Moxibustion physiotherapy device

By using a linkage structure of fan-shaped mesh flipping and moxibustion needle shaking, the problem of moxa ash accumulation is solved, achieving automated ash removal and smoke purification, thus improving the ease of use and therapeutic effect of moxibustion equipment.

CN122478751APending Publication Date: 2026-07-31TIANJIN UNIV OF TRADITIONAL CHINESE MEDICINE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
TIANJIN UNIV OF TRADITIONAL CHINESE MEDICINE
Filing Date
2026-06-05
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

In existing moxibustion equipment, moxa ash tends to accumulate on the ash collection mesh, hindering the conduction of heat and smoke, reducing the therapeutic effect, and the ash removal method is inconvenient and poses a risk of burns.

Method used

It adopts a dual linkage structure of periodic flipping of the fan-shaped mesh and shaking of the moxibustion needle, combined with a purification mechanism, to achieve automatic cleaning of moxa ash and purification of smoke, avoiding the accumulation of moxa ash and burns.

Benefits of technology

It achieves automated ash removal during the moxibustion process, ensuring therapeutic effects, reducing the generation of harmful fumes, reducing labor intensity, and improving the consistency and safety of the therapy.

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Abstract

This invention relates to the field of moxibustion equipment technology, specifically to a moxibustion therapy device, comprising a body and a ash-collecting mechanism. The body is equipped with a moxibustion head mounted on an adjustable bracket, and the moxibustion head contains a moxibustion rotating component. The ash-collecting mechanism includes a mounting ring, several fan-shaped meshes, and a collecting component. The mounting ring is detachably mounted on the bottom of the moxibustion head. The several fan-shaped meshes rotate on the inside of the mounting ring via rotating shafts, forming a complete annular mesh. Each of the rotating shafts has a rotating component near the center of the mounting ring. The collecting component is located below the fan-shaped meshes. The rotating component drives the fan-shaped meshes to periodically rotate, automatically pouring the ash intercepted on the meshes into a strip-shaped collecting shell, eliminating the need for manual cleaning. This prevents ash accumulation from obstructing the transfer of heat and smoke during moxibustion, ensuring the therapeutic effect, and preventing ash from falling and burning the skin.
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Description

Technical Field

[0001] This invention relates to the field of moxibustion equipment technology, and specifically to a moxibustion therapy device. Background Technology

[0002] Moxibustion, as a traditional Chinese medicine external treatment method, relies on the warming effect and medicinal smoke generated by burning moxa sticks / cones to act on acupoints on the human body. It can warm and unblock the meridians, dispel cold and dampness, and regulate qi and blood. It is widely used in rehabilitation therapy and health care.

[0003] While current automated moxibustion equipment on the market can achieve functions such as fixing moxa sticks, simple rotary moxibustion, and smoke purification, in actual use, most existing moxibustion equipment uses a fixed ash-collecting net to collect the ash produced by burning moxa sticks. The ash tends to accumulate on the ash-collecting net, which not only hinders the downward conduction of heat and smoke, reducing the therapeutic effect of moxibustion, but also easily falls off and causes skin burns if the accumulation is too thick. Conventional ash removal methods are mostly manual disassembly and cleaning or simple vibration to shake off the ash, which cannot automatically and continuously remove ash during moxibustion, resulting in poor ease of use. Summary of the Invention

[0004] To address the shortcomings of existing technologies, this invention proposes a moxibustion therapy device to solve the technical problem that most moxibustion devices use fixed ash-collecting nets to collect the ash produced by burning moxa sticks. The ash tends to accumulate on the nets, which not only hinders the downward conduction of heat and smoke but also reduces the therapeutic effect of moxibustion.

[0005] The technical solution adopted in this invention is a moxibustion therapy device, comprising:

[0006] The body has an adjustable bracket on which a moxibustion head is mounted, and the moxibustion head has a moxibustion rotating component inside;

[0007] The ash-collecting mechanism includes an installation ring, several fan-shaped meshes, and a collection component. The installation ring is detachably installed at the bottom of the moxibustion head. The several fan-shaped meshes are all rotated inside the installation ring via rotating shafts. The several fan-shaped meshes together form a complete ring mesh. Each of the several rotating shafts has a rotating component at one end near the center of the installation ring. The collection component is located below the several fan-shaped meshes.

[0008] In a preferred embodiment, the moxibustion rotating component includes a motor, a disc, and two moxibustion needles. The motor is installed inside the moxibustion head, and the output shaft of the motor is connected to the disc. The two moxibustion needles are symmetrically installed on the underside of the disc.

[0009] In a preferred embodiment, a fixing ring is provided in the middle of the mounting ring, and the ends of several rotating shafts are all mounted to the fixing ring, with the rotating assembly disposed on the fixing ring.

[0010] In a preferred embodiment, the rotating component includes:

[0011] A sliding shaft is slidably mounted on a fixed ring along the axial direction of the rotating shaft. A circular groove is provided at one end of the rotating shaft near the fixed ring. One end of the sliding shaft extends into the circular groove, and the other end extends into the fixed ring. A first spring is installed on the fixed ring. The first spring is used to cause the sliding shaft to slide inside the fixed ring. A spiral groove is provided in the circular groove, and a guide block located in the spiral groove is fixed to the sliding shaft.

[0012] A connecting shaft is fixed to the center of the disc. The lower end of the connecting shaft extends into a fixing ring and is fixed with a trapezoidal push block for pushing the sliding shaft. The line connecting the end of the trapezoidal push block to the connecting shaft is perpendicular to the line connecting the two moxibustion needles.

[0013] In a preferred embodiment, the collection assembly includes a connecting seat and a strip-shaped collection shell. The connecting seat is rotatably mounted on the bottom of the fixing ring, and the strip-shaped collection shell is detachably mounted below the connecting seat. The position of the strip-shaped collection shell corresponds to that of the trapezoidal push block. The connecting seat has a connecting groove, and a connecting block matching the connecting groove is fixed at the lower end of the connecting shaft.

[0014] In a preferred embodiment, the disc has a groove, the moxibustion needle slides in the groove, a second spring is provided between the moxibustion needle and the side wall of the groove, and the moxibustion head is provided with a pushing component for pushing the moxibustion needle to vibrate.

[0015] In a preferred embodiment, the actuating component includes:

[0016] A ring track is installed at the bottom of a disc. A top ring is slidably installed longitudinally inside the ring track. The disc has a strip groove. The two ends of the strip groove are connected to the ring track and the sliding groove, respectively. A push rod is slidably installed inside the strip groove. One end of the push rod abuts against the moxibustion needle, and the other end extends into the ring track and is machined with a bevel.

[0017] The lifting component, installed inside the moxibustion head, is used to push the top ring upwards.

[0018] In a preferred embodiment, the lifting member includes a collar that is longitudinally fixed inside the moxibustion head by a support rod. A pin located below the top ring is slidably installed inside the collar. The pin is directly above one of the rotating shafts. When the rotating shaft drives the fan-shaped mesh to flip upward, the fan-shaped mesh can push the pin upward.

[0019] In a preferred embodiment, the body is provided with a purification mechanism, which is connected to the upper end of the moxibustion head via a pipe.

[0020] As can be seen from the above technical solution, the beneficial technical effects of the present invention are as follows:

[0021] 1. This invention uses a rotating component to drive the fan-shaped mesh to rotate periodically, automatically pouring the moxa ash intercepted on the fan-shaped mesh into the strip-shaped collection shell. This eliminates the need for manual cleaning, prevents the accumulation of moxa ash from blocking the transmission of heat and smoke during moxibustion, ensures the therapeutic effect, and prevents the moxa ash from falling and burning the skin.

[0022] 2. During the fan-shaped mesh flipping process of this invention, the airflow inside the moxibustion head can be increased, allowing the moxibustion column to burn more completely and reducing the generation of harmful smoke. This not only improves the therapeutic effect but also reduces pollution to human health and the environment.

[0023] 3. The moxibustion rotating component of the present invention realizes automated rotary moxibustion of the moxibustion column without manual operation, reducing labor intensity, and the rotation speed is uniform, ensuring the consistency of physiotherapy.

[0024] 4. This invention promotes the linkage between the component and the fan-shaped mesh, causing the moxibustion needle to shake back and forth, shaking off the residual moxa ash at the bottom of the moxibustion column, thereby further ensuring the combustion efficiency and therapeutic effect of the moxibustion column. Attached Figure Description

[0025] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the accompanying drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.

[0026] Figure 1 This is a schematic diagram of the structure of an embodiment of the moxibustion therapy device of the present invention;

[0027] Figure 2 This is a schematic diagram of the overall structure of the moxibustion head of the present invention;

[0028] Figure 3 This is a schematic cross-sectional view of the moxibustion head of the present invention;

[0029] Figure 4 for Figure 3 Enlarged structural diagram at point A;

[0030] Figure 5 for Figure 3 Enlarged structural diagram at point B;

[0031] Figure 6 This is a schematic diagram of the structure of the moxibustion rotating component of the present invention;

[0032] Figure 7 This is a schematic diagram of the ash receiving mechanism of the present invention;

[0033] Figure 8 for Figure 7 A magnified schematic diagram of the structure at point C.

[0034] Figure label:

[0035] 1-Body, 101-Pipe, 11-Adjustable bracket, 12-Moxibustion head, 13-Motor, 14-Disc, 141-Slide groove, 142-Second spring, 15-Moxibustion needle, 2-Mounting ring, 201-Snap buckle, 21-Fan-shaped mesh, 211-Rotating shaft, 212-Circular groove, 213-Spiral groove, 22-Collection assembly, 221-Connecting seat, 222-Strip collection shell, 223-Connecting groove, 23-Fixing ring, 24-Sliding shaft, 241-Guide block, 25-First spring, 26-Connecting shaft, 261-Connecting block, 27-Trapezoidal push block, 3-Annular rail, 31-Top ring, 32-Strip groove, 33-Push rod, 34-Collar, 35-Ejector needle. Detailed Implementation

[0036] The embodiments of the technical solution of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the technical solution of the present invention and are therefore intended to limit the scope of protection of the present invention.

[0037] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application should have the ordinary meaning as understood by one of ordinary skill in the art to which this invention pertains.

[0038] Example:

[0039] like Figure 1-8 As shown, this embodiment provides a moxibustion therapy device, including a body 1 and an ash-collecting mechanism. The specific structure and connection relationship of each component are as follows:

[0040] The main body 1 serves as the mounting base for the entire device. It is equipped with a moxibustion head 12 via an adjustable bracket 11. The adjustable bracket 11 adopts a telescopic and rotatable telescopic rod structure, which can flexibly adjust the height and angle of the moxibustion head 12 to suit the physiotherapy needs of different parts of the human body.

[0041] The moxibustion head 12 is a hollow shell structure with an open bottom, and its interior is equipped with a moxibustion rotating component for achieving rotary moxibustion.

[0042] The moxibustion rotating component includes a motor 13, a disc 14, and two moxibustion needles 15. The motor 13 is fixedly mounted on the top of the inner wall of the moxibustion head 12 by bolts. The output shaft of the motor 13 extends vertically downward and is fixedly connected to the center of the disc 14. The motor 13 is a low-speed stepper motor, which can drive the disc 14 to rotate slowly and smoothly. The two moxibustion needles 15 are symmetrically mounted on the lower side of the disc 14 for inserting and fixing the moxibustion column. The symmetrical arrangement of the two moxibustion needles 15 can ensure the uniformity of the rotary moxibustion.

[0043] The ash-collecting mechanism is used to intercept and collect the ash produced by the burning moxibustion column, and includes an installation ring 2, several fan-shaped meshes 21, and a collection component 22. The installation ring 2 is detachably installed at the bottom of the moxibustion head 12 via a snap fastener 201. The snap fastener 201 facilitates the removal and installation of the installation ring 2, and makes subsequent cleaning and maintenance easier.

[0044] Several fan-shaped meshes 21 are rotatably installed on the inner side of the mounting ring 2 via a rotating shaft 211. The fan-shaped meshes 21 are made of high-temperature resistant and corrosion-resistant metal mesh. Several fan-shaped meshes 21 are evenly distributed to form a complete ring mesh, which is used to intercept the ash produced by the burning moxibustion column, without affecting the transmission of heat and smoke from moxibustion.

[0045] A fixing ring 23 is provided in the middle of the mounting ring 2. The fixing ring 23 can be fixedly connected to the mounting ring 2 via a connecting rod. Several rotating shafts 211 are rotatably connected to the fixing ring 23 at one end near the center of the mounting ring 2. The rotating shafts 211 can rotate around their own axis, thereby driving the fan-shaped mesh 21 to flip.

[0046] Several rotating shafts 211 are equipped with rotating components at one end near the fixed ring 23. The rotating components are used to drive the fan-shaped net 21 to rotate upward along the rotating shaft 211, so that the fan-shaped net 21 is in a vertical state, and the ash on the fan-shaped net 21 is poured downward into the collection component 22.

[0047] The rotating assembly includes a sliding shaft 24 and a connecting shaft 26. The sliding shaft 24 is slidably mounted on a fixed ring 23 along the axial direction of the rotating shaft 211. The fixed ring 23 has a sliding hole that matches the sliding shaft 24, allowing the sliding shaft 24 to slide along the sliding hole. A circular groove 212 is formed at one end of the rotating shaft 211 near the fixed ring 23. One end of the sliding shaft 24 extends into the circular groove 212, and the other end extends into the fixed ring 23. A first spring 25 is mounted on the fixed ring 23 to cause the sliding shaft 24 to slide inward toward the inside of the fixed ring 23, thereby resetting the sliding shaft 24.

[0048] In this embodiment, the sliding hole is a rectangular hole, and the sliding shaft 24 is fixed in the sliding hole and slides in a rectangular block, so that the sliding shaft 24 can slide along the axis of the rotating shaft 211. The first spring 25 is sleeved on the sliding shaft 24, one end of which is fixedly connected to the inner wall of the sliding hole, and the other end is fixedly connected to the rectangular block, so as to realize the reset of the sliding shaft 24.

[0049] A spiral groove 213 is provided on the inner wall of the circular groove 212. A guide block 241 is fixed at one end of the sliding shaft 24 that extends into the circular groove 212. The guide block 241 is slidably installed in the spiral groove 213. When the sliding shaft 24 slides along the axial direction, the guide block 241 slides in the spiral groove 213, which can drive the rotating shaft 211 to rotate around its own axis, thereby driving the fan-shaped mesh 21 to flip.

[0050] The connecting shaft 26 is fixedly connected to the center of the disc 14. The connecting shaft 26 extends vertically downward, with its lower end inserted into the fixing ring 23 and fixed with a trapezoidal push block 27. The trapezoidal push block 27 is used to push the sliding shaft 24 to slide axially. The line connecting the end of the trapezoidal push block 27 to the connecting shaft 26 is perpendicular to the line connecting the two moxibustion needles 15, ensuring that when the trapezoidal push block 27 pushes the fan-shaped mesh 21 to flip, the flipped fan-shaped mesh 21 is offset from the moxibustion column, avoiding affecting the combustion and therapeutic effect of the moxibustion column.

[0051] The collecting assembly 22 is located below several fan-shaped meshes 21 and is used to collect the mugwort ash poured out by the fan-shaped meshes 21. It includes a connecting seat 221 and a strip-shaped collecting shell 222. The connecting seat 221 is rotatably mounted on the bottom of the fixing ring 23 and can rotate about the axis of the fixing ring 23. The strip-shaped collecting shell 222 is detachably mounted below the connecting seat 221 by bolts, which facilitates subsequent cleaning of the collected mugwort ash.

[0052] The strip-shaped collection shell 222 corresponds to the trapezoidal pusher 27, that is, the length direction of the strip-shaped collection shell 222 is perpendicular to the line connecting the two moxibustion needles 15, ensuring that the strip-shaped collection shell 222 is not directly below the two moxibustion columns and will not obstruct the combustion and physiotherapy of the moxibustion columns. At the same time, it ensures that when the fan-shaped mesh 21 is flipped, the moxa ash can be accurately poured into the strip-shaped collection shell 222.

[0053] The top of the connecting seat 221 is provided with a connecting groove 223, and the lower end of the connecting shaft 26 is fixed with a connecting block 261 that matches the connecting groove 223. After the mounting ring 2 is fixed on the moxibustion head 12, the connecting block 261 is inserted into the connecting groove 223, so that the connecting seat 221 and the connecting shaft 26 are connected to each other, thereby enabling the connecting seat 221 and the strip collecting shell 222 to rotate synchronously with the disc 14, ensuring that the strip collecting shell 222 always corresponds to the flipped fan-shaped mesh 21, and realizing the effective collection of moxa ash.

[0054] Each rotation of the fan-shaped mesh increases airflow, promotes internal heat dissipation, and prevents the internal temperature of the moxibustion head from becoming too high, thus achieving dynamic temperature control during the physiotherapy process.

[0055] A groove 141 is provided on the disc 14, and the groove 141 is arranged radially along the disc 14. The moxibustion needle 15 is slidably installed in the groove 141. A second spring 142 is provided between the moxibustion needle 15 and the side wall of the groove 141. One end of the second spring 142 is fixedly connected to the moxibustion needle 15, and the other end is fixedly connected to the side wall of the groove 141, which is used to realize the reset of the moxibustion needle 15. The moxibustion head 12 is provided with a pushing component for shaking the moxibustion needle 15 to shake off the residual moxa ash on the surface of the moxibustion column.

[0056] The pushing assembly includes an annular rail 3 and a lifting component. The annular rail 3 is bolted to the bottom of the disc 14. The annular rail 3 has an annular structure, and a top ring 31 is slidably mounted longitudinally inside it. The top ring 31 can slide up and down along the axial direction of the annular rail 3. A strip groove 32 is provided on the disc 14. The strip groove 32 is arranged radially along the disc 14. The two ends of the strip groove 32 are respectively connected to the interior of the annular rail 3 and the sliding groove 141. A push rod 33 is slidably mounted in the strip groove 32. One end of the push rod 33 abuts against the moxibustion needle 15, and the other end extends into the annular rail 3 and is machined with a bevel, so that the push rod 33 can slide horizontally when the top ring 31 moves upward.

[0057] The lifting component includes a collar 34 and a lifting needle 35. The collar 34 is longitudinally fixed to the inner wall of the moxibustion head 12 by a support rod. One end of the support rod is fixedly connected to the inner wall of the moxibustion head 12, and the other end is fixedly connected to the collar 34. The collar 34 is vertically arranged, and the lifting needle 35 is slidably installed inside it. The lifting needle 35 is located below the top ring 31, and the lower end of the lifting needle 35 is directly above one of the rotating shafts 211. When the rotating shaft 211 drives the fan-shaped mesh 21 to rotate upward, the upper end of the fan-shaped mesh 21 can push the lifting needle 35 to move upward, thereby driving the top ring 31 to move upward.

[0058] The main body 1 is equipped with a purification mechanism, which is connected to the upper end of the moxibustion head 12 via a pipe 101. One end of the pipe 101 communicates with the interior of the moxibustion head 12, and the other end communicates with the air inlet of the purification mechanism. The purification mechanism has a built-in negative pressure fan and a filter assembly. When the negative pressure fan is working, it generates suction to draw the smoke generated by the combustion of the moxibustion column inside the moxibustion head 12 into the purification mechanism. The filter assembly adopts a combination structure of activated carbon filter layer and HEPA filter layer, which can effectively filter harmful particulate matter and harmful gases in the smoke. The filtered clean gas is then discharged into the air, reducing smoke pollution and protecting human health.

[0059] At the same time, the high-temperature fumes are extracted in time, which can significantly reduce the internal temperature of the moxibustion head, further prevent high-temperature burns, and improve the safety of moxibustion.

[0060] In this embodiment, the working process of the moxibustion therapy device is as follows:

[0061] 1. Preparation: Insert the moxibustion column into the two moxibustion needles 15 and ignite the moxibustion column; install the mounting ring 2 at the bottom of the moxibustion head 12 through the buckle 201. At this time, the connecting block 261 at the lower end of the connecting shaft 26 is inserted into the connecting groove 223 of the connecting seat 221 to realize the connection between the connecting seat 221 and the connecting shaft 26; adjust the height and angle of the moxibustion head 12 through the adjustable bracket 11 so that the moxibustion head 12 is close to the part of the patient that needs physiotherapy.

[0062] 2. Rotary moxibustion operation: Start motor 13, motor 13 drives disc 14 to rotate slowly, disc 14 drives two moxibustion needles 15 and moxibustion column to rotate synchronously, realizing automated rotary moxibustion for patients; at the same time, disc 14 drives connecting shaft 26 to rotate synchronously, connecting shaft 26 drives connecting seat 221 and strip collection shell 222 to rotate synchronously, while mounting ring 2 is fixedly connected to moxibustion head 12, so fixing ring 23, fan-shaped mesh 21 and sliding shaft 24 all remain stationary.

[0063] 3. Ash Interception and Automatic Cleaning: Ash produced by the burning moxa stick falls downwards onto several fan-shaped meshes 21, which intercept the ash. As the connecting shaft 26 rotates, the trapezoidal push block 27 rotates synchronously. When the inclined surface of the trapezoidal push block 27 abuts against the end of the sliding shaft 24, it pushes the sliding shaft 24 to slide outwards towards the fixed ring 23. The guide block 241 on the sliding shaft 24 slides within the spiral groove 213, causing the rotating shaft 211 to rotate around its own axis, thereby causing the fan-shaped meshes 21 to flip upwards to a vertical position. The ash on the fan-shaped mesh 21 is tilted downwards into the strip-shaped collection shell 222 below under the action of gravity; when the trapezoidal pusher 27 leaves the sliding shaft 24, the elastic force of the first spring 25 pushes the sliding shaft 24 to reset, the sliding shaft 24 drives the guide block 241 to slide in the opposite direction, and then drives the rotating shaft 211 to rotate in the opposite direction, the fan-shaped mesh 21 flips downwards to a horizontal state, and continues to intercept the ash; the connecting shaft 26 continues to rotate, driving multiple fan-shaped meshes 21 to rotate periodically in sequence, realizing automatic and continuous cleaning of ash and avoiding the accumulation of ash.

[0064] 4. Shaking off residual moxa ash: When the corresponding fan-shaped mesh 21 flips upward, its upper end pushes the top needle 35 upward. The top needle 35 pushes the top ring 31 to slide upward along the annular track 3. The top ring 31 pushes the inclined surface of the push rod 33, causing the push rod 33 to slide horizontally along the strip groove 32. The push rod 33 pushes the moxibustion needle 15 to slide along the sliding groove 141, and the second spring 142 is compressed. When the fan-shaped mesh 21 flips downward and leaves the top needle 35, the elastic force of the second spring 142 pushes the moxibustion needle 15 to reset, thereby driving the push rod 33 and the top ring 31 to reset. In this way, the moxibustion needle 15 shakes back and forth, causing the moxibustion column to shake, shaking off the residual moxa ash at the bottom of the moxibustion column onto the fan-shaped mesh 21 for easy cleaning later.

[0065] 5. Smoke purification: Activate the negative pressure fan in the purification mechanism. The negative pressure fan generates suction, which draws the smoke from the moxibustion head 12 into the purification mechanism through the pipe 101. After the smoke is filtered by the filter component, harmful particles and harmful gases are intercepted, and clean gas is discharged into the air, thus achieving smoke purification.

[0066] 6. End of work: After moxibustion, turn off motor 13 and negative pressure fan. After the moxibustion column is extinguished, remove the mounting ring 2 from the moxibustion head 12, remove the strip collection shell 222, clean out the moxa ash inside, and reinstall it for the next use.

[0067] Through the working process of the above-described moxibustion therapy device, it can be seen that the present invention has the following beneficial effects:

[0068] 1. Dual-linkage dust removal, with better performance than similar single-function dust removal devices;

[0069] This invention employs a dual-linkage structure of periodic flipping of a fan-shaped mesh and shaking of moxibustion needles, which can simultaneously remove surface ash and bottom ash from the moxa stick. Compared with similar products that only have a single ash collection or single flipping ash removal function, the ash removal is more thorough, effectively avoiding the problem of heat attenuation caused by residual moxa ash clogging the combustion channel, resulting in a more stable and lasting therapeutic effect.

[0070] 2. Simultaneous ash removal and oxygenation result in superior combustion efficiency and environmental friendliness;

[0071] During the fan-shaped mesh rotation process, this invention actively increases airflow within the moxibustion head, supplementing oxygen for the burning moxa stick and achieving simultaneous ash removal and oxygenation. Compared to similar products where ash removal and combustion processes are independent, this device results in more complete moxa stick combustion and a significant reduction in harmful smoke production, thus improving therapeutic effects while reducing pollution to human health and the environment.

[0072] 3. The integrated automated design makes operation more convenient and results in higher consistency;

[0073] This invention integrates ash removal, oxygenation, and rotary moxibustion functions into an automated, interconnected system. It achieves automatic rotary moxibustion and complete ash removal of the moxibustion column without manual intervention. Compared to similar products that require manual switching between ash removal and moxibustion modes or have independent functional modules, this device has a lower operating threshold and offers uniform and controllable rotation speed, ensuring consistent temperature, contact distance, and effective range for each treatment, resulting in better repeatability of effects.

[0074] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be covered within the scope of the claims and specification of the present invention.

Claims

1. A moxibustion therapy device, characterized by, include: The body (1) is equipped with a moxibustion head (12) via an adjustable bracket (11), and the moxibustion head (12) is provided with a moxibustion rotating component; The ash-collecting mechanism includes an installation ring (2), several fan-shaped meshes (21), and a collection component (22). The installation ring (2) is detachably installed at the bottom of the moxibustion head (12). The several fan-shaped meshes (21) are all rotated inside the installation ring (2) via a rotating shaft (211). The several fan-shaped meshes (21) together form a complete ring mesh. The rotating shafts (211) are all provided with a rotating component at one end near the center of the installation ring (2). The collection component (22) is located below the several fan-shaped meshes (21).

2. The moxibustion therapy device according to claim 1, characterized in that, The moxibustion rotating component includes a motor (13), a disc (14) and two moxibustion needles (15). The motor (13) is installed inside the moxibustion head (12). The output shaft of the motor (13) is connected to the disc (14). The two moxibustion needles (15) are symmetrically installed on the lower side of the disc (14).

3. The moxibustion therapy device according to claim 2, characterized in that, The mounting ring (2) has a fixing ring (23) in the middle, and the ends of several rotating shafts (211) are installed on the fixing ring (23). The rotating component is located on the fixing ring (23).

4. The moxibustion therapy device according to claim 3, characterized in that, The rotating component includes: A sliding shaft (24) is slidably mounted on a fixed ring (23) along the axial direction of a rotating shaft (211). A circular groove (212) is provided at one end of the rotating shaft (211) near the fixed ring (23). One end of the sliding shaft (24) extends into the circular groove (212), and the other end extends into the fixed ring (23). A first spring (25) is installed on the fixed ring (23). The first spring (25) is used to cause the sliding shaft (24) to slide inward toward the fixed ring (23). A spiral groove (213) is provided in the circular groove (212). A guide block (241) located in the spiral groove (213) is fixed to the sliding shaft (24). The connecting shaft (26) is fixed to the center of the disc (14). The lower end of the connecting shaft (26) extends into the fixing ring (23) and is fixed with a trapezoidal push block (27) for pushing the sliding shaft (24). The line connecting the end of the trapezoidal push block (27) to the connecting shaft (26) is perpendicular to the line connecting the two moxibustion needles (15).

5. The moxibustion therapy device according to claim 4, characterized in that, The collection component (22) includes a connecting seat (221) and a strip-shaped collection shell (222). The connecting seat (221) is rotatably mounted on the bottom of the fixing ring (23). The strip-shaped collection shell (222) is detachably mounted below the connecting seat (221). The position of the strip-shaped collection shell (222) corresponds to that of the trapezoidal push block (27). The connecting seat (221) has a connecting groove (223). The lower end of the connecting shaft (26) is fixed with a connecting block (261) that matches the connecting groove (223).

6. The moxibustion therapy device according to claim 5, characterized in that, The disc (14) has a groove (141) and the moxibustion needle (15) slides in the groove (141). A second spring (142) is provided between the moxibustion needle (15) and the side wall of the groove (141). The moxibustion head (12) is provided with a pushing component for pushing the moxibustion needle (15) to vibrate.

7. The moxibustion therapy device according to claim 6, characterized in that, The actuating component includes: A ring track (3) is installed at the bottom of a disc (14). A top ring (31) is longitudinally slidably installed inside the ring track (3). A strip groove (32) is opened on the disc (14). The two ends of the strip groove (32) are connected to the ring track (3) and the sliding groove (141) respectively. A push rod (33) is slidably installed inside the strip groove (32). One end of the push rod (33) abuts against the moxibustion needle (15), and the other end extends into the ring track (3) and is machined with a bevel. The lifting component is installed inside the moxibustion head (12) and is used to push the top ring (31) upward.

8. The moxibustion therapy device according to claim 7, characterized in that, The lifting component includes a collar (34) that is longitudinally fixed inside the moxibustion head (12) by a support rod. A pin (35) located below the top ring (31) is slidably installed inside the collar (34). The pin (35) is located directly above one of the rotating shafts (211). When the rotating shaft (211) drives the fan-shaped mesh (21) to rotate upward, the fan-shaped mesh (21) can push the pin (35) to move upward.

9. The moxibustion therapy device according to claim 1, characterized in that, The body (1) is equipped with a purification mechanism, which is connected to the upper end of the moxibustion head (12) through a pipe (101).