Moxibustion device for governor meridian moxibustion
By designing adjustable moxibustion instruments and preheating functions, the size adaptability and operation complexity of traditional Dumai moxibustion instruments are solved, and flexible adjustment and safe and efficient moxibustion treatment are achieved.
Patent Information
- Application Number
- CN202510708734.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-29
- Publication Date
- 2025-08-15
AI Technical Summary
Traditional Dumai moxibustion instruments have insufficient size adaptability, the replacement of moxa velvet is cumbersome and time-consuming, and the temperature regulation of the ginger powder is missing, which affects the treatment effect and safety.
An adjustable support device is designed, equipped with a moxibustion device with quick replacement of moxa layer and preheating function. The adjustment components are adapted to different body types and combined with self-heating sheets to preheat the ginger powder to achieve flexible adjustment and safe and efficient moxibustion operation.
It improves the coverage and treatment effect of moxibustion, reduces the operating time and scald risk, and enhances the safety and continuity of treatment.
Smart Images

Figure CN120478145A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the medical field, in particular to a moxibustion device for moxibustion of the Governor Vessel. Background Art
[0002] Du Meridian moxibustion, a traditional Chinese medicine treatment, involves applying moxa to the Du Meridian on the back of the body to warm the meridians, dispel cold, and support yang, demonstrating unique advantages in clinical treatment. Traditionally, moxibustion involves placing a moxibustion pad, a support device, a layer of crushed ginger, and a layer of moxa on the patient's back in sequence. The heat generated by the burning moxa penetrates the body to stimulate and regulate the meridians. However, as clinical applications deepen, the limitations of existing technologies have become increasingly apparent: 1. Insufficient size adaptability. Currently, most Du Meridian moxibustion support devices on the market adopt fixed specifications, which are difficult to adapt to the body shapes of different patients. For petite patients, the moxibustion area can easily exceed the effective treatment range, resulting in unnecessary loss of heat energy. For larger patients, the lack of coverage may prevent the Du Meridian from being fully stimulated, affecting the treatment effect. In addition, the fixed structure cannot closely fit the complex physiological curves of the human back, reducing the patient's comfort during treatment.
[0003] 2. The moxa wool replacement process is cumbersome. In traditional Du Meridian moxibustion, the ashes must be manually removed and replaced after a single row of moxa wool has completely burned out. This process is not only complex and time-consuming, but also interrupts treatment, leading to discontinuous heat transfer and weakening the moxibustion's continued effectiveness. Furthermore, cleaning ashes in a high-temperature environment can easily cause burns to the operator, posing a significant safety hazard.
[0004] 3. Lack of temperature control in ground ginger. Ground ginger, a crucial guiding agent for Du Meridian moxibustion, has a low initial temperature when in direct contact with the skin, which can easily cause patients to feel cold and uncomfortable. During moxibustion, the cool ground ginger absorbs a large amount of heat from the burning moxa and uses it to warm itself, diverting effective heat energy and slowing the penetration of the medicinal properties, thus affecting the therapeutic effect of warming the meridians and dispersing cold.
[0005] In response to the above problems, there is an urgent need for a moxibustion device that can adaptively adjust the size, realize rapid replacement of moxa and has the function of preheating ginger powder, so as to improve the safety, convenience and efficacy stability of Du meridian moxibustion treatment. Summary of the Invention
[0006] The present invention aims to provide an innovative moxibustion device for Du Meridian moxibustion, which comprehensively improves the treatment experience and effect of Du Meridian moxibustion by optimizing the structural design and functional integration. The moxibustion device is equipped with an adjustable support device, which can accurately adapt to patients of different body shapes. By flexibly adjusting the use length, it significantly broadens the coverage of moxibustion and enhances the treatment effect. At the same time, the reasonable space adjustment mechanism effectively avoids material waste, which is in line with the concept of green and efficient treatment. In addition, the convenient moxa layer quick replacement design greatly improves the operating efficiency while significantly reducing the risk of burns caused by long-term operation, thereby ensuring patient safety. What is more worth mentioning is that the unique component assembly preheating function can preheat the crushed ginger layer during the assembly process, which can not only avoid the discomfort caused by sudden temperature changes, but also stimulate the synergistic effect of ginger therapy and moxibustion through warmth, further enhancing the treatment effect, and bringing a more scientific, safe and efficient application solution to Du Meridian moxibustion therapy.
[0007] In order to achieve the above object, the present invention adopts the following technical solutions: 4. The repairing kit for automotive dents, according to claim 1, wherein a bottom of the foot stand comprises a through-hole, and the two foot pieces comprise two bosses, wherein the bosses comprise a through-hole, a screw bolt, and a nut. The bosses comprise a through-hole, a screw bolt, and a nut. The bosses comprise a through-hole, a screw bolt, and a nut. The bosses comprise a through-hole, a screw bolt, and a nut. The bosses comprise a through-hole, a screw bolt, and a nut.
[0008] Compared with the existing technology, the moxibustion device for Du meridian moxibustion using the above technical solution has the following beneficial effects: The moxibustion device for Du channel moxibustion of the present invention is used. The base and the bonding layer are used to form the supporting structure of the bottom layer, and the use function of the adjustment component is used to change the use length to adapt to the backs of different body shapes; and through the insertion and assembly of the fixed seat, the adjustment of the length of the storage component and the flexible cloth body at the bottom of the fixed seat, the placement of the crushed ginger layer and the adaptive bending adaptation requirements according to the curvature of the back are met, and at the same time, the corresponding placement cavity is fully adapted, thereby fully increasing the moxibustion coverage and increasing the moxibustion effect; combined with the use of the placement seat, the assembly component and the filter screen, the laying and use of moxa can be realized. Among them, since the placement seat where the moxa layer is located is relatively independent, after a batch of moxa is used up, the currently used placement seat can be quickly taken out, and the prepared other placement seat can be placed in the fixed seat, and then ignited for use, thereby reducing the time spent on replacing moxa in the middle, increasing operating efficiency, increasing efficacy, shortening the overall treatment time, and avoiding the pollution of the outside world caused by cleaning and replacing moxa ashes and reducing the risk of burns, protecting the safety of doctors and the medical environment.
[0009] Preferably, the adjustment assembly includes a control button, a trigger bar, a support portion, a positioning seat, and a damping layer. The bonding layer is a deformable structure, the support portion is a "V"-shaped structure, the base side is divided into multiple support pieces, and adjacent support pieces are connected by the support portion. A rotating shaft is provided at the connection between the support portion and the support piece and in the middle of the support portion. There are multiple positioning seats, which are located on the outside of the support portion. The trigger bar is movably mounted on the positioning seat. The control button is located at the outer end of the trigger bar. The end of the trigger bar away from the control button is provided with an inclined surface adapted to the support portion. The damping layer is provided on the surface of the trigger bar. The control button actuates the trigger bar, and the inclined surface allows the end of the trigger bar to be inserted into the support portion to achieve an expansion effect of the support portion. Manual compression can also achieve the purpose of retracting the support portion. When the support portion is in the expanded or retracted state, the overall usable length of the base can be adjusted. The damping layer's deceleration and buffering effect prevents excessive operation while automatically limiting the adjusted state of the trigger bar, that is, limiting the expansion state of the support portion.
[0010] Preferably, telescopic rods are provided on both sides of the positioning seat facing the adjacent support pieces, and the telescopic rods respectively connect the positioning seat and the adjacent support piece. During the process of expansion or contraction of the support portion, the two adjacent support pieces of the support portion will move. The movable space provided by the telescopic rod structure can meet the connection state of the positioning seat and avoid the problem of the positioning seat hindering the movement of the support piece.
[0011] Preferably, the storage assembly includes a movable shaft, a locking bar, and a docking slot. The fixed seat is composed of two end pieces and a plurality of movable pieces. The movable pieces can be fixedly connected to adjacent movable pieces by the movable shaft. The plurality of movable pieces together form the side edges of the fixed seat in the length direction. The locking bars are provided at both ends of the end pieces, and the docking slots are provided on the upper sides of the movable pieces. The end pieces can be connected to different movable pieces. By applying force to engage or disengage the movable shaft, the movable pieces of the side components of the fixed seat can be added or reduced. The engagement position of the end pieces is selected, and the end pieces and the movable pieces are connected by the locking bar and the docking slot, thereby achieving the purpose of adjusting the usable space of the fixed seat as a whole (the receiving slot).
[0012] Preferably, the assembly component includes a limit block, a guide bar, and a guide groove. The limit block is connected to the guide bar, which is provided at a position of the placement seat corresponding to the end piece. The guide groove is provided in the end piece, and the shape of the guide groove is a combination of the limit block and the guide bar. When the placement seat is placed into the receiving groove from top to bottom, the limit block and the guide bar enter the guide groove simultaneously. The assembly of the placement seat and the fixed seat is achieved by the cooperation of the limit block, the guide bar, and the guide groove.
[0013] Preferably, the inner wall of the guide groove is provided with a thin anti-slip layer, and a grip is provided on the side of the guide bar away from the receiving groove. Utilizing the appropriate limiting effect of the thin anti-slip layer, when the limiting bar and guide bar are in place, the current assembly state can be stabilized without affecting subsequent removal operations. Furthermore, the grip allows removal and replacement of the placement seat without the need for other auxiliary tools.
[0014] Preferably, a moxibustion pad is further included, wherein an adhesive layer is provided on the surface of the moxibustion pad, and a release paper is provided on the side of the adhesive layer away from the moxibustion pad.
[0015] Preferably, a self-heating sheet is provided in the middle of the laminating layer of the moxibustion pad, and the position of the release paper corresponding to the self-heating sheet is a barrier sheet. The moxibustion pad is aseptically packaged in a disposable consumable bag.
[0016] By combining the self-heating sheet with the barrier sheet, the adhesive layer with the release paper, and direct attachment to achieve a connection between the laminating layers, combined with the pre-packaged consumables bag structure, it can provide protection for different patients. The self-heating sheet's independent heat dissipation and its location can preheat the ground ginger, reducing discomfort while enhancing the moxibustion effect. Furthermore, the moxibustion pad's structure provides a buffer between the self-heating sheet (preheating the ground ginger) and the back skin, preventing overheating injuries.
[0017] Preferably, the smoke exhaust structure includes a smoke exhaust hood, a smoke exhaust pipe, and an exhaust fan. The smoke exhaust pipe is partially mounted on the indoor ceiling, while the smoke exhaust pipe is partially located outdoors. The smoke exhaust hood, smoke exhaust pipe, and exhaust fan are connected to exhaust smoke from the placement seat to the outside. The smoke exhaust hood is provided with multiple clamping seats on the side, and the base, fixed seat, and placement seat can be stored in different clamping seats. When not in use, they can be stored in the smoke exhaust hood after cleaning, making them easy to access at any time. The multiple clamping seats can also realize the technical function of accessing multiple components one by one.
[0018] Preferably, the smoking hood is connected to the indoor ceiling via an electrically controlled lifting rod. By controlling the lifting of the smoking hood, on the one hand, the smoke from the burning moxa can be directly recovered to avoid smoke overflowing, and on the other hand, it can be easily used by medical staff of different heights. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 Schematic diagram of the structure of an embodiment of the moxibustion device for Governor Vessel moxibustion of the present invention.
[0020] Figure 2 Schematic diagram of the structure of the moxibustion pad in the embodiment.
[0021] Figure 3 It is a structural schematic diagram of the base, the fixing seat and the placement seat in the separated state in the embodiment.
[0022] Figure 4 Schematic diagram of the structure of the adjustment component in the embodiment.
[0023] Figure 5 Schematic diagram of the structure of the fixing seat in the embodiment.
[0024] Figure 6 It is a structural schematic diagram of the placement seat and assembly components in the embodiment.
[0025] Figure 7 Schematic diagram of the structure of the smoke exhaust hood in the embodiment.
[0026] Figure markings: 1. base; 10. bonding layer; 11. placement cavity; 2. fixing seat; 20. accommodating groove; 21. end sheet; 22. movable sheet; 3. placement seat; 4. adjustment component; 40. control button; 41. trigger bar; 42. support part; 43. positioning seat; 44. rotating shaft; 45. telescopic rod; 5. storage component; 50. movable shaft; 51. positioning bar; 52. docking groove; 6. assembly component; 60. limit block; 61. guide bar; 62. guide groove; 63. gripping part; 7. moxibustion pad; 70. adhesive layer; 71. release paper; 72. self-heating sheet; 73. barrier sheet; 8. smoke exhaust hood; 80. clamping seat; 81. electric lifting rod. DETAILED DESCRIPTION
[0027] The present invention will be further described below with reference to the accompanying drawings.
[0028] like Figures 1 to 7 The moxibustion device for Du meridian moxibustion shown includes a base 1, a fixing seat 2, a placement seat 3, a bonding layer 10, an adjustment component 4, a storage component 5 and an assembly component 6.
[0029] The bonding layer 10 is arranged below the base 1, and the base 1 and the bonding layer 10 together form a rectangular box-shaped structure, and the interior of the base 1 and the bonding layer 10 together form a placement cavity 11. The adjustment component 4 is arranged on the side of the length direction of the base 1. The base 1 changes the use length of the base 1 through the adjustment component 4, and the length of the bonding layer 10 changes synchronously with the use length of the base 1.
[0030] The adjustment component 4 includes a control button 40 , a trigger bar 41 , a support portion 42 , a positioning seat 43 and a damping layer.
[0031] The bonding layer 10 is a deformable structure, and the support portion 42 is a "V"-shaped structure. In this embodiment, the bonding layer 10 adopts a cloth structure and an extra extension sheet is provided at the position corresponding to the support portion 42. The side of the base 1 is divided into multiple support sheets, and adjacent support sheets are connected by the support portion 42. The connection between the support portion 42 and the support sheet and the middle of the support portion 42 are both provided with a rotating shaft 44. There are multiple positioning seats 43, and the positioning seats 43 are provided on the outside of the support portion 42. The trigger bar 41 is movably provided on the positioning seat 43, and the control button 40 is provided at the outer end of the trigger bar 41. The end of the trigger bar 41 away from the control button 40 is provided with an inclined surface adapted to the support portion 42, and the damping layer is provided on the surface of the trigger bar 41.
[0032] At the same time, in order to avoid the fixed structure of the positioning seat 43 from hindering the movement of the adjacent support pieces, in order to match the movement of the support pieces, telescopic rods 45 are provided on both sides of the positioning seat 43 facing the adjacent support pieces, and the telescopic sleeve rods are respectively connected to the positioning seat 43 and the adjacent support pieces.
[0033] The fixing base 2 is a long box-shaped structure, and the bottom of the fixing base 2 is a flexible cloth. The fixing base 2 can be placed in the placement cavity 11. The fixing base 2 has a receiving groove 20 for placing a large amount of chopped ginger. The fixing base 2 changes the use space of the receiving groove 20 through the storage component 5.
[0034] The storage assembly 5 includes a movable shaft 50 , a locking bar 51 and a docking groove 52 .
[0035] The fixed base 2 is composed of two end plates 21 and a plurality of movable plates 22. The movable plates 22 can be fixedly connected to adjacent movable plates 22 via a movable shaft 50. The plurality of movable plates 22 together form the side edges of the fixed base 2 in the longitudinal direction, that is, the movable shaft 50 is connected in a manner that allows the movable plates 22 to be added by the clamping connection. The movable plates 22 can be separated by pressing the movable shaft 50. Different numbers of movable plates 22 can be allocated according to the patient's body shape and the length of the base 1. In this embodiment, the movable plates 22 are connected to the movable shaft 50 via a sheet structure. The movable shaft 50 is made of an elastic material, and adjacent movable plates 22 are provided with holes that are compatible with the movable shaft 50.
[0036] The flexible cloth at the bottom of the fixing seat 2 is provided corresponding to each movable piece 22 , that is, the movable pieces 22 on the left and right sides form an assembly group, and each assembly group is provided with a piece of cloth.
[0037] The latching strips 51 are provided at both ends of the end piece 21 , and the docking slots 52 are opened on the upper side of the movable piece 22 . The end piece 21 can be latched onto different movable pieces 22 to adjust the usable space of the receiving slot 20 .
[0038] There are multiple placement seats 3, which are quickly covered and connected to the accommodating groove 20 through the assembly component 6, and part of the placement seat 3 is located in the accommodating groove 20. The placement seat 3 is a box-shaped structure, and the bottom of the placement seat 3 is a filter screen, and moxa can be loaded in the placement seat 3.
[0039] The assembly component 6 includes a limiting block 60 , a guide bar 61 and a guide groove 62 .
[0040] The limit block 60 is connected to the guide bar 61, and the guide bar 61 is arranged at the position of the placement seat 3 corresponding to the end piece 21. The guide groove 62 is provided on the end piece 21, and the shape of the guide groove 62 is the shape of the combination of the limit block 60 and the guide bar 61. When the placement seat 3 is placed into the accommodating groove 20 from top to bottom, the limit block 60 and the guide bar 61 enter the guide groove 62 at the same time.
[0041] The inner wall of the guide groove 62 is provided with a thin anti-slip layer, and in order to facilitate the subsequent removal and replacement of the placement seat 3, a gripping portion 63 is provided on the side of the guide strip 61 away from the receiving groove 20.
[0042] In addition, a moxibustion pad 7 is also included. An adhesive layer 70 is provided on the surface of the moxibustion pad 7, and a release paper 71 is provided on the side of the adhesive layer 70 away from the moxibustion pad 7.
[0043] To preheat the ground ginger, a self-heating sheet 72 is located in the middle of the bonding layer 10 of the moxa pad 7. The release paper 71 corresponds to the position of the self-heating sheet 72, which serves as a barrier sheet 73. The moxa pad 7 is sterilely packaged in a disposable consumable bag. The material of the self-heating sheet 72 and the combination of the self-heating sheet 72 and the barrier sheet 73 can be compared to the use of a heating pad. This material can quickly react with oxygen in the air to release heat.
[0044] A smoke exhaust structure is provided above the placement seat 3. This case adopts the existing moxibustion smoke exhaust system, that is, the smoke exhaust structure includes a smoke exhaust hood 8, a smoke exhaust pipe and an exhaust fan. Part of the smoke exhaust pipe is installed on the indoor ceiling, and part of the smoke exhaust pipe is placed outdoors. The smoke exhaust hood 8, the smoke exhaust pipe and the exhaust fan are connected to discharge the smoke at the placement seat 3 to the outside.
[0045] A plurality of clamping seats 80 are provided on the side of the smoke exhaust hood 8 , and the base 1 , the fixing seat 2 and the placement seat 3 can be respectively received in different clamping seats 80 .
[0046] In addition, in order to avoid obstruction when not in use and to facilitate access and assembly, the smoke hood is connected to the indoor ceiling through an existing electric lift rod 81. The electric lift rod 81 can refer to the lifting structure of an existing indoor electric clothes drying rack.
[0047] During use, first take the moxibustion pad 7 out of the disposable consumables bag and lay it on the patient's back. While tearing off the release paper 71, the barrier sheet 73 is separated. After the self-heating sheet 72 is exposed, a chemical reaction occurs to generate heat (refer to the principle of a heating patch).
[0048] The smoke hood is lowered via the electrically controlled lifting rod 81, and the base 1, fixing base 2, and placement base 3 are removed one by one from the multiple clamping bases 80. First, based on the patient's back condition (body shape), the control button 40 of the multiple positioning bases 43 on the side is pressed, driving the trigger bar 41 toward the support portion 42, causing the retracted support portion 42 to expand, increasing the usable length of the base 1. Conversely, pulling the control button 40 and pressing the base 1 as a whole causes the support portion 42 to retract, thus reducing the usable length of the base 1. After adjusting the usable length of the base 1, the bonding layer 10 is attached to the adhesive layer 70 of the moxibustion pad 7, paying attention to the position during the attachment process, so that the self-heating sheet 72 is located in the middle of the bonding layer 10 (the middle of the base 1).
[0049] Next is the fixed seat 2. By applying force to engage or disengage the movable shaft 50, the movable piece 22 of the side component of the fixed seat 2 can be added or reduced, and the engaging position of the end piece 21 can be selected. The end piece 21 and the movable piece 22 can be connected by the engagement strip 51 and the docking groove 52. The usable space of the entire fixed seat 2 (the accommodating groove 20) can be adjusted, and the adjusted fixed seat 2 is placed in the placement cavity 11 of the base 1, and a large amount of pre-made chopped ginger is placed in the placement cavity 11.
[0050] Next is the placement seat 3. The placement seat 3 and the fixed seat 2 are assembled by utilizing the cooperation of the limit block 60, the guide bar 61 and the guide groove 62. Since the chopped ginger is laid in advance, the bottom of the placement seat 3 contacts the chopped ginger, and part of the placement seat 3 is located in the accommodating groove 20.
[0051] Finally, according to the normal moxibustion process, moxa is laid in the placement seat 3 and burned. The placement seat 3 can be set in a variety of length specifications and can also be equipped with an adjustment component with the same structure and principle as the storage component 5 to change the size of its internal cavity (usable length) to adapt to the receiving slot 20 of the fixed seat 2.
[0052] In this embodiment, in order to facilitate the rapid replacement of moxa multiple times, a solution with multiple length specifications is adopted, that is, after selecting three placement seats 3 of corresponding length specifications, moxa is pre-laid on the three placement seats 3. After a batch of moxa is used up, the currently used placement seat 3 is quickly taken out through the gripping portion 63, and the prepared other placement seat 3 is placed in the fixed seat 2, and then ignited for use.
[0053] After use and cleaning of the above components, the base 1 , the fixing seat 2 , and the placement seat 3 are stored again in the clamping seat 80 on the side of the exhaust hood 8 .
[0054] The above is a preferred embodiment of the present invention. It is apparent to those skilled in the art that several modifications and improvements may be made without departing from the principles of the present invention, and these modifications and improvements should also be considered within the scope of protection of the present invention.
Claims
1. A moxibustion device for moxibustion on the Governor Vessel, characterized in that: The invention comprises a base (1), a fixed seat (2), a placement seat (3), a bonding layer (10), an adjustment component (4), a storage component (5) and an assembly component (6), wherein the bonding layer (10) is arranged below the base (1), and the base (1) and the bonding layer (10) together form a rectangular box-shaped structure, and the interior of the base (1) and the bonding layer (10) together form a placement cavity (11), the adjustment component (4) is arranged on the side of the base (1) in the length direction, and the base (1) changes the use length of the base (1) by adjusting the component (4), and the length of the bonding layer (10) changes synchronously with the use length of the base (1), and the fixed seat (2) The invention has a long box-shaped structure, and the bottom of the fixing seat (2) is a flexible cloth. The fixing seat (2) can be placed in the placement cavity (11). The fixing seat (2) contains a receiving groove (20) for placing a large amount of crushed ginger. The fixing seat (2) changes the use space of the receiving groove (20) through the storage component (5). There are multiple placement seats (3). The placement seat (3) is quickly covered and connected to the receiving groove (20) through the assembly component (6), and part of the placement seat (3) is located in the receiving groove (20). The placement seat (3) is a box-shaped structure, and the bottom of the placement seat (3) is a filter. Moxa can be loaded in the placement seat (3), and a smoke exhaust structure is provided above the placement seat (3).
2. The moxibustion device for Governor Vessel moxibustion according to claim 1, characterized in that: The adjustment component (4) includes a control button (40), a trigger bar (41), a support portion (42), a positioning seat (43) and a damping layer. The bonding layer (10) is a deformable structure. The support portion (42) is a "V"-shaped structure. The side of the base (1) is divided into multiple support sheets, and adjacent support sheets are connected through the support portion (42). The connection between the support portion (42) and the support sheet and the middle of the support portion (42) are both provided with a rotating shaft (44). There are multiple positioning seats (43), and the positioning seats (43) are provided on the outside of the support portion (42). The trigger bar (41) is movably provided on the positioning seat (43). The control button (40) is provided at the outer end of the trigger bar (41). The end of the trigger bar (41) away from the control button (40) is provided with an inclined surface adapted to the support portion (42). The damping layer is provided on the surface of the trigger bar (41).
3. The moxibustion device for Governor Vessel moxibustion according to claim 2, characterized in that: Telescopic rods (45) are provided on both sides of the positioning seat (43) in the direction of the adjacent support piece, and the telescopic sleeve rods are respectively connected to the positioning seat (43) and the adjacent support piece.
4. The moxibustion device for Governor Vessel moxibustion according to claim 2, characterized in that: The storage assembly (5) includes a movable shaft (50), a positioning strip (51) and a docking groove (52). The fixed seat (2) is composed of two end pieces (21) and a plurality of movable pieces (22). The movable pieces (22) can be fixedly connected to adjacent movable pieces (22) through the movable shaft (50). The plurality of movable pieces (22) together form the side of the fixed seat (2) in the length direction. The positioning strip (51) is provided at both ends of the end piece (21). The docking groove (52) is opened on the upper side of the movable piece (22). The end piece (21) can be connected to different movable pieces (22).
5. The moxibustion device for Governor Vessel moxibustion according to claim 4, characterized in that: The assembly component (6) includes a limit block (60), a guide bar (61) and a guide groove (62). The limit block (60) is connected to the guide bar (61). The guide bar (61) is arranged at a position of the placement seat (3) corresponding to the end sheet (21). The guide groove (62) is arranged at the end sheet (21). The shape of the guide groove (62) is a combination of the limit block (60) and the guide bar (61). When the placement seat (3) is placed into the accommodating groove (20) from top to bottom, the limit block (60) and the guide bar (61) enter the guide groove (62) at the same time.
6. The moxibustion device for Governor Vessel moxibustion according to claim 5, characterized in that: The inner wall of the guide groove (62) is provided with a thin anti-slip layer, and a gripping portion (63) is provided on the side of the guide strip (61) away from the accommodating groove (20).
7. The moxibustion device for Governor Vessel moxibustion according to claim 1, characterized in that: It also includes a moxibustion pad (7), wherein an adhesive layer (70) is provided on the surface of the moxibustion pad (7), and a release paper (71) is provided on the side of the adhesive layer (70) away from the moxibustion pad (7).
8. The moxibustion device for Governor Vessel moxibustion according to claim 7, characterized in that: A self-heating sheet (72) is provided in the middle of the laminating layer (10) of the moxibustion pad (7), and a barrier sheet (73) is provided at a position of the release paper (71) corresponding to the self-heating sheet (72). The moxibustion pad (7) is aseptically packaged in a disposable consumable bag.
9. The moxibustion device for Governor Vessel moxibustion according to claim 1, characterized in that: The smoke exhaust structure includes a smoke exhaust hood (8), a smoke exhaust pipe and an exhaust fan. Part of the smoke exhaust pipe is assembled on the indoor ceiling, and part of the smoke exhaust pipe is placed outdoors. The smoke exhaust hood (8), the smoke exhaust pipe and the exhaust fan are connected to exhaust the smoke at the placement seat (3) to the outdoors. The side of the smoke exhaust hood (8) is provided with a plurality of clamping seats (80), and the base (1), the fixing seat (2) and the placement seat (3) can be respectively received in different clamping seats (80).
10. The moxibustion device for Governor Vessel moxibustion according to claim 9, characterized in that: The smoking hood is connected to the indoor ceiling via an electrically controlled lifting rod (81).