of moxibustion, the electrode sheet electric stimulation working time of the second step of moxibustion, the moxa cake 400 heating working time of the third step of moxibustion, the moxa cake 400 heating temperature, the first platform cycle, the second platform cycle, the first temperature and the second temperature through the interface, and send the settings to the internal MCU of the fascia moxibustion instrument through Bluetooth instructions; then the embodiments of the present application can treat the user according to the following steps:

[0062] The moxa cake 400 is placed in the accommodating cavity S, and the size of the moxa cake 400 and the accommodating cavity S maintains a certain gap, which is very small, to ensure that the moxa cake 400 is in a carbonization state rather than a combustion state when reaching 183 degrees Celsius.

[0063] The gel layer 300a is pasted on the fascia part to be treated of the user, and then the controller 100f controls the heating and / or vibration of the adhering assembly 300 to preheat and / or electrically stimulate the surrounding tissue of the treatment part, so as to achieve the relaxation effect of the surrounding tissue in a relaxed state.

[0064] The controller 100f controls the adhesion assembly 300 to stop working, and then the controller 100f controls the heating member 100e to heat the moxa cake 400 according to the gear selected by the user, and the specific steps are as follows: at least one temperature cycle period is set according to the user selection. In the plurality of temperature cycle periods, from the initial time, the moxa cake 400 is heated from room temperature to a first temperature, kept at the first temperature, reduced to a second temperature, kept at the second temperature, from the second temperature to the first temperature, kept at the first temperature, reduced to the second temperature, kept at the second temperature, and so on until the end of the temperature cycle period.

[0065] The fascia moxibustion therapeutic instrument is removed from the part to be treated, and the massage treatment is completed.

[0066] The fascia moxibustion therapeutic instrument provided by the embodiments of the present application can simulate the process that a moxibustion therapist operates a moxa stick to perform moxibustion on a patient, that is, first, the fascia and muscles around the moxibustion part are hot-compressed and then massaged to be relaxed, and then the part is subjected to moxibustion after the fascia and muscles are relaxed.

[0067] The fascia moxibustion therapeutic instrument provided by the embodiments of the present application is described in detail above, and the principles and implementation manners of the present application are described by applying specific examples in this paper, and the above embodiment description is only used to help understand the method of the present application and the core idea thereof; meanwhile, for those skilled in the art, according to the idea of the present application, the specific implementation manner and application range will be changed, and the above description should not be understood as the limitation of the present application.

Claims

1. A fascia moxibustion therapy instrument, characterized in that: include: A host, the host comprising a first accommodating cavity having an opening; the first accommodating cavity is used to place the moxa cake; an adhesive component having a channel; as well as a heat-conducting cover connected to the host and covering the opening; Furthermore, the heat-conducting cover has an air hole communicating with the first accommodating cavity; The heat conductive cover is connected to the adhesive component, passes through the channel, and protrudes from a side of the adhesive component away from the host; Among them, the adhesive component includes a circuit board, and the thermal conductive cover also includes a covering part and a pressure ring. The covering part passes through the channel, and the pressure ring is sleeved on the outer wall of the covering part. The side of the pressure ring facing the host is tightly attached to the side of the circuit board facing away from the host to connect the circuit board to the covering part.

2. The fascia moxibustion therapy instrument according to claim 1, characterized in that: The heat-conducting cover further includes a base portion, wherein the base portion and the covering portion are integrally connected to each other, the base portion is connected to the host, and the covering portion protrudes from a side of the adhesive component facing away from the host; The covering portion covers the opening and has a second accommodating cavity. The first accommodating cavity and the second accommodating cavity form an accommodating cavity body. The covering portion has a plurality of air holes communicating with the accommodating cavity body.

3. The fascia moxibustion therapy instrument according to claim 2, characterized in that: The gland ring is at least partially located within the channel; The side of the gland ring facing away from the main body protrudes from the side of the adhesive component facing away from the main body.

4. The fascia moxibustion therapy instrument according to claim 3, characterized in that: The side of the gland ring facing away from the main machine is located on the side of the base portion facing away from the main machine.

5. The fascia moxibustion therapy instrument according to claim 3 or 4, characterized in that: At least one clamping body is provided at the edge of the base portion, and at least one clamping slot is provided on the host. The clamping bodies are clamped into the corresponding clamping slots one by one.

6. The fascia moxibustion therapy instrument according to claim 5, characterized in that: The base portion has a positioning column on a side facing away from the main unit, the adhesive component has a first positioning hole, and the positioning column is inserted into the first positioning hole.

7. The fascia moxibustion therapy instrument according to claim 6, characterized in that: The circuit board has a through hole communicating with the channel, and the covering portion passes through the channel and the through hole; the first positioning hole is provided on the circuit board; The gland ring has a second positioning hole, and the positioning post is inserted into the second positioning hole.

8. The fascia moxibustion therapy instrument according to claim 1, characterized in that: The distance that the heat conductive cover protrudes from the side of the adhesive component away from the host is greater than or equal to 1 mm.

9. The fascia moxibustion therapy instrument according to claim 1, characterized in that: The adhesive assembly comprises: an electrotherapy component connected to the heat-conductive cover; the electrotherapy component comprises an electrode sheet having a circuit layer with a heating resistor and / or an electrical stimulation output conductor; The gel layer is arranged on the side of the circuit layer away from the host, and the side of the gel layer away from the electrotherapy component is flat.

10. The fascia moxibustion therapy instrument according to claim 1, characterized in that: The host comprises: a heating element, the heating element being disposed in the first accommodating cavity and being used to heat the moxa cake; and A controller is connected to the heating element and is configured to: Within a temperature cycle, the moxa cake is heated to a first temperature by controlling the heating element, and the temperature of the moxa cake is maintained at the first temperature within a first platform cycle, and then the temperature of the moxa cake is reduced to a second temperature, and the temperature of the moxa cake is maintained at the second temperature within a second platform cycle; wherein, the first temperature is greater than or equal to the carbonization temperature of the moxa cake, and the second temperature is less than the carbonization temperature of the moxa cake.

Citation Information

Patent Citations

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