Temperature-controllable anti-scalding ceramic moxa cautery

CN224806754UActive Publication Date: 2026-09-29NANYANG DEDAOAI HEALTH TECH CO LTD
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Patent Information

Application Number
CN202521055513.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2026-09-29
Estimated Expiration
2035-05-26

AI Technical Summary

Technical Problem

那么当需要较长时间针对一个部位进行灸疗时(这种情况非常普遍),持续手持艾棒进行操作就会很不方便:一方面会产生疲累感;一方面,要始终保持好火头与皮肤之间的距离,因为离得过远会降低艾灸效果,离得过近又易发生灼伤事故

Benefits of technology

[0008]本实用新型的有益效果是:由于该可抓握控温的防烫陶瓷艾灸器通过其陶瓷抓握罐隔离了艾粒燃烧的火源,而由陶瓷抓握罐将其内腔积聚的热能缓速均匀地传导给皮肤、渗入经穴,因此在使用时,艾灸器(陶瓷抓握罐)可以随意贴触皮肤而没有被灼伤的风险顾虑,这样就可以大大降低艾灸操作的难度并提高操作便利性,艾灸器可以在皮肤上进行长时间的定点接触,也可以滑动以同时艾灸一片区域,还可以用艾灸器进行适当的揉按操作以增强艾灸效果。通过手部对其辅助进气孔的启闭,可以在一定程度上调节艾灸器的表面温度,以使患者感到最为适宜,提高艾灸效果。该艾灸器的结构设计也使得其在使用上十分方便,操作简单。

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Abstract

The utility model relates to a kind of anti-scalding ceramic moxa-moxibustion device of grip temperature control, including hollow ceramic grip jar and moxa-moxibustion plate, the top surface of ceramic grip jar is formed with smoke hole, side wall is formed with auxiliary air inlet hole, bottom surface is formed with moxa-moxibustion plate embedding hole, moxa-moxibustion plate includes ring seat, ring hole of ring seat is fixedly provided with silk screen layer and carbonized cloth layer above and below, moxa particle support is equipped above silk screen layer, the upper surface of ring seat is formed with several support piers along ring face interval, main air inlet hole is formed on the ring face between adjacent two support piers, elastic plug ring is equipped above support pier, each support pier is fixedly connected with elastic plug ring, moxa-moxibustion plate is kept with the clamping joint of ceramic grip jar bottom by the tight cooperation of its elastic plug ring and the moxa-moxibustion plate embedding hole of ceramic grip jar. The anti-scalding ceramic moxa-moxibustion device of grip temperature control can greatly reduce the difficulty of moxa-moxibustion operation and improve operation convenience because it can be randomly attached to skin without the risk of being burned when in use.
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Description

Technical Field

[0001] This utility model relates to the technical field of moxibustion instruments, and in particular to a grippable, temperature-controlled, anti-scalding ceramic moxibustion device. Background Technology

[0002] Moxibustion is one of the important traditional Chinese medicine therapies. Currently, most moxibustion treatments use moxa sticks, which are held by the practitioner or the patient themselves and used to apply heat to specific acupoints. However, when a prolonged treatment is needed on a single area (a very common occurrence), continuously holding the moxa stick becomes inconvenient: it can cause fatigue; and it requires maintaining a proper distance between the burning tip and the skin, as too much distance reduces the effectiveness of the treatment, while too much distance increases the risk of burns. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a grippable and temperature-controlled anti-scalding ceramic moxibustion device to overcome the defects and shortcomings of the existing technology and products as described in the background art.

[0004] The technical solution adopted by this utility model to solve its technical problem is: a gripable and temperature-controlled anti-scalding ceramic moxibustion device, including a hollow ceramic gripping jar and a moxibustion disc. The top surface of the ceramic gripping jar has several smoke outlet holes, and the side wall near the bottom has several auxiliary air inlets evenly spaced. The bottom surface has a moxibustion disc embedding hole. The moxibustion disc includes a ring seat. A wire mesh layer and a carbonized cloth layer are fixedly arranged above the ring hole of the ring seat. A moxa pellet support is arranged above the wire mesh layer. Several supports are spaced along the ring surface on the upper surface of the ring seat. A main air inlet is formed on the ring surface between two adjacent supports. An elastic locking ring is provided above the support. Each support is fixedly connected to the elastic locking ring. The moxibustion disc is kept in contact with the bottom of the ceramic gripping jar by the tensioning fit between its elastic locking ring and the moxibustion disc embedding hole of the ceramic gripping jar.

[0005] Preferably, axially spaced plugging ribs are formed evenly on the outer wall surface of the elastic plug ring.

[0006] Furthermore, the moxa stick support is made of steel wire and has a notched circular part formed by bending the steel wire and a support perpendicular to the plane of the circular part. The circular part of the moxa stick support is tightened and fixed to the inner wall of the elastic retainer ring 2-7 by deformation elastic force.

[0007] Preferably, the ceramic gripper can has 3 to 4 auxiliary air inlets formed on its side wall.

[0008] The beneficial effects of this invention are as follows: Because this grippable, temperature-controlled, anti-scalding ceramic moxibustion device isolates the heat source of the burning moxa particles through its ceramic grip container, the heat energy accumulated in its inner cavity is slowly and evenly conducted to the skin and penetrates into the acupoints. Therefore, during use, the moxibustion device (ceramic grip container) can freely touch the skin without the risk of burns. This greatly reduces the difficulty of moxibustion operation and improves ease of use. The moxibustion device can be used for prolonged fixed-point contact on the skin, or it can be slid to simultaneously treat a region. Appropriate kneading operations can also be performed to enhance the moxibustion effect. By opening and closing the auxiliary air inlet by hand, the surface temperature of the moxibustion device can be adjusted to a certain extent to ensure the patient feels most comfortable and improve the moxibustion effect. The structural design of this moxibustion device also makes it very convenient and simple to use. Attached Figure Description

[0009] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0010] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0011] Figure 2 This is a top view of the structure of this utility model;

[0012] Figure 3 This is a schematic diagram of the main structure of the moxibustion disc in this utility model (partial cross-section; in order to show its combination structure with the ceramic gripping jar, part of the ceramic gripping jar is also shown in the figure);

[0013] Figure 4 This is a top view of the moxibustion disc (the carbonized cloth layer below the mesh layer has been omitted to ensure clarity of the view);

[0014] Figure 5 This is a top view of the structure of the Ai Li support in this utility model;

[0015] Figure 6 This is a schematic diagram of the moxibustion disc from below.

[0016] In the diagram: 1. Ceramic gripper; 1-1. Smoke outlet; 1-2. Auxiliary air inlet; 2. Moxibustion disc; 2-1. Ring seat; 2-2. Mesh layer; 2-3. Carbonized cloth layer; 2-4. Moxa pellet support; 2-4-1. Insert; 2-5. Support; 2-6. Main air inlet; 2-7. Elastic retaining ring; 2-7-1. Attachment rib. Detailed Implementation

[0017] A grippable, temperature-controlled, scalding-resistant ceramic moxibustion device, such as Figures 1 to 6As shown, it includes a hollow ceramic gripper 1 and a moxibustion disc 2. The top surface of the ceramic gripper 1 has several smoke outlet holes 1-1, and the side wall near the bottom has several evenly spaced auxiliary air inlets 1-2. The bottom surface has a moxibustion disc embedding hole. The moxibustion disc 2 includes a ring seat 2-1. Above the ring hole of the ring seat 2-1, a mesh layer 2-2 and a carbonized cloth layer 2-3 are fixedly arranged, with the mesh layer 2-2 and carbonized cloth layer 2-3 adhering to each other. Above the mesh layer 2-2, a moxa pellet support 2-4 is arranged. Several supports 2-5 are formed at intervals along the annular surface on the upper surface. A main air inlet 2-6 is formed on the annular surface between two adjacent supports 2-5. An elastic locking ring 2-7 is provided above the supports 2-5. Each support 2-5 is fixedly connected to the elastic locking ring 2-7. The moxibustion disc 2 is kept in contact with the bottom of the ceramic gripping jar 1 by the tensioning fit between its elastic locking ring 2-7 and the moxibustion disc embedding hole of the ceramic gripping jar 1 (the weight of the moxibustion disc 2 is very small, and the locking force is fully capable of supporting it).

[0018] The ceramic gripping jar 1 can take many different shapes; in principle, it just needs to be easy to hold and grip, and easy to touch the skin. In this example, the ceramic gripping jar 1 is designed in the shape of a flower (rose) (see...). Figure 1 , Figure 2 ).

[0019] When using this moxibustion device, remove the moxibustion disc 2 from the bottom of the ceramic gripper jar 1, insert the moxa pellets (i.e., short, miniature moxa sticks) into the insert 2-4-1 of the moxa pellet support 2-4, ignite the moxa pellets, and then re-insert the moxibustion disc 2 into the moxibustion disc insertion hole on the bottom of the ceramic gripper jar 1. Moxibustion can then begin. During the moxibustion process, by selectively blocking several auxiliary air inlets 1-2 on the side wall of the ceramic gripper jar 1 with your hand, you can control the burning intensity of the moxa pellets inside the ceramic gripper jar 1 to a certain extent (less air intake results in lower burning intensity), thereby achieving the purpose of regulating the surface temperature of the ceramic gripper jar 1.

[0020] Both the wire mesh layer 2-2 and the carbonized cloth layer 2-3 can hold the soot and prevent it from falling out and burning the skin, while ensuring a certain degree of air permeability. The combination of the wire mesh layer 2-2 and the carbonized cloth layer 2-3 can improve the structural strength on the one hand, and ensure the interception effect of soot on the other hand.

[0021] In this example, axially spaced ribs 2-7-1 are formed evenly on the outer wall surface of the elastic retaining ring 2-7. The presence of the ribs 2-7-1 can improve the clamping effect between the elastic retaining ring 2-7 and the moxibustion disc insertion hole of the ceramic gripping jar 1, thereby ensuring the stability and reliability of the connection between the two.

[0022] In this example, the moxa pellet support 2-4 is made of steel wire and has a notched circular portion formed by bending the steel wire and a support 2-4-1 perpendicular to the plane of the circular portion. The circular portion of the moxa pellet support 2-4 is tightened and fixed to the inner wall of the elastic retaining ring 2-7 by deformation elastic force. This shape and structure of the moxa pellet support 2-4 can both fix itself and enhance the elasticity of the elastic retaining ring 2-7, thereby increasing the tension of the elastic retaining ring 2-7 on the moxibustion disc insertion hole of the ceramic gripping jar 1.

[0023] It is advisable to have 3 to 4 auxiliary air inlets 1-2 formed on the side wall of the ceramic gripping can 1, so as to facilitate selective blocking and opening / closing by the hand. In this example, 3 auxiliary air inlets 1-2 are evenly formed on the side wall of the flower-shaped ceramic gripping can 1.

[0024] The above embodiments are only used to explain the present utility model and are not intended to limit the protection of the present utility model. Any non-substantial modifications made based on the essential solution of the present utility model shall fall within the protection scope of the present utility model.

Claims

1. A grippable, temperature-controlled, anti-scalding ceramic moxibustion device, characterized in that: The device includes a hollow ceramic gripper (1) and a moxibustion disc (2). The top surface of the ceramic gripper (1) has several smoke outlet holes (1-1), and the side wall near the bottom has several evenly spaced auxiliary air inlets (1-2). The bottom surface has a moxibustion disc embedding hole. The moxibustion disc (2) includes a ring seat (2-1). Above the ring hole of the ring seat (2-1), a mesh layer (2-2) and a carbonized cloth layer (2-3) are fixedly arranged, with the mesh layer (2-2) and carbonized cloth layer (2-3) fitting together vertically. Above the mesh layer (2-2), a moxa pellet support (2-3) is provided. 4) Several supports (2-5) are formed at intervals along the annular surface on the upper surface of the ring seat (2-1). A main air inlet (2-6) is formed on the annular surface between two adjacent supports (2-5). An elastic locking ring (2-7) is provided above the supports (2-5). Each support (2-5) is fixedly connected to the elastic locking ring (2-7). The moxibustion disc (2) is kept in contact with the bottom of the ceramic gripping jar (1) by the tensioning fit between its elastic locking ring (2-7) and the moxibustion disc embedding hole of the ceramic gripping jar (1).

2. The gripable, temperature-controlled, anti-scalding ceramic moxibustion device according to claim 1, characterized in that: Axial plugging ribs (2-7-1) are evenly spaced on the outer wall surface of the elastic plug ring (2-7).

3. The grip-friendly, temperature-controlled, anti-scalding ceramic moxibustion device according to claim 1, characterized in that: The moxa cone support (2-4) is made of steel wire and has a notched circular part formed by bending the steel wire and a support (2-4-1) perpendicular to the plane of the circular part. The circular part of the moxa cone support (2-4) is tightened and fixed to the inner wall of the elastic retainer ring (2-7) by deformation elastic force.

4. The grip-friendly, temperature-controlled, anti-scalding ceramic moxibustion device according to claim 1, characterized in that: The ceramic gripping can (1) has 3 to 4 auxiliary air inlets (1-2) formed on its side wall.