Partition needle warming moxibustion tool and method

By adopting an adjustable upper and lower cylinder structure and an isolation cylinder design in the warm needle moxibustion device, the problems of unadjustable temperature and smoke pollution during warm needle moxibustion are solved, achieving a temperature-controllable and environmentally friendly moxibustion effect.

CN121489781APending Publication Date: 2026-02-10BOZHOU ACME MEDICAL TECHNOLOGY CO LTD +1
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Patent Information

Application Number
CN202512050995.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-31
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

Existing warm acupuncture procedures suffer from problems such as burns from falling ash, unadjustable temperature, and environmental pollution from moxa smoke. Furthermore, existing instruments have complex structures and provide a poor user experience.

Method used

It adopts an upper and lower cylinder structure that is fitted on the outside of the sterile needle. By adjusting the height of the upper cylinder relative to the lower cylinder, the position of the moxa stick relative to the spacer material is changed. Combined with the isolation cylinder, the moxa stick and the sterile needle are selectively separated, so as to achieve temperature adjustment and control.

Benefits of technology

It achieves the dual effects of indirect moxibustion and warm needle therapy, and can adjust the temperature as needed, reducing ash and smoke pollution and improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The object-separated needle warming moxibustion tool comprises a sterile needle, a moxibustion therapy lower cylinder and a moxibustion therapy upper cylinder, the bottom of the moxibustion therapy lower cylinder is provided with an object-separated groove and an object-separated material installed in the object-separated groove, the middle of the object-separated material is provided with a first center hole for containing the sterile needle, and the bottom of the side face of the moxibustion therapy lower cylinder is provided with a ventilation hole; the height of the moxibustion therapy upper cylinder relative to the moxibustion therapy lower cylinder is adjustable, a moxa cone and a smoke filtering structure located at the top of the moxa cone are installed in the moxibustion therapy upper cylinder, a second center hole for containing a sterile needle is formed in the middle of the moxa cone, and the first center hole and the second center hole are coaxially formed after the moxibustion therapy upper cylinder and the moxibustion therapy lower cylinder are matched. The sterile needle is rapidly heated through the ignited moxa cones distributed on the periphery of the sterile needle, meanwhile, the distance between the moxa cones and the skin can be adjusted through the relative positions of the upper cylinder and the lower cylinder, and partition needle warming moxibustion operation can be achieved.
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Description

Technical Field

[0001] This invention belongs to the field of moxibustion devices, specifically a warm needle moxibustion device and method with a barrier. Background Technology

[0002] Warm needling involves inserting sterile needles into the skin, lighting moxa cones from the bottom, and then threading them through the tips of the needles. The following problems may occur during existing warm needling procedures:

[0003] 1. Ash will fall during this period and while the moxa stick is burning, and the falling embers can easily cause burns.

[0004] 2. The position of the moxa stick in the sterile needle is relatively fixed, which means that the temperature transmitted to the skin by the sterile needle is constant and cannot be adjusted. This will test the operator's skill and make it impossible to make targeted adjustments according to specific people or required temperatures.

[0005] 3. Acupuncture is usually performed indoors, which is mostly a relatively closed environment. The smoke produced during warm acupuncture cannot be dealt with, which is not friendly to the indoor environment, especially to patients with respiratory diseases, infants and the elderly.

[0006] A search revealed that CN120605203A discloses a device that claims to be able to perform warm needling through a barrier. In paragraph 0027 of the instruction manual, it is stated that "when performing warm needling, the acupuncture needle is first inserted into the patient's acupoint, then the outer shell is placed on the outside of the acupuncture needle, and the mugwort is placed inside the protective cage and lit,..." In actual use, according to aerodynamic principles, the air required for the burning of mugwort enters through the vents at the bottom of the side wall of the outer shell, while the generated smoke escapes through the vents at the top of the side wall. Firstly, the heat cannot effectively transfer the medicinal components of the ginger slices and medicinal cake to the skin, thus failing to achieve the claimed indirect moxibustion effect. Secondly, when adjusting the temperature of the acupuncture needles, the mugwort forks are moved outward to reduce the heat borne by the needles. After the mugwort forks are moved outward, the distance between adjacent mugwort forks increases, making it easier for the squeezed mugwort to enter the inside of the forks. After repeated adjustments, the mugwort that has entered the inside of the forks can easily accumulate on the acupuncture needles, making the temperature of the acupuncture needles uncontrollable. Furthermore, the structure and operation are more complex, resulting in a poor user experience. Summary of the Invention

[0007] To solve the above-mentioned technical problems, the inventors, through practice and summarization, derived the technical solution of this invention, which adopts the following technical solution:

[0008] A type of indirect warm needling acupuncture device, comprising:

[0009] The lower tube of the moxibustion therapy has a spacer material installed at the bottom. The spacer material is in the form of a sheet or a cake. The raw materials of the spacer material are selected from aconite, garlic, ginger, salt and other materials. A central hole for accommodating a sterile needle is set in the middle of the spacer material. A ventilation hole is set on the side of the lower tube of the moxibustion therapy, and the ventilation hole is located above the spacer material.

[0010] The upper moxibustion tube is height-adjustable relative to the lower moxibustion tube. Inside the upper moxibustion tube are moxa sticks and a smoke-filtering structure located at the top of the moxa sticks. The middle of the moxa sticks has a central hole two for accommodating sterile needles, and the center of the smoke-filtering structure has a central hole three for accommodating sterile needles. After the upper and lower moxibustion tubes are combined, the central holes one and two are coaxially arranged.

[0011] In the aforementioned insulated warm needle moxibustion device, the upper moxibustion tube includes an inner tube and an outer tube. The bottom of the inner tube is inserted into the lower moxibustion tube, and the top of the inner tube is fitted with the outer tube. The smoke filtering structure is arranged on the inner wall of the outer tube or sandwiched in the area between the inner and outer tubes.

[0012] In the aforementioned insulated warm needle acupuncture device, the device further includes an isolation cylinder that can be inserted into the central hole two, and the vertical position of the isolation cylinder relative to the moxa stick is adjustable.

[0013] In the aforementioned insulated warm needle moxibustion device, the outer wall of the inner cylinder is provided with an external thread, and the inner wall of the lower moxibustion cylinder is provided with an internal thread, the internal thread and the external thread being threadedly engaged;

[0014] The outer and inner cylinders slide vertically together.

[0015] In the aforementioned insulated warm needle acupuncture device, a moxa stick support frame is provided at the bottom of the inner cylinder, and an upward-turning structure is provided in the middle of the moxa stick support frame, the upward-turning structure being embedded in the moxa stick.

[0016] The upward tilt height of the upward tilt structure is 2-5mm.

[0017] In the aforementioned insulated warm needle acupuncture device, the top of the isolation cylinder is connected to a connecting ring via multiple circumferentially arranged connecting bodies. The connecting ring is located above the moxa stick and its vertical position relative to the moxa stick is adjustable.

[0018] In the aforementioned heat acupuncture device with a barrier, multiple circumferentially arranged connecting pieces at the bottom of the isolation cylinder are connected to a lifting ring. Multiple connecting wires are evenly arranged circumferentially on the lifting ring. The connecting wires pass through the moxa stick support frame. The multiple connecting wires are distributed around the moxa stick and close to the inner cylinder. The top of the connecting wires is connected to a fixing ring plate, which is installed inside the outer cylinder above the inner cylinder.

[0019] In the aforementioned heat acupuncture device with a barrier, an external protrusion is provided on the inner wall of the outer cylinder, and an axial groove is provided on the outer wall of the inner cylinder. The axial groove and the external protrusion are fitted together.

[0020] In the aforementioned insulated warm needle moxibustion device, an adhesive ring is provided at the bottom of the lower moxibustion tube.

[0021] The method of using a heat acupuncture device with an indirect needle is as follows:

[0022] Step 1, Installation of partition materials

[0023] Insert the spacer material into the bottom of the lower moxibustion tube, separate the upper and lower moxibustion tubes, adjust the relative positions of the inner and outer tubes to move the spacer tube away from the bottom of the moxa stick, ignite the moxa stick from below, reassemble the upper and lower moxibustion tubes, and adjust the position of the upper moxibustion tube relative to the lower moxibustion tube until the moxa stick and the spacer material are at the closest distance.

[0024] Step 2, acupuncture

[0025] Clean and disinfect the corresponding location on the patient's acupoint skin, insert a sterile needle to a certain depth, and peel off the release paper of the adhesive ring;

[0026] Step 3, warm needle with a barrier

[0027] Keep the center hole of the spacer material coaxial with the sterile needle, and put the moxibustion lower sleeve on the outside of the sterile needle along the axis of the sterile needle, and attach it to the skin through the adhesive ring;

[0028] Step 4, temperature adjustment

[0029] By adjusting the position of the upper moxibustion cylinder relative to the lower moxibustion cylinder, the distance between the moxa stick and the insulated material is at a temperature that the patient's skin can tolerate;

[0030] By adjusting the position of the outer cylinder relative to the inner cylinder, the temperature of the sterile needle can be adjusted by selectively placing the isolation cylinder between the moxa stick and the sterile needle.

[0031] Step 5: The physiotherapy is complete. Remove the sterile needles and moxibustion tube in sequence.

[0032] Compared with the prior art, the present invention has the following beneficial effects:

[0033] This invention employs an upper and lower cylinder structure fitted around the sterile needle. By adjusting the height of the upper cylinder relative to the lower cylinder, the position of the moxa cone relative to the intervening material is changed, thereby altering the temperature of the indirect moxibustion. The upper cylinder also uses an inner and outer structure, with an additional insulating cylinder within the outer cylinder to separate the moxa cone and the sterile needle. The raising and lowering of this insulating cylinder selectively separates the sterile needle and moxa cone, allowing for adjustment of the sterile needle's temperature. The temperatures described herein refer to the degree of heat felt by the patient's skin. Therefore, this invention achieves the dual effects of indirect moxibustion and warm needle therapy, and also allows for selective adjustment of the individual temperatures of the warm needle and the intervening material, making it highly practical. Attached Figure Description

[0034] Figure 1 , Figure 2 This is a schematic diagram of the overall structure of the present invention;

[0035] Figure 3 This is a bottom view of the overall structure of the present invention;

[0036] Figure 4 for Figure 3 Cross-sectional view at point BB;

[0037] Figure 5 This is a schematic diagram of the internal structure of the moxibustion tube.

[0038] Figure 6 Schematic diagram of a structure with an isolation cylinder Figure 1 ;

[0039] Figure 7 for Figure 6 Schematic diagram of the structure of the middle isolation cylinder;

[0040] Figure 8 Schematic diagram of a structure with an isolation cylinder Figure 2 ;

[0041] Figure 9 for Figure 8 Schematic diagram of the structure of the middle isolation cylinder;

[0042] Figure 10 This is a schematic diagram of the structure of the moxibustion tube.

[0043] Figure 11 This is a schematic diagram of the structure of the moxibustion therapy lower tube;

[0044] Figure 12 This is a schematic diagram of the internal structure of the outer cylinder.

[0045] In the diagram: 10. Sterile needle; 20. Lower moxibustion tube; 21. Spacer groove; 22. Spacer material; 23. Central hole one; 24. Ventilation hole; 25. Adhesive ring; 30. Upper moxibustion tube; 31. Moxa cone; 32. Smoke filter structure; 33. Central hole two; 301. Inner tube; 302. Outer tube; 303. Moxa cone support frame; 304. Upward-turning structure; 305. Outer protrusion; 306. Axial groove; 40. Isolation tube; 41. Connecting ring; 42. Connector; 43. Lifting ring; 44. Connecting piece; 45. Connecting wire; 46. Fixing ring disc. Detailed Implementation

[0046] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0047] Example 1

[0048] like Figures 1 to 4 As shown, a type of insulated warm needling acupuncture device includes:

[0049] The lower moxibustion tube 20 has a spacer material 22 installed on its inner bottom. The spacer material 22 can be in sheet or cake shape. A spacer groove 21 can be provided on the inner side of the lower moxibustion tube 20. The spacer material 22 is installed in the spacer groove 21. The raw material of the spacer material 22 can be selected from garlic, ginger, aconite, salt and other materials. A central hole 23 for accommodating a sterile needle 10 is provided in the middle of the spacer material 22. A ventilation hole 24 is provided on the side bottom of the lower moxibustion tube 20. The ventilation hole 24 is located above the spacer material 22.

[0050] The upper moxibustion cylinder 30 is height-adjustable relative to the lower moxibustion cylinder 20. The upper moxibustion cylinder 30 contains an moxa stick 31 and a smoke-filtering structure 32 located at the top of the moxa stick 31. The smoke-filtering structure 32 has a central hole 3 for accommodating a sterile needle 10 in the middle. The moxa stick 31 has a central hole 23 for accommodating a sterile needle 10 in the middle. After the upper moxibustion cylinder 30 and the lower moxibustion cylinder 20 are combined, the central holes 1 23, 2 33, and 3 are coaxially arranged.

[0051] The smoke filter structure 32 is made of non-woven fabric. During use, the spacer material 22 is installed in the spacer groove 21. The spacer material 22 is either purchased externally or made in-house. The central hole 23 on the spacer material 22 is processed by the supplier before leaving the factory. The upper moxibustion tube 30 and the lower moxibustion tube 20 are both made of kraft paper. The smoke filter structure 32 can be processed during the rolling of the upper moxibustion tube 30. The sterile needle 10 is a mature product that is routinely sourced from external suppliers.

[0052] In practice, after disinfecting the skin at the corresponding acupoint, a sterile needle 10 is inserted into the skin to a certain depth, which is determined by the practitioner based on their own technique and the standard acupuncture method. A spacer material 22 is installed in the spacer groove 21. The upper moxibustion tube 30 and lower moxibustion tube 20 are separated. After igniting the moxa cone 31 inside, the upper and lower moxibustion tubes 30 are reassembled, minimizing the distance between the moxa cone 31 and the spacer material 22. The upper and lower moxibustion tubes 30 are then fitted together onto the outside of the sterile needle 10, ensuring that the central holes 1 (23), 2 (33), 3 (3), and 4 (3) are coaxial with the sterile needle 10, with the tip of the sterile needle 10 protruding slightly from the central hole 3. The lower moxibustion tube 20 is then stably attached to the skin surface. The temperature of the warm needle and the spacer material are adjusted by changing the position of the upper moxibustion tube 30 relative to the lower moxibustion tube 20. After the physiotherapy is completed, remove the moxibustion tube 20 and the sterile needle 10 in sequence.

[0053] Example 2

[0054] In the first embodiment, as Figures 1 to 5As shown, in order to install and assemble the smoke filter structure 32, the upper moxibustion cylinder 30 includes an inner cylinder 301 and an outer cylinder 302. The bottom of the inner cylinder 301 is inserted into the lower moxibustion cylinder 20, and the top of the inner cylinder 301 is fitted with the outer cylinder 302. The smoke filter structure 32 is arranged on the inner wall of the outer cylinder 302 or sandwiched in the area between the inner cylinder 301 and the outer cylinder 302. Both methods of the smoke filter structure 32 can be realized.

[0055] The following embodiments pertain to a smoke filter structure 32 that is independently arranged on the inner wall of the outer cylinder 302.

[0056] Example 3

[0057] In the second embodiment, as Figures 6 to 12 As shown, in order to achieve separate control of the temperature of the warm needle and the intervening material, the intervening warm needle acupuncture device also includes an isolation cylinder 40, which can be inserted into the central hole 33, and the vertical position of the isolation cylinder 40 relative to the moxa stick 31 is adjustable.

[0058] By adjusting the position of the isolation cylinder 40 relative to the moxa stick 31, the moxa stick 31 and the sterile needle 10 are separated. After separation, the heating temperature of the sterile needle 10 by the moxa stick 31 can be controlled independently. Since the distance between the moxa stick 31 and the sterile needle 10 remains constant during physiotherapy, only the distance between the burning point of the moxa stick 31 and the skin changes when it burns, which means the distance between the heating point of the sterile needle 10 and the skin changes. However, the moxibustion cylinder structure is in a relatively closed environment, and internal heat will accumulate, thus affecting the temperature transmitted to the skin by the sterile needle 10. Therefore, the isolation cylinder 40 can temporarily isolate the sterile needle 10 and the moxa stick 31, thereby solving most of the heat source of the sterile needle 10 and achieving the effect of warm needle temperature control.

[0059] Example 4

[0060] In the described embodiment 3, as Figures 10 to 12 As shown, the outer wall of the inner cylinder 301 is provided with an external thread, and the inner wall of the moxibustion lower cylinder 20 is provided with an internal thread. The internal and external threads are threaded together. The upper and lower positions of the moxibustion lower cylinder 20 and the inner cylinder 301 can be adjusted through the internal and external thread structure, thereby enabling the temperature of the moxibustion to be adjusted independently, preventing poor therapeutic effect due to insufficient temperature or burns due to excessive temperature.

[0061] The outer cylinder 302 and the inner cylinder 301 are vertically slidingly fitted. An external protrusion 305 is provided on the inner wall of the outer cylinder 302, and an axial groove 306 is provided on the outer wall of the inner cylinder 301. The axial groove 306 and the external protrusion 305 are fitted together. In this design, the adjustable length of the outer cylinder 302 relative to the inner cylinder 301 is the sum of the lengths of the isolation cylinder 40 and the moxibustion column 31.

[0062] Since the inner cylinder 301 and the lower moxibustion cylinder 20 are adjusted using a threaded structure, the self-locking effect of the threaded structure can stably maintain their adjusted positions. When the outer cylinder 302 and the inner cylinder 301 also need to be adjusted, a rotational or direct fitting structure cannot be used to achieve this adjustment. Therefore, circumferential constraints are necessary to prevent accidental position adjustments of the inner cylinder 301 and the lower moxibustion cylinder 20 during the adjustment of the outer cylinder 302 and the inner cylinder 301.

[0063] Example 5

[0064] In embodiment 3, because the moxa stick 31 has a central hole 33 in its middle, the traditional insertion and fixing method (inserting from top to bottom) cannot effectively ensure that the moxa stick 31 burns at the end. Due to thermodynamic distance, the clamping force at the end cannot be guaranteed, causing the moxa stick 31 to scatter. To address this problem, the following improvements are made:

[0065] like Figure 4 As shown, the bottom of the inner cylinder 301 is provided with a moxa stick support frame 303, and the middle part of the moxa stick support frame 303 is provided with an upward flip structure 304, which is embedded in the moxa stick 31. The moxa stick support frame 303 can be a mesh structure, or multiple independently arranged needles can be inserted into the moxa stick 31, or a clip can be used to clamp the outside of the moxa stick 31.

[0066] The upward tilting height of the upward tilting structure 304 is 2-5mm, which facilitates maintaining a certain connection strength with the moxa stick support frame 303 after the moxa stick 31 is formed.

[0067] The bottom of the moxa stick 31 is bonded together using the moxa stick support frame 303. The moxa wool of the moxa stick 31 is directly pressed onto the upper flip structure 304 of the moxa stick support frame 303 for fixation. At the same time, the center hole 33 is formed. Since the moxa stick support frame 303 provides a fulcrum for the moxa stick 31, the moxa stick 31 will not scatter. Because the pressed or rolled moxa stick maintains a certain shape after burning and is not prone to collapse, the moxa ash of the moxa stick 31 remains columnar and does not collapse from the bottom to the top.

[0068] Example 6

[0069] In the fourth embodiment, as Figure 6 and Figure 7 As shown, the top of the isolation cylinder 40 is connected to a connecting ring 41 via multiple circumferentially arranged connecting bodies 42. The connecting ring 41 is located above the moxa stick 31 and its vertical position relative to the moxa stick 31 is adjustable. In this embodiment, the connecting ring 41 is located above the moxa stick 31. The connecting ring 41 can serve as a support structure for fixing the smoke filter structure 32 to the inner wall of the outer cylinder 302.

[0070] By adjusting the height of the outer cylinder 302 relative to the inner cylinder 301 axially, the outer cylinder 302 drives the connecting ring 41 and the connecting body 42 to move the isolation cylinder 40 upward from the center hole 2 33, so that the burning point of the moxa stick 31 directly heats the sterile needle 10. When the temperature is too high (when the temperature feels hot to the skin), the outer cylinder 302 is moved downward relative to the inner cylinder 301 axially, and the connecting ring 41 and the connecting body 42 drive the isolation cylinder 40 downward from the center hole 2 33. The moxa stick 31 and the sterile needle 10 are separated by the isolation cylinder 40, which is equivalent to removing almost all the heat source of the sterile needle 10.

[0071] Example 7

[0072] In the fourth embodiment, as Figure 8 and Figure 9 As shown, multiple circumferentially arranged connecting pieces 44 at the bottom of the isolation cylinder 40 are connected to a lifting ring 43. Multiple connecting wires 45 are evenly distributed circumferentially on the lifting ring 43, passing through the moxa stick support frame 303. The multiple connecting wires 45 are distributed around the periphery of the moxa stick 31 and close to the inner cylinder 301. A fixing ring disc 46 is connected to the top of each connecting wire 45 (heat-resistant metal wire), and the fixing ring disc 46 is installed inside the outer cylinder 302 above the inner cylinder 301. In this embodiment, the lifting ring 43 is located below the moxa stick 31. The fixing ring disc 46 can be used as a support structure for fixing the smoke filter structure 32 to the inner wall of the outer cylinder 302.

[0073] By adjusting the height of the outer cylinder 302 relative to the inner cylinder 301 axially, the outer cylinder 302 drives the lifting ring 43, connecting wire 45, and connecting piece 44 to move the isolation cylinder 40 downward from the center hole 2 33, so that the burning point of the moxa stick 31 directly heats the sterile needle 10. When the temperature is too high (when the temperature feels hot to the skin), the outer cylinder 302 moves downward relative to the inner cylinder 301 axially, driving the lifting ring 43, connecting wire 45, and connecting piece 44 to move the isolation cylinder 40 upward from the center hole 2 33. The moxa stick 31 and the sterile needle 10 are separated by the isolation cylinder 40, which is equivalent to removing almost all the heat source of the sterile needle 10.

[0074] When the moxibustion lower tube 20 is fitted along the axis of the sterile needle 10, the distance between the moxa cone 31 and the spacer material 22 is minimal. At this time, the top of the spacer tube 40 will be inserted into the central hole 33 of the moxa cone 31, and the spacer tube 40 and the central hole 33 will not contact each other. The bottom of the spacer tube 40 may or may not contact the spacer material 22. Even if it does not contact the spacer material 22, the gap between them is very small and can be ignored. In this way, the sterile needle 10 can be inserted into the central hole 33 in one go without the top of the sterile needle 10 accidentally touching the bottom of the moxa cone 31 and causing accidental deep puncture of the sterile needle 31. This is something that cannot be avoided in Example 5.

[0075] Example 8

[0076] In the first embodiment, as Figure 1 As shown, the bottom of the moxibustion lower tube 20 is provided with an adhesive ring 25, which is made of silicone and has a skin-friendly effect.

[0077] Example 9

[0078] The method of using a heat acupuncture device with an indirect needle is as follows:

[0079] Step 1, Pill Installation

[0080] Insert the spacer material 22 into the inner bottom of the lower moxibustion tube 20, separate the upper moxibustion tube 30 and the lower moxibustion tube 20, adjust the relative positions of the inner tube 301 and the outer tube 302 to adjust the isolation tube 40 away from the bottom of the moxa stick 31, ignite the moxa stick 31 from below, reassemble the upper moxibustion tube 30 and the lower moxibustion tube 20, adjust the position of the upper moxibustion tube 30 relative to the lower moxibustion tube 20 until the moxa stick 31 and the spacer material 22 are in the closest position;

[0081] Step 2, acupuncture

[0082] Clean and disinfect the corresponding location on the patient's acupoint skin, insert the sterile needle 10 to a certain depth, and peel off the release paper of the adhesive ring 25;

[0083] Step 3, warm needle with a barrier

[0084] Keep the center hole 23 of the spacer material 22 coaxial with the sterile needle 10, and put the moxibustion lower tube 20 on the outside of the sterile needle 10 along the axis of the sterile needle 10, and attach it to the skin through the adhesive ring 25.

[0085] Step 4, temperature adjustment

[0086] By adjusting the position of the upper moxibustion cylinder 30 relative to the lower moxibustion cylinder 20, the distance between the moxa cone 31 and the spacer material 22 is at a temperature that the patient's skin can tolerate.

[0087] By adjusting the position of the outer cylinder 302 relative to the inner cylinder 301, the isolation cylinder 40 is selectively positioned between the moxa stick 31 and the sterile needle 10 to adjust the temperature of the sterile needle 10.

[0088] Step 5: The physical therapy is complete. Remove the moxibustion tube 20 and the sterile needle 10 in sequence.

[0089] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. The substitutions may be replacements of some structures, devices, or method steps, or they may be complete technical solutions. Equivalent substitutions or modifications made to the technical solutions and inventive concepts of the present invention should all be covered within the scope of protection of the present invention.

Claims

1. A type of insulated warm needling acupuncture device, characterized in that, include: The lower tube of moxibustion therapy (20) has a partition material (22) installed at the bottom. The partition material (22) is a sheet or cake structure. A central hole (23) for accommodating a sterile needle (10) is provided in the middle of the partition material (22). A ventilation hole (24) is provided on the side of the lower tube of moxibustion therapy (20). The ventilation hole (24) is located above the partition material. The upper moxibustion tube (30) is height-adjustable relative to the lower moxibustion tube (20). The upper moxibustion tube (30) is equipped with an moxa stick (31) and a smoke filter structure (32) located at the top of the moxa stick (31). The middle part of the moxa stick (31) is provided with a central hole two (33) for accommodating a sterile needle (10). The center of the smoke filter structure (32) is provided with a central hole three for accommodating a sterile needle (10). After the upper moxibustion tube (30) and the lower moxibustion tube (20) are combined, the central hole one (23), the central hole two (33), and the central hole three are coaxially arranged.

2. The insulated warm needling acupuncture device according to claim 1, characterized in that, The upper moxibustion tube (30) includes an inner tube (301) and an outer tube (302). The bottom of the inner tube (301) is inserted into the lower moxibustion tube (20), and the top of the inner tube (301) is fitted with the outer tube (302). The smoke filtering structure (32) is arranged on the inner wall of the outer tube (302) or sandwiched in the area between the inner tube (301) and the outer tube (302).

3. The insulated warm needling acupuncture device according to claim 2, characterized in that, The insulated warm needle acupuncture device also includes an isolation cylinder (40), which can be inserted into the central hole two (33), and the position of the isolation cylinder (40) relative to the moxa stick (31) is adjustable.

4. The insulated warm needling acupuncture device according to claim 3, characterized in that, The outer wall of the inner cylinder (301) is provided with an external thread, and the inner wall of the moxibustion lower cylinder (20) is provided with an internal thread, and the internal thread and the external thread are threaded together; The outer cylinder (302) and the inner cylinder (301) are vertically slidingly fitted.

5. The insulated warm needling acupuncture device according to claim 4, characterized in that, The bottom of the inner cylinder (301) is provided with a moxa stick support frame (303), and the middle part of the moxa stick support frame (303) is provided with an upward flip structure (304), which is embedded in the moxa stick (31). The upward tilt height of the upward tilt structure (304) is 2-5mm.

6. The insulated warm needling acupuncture device according to claim 5, characterized in that, The top of the isolation cylinder (40) is connected to a connecting ring (41) via multiple circumferentially arranged connecting bodies (42). The connecting ring (41) is located above the moxa stick (31) and its vertical position relative to the moxa stick (31) is adjustable.

7. The insulated warm needling acupuncture device according to claim 5, characterized in that, The bottom of the isolation cylinder (40) has multiple circumferentially arranged connecting pieces (44) connected to a lifting ring (43). Multiple connecting wires (45) are evenly arranged circumferentially on the lifting ring (43). The connecting wires (45) pass through the moxibustion column support frame (303). The multiple connecting wires (45) are distributed around the moxibustion column (31) and close to the inner cylinder (301). The top of the connecting wires (45) is connected to a fixing ring disc (46). The fixing ring disc (46) is installed in the outer cylinder (302) above the inner cylinder (301).

8. The insulated warm needling acupuncture device according to claim 4, characterized in that, An external protrusion (305) is provided on the inner wall of the outer cylinder (301), and an axial groove (306) is provided on the outer wall of the inner cylinder (302). The axial groove (306) and the external protrusion (305) are installed together.

9. The insulated warm needling acupuncture device according to claim 1, characterized in that, The bottom of the moxibustion lower tube (20) is provided with an adhesive ring (25).

10. A method of using a heat-needling acupuncture device with an insulated surface, characterized in that, The steps are as follows: Step 1, Pill Installation Insert the spacer material (22) into the bottom of the lower moxibustion tube (20), separate the upper moxibustion tube (30) and the lower moxibustion tube (20), adjust the relative positions of the inner tube (302) and the outer tube (301) to adjust the isolation tube (40) away from the bottom of the moxa stick (31), ignite the moxa stick (31) from below, reassemble the upper moxibustion tube (30) and the lower moxibustion tube (20), adjust the position of the upper moxibustion tube (30) relative to the lower moxibustion tube (20) until the moxa stick (31) and the spacer material (22) are in the closest position; Step 2, acupuncture Clean and disinfect the corresponding position on the patient's acupoint skin, insert a sterile needle (10) to a certain depth, and peel off the release paper of the adhesive ring (25); Step 3, warm needle with a barrier Keep the central hole (23) of the spacer material (22) coaxial with the sterile needle (10), and put the moxibustion lower tube (20) on the outside of the sterile needle (10) along the axis of the sterile needle (10). The top of the sterile needle (10) passes through the top part of the smoke filter structure (32) and is attached to the skin through the adhesive ring (25). Step 4, temperature adjustment The position of the upper moxibustion tube (30) is adjusted relative to the lower moxibustion tube (20) so that the distance between the moxa stick (31) and the interlayer material (22) is at a temperature that the patient's skin can tolerate; By adjusting the position of the outer cylinder (301) relative to the inner cylinder (302), the isolation cylinder (40) can be selectively positioned between the moxa stick (31) and the sterile needle (10) to adjust the temperature of the sterile needle (10); Step 5: Physiotherapy is complete. Remove the sterile needle (10) and the moxibustion tube (20) in sequence.

Citation Information

Patent Citations

  • Liftable opening-closing type anti-scald needle warming moxibustion safety device

    CN120605203A