Double-cabin moxa cautery head

CN224598445UActive Publication Date: 2026-08-07GUANGZHOU MOXIBUSTION EQUIPMENT MANUFACTURING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU MOXIBUSTION EQUIPMENT MANUFACTURING CO LTD
Filing Date
2025-02-21
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]艾灸是依靠灸材燃烧时释放的红外热辐射、温热刺激、艾烟艾油等多种理化因素共同奏效,传统的手持艾条灸需要反复调整施灸高度来保持艾灸刺激量,较为费时费力;艾灸装置作为施灸的辅助器具,随着医疗器械水平的提高得以快速发展,盒状和罐状的艾灸装置因具有普适性和实用性,而被广泛应用;

Benefits of technology

[0016] The beneficial effects of this utility model are as follows: the support structure supports the cavity through the first fixed metal plate and the second fixed metal plate, wherein the outer edge of the second fixed metal plate is adapted to the shape of the inner edge of the cavity near the opening, which supports the side of the shell, making it less likely to dent or deform due to excessive temperature. In addition, it enhances the structural strength of the shell near the opening, preventing the opening from deforming due to heat and making it impossible to install the frame. The frame and the dustproof mesh are integrally molded by injection molding, saving labor assembly costs. The inner side of the frame is positioned and installed with the opening of the cavity through positioning protrusions, which further supports the opening of the cavity.

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Abstract

The utility model discloses a kind of double-bin moxa head, including moxa head main body, the moxa head main body includes shell, at least one inner container setting in shell and the support structure for fixing the inner container, the support structure is supported by the first fixed metal plate and second fixed metal plate the chamber, wherein the outer edge of the second fixed metal plate is adapted to the shape of the inner edge of the chamber close to opening position, the side of the shell is supported, so that its side is not prone to concave deformation due to excessively high temperature, additionally enhance the structural strength of the shell close to opening position, prevent its opening heat deformation cannot install the frame, the frame and dust screen are integrally formed by injection molding, save artificial assembly cost, the inside of frame is positioned and installed by positioning lug and the opening of chamber, further support the opening of the chamber.
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Description

Technical Field

[0001] This utility model relates to the field of moxibustion equipment technology, specifically to a double-chamber moxibustion head. Background Technology

[0002] Moxibustion, also known as moxibustion therapy, is a treatment method that uses moxa sticks or cones made from mugwort leaves to stimulate acupoints or specific areas of the body with heat. By stimulating the activity of Qi (vital energy) in the meridians, it regulates the body's disordered physiological and biochemical functions, thereby achieving the purpose of preventing and treating diseases. The mechanism of action of moxibustion is similar to that of acupuncture, and the two have complementary therapeutic effects. It has many advantages such as simple operation, low cost, and significant effects.

[0003] Moxibustion relies on the combined effects of various physicochemical factors, such as infrared heat radiation, warm stimulation, and moxa smoke and oil released when the moxa sticks are burned. Traditional handheld moxibustion requires repeated adjustments to the height of the moxa sticks to maintain the stimulation, which is time-consuming and laborious. As an auxiliary tool for moxibustion, moxibustion devices have developed rapidly with the improvement of medical equipment. Box-shaped and jar-shaped moxibustion devices are widely used due to their universality and practicality.

[0004] The moxibustion devices currently available on the market are made of materials such as metal, wood, and plastic. Each material has its own drawbacks. For example, metal materials are prone to burns, wood is prone to deformation and cracking, and plastic materials are prone to aging or deformation due to heat. Deformation due to heat will directly affect the lifespan of the moxibustion device and cause the moxibustion cover to fail to close. Utility Model Content

[0005] To address the technical deficiencies in the background technology, this utility model proposes a dual-chamber moxibustion head, which solves the aforementioned technical problems and meets practical needs. The specific technical solution is as follows:

[0006] A dual-compartment moxibustion head includes a moxibustion head body, the moxibustion head body including a shell, at least one inner liner disposed within the shell, and a support structure for fixing the inner liner;

[0007] The housing has a chamber with an opening at one end. The support structure includes a first fixed metal plate disposed at the bottom of the chamber and a second fixed metal plate disposed near the opening. The rear end of the inner liner is fixed to the end face of the first fixed metal plate facing the opening.

[0008] The housing is provided with a frame corresponding to the opening of the chamber. The inner side of the frame is provided with a dust-blocking mesh integrally injection molded with the frame. The position where the frame connects to the housing is provided with a positioning protrusion. The outer surface of the housing is provided with a buckle structure for fastening the frame.

[0009] As an improvement to the above solution, the outer surface of the housing is provided with a vent that penetrates the housing, and a support base that is fixed to an external support is provided adjacent to the vent.

[0010] As an improvement to the above solution, a plurality of cylindrical first fixing bases are provided on the end face of the cavity facing the opening direction. The first fixing metal plate is provided with a first fixing hole corresponding to the position of the first fixing base, and is fixedly connected to the first fixing base by screwing.

[0011] As an improvement to the above solution, a gap space is reserved between the outer edge of the first fixing metal plate and the side wall of the chamber. The inner wall of the chamber is provided with several vertically extending second fixing bases at the position corresponding to the gap space. The second fixing metal plate is provided with a second fixing hole at the end position corresponding to the second fixing base, and is fixedly connected to the second fixing base by screwing screws.

[0012] As an improvement to the above solution, the inner liner includes a first inner liner and a second inner liner arranged side by side on the end face of the first fixed metal plate, and a first inner liner fixing hole and a second inner liner fixing hole are opened in the middle of the first fixed metal plate corresponding to the center position of the first inner liner and the second inner liner.

[0013] As an improvement to the above solution, the opening of the first inner liner is in the same direction as the opening of the cavity, the inner liner is provided with a first insertion pin, and the rear end of the first inner liner is provided with a first screwing part adapted to the first inner liner fixing hole.

[0014] The opening of the second inner liner is in the same direction as the opening of the cavity. The inner liner is provided with a second insertion pin. The rear end of the second inner liner is provided with a second screwing part that is adapted to the fixing hole of the second inner liner.

[0015] As an improvement to the above solution, the shape of the frame is consistent with the shape of the opening of the chamber, and the positioning protrusion is integrally formed with the frame and extends along the inner side of the frame toward the inner side of the opening of the chamber.

[0016] The beneficial effects of this utility model are as follows: the support structure supports the cavity through the first fixed metal plate and the second fixed metal plate, wherein the outer edge of the second fixed metal plate is adapted to the shape of the inner edge of the cavity near the opening, which supports the side of the shell, making it less likely to dent or deform due to excessive temperature. In addition, it enhances the structural strength of the shell near the opening, preventing the opening from deforming due to heat and making it impossible to install the frame. The frame and the dustproof mesh are integrally molded by injection molding, saving labor assembly costs. The inner side of the frame is positioned and installed with the opening of the cavity through positioning protrusions, which further supports the opening of the cavity. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the external structure of the moxibustion head of this utility model.

[0018] Figure 2 This is a schematic diagram showing the unfolded structure of the moxibustion head of this utility model.

[0019] Figure 3 This is a schematic diagram of the internal structure of the moxibustion head body along its length.

[0020] Figure 4 This is a schematic diagram of the internal structure of the moxibustion head body in the width direction of this utility model.

[0021] The components include: moxibustion head body 1, shell 2, vent 21, support base 22, inner liner 3, first inner liner 31, second inner liner 32, first insertion pin 33, second insertion pin 34, first screwing part 35, second screwing part 36, chamber 4, first fixing base 41, second fixing base 42, support structure 5, first fixing metal plate 51, first fixing hole 52, first inner liner fixing hole 53, second inner liner fixing hole 54, second fixing metal plate 55, second fixing hole 56, frame 6, dust-blocking net 61, positioning protrusion 62, and buckle structure 7. Detailed Implementation

[0022] The embodiments of this utility model will be described below with reference to the accompanying drawings and related examples. The embodiments of this utility model are not limited to the following examples, and this utility model relates to relevant necessary components in this technical field, which should be regarded as well-known technology in this technical field and can be known and mastered by those skilled in this technical field.

[0023] like Figures 1 to 4 As shown, a dual-chamber moxibustion head includes a moxibustion head body 1, the moxibustion head body 1 including a shell 2, at least one inner liner 3 disposed in the shell 2, and a support structure 5 for fixing the inner liner 3;

[0024] The housing 2 has a chamber 4 with an opening at one end. The support structure 5 includes a first fixed metal plate 51 disposed at the bottom of the chamber 4 and a second fixed metal plate 55 disposed near the opening. The rear end of the inner liner 3 is fixed to the end face of the first fixed metal plate 51 facing the opening.

[0025] In the technical solution of the support structure 5 of this utility model, the support structure 5 includes a first fixed metal plate 51 and a second fixed metal plate 55, wherein the first fixed metal plate 51 is disposed at the bottom of the chamber 4, and the bottom of the chamber 4 is provided with a cylindrical first fixed base 41 protruding towards the opening direction. The first fixed metal plate 51 is fixed to the first fixed base 41 by screws, thereby increasing the structural strength of the bottom end of the shell 2.

[0026] Furthermore, the second fixing metal plate 55 is ring-shaped and matches the shape of the inner edge of the opening of the chamber 4. The middle part of the second fixing metal plate 55 has a notch large enough to accommodate the protrusion of the inner liner 3. The second fixing metal plate 55 is located near the opening of the chamber 4. The outer edge of the second fixing metal plate 55 fits against the inner edge of the chamber 4, which supports and reinforces the shell 2, enhances the structural strength of the opening of the shell 2, and effectively reduces the possibility of thermal deformation of the shell 2 near the opening.

[0027] The housing 2 is provided with a frame 6 at the opening position of the chamber 4. The inner side of the frame 6 is provided with a dust-blocking mesh 61 integrally injection molded with the frame 6. The dust-blocking mesh 61, the positioning protrusion 62 and the frame 6 are integrally injection molded. Compared with the traditional split structure, the dust-blocking mesh 61 does not need to be tightened and fixed to the frame 6 with screws during assembly, which reduces the cost of manual assembly.

[0028] The frame 6 is provided with a positioning protrusion 62 at the position where it connects to the housing 2, and the outer surface of the housing 2 is provided with a snap-fit ​​structure 7 for fastening the frame 6;

[0029] It should be noted that the shape of the frame 6 is consistent with the shape of the opening of the chamber 4. The positioning protrusion 62 is integrally formed with the frame 6 and extends along the inner side of the frame 6 toward the inner side of the opening of the chamber 4. In use, the frame 6 is directly fastened to the opening of the chamber 4, and the positioning protrusion 62 extends into the inner side of the opening of the chamber 4 for positioning. After the fastening is completed, the frame 6 is fastened and fixed by the buckle structure 7.

[0030] Furthermore, in the above scheme, the outer surface of the housing 2 is provided with a vent 21 that penetrates the housing 2, and a support base 22 that is fixed to the external support is provided adjacent to the vent 21.

[0031] Furthermore, in the above scheme, a plurality of cylindrical first fixing bases 41 are provided on the end face of the chamber 4 facing the opening direction. The first fixing metal plate 51 is provided with a first fixing hole 52 corresponding to the position of the first fixing base 41, and is fixedly connected to the first fixing base 41 by screwing.

[0032] It should be noted that the first fixed base 41 separates the first fixed metal plate 51 and the shell 2. In use, the inner liner 3 is fixed on the first fixed metal plate 51. The temperature of the burning moxa stick is conducted to the first fixed metal plate 51 through the inner liner 3. The first fixed base 41 effectively reduces the heat conduction from the first fixed metal plate 51 to the shell 2, reducing the possibility of the shell 2 being deformed by heat.

[0033] Furthermore, in the above scheme, a gap space is reserved between the outer edge of the first fixing metal plate 51 and the side wall of the chamber 4. The inner wall of the chamber 4 is provided with a plurality of vertically extending second fixing bases 42 at the position corresponding to the gap space. The second fixing metal plate 55 is provided with a second fixing hole 56 at the end position corresponding to the second fixing base 42, and is fixedly connected to the second fixing base 42 by screwing screws.

[0034] It should be noted that the first fixing base 41, the second fixing base 42 and the housing 2 are integrally injection molded. The second fixing base 42 extends upward from the gap between the outer edge of the first fixing metal plate 51 and the side wall of the cavity 4 to the opening of the housing 2. The second fixing base 42 strengthens the lateral support of the housing 2 and further enhances the deformation resistance of the housing 2 through the second fixing metal plate 55.

[0035] Furthermore, in the above scheme, the inner liner 3 includes a first inner liner 31 and a second inner liner 32 arranged side by side on the end face of the first fixed metal plate 51, and a first inner liner fixing hole 53 and a second inner liner fixing hole 54 are opened in the middle of the first fixed metal plate 51 corresponding to the center position of the first inner liner 31 and the second inner liner 32.

[0036] Furthermore, in the above scheme, the opening of the first inner liner 31 is in the same direction as the opening of the chamber 4, the inner liner 3 is provided with a first insertion pin 33, and the rear end of the first inner liner 31 is provided with a first screwing part 35 adapted to the first inner liner fixing hole 53.

[0037] The opening of the second inner liner 32 is in the same direction as the opening of the chamber 4. The inner liner 3 is provided with a second insertion pin 34. The rear end of the second inner liner 32 is provided with a second screwing part 36 that is adapted to the second inner liner fixing hole 54.

[0038] It should be noted that the first inner liner 31 and the second inner liner 32 are arranged side by side. In use, the first inner liner 31 and the second inner liner 32 are fixed to the first fixed metal plate 51 by screwing. After fixing, there is a gap between the inner liner 3 and the inner side of the second fixed metal plate 55. The second fixed metal plate 55 fixes the opening position of the shell 2 to prevent the opening from deforming due to heat, which would prevent the frame 6 from being fastened to the opening.

[0039] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A dual-chamber moxibustion head, characterized in that, The device includes a moxibustion head body (1), which includes a shell (2), at least one inner liner (3) disposed within the shell (2), and a support structure (5) for fixing the inner liner (3). The housing (2) has a chamber (4) with an opening at one end. The support structure (5) includes a first fixed metal plate (51) at the bottom of the chamber (4) and a second fixed metal plate (55) near the opening. The rear end of the inner liner (3) is fixed to the end face of the first fixed metal plate (51) facing the opening. The housing (2) is provided with a frame (6) at the opening position of the chamber (4). The inner side of the frame (6) is provided with a dust-blocking mesh (61) integrally injection molded with the frame (6). The position where the frame (6) is connected to the housing (2) is provided with a positioning protrusion (62). The outer surface of the housing (2) is provided with a snap-fit ​​structure (7) for fastening the frame (6).

2. The dual-chamber moxibustion head according to claim 1, characterized in that, The outer surface of the housing (2) is provided with a vent (21) that penetrates the housing (2), and a support base (22) that is fixed to the external support is provided adjacent to the vent (21).

3. The dual-chamber moxibustion head according to claim 1, characterized in that, The chamber (4) has several cylindrical first fixing bases (41) on the end face facing the opening direction. The first fixing metal plate (51) has a first fixing hole (52) corresponding to the position of the first fixing base (41) and is fixedly connected to the first fixing base (41) by screwing.

4. The dual-chamber moxibustion head according to claim 1, characterized in that, A gap space is reserved between the outer edge of the first fixed metal plate (51) and the side wall of the chamber (4). The inner wall of the chamber (4) is provided with several vertically extending second fixed bases (42) at the position corresponding to the gap space. The second fixed metal plate (55) is provided with a second fixed hole (56) at the end position corresponding to the second fixed base (42) and is fixedly connected to the second fixed base (42) by screwing screws.

5. The dual-chamber moxibustion head according to claim 1, characterized in that, The inner liner (3) includes a first inner liner (31) and a second inner liner (32) arranged side by side on the end face of the first fixed metal plate (51). The middle part of the first fixed metal plate (51) is provided with a first inner liner fixing hole (53) and a second inner liner fixing hole (54) corresponding to the center position of the first inner liner (31) and the second inner liner (32).

6. The dual-chamber moxibustion head according to claim 5, characterized in that, The opening of the first inner liner (31) is in the same direction as the opening of the chamber (4). The inner liner (3) is provided with a first insert (33). The rear end of the first inner liner (31) is provided with a first screwing part (35) adapted to the first inner liner fixing hole (53). The opening of the second inner liner (32) is in the same direction as the opening of the chamber (4). The inner liner (3) is provided with a second insert (34). The rear end of the second inner liner (32) is provided with a second screwing part (36) that is adapted to the second inner liner fixing hole (54).

7. The dual-chamber moxibustion head according to claim 1, characterized in that, The shape of the frame (6) is consistent with the opening shape of the chamber (4). The positioning protrusion (62) is integrally formed with the frame (6) and extends along the inner side of the frame (6) toward the inner side of the opening of the chamber (4).