Anti-scald thunder-fire moxibustion device

By improving the box structure and protective pad design of the Lei Huo Moxibustion device, the problems of unstable moxa stick fixation and insufficient heat insulation were solved, achieving stable moxa stick position and heat isolation, thus improving treatment safety and comfort.

CN223542177UActive Publication Date: 2025-11-14ZHENJIANG 359 HOSPITAL
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Patent Information

Application Number
CN202422219812.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-11-14
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

In existing moxibustion devices, the moxa sticks are not fixed securely, which may cause them to slide or fall, potentially causing burns to the patient's skin. In addition, the heat insulation effect is insufficient, posing a risk of burns.

Method used

The device employs a first and second box structure, with a drive assembly connecting an abutment block to clamp the moxa stick. A protective pad is installed at the bottom of the second box, consisting of a moisture-absorbing layer, a heat-insulating layer, and an anti-scalding layer, enhancing its fixation and heat insulation performance.

Benefits of technology

It effectively prevents moxa sticks from slipping and causing burns, improves safety and comfort during treatment, ensures stable position of the moxa stick, reduces heat transfer to the patient's skin, and enhances the treatment experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-scald thunder fire moxibustion, which relates to the fire moxibustion technical field, and comprises a first box body and a second box body, the bottom end of the first box body is provided with a protective pad, both sides of the second box body are provided with guide grooves, the inner part of the guide groove is slidingly connected with a first abutting block, and the first abutting block is provided with a second abutting block. The two sides of the first box body are each provided with a first driving assembly. By the adoption of the structure, the second driving assemblies are installed on the two sides of the second box body and connected with the second abutting blocks, moxa sticks can be clamped, the situation that the moxa sticks fall off due to shaking is avoided, the first driving assembly is installed on the first box body and connected with the first abutting blocks, and after the height of the second box body is adjusted, the moxa sticks can be fixed through the first abutting blocks. The second box body and the first box body can be fixed, the situation that the second box body slides downwards to drive moxa sticks to be too close to the skin of a patient is avoided, and therefore through improvement, the moxa sticks can be effectively prevented from scalding the skin of the patient, and guarantee is provided for fire moxibustion of the patient.
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Description

Technical Field

[0001] This utility model belongs to the field of moxibustion technology, and specifically relates to a scald-proof thunder-fire moxibustion method. Background Technology

[0002] Lei Huo Jiu is a treatment method that involves igniting specially made moxa sticks and applying them to specific acupoints. Its principle is based on the theory of meridians and collaterals. It utilizes the heat and pharmacological effects of burning medicine to stimulate relevant acupoints through suspended moxibustion, thereby activating the meridian qi, opening up the local skin mechanism, and allowing the medicine to penetrate into the corresponding acupoints. This has the effects of dredging the meridians and collaterals, promoting blood circulation, and improving blood circulation in the surrounding tissues.

[0003] For example, Chinese patent CN217938679U discloses a cylindrical outer shell and an outer sleeve. The bottom area of ​​the outer shell is a nesting part, and the outer diameter of the outer shell in the nesting part is smaller than the inner diameter of the outer sleeve. The outer diameter of the top of the outer shell is the same as the outer diameter of the outer sleeve. It can rotate freely in the nested state. The bottom and top of the outer sleeve are provided with outer edge protrusions for hand-held rotation. The outer shell and the outer sleeve are hollow structures for holding moxa sticks. The bottom of the outer sleeve is embedded with a smoke exhaust plate with several smoke exhaust holes for close contact with the human body for moxibustion. The top of the outer shell has a through hole with the inner diameter of the through hole being the same as the diameter of the moxa stick, which facilitates the burning and propulsion of the moxa stick.

[0004] While the aforementioned patents have solved the problem of unstable moxa stick fixation leading to burns, some shortcomings still exist and require improvement. The use of elastic clips to hold and fix the moxa stick is generally ineffective. When the patient moves, the moxa stick may slide and fall, contacting the bottom of the casing and causing burns to the patient's skin. Adjusting the height of the upper casing to keep the moxa stick away from the patient's skin can also avoid the risk of burns. However, relying solely on the sleeve connection is not tight enough, which can cause the upper casing to slide and the moxa stick to fall downwards and contact the bottom of the casing, causing burns to the patient's skin. In addition, the heat insulation effect at the contact point is generally poor, which can also cause burns to the patient's skin. Utility Model Content

[0005] In view of the problems mentioned in the background art, the purpose of this utility model is to provide a scalding-proof thunder-fire moxibustion device to solve the problems in the background art.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution:

[0007] A scalding-resistant moxibustion device includes a first box and a second box. The bottom of the first box is provided with a protective pad. Guide grooves are provided on both sides of the second box. A first abutment block is slidably connected inside the guide groove. A first driving component is provided on both sides of the first box. One end of the first abutment block is fixedly connected to one end of the first driving component. A second driving component is provided on both sides of the second box away from the first box. A second abutment block is fixedly connected to one end of the second driving component. One side of the second abutment block is movably connected inside the second box. An arc groove is provided at one end of the second abutment block. An air hole is provided at the bottom of the first box.

[0008] The second drive assembly includes a second screw threadedly connected to the second housing. The second screw is rotatably connected to the second abutment block via a bearing. A second torsion block is fixedly connected to one end of the second screw away from the second abutment block. Torsion bars are fixedly connected to both sides of the second torsion block.

[0009] As a preferred technical solution, an assembly block is fixedly connected to the bottom of the second box body, and a groove is provided inside the assembly block, which is connected to an air hole.

[0010] As a preferred technical solution, the protective pad is composed of a moisture-absorbing layer, a heat-insulating layer, and an anti-scalding layer. The anti-scalding layer is fixedly connected to the bottom of the first box body, the bottom of the anti-scalding layer is fixedly connected to the heat-insulating layer, and the bottom of the heat-insulating layer is fixedly connected to the moisture-absorbing layer.

[0011] As a preferred technical solution, the first driving component includes a first screw, which is threadedly connected to both sides of the second housing. One end of the first screw is fixedly connected to one end of the first abutment block, and a first torsion block is fixedly connected to the end of the first screw away from the first abutment block. An anti-slip groove is provided on the periphery of the first torsion block.

[0012] As a preferred technical solution, the second box body has a storage slot inside and a material outlet at the bottom. The material outlet is connected to the storage slot, and the second abutment block is movably connected inside the storage slot.

[0013] In summary, the present invention has the following main advantages:

[0014] First, this utility model, by installing second driving components on both sides of the second box body, with the second driving components connected to the second abutment blocks, can clamp the moxa stick tightly, preventing it from easily shaking and slipping off. By installing a first driving component on the first box body, with the first driving component connected to the first abutment block, after the height of the second box body is adjusted, the second box body can be fixed to the first box body, preventing the second box body from sliding downwards and causing the moxa stick to get too close to the patient's skin. Therefore, through this improvement, it can effectively prevent the moxa stick from causing burns to the patient's skin, providing protection for the patient's moxibustion.

[0015] Secondly, this utility model, by installing a protective pad at the bottom of the second box, the protective pad is composed of a moisture-absorbing layer, a heat-insulating layer and an anti-scalding layer, which can effectively prevent heat from being transferred to the bottom of the first box and causing burns to the patient's skin, so that the patient can safely undergo moxibustion treatment and improve the patient's comfort during the moxibustion process. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the separate structure of the first and second boxes of this utility model;

[0018] Figure 3 This is a utility model Figure 2 A magnified structural diagram at point A;

[0019] Figure 4 This is a schematic diagram of the protective pad structure of this utility model.

[0020] Reference numerals: 1. First box body; 2. Second box body; 3. Protective pad; 31. Moisture-absorbing layer; 32. Heat insulation layer; 33. Anti-scalding layer; 4. Air hole; 5. Assembly block; 6. Groove; 7. Guide groove; 8. First abutment block; 9. First drive assembly; 91. First screw; 92. First torsion block; 93. Anti-slip groove; 10. Second abutment block; 101. Arc groove; 11. Second drive assembly; 111. Second screw; 112. Bearing; 113. Second torsion block; 114. Torsion bar; 12. Storage slot; 13. Material outlet. Detailed Implementation

[0021] Example

[0022] refer to Figures 1 to 4The anti-scalding moxibustion device described in this embodiment includes a first box 1 and a second box 2. The bottom of the first box 1 is provided with a protective pad 3. Guide grooves 7 are provided on both sides of the second box 2. A first abutment block 8 is slidably connected inside the guide grooves 7. A first driving component 9 is provided on both sides of the first box 1. One end of the first abutment block 8 is fixedly connected to one end of the first driving component 9. A second driving component 11 is provided on both sides of the second box 2 away from the first box 1. A second abutment block 10 is fixedly connected to one end of the second driving component 11. One side of the second abutment block 10 is movably connected inside the second box 2. An arc groove 101 is provided at one end of the second abutment block 10. An air hole 4 is provided at the bottom of the first box 1. Through the above settings, the risk of the moxa stick falling due to instability during treatment is reduced, which can significantly improve the safety of using moxibustion therapy, allowing patients to focus more on the moxibustion process and improve the overall treatment experience.

[0023] refer to Figure 1 The bottom of the second box 2 is fixedly connected to the assembly block 5. The assembly block 5 has a groove 6 inside, which is connected to the air hole 4. The protective pad 3 is fixedly connected to the bottom of the assembly block 5. By fixing the assembly block 5 at the bottom of the second box 2 and opening the groove 6 inside the assembly block 5, the air hole 4 is raised, and hot air enters the groove 6 and accumulates, which is convenient for physiotherapy to patients.

[0024] refer to Figure 4 The protective pad 3 is composed of a moisture-absorbing layer 31, a heat-insulating layer 32, and an anti-scalding layer 33. The heat-insulating layer is fixedly connected to the bottom of the first box 1, the bottom of the heat-insulating layer is fixedly connected to the heat-insulating layer 32, and the bottom of the heat-insulating layer 32 is fixedly connected to the moisture-absorbing layer 31. By setting the protective pad 3, the moisture-absorbing layer 31 is made of microfiber, which can absorb sweat and keep dry. The heat-insulating layer 32 is made of silicone, which has excellent heat insulation performance and prevents the heat of the first box 1 from being transferred to the patient's skin. The anti-scalding layer 33 is a high-temperature resistant coating that can resist high temperatures and prevent heat from being directly transferred to the patient's skin.

[0025] refer to Figure 2 The first drive assembly 9 includes a first screw 91, which is threaded to both sides of the second housing 2. One end of the first screw 91 is fixedly connected to one end of the first abutment block 8. A first torsion block 92 is fixedly connected to the end of the first screw 91 away from the first abutment block 8. An anti-slip groove 93 is provided on the periphery of the first torsion block 92. By setting the first drive assembly 9, rotating the first torsion block 92 causes the first screw 91 to rotate, thereby causing the first abutment block 8 to move and press against the guide groove 7 to prevent the first housing 1 from sliding against the second housing 2. A rubber sheet is fixed at the contact part between the first abutment block 8 and the guide groove 7 to increase the frictional resistance and prevent the second housing 2 from sliding.

[0026] refer to Figure 3The second drive assembly 11 includes a second screw 111, which is threadedly connected to the second housing 2. The second screw 111 is rotatably connected to the second contact block 10 via a bearing 112. A second torsion block 113 is fixedly connected to one end of the second screw 111 away from the second contact block 10. Torsion bars 114 are fixedly connected to both sides of the second torsion block 113. By setting the second drive assembly 11, rotating the second torsion block 113 causes the second screw 111 to rotate, thereby causing the second contact block 10 to move and contact the moxa stick, clamping and fixing the moxa stick to prevent it from falling. A rubber sheet is fixed inside the arc groove 101 to increase frictional resistance and prevent the moxa stick from sliding.

[0027] refer to Figure 2 The second box 2 has a storage slot 12 inside and a material outlet 13 at the bottom. The material outlet 13 is connected to the storage slot 12. The second abutment block 10 is movably connected inside the storage slot 12. The storage slot 12 inside the second box 2 is used to insert moxa sticks so that the moxa sticks are installed on the box. The material outlet 13 is provided to facilitate the user to take out the moxa sticks.

[0028] Operating principle and advantages: The moxa stick is inserted into the first housing 1. The torsion bar 114 drives the second torsion block 113 to rotate, which in turn drives the second screw 111 to rotate. The second screw 111, through the bearing 112, pushes the second contact block 10 to move, clamping and fixing the moxa stick to prevent it from falling out during moxibustion. Then, the second housing 2 is pulled and slid onto the first housing 1, causing the first contact block 8 to slide within the guide groove 7. After adjusting the height of the moxa stick, the first torsion block 92 is rotated. The anti-slip groove 93 on block 92 increases frictional resistance and facilitates rotation, thereby causing the first torsion block 92 to drive the first screw 91 to rotate. The first screw 91 then drives the first contact block 8 to move and press against the guide groove 7, preventing the second box 2 from sliding against the first box 1 and avoiding changes in the position of the moxa stick that could cause burns to the patient's skin. The protective pad 3 at the bottom of the assembly block 5 on the second box 2 effectively prevents heat from being transferred to the bottom of the first box 1 and causing burns to the patient's skin, allowing the patient to receive moxibustion treatment with peace of mind and improving the patient's comfort during the moxibustion process.

Claims

1. A scald-resistant moxibustion device, comprising a first housing (1) and a second housing (2), characterized in that: The bottom of the first box (1) is provided with a protective pad (3), and the two sides of the second box (2) are provided with guide grooves (7). The guide grooves (7) are slidably connected with a first abutting block (8). The two sides of the first box (1) are provided with a first driving assembly (9). One end of the first abutting block (8) is fixedly connected to one end of the first driving assembly (9). The two sides of the second box (2) away from the first box (1) are provided with a second driving assembly (11). One end of the second driving assembly (11) is fixedly connected with a second abutting block (10), and one side of the second abutting block (10) is movably connected to the inside of the second box (2). One end of the second abutting block (10) is provided with an arc groove (101). The bottom of the first box (1) is provided with an air hole (4). The second drive assembly (11) includes a second screw (111), which is threadedly connected to the second housing (2). The second screw (111) is rotatably connected to the second abutment block (10) via a bearing (112). A second torsion block (113) is fixedly connected to one end of the second screw (111) away from the second abutment block (10). Torsion bars (114) are fixedly connected to both sides of the second torsion block (113).

2. The anti-scalding thunder-fire moxibustion method according to claim 1, characterized in that: The bottom end of the second box (2) is fixedly connected to an assembly block (5), and the assembly block (5) has a groove (6) inside, which is connected to an air hole.

3. The anti-scalding thunder-fire moxibustion method according to claim 1, characterized in that: The protective pad (3) is composed of a moisture-absorbing layer (31), a heat-insulating layer (32), and an anti-scalding layer (33). The anti-scalding layer (33) is fixedly connected to the bottom of the first box (1). The bottom of the anti-scalding layer (33) is fixedly connected to the heat-insulating layer (32), and the bottom of the heat-insulating layer (32) is fixedly connected to the moisture-absorbing layer (31).

4. The anti-scalding thunder-fire moxibustion method according to claim 1, characterized in that: The first drive assembly (9) includes a first screw (91), which is threaded to both sides of the second housing (2). One end of the first screw (91) is fixedly connected to one end of the first abutment block (8). A first torsion block (92) is fixedly connected to the end of the first screw (91) away from the first abutment block (8). An anti-slip groove (93) is provided on the periphery of the first torsion block (92).

5. The anti-scalding thunder-fire moxibustion method according to claim 1, characterized in that: The second box body (2) has a storage slot (12) inside and a material outlet (13) at the bottom end. The material outlet (13) is connected to the storage slot (12), and the second abutment block (10) is movably connected inside the storage slot (12).

Citation Information

Patent Citations

  • Thunder-fire moxibustion device

    CN217938679U