Moxibustion device capable of lifting and rotating

By designing a multifunctional moxibustion device that can be raised, lowered, and rotated, the automated operation of sparrow-pecking moxibustion and rotary moxibustion has been realized, solving the problems of single function and inconvenient operation in existing technologies, and improving the moxibustion effect and safety.

CN122229676APending Publication Date: 2026-06-19SHIJIAZHUANG FENGRONG TECH CO LTD
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Patent Information

Application Number
CN202610339124.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-03-19
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

Existing technologies lack small and convenient moxibustion devices that combine sparrow-pecking moxibustion and rotary moxibustion, and traditional manual moxibustion methods are inconvenient and consume medical resources, failing to meet the diverse needs of treating different diseases.

Method used

A multifunctional moxibustion device capable of lifting and rotating has been designed. The device automates the operation of sparrow-pecking moxibustion and rotary moxibustion through lifting and rotating components, and is equipped with an automatic moxibustion material removal device. Combined with an ergonomic fixation device, it improves the convenience and safety of operation.

Benefits of technology

It achieves an automated combination of sparrow-pecking moxibustion and rotary moxibustion, which improves the therapeutic effect, saves medical resources, avoids the risk of burns when burning moxibustion materials, and improves the convenience and safety of operation.

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Abstract

A multifunctional moxibustion device capable of lifting and rotating includes a housing, a fixed base, and a base. It also includes a lifting assembly, a rotating assembly, and an automatic moxibustion material removal device disposed within the housing. Driven by a lifting motor, the lifting motor transmission component drives the housing to rise and fall along sliding columns on both sides, causing lifting housing one and lifting housing two to rise and fall, thereby raising and lowering the moxibustion material mounting seat to achieve the "pecking moxibustion" method. By incorporating the rotating assembly, the moxibustion material mounting seat can be rotated to achieve the "rotational moxibustion" method. When using this multifunctional moxibustion device, the moxibustion material can be applied to the affected area using both the "pecking moxibustion" method (moving up and down, near and far) and the "rotational moxibustion" method simultaneously, combining both methods to enhance the therapeutic effect. Furthermore, the moxibustion material can be removed with a single button after burning, avoiding the risk of burns when removing the burned material by hand.
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Description

Technical Field

[0001] This invention relates to the technical field of moxibustion devices, and in particular to a moxibustion device capable of lifting, lowering, and rotating. Background Technology Rotary moxibustion refers to moving a burning moxa stick in a circular motion above the acupoint area to provide a large-scale warming stimulation. Sparrow-pecking moxibustion refers to a moxibustion method in which the burning end of the moxa stick is moved up and down, near and far, on the moxibustion site, resembling a sparrow pecking.

[0002] Existing technologies only include moxibustion devices for the rotary moxibustion method, such as the invention patent application with publication number CN118105297A. However, there are no small and convenient moxibustion devices for the sparrow-pecking moxibustion method, let alone small and convenient moxibustion devices that combine rotary and sparrow-pecking moxibustion methods. In traditional Chinese medicine moxibustion, different methods have different effects on the treatment of different diseases. Depending on the patient's needs, different types of moxibustion can be combined for better results. However, the traditional method of manual moxibustion by doctors is very inconvenient and consumes a lot of medical resources. If a multifunctional moxibustion device could be invented that can achieve the effects of different moxibustion methods, is easy to operate, and saves medical resources, it could meet the diverse needs of users. Summary of the Invention

[0003] The purpose of this invention is to provide a multifunctional moxibustion device that can achieve lifting and rotation, in order to solve the technical problems mentioned in the background art.

[0004] This invention provides a multifunctional moxibustion device that can be raised, lowered, and rotated, including a shell, a fixed base, and a base. The shell contains a smoke exhaust chamber, a filter chamber, and an installation chamber arranged sequentially from top to bottom.

[0005] It also includes a lifting assembly installed inside the housing. The lifting assembly includes a drive housing and a lifting motor that drives the drive housing to move up and down. The lifting motor is provided with a motor transmission component. One end of the motor transmission component is sleeved on the shaft of the lifting motor, and the other end is connected to the drive housing. The drive housing is provided with sliding columns on both sides. The upper end of the sliding column passes through the lifting motor transmission component and is fixedly connected to the upper cover. The lower end is fixed on the fixed base. The drive housing moves up and down along the sliding columns on both sides.

[0006] Furthermore, the motor shaft of the lifting motor is a lead screw, and the end of the lifting motor transmission component connected to the motor shaft has an internal thread. The lifting motor transmission component achieves lifting and sliding through the cooperation of the lead screw and the thread.

[0007] Furthermore, the housing contains a rotating assembly, inside which is a rotating motor. The lower end of the rotating motor is provided with an abutment block, which is inserted into the insertion slot on the top of the insertion block to drive the rotating motor and the insertion block. The lower part of the rotating motor is inserted into the insertion block, and a fixing block is provided directly below the insertion block. The insertion block and the fixing block are inserted into each other to drive the insertion block and the fixing block.

[0008] Furthermore, the abutment block is triangular in shape.

[0009] It also includes a lifting housing 1, which abuts against the drive housing and is fixedly connected to a lifting housing 2.

[0010] Furthermore, on one side of the interior of the first and second lifting housings, from top to bottom, there are insertion blocks and fixing blocks. The top of the insertion block is provided with an insertion groove, which is triangular in shape. The insertion groove can be inserted into the abutment block at the bottom of the rotary motor. The bottom of the insertion block can be inserted into the cavity inside the fixing block. The cavity inside the fixing block is provided with a first spring.

[0011] Furthermore, a second spring is provided on the upper part of the base, and a guide post is sleeved on the second spring to provide elastic force for the lifting housing to reset.

[0012] Furthermore, the lower end of the fixing block is designed as a gear, which can mesh with the first transmission gear. The first transmission gear meshes with the second transmission gear, and the second transmission gear is connected to the moxibustion material mounting base to realize the rotation of the moxibustion material mounting base.

[0013] It also includes an automatic moxibustion material detachment device, a clamp rotating chamber, and a moxibustion material mounting base.

[0014] Furthermore, the button is located on the outside of the moxibustion device. The button abuts or connects with the push rod. The end of the push rod away from the button is designed with a bevel and abuts against the pressure block. The outer periphery of the upper end of the pressure block is a spherical surface to ensure that the pressure block still abuts against the push rod when rotating.

[0015] Furthermore, a sliding block is provided below the pressure block. The sliding block is inserted into the insertion hole of the insertion part to lock the moxibustion material mounting base, and the insertion part is fixedly connected to the moxibustion material mounting base.

[0016] Furthermore, the rotating chamber of the clip includes a housing one and a housing two. The inner wall of the third transmission gear is provided with a boss. The housing one is hung on the boss on the inner wall of the third transmission gear, and the housing two is hung on the housing one. The lower part of the housing two is provided with a moxibustion material mounting hole.

[0017] The moxibustion material mounting base is provided with a plug-in part on its upper part, and the plug-in part is provided with a plug-in hole; Furthermore, one end of the push rod abuts or connects to the button, the end of the push rod away from the button is designed as a slope and abuts against the inclined spherical surface on the outer periphery of the upper end of the pressure block, the lower end of the pressure block abuts against the sliding block, the sliding block is disposed inside the housing two, and small sliding blocks with slopes are respectively disposed on both sides of the sliding block, the slopes of the small sliding blocks abut against the two ends of the arch-shaped design at the lower part of the pressure block; A third spring is provided between the two small sliding blocks. One end of the third spring abuts against the inner wall of the sliding block, and the other end abuts against the inner wall of the housing.

[0018] A third spring is disposed in the middle of the sliding block. One end of the third spring abuts against the tail of the sliding block, and the other end abuts against the inner sidewall of the second housing. The other side of the sliding block is inserted into the insertion hole. The end of the third spring away from the sliding block abuts against the second housing. Furthermore, the end of the sliding block near the insertion hole is pin-shaped.

[0019] Furthermore, the length of the two small sliding blocks is shorter than that of the sliding block, the sliding block and the small sliding blocks on both sides are integrally formed, the end of the small sliding block near the insertion part is set as a slope, and the lower part of the pressure block is designed in an arch shape.

[0020] Furthermore, the lower part of the pressure block has a beveled pin design, the sliding block has a U-shaped design, the middle of the sliding block has a beveled design, the lower part of the pressure block abuts against the middle bevel of the sliding block, the insertion part has an "I"-shaped design, and the two ends of the U-shape of the sliding block are inserted into the insertion part.

[0021] Furthermore, the lower part of the base is provided with a detachable ergonomic fixing device, the outer periphery of the base is provided with buckles, the ergonomic fixing device includes a mounting base and a fixing strap, the mounting base and the fixing strap are fixedly connected, and the inner wall of the mounting base is provided with a slot.

[0022] Furthermore, the ergonomic fixation device can be set to be flat and laid directly on the human body, or it can be set to be strapped to the human body, such as the arms or legs.

[0023] Beneficial effects: This invention provides a multifunctional moxibustion device capable of lifting and rotating. The moxibustion material is mounted on a moxibustion material mounting base. Driven by a lifting motor, the motor's transmission components move the drive housing along sliding columns on both sides, causing lifting housing one and lifting housing two to rise and fall, thereby raising and lowering the moxibustion material mounting base, thus achieving the sparrow-pecking moxibustion method. Simultaneously, by incorporating a rotating component, a rotating motor, a plug-in block, and a fixing block, the fixing block is linked to a first transmission gear, and the first transmission gear is linked to a second transmission gear, which in turn moves the moxibustion material mounting base. The device rotates to achieve rotary moxibustion. When using this multi-functional moxibustion device, the moxa sticks can be used for both pecking moxibustion (moving up and down, near and far) and rotary moxibustion simultaneously, combining both techniques to enhance the therapeutic effect. Furthermore, the moxa stick mounting base, through the coordinated movement of buttons, push rods, and pressure blocks, allows for one-button detachment after the moxa sticks have burned out, automatically removing them and avoiding the risk of burns from directly removing the burned-out sticks. A detachable ergonomic fixing device allows for easy attachment to a specific part of the body during use. Attached Figure Description

[0024] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0025] Figure 1 This is a schematic diagram of the external three-dimensional structure of this embodiment; Figure 2-4 This is a schematic diagram of the internal structure of this embodiment. Figure 5 This is a cross-sectional schematic diagram of this embodiment; Figure 6-9 A schematic diagram showing the disassembly of the automatic detachment component; Figure 11 This is a schematic diagram of the base clips; Figure 10 A schematic diagram of an ergonomic fixation device; Figure 11 and Figure 12 This is a schematic diagram showing the disassembled automatic detachment component of the second embodiment; Figure 13 This is a schematic diagram of the moxibustion material mounting base for the automatic detachment component in the second embodiment; Figure 14 A perspective view of the moxibustion material mounting base of the automatic detachment device according to the second embodiment; Figure 15A schematic diagram of the sliding block of the automatic detachment component in the second embodiment; Figure 16 This is a schematic diagram of the pressure block of the automatic detachment component in the second embodiment; Figure label: 100 Housing; 200-Lifting assembly; 300-Rotating assembly; 400-Automatic detachment assembly; 500-Fixed base; 600-Base; 700-Fixing device 101 - Smoke Exhaust Chamber; 102 - Filter Chamber; 103 - Installation Chamber 200-Lifting assembly; 201-Lifting motor; 202-Motor transmission component; 203-Drive housing; 204-Rotary motor; 205-Lifting housing one; 206-Lifting housing two; 207-Plug-in block; 208-Plug-in slot; 209-Fixing block; 210-First spring; 211-Sliding column; 212-Guide column; 213-Second spring; 214-Top cover; 215-Abutment block; 300 - Rotating assembly; 301 - First transmission gear; 302 - Second transmission gear; 400-Automatic detachment component; 401-Button; 402-Push rod; 403-Pressure block; 404-Moxibustion material mounting base; 405-Sliding block; 406-Third spring; 407-Insertion part; 408-Insertion hole; 409-Small sliding block; 410-Clip rotation chamber; 411-Housing shell one; 412-Housing shell two; 413-Boss; 414-Moxibustion material mounting hole 601-Snap-on; 700 - Ergonomic Fixing Device: 701 - Fixing Strap; 702 - Mounting Base; 703 - Smoke Exhaust Hole; 704 - Slot; 705 - Ignition Device; 706 - Strap Detailed Implementation To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. The components of the embodiments of the present invention described and shown in the accompanying drawings can generally be arranged and designed in various different configurations. Therefore, all other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0026] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of this invention is in use. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention. In addition, the terms "first," "second," "third," etc., are only used to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0027] In the description of this invention, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0028] The following describes some embodiments of the present invention in detail with reference to the accompanying drawings. A multifunctional moxibustion device capable of lifting and rotating includes a housing 100, and a smoke exhaust chamber 101, a filter chamber 102, and an installation chamber 103 disposed within the housing 100. It also includes a lifting assembly 200 disposed within the housing 100. The lifting assembly 200 includes a lifting motor 201, a motor transmission component 202, a drive housing 203, a first lifting housing 205, a second lifting housing 206, a sliding column 211, and a guide column 212.

[0029] like Figure 1-5 As shown, one side of the motor transmission component 202 is sleeved on the motor shaft of the lifting motor 201, and the other side is connected to the drive housing 203. That is, the lifting motor 201 is connected to the drive housing 203 through the motor transmission component 202 to realize the lifting of the drive housing 203. The drive housing 203 is provided with two sliding columns 211 on both sides. The upper end of the sliding column 211 is connected to the upper cover 214, and the lower end is fixed on the fixed base 500. The drive housing 203 moves up and down along the sliding column 211 to ensure stability during lifting.

[0030] like Figure 4 , 6 As shown, a second spring 213 is provided on the upper part of the base 600, and a guide post 212 is sleeved on the second spring 213.

[0031] The drive housing 203 is equipped with a rotary motor 204 inside, and the lower end of the rotary motor 204 is provided with an abutment block 215, which is in a triangular shape.

[0032] Inside the cavity formed by the first lifting housing 205 and the second lifting housing 206, from top to bottom, there are a plug-in block 207 and a fixing block 209. The top of the plug-in block 207 is provided with a plug-in groove 208. The inside of the fixing block 209 is provided with a receiving cavity. The bottom of the receiving cavity is provided with a first spring 210. The plug-in groove 208 is plugged into the abutment block 215 at the lower part of the rotary motor 204.

[0033] When the lifting motor 201 drives the motor transmission component 202 to descend, the motor transmission component 202 drives the drive housing 203 to descend, thereby pushing the lifting housing 1 205 and the lifting housing 206 to move downwards simultaneously. The lifting housing 206 will press down the guide post 212, and the guide post 212 will press the second spring 213. When rising, the lifting motor 201 drives the motor transmission component 202 and the drive housing 203 to rise. The drive housing 203 drives the internal rotary motor 204 to rise. The rotary motor 204 drives the plug block 207 and the fixing block 209 to rise. At this time, under the action of the second spring 213 to reset, the guide post 212 moves upward. Therefore, the guide post 212 gives the lifting housing 206 a reset elastic force. Since the lifting housing 205 and the drive housing 203 only come into contact, the drive housing 203 cannot directly drive the lifting housing 205 and the lifting housing 206 to rise together when they rise. Therefore, the second spring 213 and the guide post 212 are needed to provide the lifting housing 206 with the elastic force for rising.

[0034] like Figure 5-6 As shown, the rotating assembly 300 includes a drive housing 203, a rotary motor 204, a plug-in block 207, and a fixing block 209. The rotary motor 204 is disposed inside the drive housing 203. A stop block 215, which is triangular in shape, is disposed at the lower end of the rotary motor 204. The plug-in block 207 and the fixing block 209 are sequentially arranged from top to bottom on one side of the cavity formed by the first lifting housing 205 and the second lifting housing 206. The top of the plug-in block 207 is... A insertion slot 208 is provided, which is also triangular in shape. The insertion slot 208 is inserted into the abutment block 215. Since both the insertion slot 208 and the abutment block 215 are triangular in shape, stability during rotation can be guaranteed. The lower outer periphery of the fixing block 209 is set in the shape of a gear, which meshes with the first transmission gear 301. The first transmission gear 301 meshes with the second transmission gear 302. The second transmission gear 302 is movably connected to the moxibustion material mounting base 404.

[0035] When the rotary motor 204 rotates, the plug-in block 207 drives the fixed block 209 to rotate, and through the interaction between the gear at the lower part of the fixed block 209 and the first transmission gear 301 and the second transmission gear 302, it can drive the rotation of the moxibustion material mounting 404, thereby driving the moxibustion material to rotate.

[0036] like Figure 7-9 As shown, the automatic moxibustion material removal device 400 includes a clamp rotating chamber 410, a third transmission gear 302, a button 401, a push rod 402, a pressure block 403, a moxibustion material mounting base 404, a sliding block 405, and a third spring 406. The rotating compartment 410 includes a first housing 411 and a second housing 412 for accommodating the automatic moxibustion material removal device 400. The inner wall of the third transmission gear 302 is provided with a boss 413. The first housing 411 is hung on the boss 413 on the inner wall of the third transmission gear 302, and the second housing 412 is hung on the first housing 411. The lower part of the second housing 412 is provided with a moxibustion material mounting hole 414 for mounting the moxibustion material.

[0037] The moxibustion material mounting base 404 is provided with a plug-in part 407 above it, and the plug-in part 407 is provided with a plug-in hole 408. The outer end of the push rod 402 abuts or connects to the button 401. The other end of the push rod 402 is designed with a bevel and abuts against the pressure block 403, which is also designed with a bevel. Thus, the push rod 402 can drive the pressure block 403 to move downward. Furthermore, the lower end of the pressure block 403 abuts against the bevels on both sides of the sliding block 405. The sliding block 405 is located inside the housing 412. One end of the sliding block 405 abuts against the third spring 406, and the other end is inserted into the insertion hole 408. The third spring 406 is away from the sliding block 405. One end abuts against the housing 412; specifically, small sliding blocks 409 with inclined surfaces are respectively provided on both sides of the sliding block 405. The inclined surfaces of the small sliding blocks 409 abut against the two ends of the arch-shaped design at the bottom of the pressure block 403. Therefore, when the push rod moves inward and the pressure block 403 moves downward, it can push the sliding block 405 to move towards the third spring 406, thereby disengaging from the insertion hole 408. At this time, the moxibustion material mounting base 404 can automatically fall off, and the third spring 406 abuts against the inner side wall of the housing 412.

[0038] Specifically, the end of the sliding block 405 near the insertion hole 408 is pin-shaped, which facilitates insertion into the insertion hole 408.

[0039] Specifically, the insertion part 407 of the moxibustion material mounting base 404 is installed in the clamp rotating chamber 410 through the moxibustion material mounting hole 414 of the housing 2 412.

[0040] In use, pressing button 401 pushes push rod 402 to push pressure block 403, which in turn pushes sliding block 405 downward. Because the upper end of pressure block 403 is a spherical surface design, it ensures that even when the automatic release assembly 400 rotates with the rotating assembly 300, push rod 402 can always abut against the spherical surface of pressure block 403, pushing pressure block 403 downward. Furthermore, the lower end of pressure block 403 abuts against the inclined surface of small sliding block 409. When pressure block 403 moves downward, the pin of sliding block 405 disengages from the insertion hole 408. When button 401 is released, pressure block 403 moves upward, releasing the restriction on sliding block 405. Through the restoring force of third spring 406, sliding block 405 can be moved towards insertion hole 408 until the pin of sliding block 405 is fully inserted into insertion hole 408, thus fixing the moxibustion material fixing seat. When the moxibustion material burns out and needs to be replaced, button 401 is pressed, and the pin of sliding block 405 disengages from insertion hole 408, releasing the restriction on the moxibustion material mounting seat, which can automatically fall out of the clip rotation chamber 410.

[0041] like Figure 12-16 As shown, the present invention also provides a second type of automatic moxibustion material removal device 400, wherein the lower part of the pressing block 403 is a beveled pin design, the sliding block 405 is a U-shaped design, and the middle of the sliding block 405 is a beveled design; the lower part of the pressing block 403 abuts against the middle bevel of the sliding block 405, the insertion part 407 is an "I" shaped design, and the two ends of the U-shape of the sliding block 405 are inserted into the insertion part 407. In use, press the push rod 402, the pressure block 403 pushes the sliding block 405, the sliding block 405 moves towards the third spring 406 and disengages from the "I"-shaped insertion part 407, thereby automatically detaching the moxibustion material mounting base 404. When it is necessary to install the moxibustion material mounting base 404, simply insert the insertion part 407 of the moxibustion material mounting base 404 into the clamp rotation chamber 410, and after inserting the sliding block 405 into the insertion part 407, the moxibustion material mounting base 404 can be fixed.

[0042] like Figure 10-11 As shown, a detachable ergonomic fixing device 700 is provided at the lower part of the base 600, including a mounting base 702 and a fixing strap 701. The mounting base 702 and the fixing strap 701 are fixedly connected. A slot 704 is provided on the inner wall of the mounting base 702, which engages with the buckle 601 of the base 600. By rotating the base 600, the buckle 601 can be inserted into the slot 704, thereby detaching the base 600 from the ergonomic fixing device 700. A smoke vent 703 is provided at the bottom of the mounting base 702, and an ignition device 705 is provided on the inner side of the bottom of the moxibustion device for igniting the moxibustion material. The ergonomic fixing device 700 can be set flat and laid directly on the human body, or it can be equipped with straps 706 to be tied to the human body, such as the arm or leg.

[0043] By adopting the above implementation method, the purpose of automatic lifting and lowering of the multifunctional moxibustion device and automatic rotation of the moxibustion material can be achieved.

[0044] 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 therein. Such 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.

Claims

1. A multifunctional moxibustion device capable of lifting and rotating, comprising a housing (100), a fixed base (500), and a base (600), characterized in that: It also includes a lifting assembly (200) disposed in the housing (100). The lifting assembly (200) includes a drive housing (203) and a lifting motor (201) that drives the drive housing (203) to lift. A motor transmission component (202) is disposed on the lifting motor (201). One end of the motor transmission component (202) is sleeved on the shaft of the lifting motor (201), and the other end is connected to the drive housing (203). It also includes a lifting housing one (205), which abuts against the drive housing (203) and is fixedly connected to the lifting housing two (206); A second spring (213) is provided on the upper part of the base (600), and a guide post (212) is sleeved on the second spring (213) to give the lifting housing (206) a restoring force.

2. The multifunctional moxibustion device capable of lifting and rotating according to claim 1, characterized in that: The drive housing (203) is provided with sliding columns (211) on both sides. The upper end of the sliding column (211) passes through the lifting motor transmission component (202) and is fixedly connected to the upper cover (214). Its lower end is fixed on the fixed seat (500).

3. A multifunctional moxibustion device capable of lifting and rotating, comprising a housing (100), characterized in that: The housing (100) is provided with a rotating assembly (300), and the rotating assembly (300) is provided with a rotating motor (204). The lower part of the rotating motor (204) is connected to the plug-in block (207). A fixing block (209) is provided directly below the plug-in block (207). The plug-in block (207) is connected to the fixing block (209). It also includes a first transmission gear (301) and a second transmission gear (302), the first transmission gear (301) meshes with the lower end of the fixed block (209), the second transmission gear (302) meshes with the first transmission gear (301), and the second transmission gear (302) is connected to the moxibustion material mounting base (404).

4. A multifunctional moxibustion device capable of lifting and rotating according to claim 3, characterized in that: The lower end of the rotary motor (204) is provided with an abutment block (215), which is inserted into the insertion slot (208) on the top of the insertion block (207) to drive the rotary motor (204) and the insertion block (207). The lower part of the plug-in block (207) is inserted into the receiving cavity inside the fixed block (209) to drive the plug-in block (207) and the fixed block (209).

5. The multifunctional moxibustion device capable of being raised and lowered according to claim 4, characterized in that: The abutment block (215) is triangular in shape, and the insertion slot (208) is triangular in shape.

6. A multifunctional moxibustion device capable of lifting and rotating, comprising an automatic moxibustion material disengagement device (400) and a moxibustion material mounting base (404), characterized in that: It also includes a button (401) located on the outside of the moxibustion device. The button (401) abuts or connects with the push rod (402). The end of the push rod (402) away from the button (401) is designed with a bevel and abuts with the pressure block (403). The outer periphery of the upper end of the pressure block (403) is a spherical surface to ensure that the pressure block (403) still abuts with the push rod (402) when rotating. A sliding block (405) is provided below the pressure block (403); the sliding block (405) is inserted into the insertion hole (408) of the insertion part (407) to lock the moxibustion material mounting seat, and the insertion part (407) is fixedly connected to the moxibustion material mounting seat (404).

7. A multifunctional moxibustion device capable of lifting and rotating according to claim 6, characterized in that: The sliding block (405) is provided with small sliding blocks (409) with inclined surfaces on both sides. The inclined surfaces of the small sliding blocks (409) abut against the two ends of the arch-shaped design at the bottom of the pressure block (403). A third spring (406) is provided between the two small sliding blocks (409). One end of the third spring (406) abuts against the inner wall of the sliding block (405), and the other end abuts against the inner wall of the housing (412).

8. A multifunctional moxibustion device capable of lifting and rotating according to claim 7, characterized in that: The lower part of the pressure block (403) is a beveled pin design, the sliding block (405) is a U-shaped design, the middle of the sliding block (405) is a beveled design, the lower part of the pressure block (403) abuts against the middle bevel of the sliding block (405), the insertion part (407) is an "I" shaped design, and the two ends of the U-shape of the sliding block (405) are inserted into the insertion part (407).

9. A multifunctional moxibustion device capable of lifting, lowering, and rotating, characterized in that: It includes a housing (100), a fixed base (500), and a base (600). The housing (100) is provided with a lifting assembly (200), a rotating assembly (300), and an automatic moxibustion material removal device (400).

10. A multifunctional moxibustion device capable of lifting and rotating according to any one of claims 1-9, characterized in that, The lower part of the base (600) is provided with a detachable ergonomic fixing device (700). The outer periphery of the base (600) is provided with a buckle (601). The ergonomic fixing device (700) includes a mounting base (702) and a fixing strap (701). The mounting base (702) and the fixing strap (701) are fixedly connected. The inner wall of the mounting base (702) is provided with a slot (704).

Citation Information

Patent Citations

  • Moxibustion therapy device capable of rotating moxibustion material

    CN118105297A