Moxibustion therapy appliance
By designing moxibustion and therapy equipment including cushion body and moxibustion therapy module, the safety hazards and problems of small moxibustion area of existing moxibustion instruments are solved, and a large-area, safe and even moxibustion application of moxibustion is achieved, which is suitable for daily life scenarios.
Patent Information
- Application Number
- CN202510519567.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2025-07-29
AI Technical Summary
Existing moxibustion instruments have safety risks, making it difficult to implement large-scale moxibustion and are not easy to combine in daily life scenarios.
A moxibustion therapy device including a cushion body and a moxibustion therapy module is designed. The cushion body is equipped with a heat dissipation structure and a heating structure. The moxibus heat is evenly dissipated through the blower assembly. The moxibus insert can be inserted into the heating chamber for heating, and has an anti-air load heating structure to ensure safety.
It has achieved large-area moxibustion, which is highly safe and easy to use in daily life, such as backrests, pillows or headrests, and the moxibustion heat is evenly distributed, avoiding open fire moxibustion treatment.
Smart Images

Figure CN120381400A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of physiotherapy equipment, and in particular to a moxibustion therapy device. Background Art
[0002] Moxibustion is a common physical therapy method in traditional Chinese medicine. It is achieved by heating or burning mugwort slices to make them emit heat, which has medicinal effects and provides warm stimulation to the human body surface. It can warm the meridians, dispel cold and dampness, and has antibacterial, anti-inflammatory, and analgesic effects.
[0003] Moxibustion therapy generally uses moxibustion instruments, which are performed by placing mugwort slices in the moxibustion instrument and igniting or heating them. There are many moxibustion instruments in the industry. The more common moxibustion instruments are trumpet-shaped. The trumpet-shaped moxibustion instrument is placed on the body surface, and a moxa stick is inserted into the top of the moxibustion instrument and ignited. Then, the moxa heat is released to the body surface from the bottom of the trumpet. This type of ignited moxibustion instrument has certain safety risks, such as fire hazards or scalding the user during use. In addition, the moxa stick is easy to fall into ash after burning and dirty the use environment, and can only be used for moxibustion on a very small part of the user's body surface. If moxibustion is to be performed on a large area, multiple moxibustion instruments need to be arranged in a matrix on the user's body surface. At present, there are many types of moxibustion devices in the industry, including multifunctional moxibustion devices, such as stick-shaped massage moxibustion devices, which can not only perform moxibustion but also massage. However, the current moxibustion devices still have the problem of needing to ignite moxibustion tablets when in use, which poses a safety hazard. In addition, the moxibustion area on the body surface is small, and the device needs to be handheld or the body needs to be still to cooperate with the moxibustion, which makes it difficult to integrate into daily scenes. Summary of the invention
[0004] The present invention provides a moxibustion therapy device which is safe to use, has a large moxibustion therapy area, and is easy to be combined with daily appliances.
[0005] The technical solution adopted by the present invention is: a moxibustion therapy device, including a cushion body and a moxibustion therapy module installed on the cushion body, the moxibustion therapy module including a shell and a moxibustion heating component installed in the shell, the shell including a surface shell, and the surface shell is formed with a heat dissipation mesh and a moxa cake insertion hole;
[0006] The moxibustion component includes a heat dissipation structure, a heating structure, and an moxa cake insert. The heat dissipation structure includes a heat dissipation cabin and a fan assembly. The hatch end of the heat dissipation cabin is connected to the inner surface of the surface shell and covers the heat dissipation mesh. A through hole is opened on the bottom wall of the heat dissipation cabin. The fan assembly is installed at the through hole to blow air into the through hole.
[0007] The heating structure includes a heating seat, which is installed in the heat dissipation cabin and has a heating cavity formed thereon. The heating cavity is aligned with the moxa cake insertion hole, and the moxa cake insertion piece is removably installed in the moxa cake insertion hole.
[0008] The moxa cake inserter moves the moxa cake into the heating chamber for heating, and the fan assembly blows air into the heat dissipation chamber to dissipate the heat released by the moxa cake through the heat dissipation mesh holes on the surface shell.
[0009] Furthermore, the moxibustion therapy module is installed at the center of the cushion body, and air inlets are opened on two sides of the cushion body to allow external air to enter the moxibustion therapy module through the air inlets.
[0010] Furthermore, the shell includes a bottom shell, and the peripheral wall of the surface shell is connected to the peripheral wall of the bottom shell to form a chamber. An air inlet gap is opened on the peripheral wall of the surface shell or the bottom shell, and the air inlet gap is connected to the air inlet duct on the cushion body to allow external airflow to enter the chamber.
[0011] Furthermore, the bottom of the heat dissipation cabin is an arc bottom, and the groove depth gradually decreases from the through hole to a position away from the through hole.
[0012] Furthermore, the fan assembly includes a mounting base and a fan. The mounting base is installed at the through hole of the bottom wall of the heat dissipation cabin and is used to install the fan. The mounting base is provided with an insulation column, which supports the heating base.
[0013] Furthermore, the moxa cake insert includes an insertion component and a chuck. The insertion component is used to insert the moxa cake. The insertion component is installed to the moxa cake insertion hole on the surface shell, so that the moxa cake is placed in the heating chamber for heating. The chuck is installed on the surface shell at the corresponding moxa cake insertion hole for clamping the insertion component.
[0014] Furthermore, the insertion and extraction assembly includes a rotating part and a heat-resistant part. The outer peripheral side of the rotating part is formed with a side protrusion that cooperates with the chuck. The heat-resistant part is connected to the bottom of the rotating part and is used to clamp the moxa cake and can withstand the temperature of the heated moxa cake and can be insulated from the rotating part.
[0015] Furthermore, the moxibustion therapy device includes an anti-no-load heating structure, which includes a conductive spring sheet arranged on the chuck, so that after the moxa cake insert is inserted, the inserted moxa cake insert presses the conductive spring sheet to connect the heating conductive circuit of the heating seat.
[0016] Furthermore, the moxibustion therapy device includes an anti-no-load heating structure, which includes a metal conductive paint arranged on the outer periphery of the rotating part, and a conductive break of the heating conductive circuit of the heating seat is formed on the peripheral side of the chuck, so that when the rotating part rotates into place after the moxa cake insertion part is inserted, the metal conductive paint will conduct the conductive break.
[0017] Further, an installation hole is formed in the center of the cushion body for installing the moxibustion therapy module. Step grooves are formed at the upper and lower ends of the installation hole. The face shell includes a panel and a peripheral wall protruding from the bottom surface of the panel and adjacent to the outer peripheral side. A peripheral edge is formed between the panel and the peripheral wall for pressing against the step groove at one end of the installation hole. The bottom shell includes a bottom plate and a peripheral wall protruding from the top surface of the bottom plate and adjacent to the outer peripheral side. A peripheral edge is formed between the bottom plate and the peripheral wall for pressing against the step groove at the other end of the installation hole.
[0018] Compared with the prior art, the moxibustion therapy device of the present invention has heat dissipation mesh holes formed on the face shell, which can achieve large-area dissipation of moxibustion heat, facilitating large-area moxibustion therapy of local areas of the body. Moreover, the moxibustion therapy device performs moxibustion without an open flame, and the moxa cake is convenient to load and unload, making it convenient to use in daily life. For example, it can be used as a backrest, a pillow or a headrest while also achieving the moxibustion therapy effect. Additionally, through the structural design of the heat dissipation cabin, the dissipated moxibustion heat can be evenly heated on the user's surface. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the following specific embodiments, they are used to explain the present invention, but should not constitute a limitation to the present invention. In the drawings,
[0020] Figure 1 : A perspective view of the moxibustion therapy device of the present invention;
[0021] Figure 2 : The first exploded view of the moxibustion therapy device of the present invention;
[0022] Figure 3 : A front view of the moxibustion therapy device of the present invention;
[0023] Figure 4 : A cross-sectional view of the moxibustion therapy device of the present invention;
[0024] Figure 5 : The second exploded view of the moxibustion therapy device of the present invention;
[0025] Figure 6 : The exploded view of the moxibustion heat component of the moxibustion therapy device of the present invention;
[0026] Figure 7 : For Figure 5 Another perspective view of the moxibustion heat component shown;
[0027] Figure 8 : A perspective view of the heat dissipation cabin of the moxibustion therapy device of the present invention;
[0028] Figure 9 : A back view of the moxibustion therapy device of the present invention;
[0029] Figure 10 : A top view of the moxa cake for the moxibustion therapy device of the present invention.
[0030] The reference numerals are as follows:
[0031] Cushion body 10, moxibustion therapy module 20, housing 21, front shell 211, bottom shell 212, heat dissipation mesh holes 2111, mugwort cake insertion holes 2112, heat dissipation chamber 31, fan assembly 32, through holes 311, heating base 41, heating cavity 411, mounting holes 11, stepped grooves 111, air inlet duct 12, filter sheet 13, light transmission holes 2113, chamber 201, mounting base 321, fan 322, convex platform 3211, heat insulation columns 323, screw sleeves 3212, base plate 412, heating element 413, cavity cylinder 414, positioning columns 415, insertion and extraction assembly 51, chuck 52, rotating member 511, heat resistant member 512, side convex blocks 5111, fixing columns 5112, fixing grooves 5121, insertion rods 5122, handle cover 513, through sleeve holes 521, notch grooves 522, conductive elastic sheets 61, elastic bands 71, insertion holes 81. Detailed implementation manners
[0032] The following further elaborates on the detailed implementation manners of the present invention with reference to the accompanying drawings. It should be understood that the detailed implementation manners described herein are only for the purpose of illustration and explanation of the present invention, and are not intended to limit the present invention.
[0033] As Figures 1-4 shown, a moxibustion therapy device provided by the present invention includes a cushion body 10 and a moxibustion therapy module 20 mounted on the cushion body 10.
[0034] The moxibustion therapy module 20 includes a housing 21 and a moxibustion heating assembly installed in the housing 21. The housing 21 includes a front shell 211 and a bottom shell 212. Heat dissipation mesh holes 2111 and mugwort cake insertion holes 2112 are formed on the front shell 211.
[0035] Please refer to Figures 5-7 , the moxibustion heating assembly includes a heat dissipation structure, a heating structure, and a mugwort cake insertion member. The heat dissipation structure includes a heat dissipation chamber 31 and a fan assembly 32. The hatch end of the heat dissipation chamber 31 is connected to the inner surface of the front shell 211 and surrounds the heat dissipation mesh holes 2111. Through holes 311 are formed on the bottom wall of the heat dissipation chamber 31 and the fan assembly 32 is installed thereon.
[0036] The heating structure includes a heating base 41. The heating base 41 is installed in the heat dissipation chamber 31, and a heating cavity 411 is formed thereon. The heating cavity 411 faces the mugwort cake insertion holes 2112 and is aligned with the mugwort cake insertion holes 2112. Further, the heating structure includes a heating conductive circuit electrically connected to the heating base 41 for conducting electricity to the heating base 41.
[0037] The mugwort cake insert is used to install the mugwort cake. The mugwort cake insert can be removably installed in the mugwort cake insertion hole 2112 to accommodate the mugwort cake in the heating chamber 411 for heating. The fan assembly 32 blows air into the heat dissipation compartment 31 to dissipate the mugwort heat emitted by the mugwort cake through the heat dissipation mesh 2111 on the surface shell 211.
[0038] The cushion body 10 can be designed to resemble a cushion or pillow, possessing a certain degree of elasticity. It can be made of a leather fabric layer wrapped around PU foam. A mounting hole 11 is formed in the center of the cushion body 10 for receiving the moxibustion module 20. Furthermore, stepped grooves 111 are formed at the upper and lower ends of the mounting hole 11 to accommodate the moxibustion module 20, ensuring a stable and aesthetically pleasing installation of the moxibustion device.
[0039] Furthermore, air inlet ducts 12 are provided on opposite sides of the cushion body 10 to allow external air to enter the mounting hole 11 through the air inlet ducts 12 .
[0040] Furthermore, a filter sheet 13 is provided at the entrance of the air inlet duct 12 for air filtering. The filter sheet 13 is preferably made of a silicone sheet, which is convenient for attaching to the entrance of the air inlet duct 12.
[0041] The housing 211 includes a panel and a peripheral wall protruding from the bottom of the panel and adjacent to the outer periphery. A peripheral edge is formed between the panel and the peripheral wall for pressing against the stepped groove 111. One end of the panel is provided with the moxa cake insertion hole 2112, and the other end is centrally formed with a plurality of light-transmitting holes 2113. The moxa cake insertion hole 2112 is used to insert the moxa cake insert, and the light-transmitting holes 2113 correspond to the phototherapy device to allow light to pass through, such as blue light, infrared light, etc., so that the moxibustion device has a phototherapy function. The heat dissipation mesh 2111 is formed in the surface area other than the moxa cake insertion hole 2112 and the light-transmitting holes 2113, and can be of various hole types. In this embodiment, the heat dissipation mesh 2111 is a grid-like mesh.
[0042] The bottom shell 212 includes a bottom plate and a peripheral wall extending from the top surface of the bottom plate and adjacent to the outer periphery. A peripheral edge is formed between the bottom plate and the peripheral wall for pressing against the stepped groove 111. The peripheral wall contour of the top shell corresponds to the peripheral wall contour of the bottom shell, so that the peripheral wall of the top shell and the peripheral wall of the bottom shell meet, forming a chamber 201, which houses the heat dissipation chamber 31.
[0043] Furthermore, an air inlet notch is opened on the peripheral wall of the surface shell 211 or the bottom shell 212 , and the air inlet notch corresponds to the outlet of the air inlet duct 12 on the cushion body 10 , so that external air can enter the chamber 201 .
[0044] The heat dissipation cabin 31 is used to balance the heat dissipated by the moxibustion heat from the heat dissipation mesh holes 2111 of the front shell 211. A through hole 311 is opened at the bottom surface thereof, and the fan assembly 32 is installed at the through hole 311 to blow air into the through hole 311. The bottom of the heat dissipation cabin 31 is in an arc shape, and the groove depth gradually decreases from the through hole 311 to the place far away from the through hole 311.
[0045] In this embodiment, please refer to Figure 8 , the heat dissipation cabin 31 is in a ladle shape as a whole. The heat dissipation cabin 31 has a first end with a through hole 311 opened and a second end far away from the fan assembly 32. The groove depth in the heat dissipation cabin 31 gradually decreases from the first end to the second end, and the groove depth from the through hole 311 to the periphery of the through hole 311 in the heat dissipation cabin 31 gradually decreases; the center line of the second end to the groove depths on both sides gradually decreases, and the inner wall surface of the heat dissipation cabin 31 is in an arc shape and smoothly transitions as a whole; through such a design of the inner wall surface of the heat dissipation cabin 31, the moxibustion heat can be evenly dissipated from the entire surface of the heat dissipation mesh holes 2111. The specific principle is: at the heating structure, the moxibustion heat has a high temperature and a large distance from the heat dissipation mesh holes 2111. As the distance from the heating structure gradually increases, the moxibustion heat temperature becomes lower and lower, and the distance between the inner bottom surface of the heat dissipation cabin 31 and the heat dissipation mesh holes 2111 becomes closer and closer, shortening the blowing distance. Thus, the moxibustion heat dissipated from the entire heat dissipation mesh holes 2111 has a relatively equivalent temperature, and the local temperature of the heat dissipation mesh holes 2111 will not be too high, improving the uniformity and comfort of the heat received in the moxibustion area when the user is performing moxibustion. It can be understood that if the through hole 311 is opened between the two ends in the heat dissipation cabin 31, the groove depth gradually decreases step by step from the place where the through hole 311 is opened to both ends.
[0046] The fan assembly 32 includes a mounting seat 321 and a fan 322. The mounting seat 321 is installed at the through hole 311 on the bottom wall of the heat dissipation cabin 31, used to install the fan 322 and support the heating seat 41, so that the fan 322 blows air towards the heating seat 41, and there is a preset distance between the heating seat 41 and the fan 322, facilitating the air flow of the fan 322. The fan 322 takes in air from the outside of the heat dissipation cabin 31 and blows air towards the heating seat 41 inside the cabin.
[0047] The top surface of the mounting base 321 is formed with heat insulation columns 323 for supporting the heating base 41 and insulating the heating base 41 from the mounting base 321. In this embodiment, the mounting base 321 has a boss structure, including a boss portion 3211 and a screw sleeve 3212 formed on the bottom surface of the boss portion 3211. A through fan hole 3213 is provided in the middle of the boss portion 3211 for installing the fan 322. Heat insulation columns 323 are erected on the top surface of the boss portion 3211. The screw sleeve 3212 is formed on the bottom surface of the mounting base 321 and adjacent to the periphery. The screw sleeve 3212 penetrates the top surface of the boss portion 3211 for the mounting base 321 to be fixedly connected to the bottom wall of the heat dissipation chamber 31. When the boss portion 3211 is installed on the bottom wall of the heat dissipation chamber 31, its protruding end extends into the through hole 311, and the bottom end abuts against the bottom wall of the heat dissipation chamber 31, providing a screw to pass through the screw sleeve 3212 and lock with the bottom wall of the heat dissipation chamber 31, thereby fixing the mounting base 321 on the bottom wall of the heat dissipation chamber 31. It can be understood that the heat insulation columns 323 can also be formed at the bottom of the heating base 41 and connected to the boss 3211 or the bottom wall of the heat dissipation chamber 31.
[0048] The heating base 41 includes a base plate 412, a heating element 413 formed on the base plate 412, and a cylinder 414 formed on the heating element 413 to enclose a heating cavity 411. The base plate 412 is installed on the heat insulation columns 323 of the mounting base 321, and the heating base 41 is supported by the heat insulation columns 323. A heating sheet is provided in the heating element 413, and the heating sheet is electrically connected to a power source for heating when powered on. The cylinder 414 generally encloses a dimensional space corresponding to the mugwort cake for accommodating the mugwort cake. The mugwort cake is heated by the heating element 413 to emit mugwort heat. Further, a positioning post 415 is provided at the center of the cylinder 414 for inserting into the mugwort cake to position the mugwort cake.
[0049] The mugwort cake inserting member includes an inserting and extracting assembly 51 and a chuck 52. The inserting and extracting assembly 51 is used for inserting and extracting the mugwort cake (as shown, the mugwort cake has an insertion hole 81) and then installing it into the mugwort cake insertion hole 2112 on 11, so that the mugwort cake is accommodated in the heating cavity 411 for heating. The chuck 52 is installed on the face shell 211 corresponding to the mugwort cake insertion hole 2112 for clamping the inserting and extracting assembly 51. Figure 10 As shown, after the inserting and extracting assembly 51 inserts and extracts the mugwort cake (the mugwort cake has an insertion hole 81 as shown), it is installed into the mugwort cake insertion hole 2112 on 11, so that the mugwort cake is accommodated in the heating cavity 411 for heating. The chuck 52 is installed on the face shell 211 corresponding to the mugwort cake insertion hole 2112 for clamping the inserting and extracting assembly 51.
[0050] In this embodiment, the picking component 51 includes a rotating member 511 and a heat-resistant member 512. The rotating member 511 is used for rotation to cooperate with the chuck 52 for buckling. A side convex block 5111 that cooperates with the chuck 52 is formed on the outer peripheral side of the rotating member 511. The heat-resistant member 512 is connected to the bottom of the rotating member 511, and is used for clamping the moxa cake, being able to withstand the temperature of the moxa cake heating, and being heat-insulated from the rotating member 511. Preferably, a fixing column 5112 extends from the bottom surface of the rotating member 511, and a fixing groove 5121 is formed on the top surface of the heat-resistant member 512. The rotating member 511 and the heat-resistant member 512 are fixedly connected by inserting the fixing column 5112 into the fixing groove 5121. A plurality of inserting rods 5122 protrude from the bottom surface of the heat-resistant member 512 for inserting into the clamping holes on the moxa cake, so as to clamp the moxa cake. Preferably, the heat-resistant member 512 is made of silica gel, has elasticity, can withstand high temperatures, and has a heat-insulating effect.
[0051] Furthermore, the picking component 51 further includes a handle cover 513. The handle cover 513 is installed (such as by clamping) on the top surface of the rotating member 511 to facilitate holding and driving the rotation of the rotating member 511. Moreover, the top surface of the handle cover 513 has a unique appearance effect, and different-pattern handle covers 513 can be replaced, such as processing trademark patterns, corporate culture patterns, etc. on the top surface of the handle cover.
[0052] The chuck 52 is installed on the inner surface of the surface shell 211 corresponding to the moxa cake insertion hole 2112. A through-hole 521 corresponding to the moxa cake insertion hole 2112 is formed in the middle of the chuck 52. A plurality of notch grooves 522 are formed at the edge of the through-hole 521. The size of the notch grooves 522 generally corresponds to the size of the side convex block 5111, and the convex block 5111 can pass through. In this way, the picking component 51 penetrates downward into the through-hole 521, and the side convex block 5111 is inserted corresponding to the notch groove 522. After the side convex block 5111 passes through the notch groove 522 and the picking component 51 rotates, the side convex block 5111 is pressed against the edge of the through-hole 521, preventing the picking component 51 from coming out. When it is necessary to withdraw the picking component 51, the picking component 51 is rotated to align the side convex block 5111 with the notch groove 522, and then the picking component 51 can be withdrawn.
[0053] Furthermore, the moxibustion appliance includes an anti-empty-load heating structure to prevent the heating base 41 from being electrified and heated when no moxa cake insertion member is inserted. Since there is no moxa cake insertion member to cover and protect the moxa cake insertion hole 2112, the user may touch the heating base 41 and get scalded. By setting the anti-empty-load heating structure, even if the heating switch of the heating base 41 is turned on when no moxa cake insertion member is inserted into the moxa cake insertion hole 2112, the heating base 41 cannot be electrified and heated.
[0054] Specifically, the anti-airborne heating structure includes a conductive elastic sheet 61 disposed on the chuck 52. When the mugwort cake insertion member is not inserted, the conductive elastic sheet 61 bounces up to disconnect the heating conductive circuit of the heating base 41. After the mugwort cake insertion member is inserted, the inserted mugwort cake insertion member presses against the conductive elastic sheet 61, enabling the heating conductive circuit of the heating base 41 to be connected. Thus, by controlling the heating switch of the heating base 41, the heating on and off of the heating base 41 can be controlled. It can be understood that conductive paint can also be provided on the outer periphery of the rotating member 511. The heating conductive circuit of the heating base 41 is led through the chuck 52, and a conductive break is formed on the periphery of the chuck 52. When the rotating member 511 rotates into place after the mugwort cake insertion member is inserted, the conductive paint conducts the conductive break, thereby conducting the heating conductive circuit of the heating base 41.
[0055] It can be understood that the moxibustion therapy apparatus includes a circuit board and a power source, which can be disposed in the bottom case 212 and are electrically connected to the blower 322, the heating element 413, and the light therapy device to electrically control the on and off of the blower 322, the heating element 413, and the light therapy device.
[0056] It can be understood that the moxibustion therapy apparatus includes a controller (not shown in the figure). The controller is electrically connected to the circuit board through a wire to control the on and off and gear adjustment of the blower 322 and the heating element 413. Further, a cloth bag is formed on the outer peripheral side of the cushion body 10 for accommodating the controller.
[0057] It can be understood that the moxibustion therapy apparatus includes an elastic band 71, which is installed on the bottom surface of the bottom case 212 for elastically binding the moxibustion therapy apparatus to an external object, such as a household seat or a car seat, and using the moxibustion therapy apparatus as a backrest.
[0058] It can be understood that in order to further adjust the heat dissipation uniformity, the inclination angle of the heat dissipation mesh holes 2111 can be adjusted.
[0059] When using the moxibustion therapy apparatus of the present invention, insert the mugwort cake through the insertion and extraction assembly 51 and install it into the mugwort cake insertion hole 2112. The mugwort cake is accommodated in the heating cavity 411. Then start the heating base 41. The mugwort cake will emit mugwort heat when heated. The mugwort heat dissipates from the orifice of the heating cavity 411 into the heat dissipation chamber 31. Start the blower 322. The blower 322 sucks air from the chamber 201 and blows it into the heat dissipation chamber 31. The air flow in the chamber 201 flows in through the air inlet ducts 12 on both sides of the cushion body 10. The mugwort heat in the heat dissipation chamber 31 dissipates from the heat dissipation mesh holes 2111. Through the structural design of the heat dissipation chamber 31, the mugwort heat can be evenly dissipated from the heat dissipation mesh holes 2111, thus forming an air flow path that enters from both sides of the cushion body 10 and dissipates from the heat dissipation mesh holes 2111 of the front shell 211.
[0060] The moxibustion device of the present invention has heat dissipation mesh holes 2111 formed on the surface shell 211, realizing large-area emission of moxibustion heat, facilitating large-area moxibustion therapy of local body areas with moxibustion heat. Moreover, the moxibustion device performs moxibustion without open flame, and the moxibustion cake is convenient to load and unload, facilitating use in daily life. For example, while it can be used as a backrest, a pillow or a headrest, it can also achieve the moxibustion effect. Furthermore, through the structural design of the heat dissipation chamber, the emitted moxibustion heat can be evenly heated on the user's surface.
[0061] As long as it does not violate the idea of the present invention, any combination of various different embodiments of the present invention shall be regarded as the content disclosed in the present invention; within the scope of the technical concept of the present invention, various simple modifications of the technical solution and any combination of different embodiments that do not violate the idea of the present invention shall be within the protection scope of the present invention.
Claims
1. An moxibustion therapy device, comprising a cushion body (10) and an moxibustion therapy module (20) installed on the cushion body (10), characterized in that: The moxibustion therapy module (20) comprises a housing (21) and a moxibustion heating component installed in the housing (21); the housing (21) comprises a surface shell (211); and the surface shell (211) is formed with a heat dissipation mesh (2111) and a moxa cake insertion hole (2112); The moxibustion component includes a heat dissipation structure, a heating structure, and an moxa cake insert. The heat dissipation structure includes a heat dissipation cabin (31) and a fan assembly (32). The hatch end of the heat dissipation cabin (31) is connected to the inner surface of the surface shell (211) and covers the heat dissipation mesh (2111). A through hole (311) is opened on the bottom wall of the heat dissipation cabin (31). The fan assembly (32) is installed at the through hole (311) to blow air into the through hole (311). The heating structure comprises a heating seat (41), which is installed in the heat dissipation cabin (31) and has a heating cavity (411) formed thereon. The heating cavity (411) is aligned with the moxa cake insertion hole (2112), and the moxa cake insertion piece is removably installed in the moxa cake insertion hole (2112). The moxa cake is moved into the heating chamber (411) through the moxa cake insert to be heated, and the fan assembly (32) blows air into the heat dissipation chamber (31), dissipating the moxa heat dissipated by the moxa cake through the heat dissipation mesh (2111) on the surface shell (211).
2. The moxibustion device according to claim 1, characterized in that: The moxibustion therapy module (20) is installed at the center of the cushion body (10), and air inlets (12) are provided on opposite sides of the cushion body (10) to allow external air to enter the moxibustion therapy module (20) through the air inlets (12).
3. The moxibustion device according to claim 2, characterized in that: The shell (21) includes a bottom shell (212), the peripheral wall of the surface shell (211) is connected to the peripheral wall of the bottom shell (212) to form a chamber (201), and an air inlet notch (2121) is provided on the peripheral wall of the surface shell (211) or the bottom shell (212), and the air inlet notch (2121) is connected to the air inlet duct (12) on the cushion body (10) to allow external airflow to enter the chamber (201).
4. The moxibustion device according to claim 1, wherein: The bottom of the heat dissipation cabin (31) is in an arc shape, and the groove depth gradually decreases from the through hole (311) to a position away from the through hole (311).
5. The moxibustion device according to claim 4, wherein: The fan assembly (32) comprises a mounting seat (321) and a fan (322). The mounting seat (321) is mounted at a through hole (311) on the bottom wall of the heat dissipation cabin (31) and is used to mount the fan (322). A heat insulation column (323) is provided on the mounting seat (321), and the heat insulation column (323) supports the heating seat (41).
6. The moxibustion device according to claim 1, wherein: The mugwort cake inserting piece comprises an inserting assembly (51) and a chuck (52). The inserting assembly (51) is used to insert the mugwort cake. The inserting assembly (51) is mounted to the mugwort cake inserting hole (2112) on the surface shell (211), so that the mugwort cake is accommodated in the heating chamber (411) for heating. The chuck (52) is mounted on the surface shell (211) at a position corresponding to the mugwort cake inserting hole (2112) and is used to clamp the inserting assembly (51).
7. The moxibustion device according to claim 6, wherein: The picking component (51) includes a rotating member (511) and a heat-resistant member (512). A side bump (5111) that cooperates with the chuck (52) is formed on the outer peripheral side of the rotating member (511). The heat-resistant member (512) is connected to the bottom of the rotating member (511) and is used for inserting and holding the moxa cake, capable of withstanding the temperature of the heated moxa cake and insulating from the rotating member (511).
8. The moxibustion apparatus according to claim 6, characterized in that: It includes an anti-airborne heating structure. The anti-airborne heating structure includes a conductive elastic sheet (61) provided on the chuck (52). After the moxa cake inserting member is inserted, the moxa cake inserting member presses against the conductive elastic sheet (61), so that the heating conductive circuit of the heating base (41) is turned on.
9. The moxibustion device according to claim 6, characterized in that: It includes an anti-airborne heating structure. The anti-airborne heating structure includes conductive paint provided on the outer periphery of the rotating member (511). A conductive break of the heating conductive circuit of the heating base (41) is formed on the peripheral side of the chuck (52). When the rotating member (511) rotates into place after the moxa cake inserting member is inserted, the conductive paint conducts the conductive break.
10. The moxibustion device according to claim 1, characterized in that: An installation hole (11) is formed in the center of the cushion body (10) for installing the moxibustion therapy module (20). Step grooves (111) are formed at the upper and lower ends of the installation hole (11). The face shell (211) includes a panel and a peripheral wall protruding from the bottom surface of the panel and adjacent to the outer peripheral side. A peripheral edge is formed between the panel and the peripheral wall for pressing against the step groove (111) at one end of the installation hole (11). The bottom shell (212) includes a bottom plate and a peripheral wall protruding from the top surface of the bottom plate and adjacent to the outer peripheral side. A peripheral edge is formed between the bottom plate and the peripheral wall for pressing against the step groove (111) at the other end of the installation hole (11).