Moxibustion box

By using a combination of transparent sheet and frame in the moxibustion box, the problems of limited moxibustion surface area and non-unique air inlet are solved, maximizing the moxibustion surface and temperature controllability, thus improving the moxibustion effect.

CN223569664UActive Publication Date: 2025-11-21DONGGUAN CLOVER HEALTH TECH CO LTD
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Patent Information

Application Number
CN202422309095.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-11-21
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

Existing portable open-flame moxibustion devices have limited moxibustion surface area, and the lack of a single air inlet makes temperature control difficult, affecting the moxibustion effect.

Method used

A transparent sheet is added to the moxibustion box to seal the opening area on the moxibustion surface. The combination design of the transparent sheet, baffle and frame ensures the uniqueness of the air inlet and sufficient heat radiation. The transparent sheet is made of high temperature resistant material to prevent deformation, and the air guide hole design optimizes the air intake path.

Benefits of technology

This maximizes the area of ​​the moxibustion surface, ensures the uniqueness of the air inlet, improves the controllability of the moxibustion temperature and the fullness of the heat radiation, and enhances the moxibustion effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of moxibustion equipment, and provides a moxibustion box which comprises an inner container, a bottom cover, a baffle and a transparent piece, a support used for installing moxa cones is arranged in the inner container, and a shell is arranged outside the inner container; the bottom cover is arranged on the inner container, and an air inlet communicated with the interior of the inner container is formed between the bottom cover and the shell; the bottom cover is provided with a moxibustion surface consisting of a plurality of through holes; the baffle is detachably arranged on the inner container, and a cavity used for containing moxa cones is formed between the baffle and the support. The baffle is provided with an output hole matched with the through hole in the bottom cover in position. And the transparent sheet is arranged on the baffle plate and covers the output hole in the baffle plate. The technical problem that the size of a moxibustion surface is limited due to the fact that the moxibustion surface is made small in order to avoid the fact that air inlet is not controlled by adopting the structure of a moxibustion box in the prior art is solved.
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Description

Technical Field

[0001] This application belongs to the field of moxibustion equipment technology, and in particular relates to a portable moxibustion box for open flame moxibustion. Background Technology

[0002] In existing portable open-flame moxibustion devices, a single moxa stick is typically installed. When lit, the smoke from the burning stick is used to apply moxibustion to the body. For such devices, internal temperature control is crucial. To achieve a constant temperature, common open-flame moxibustion boxes are designed as follows: First, the air inlet is positioned in a fixed location, ensuring a single, consistent airflow and preventing variations in air intake. Second, the contact surface between the moxibustion box and the body (hereinafter referred to as the moxibustion surface) is minimized, and the opening area on the bottom of the moxibustion surface is also minimized, allowing the body to block the opening when the moxibustion surface comes into contact with the body.

[0003] The purpose of the above design is to ensure the uniqueness of the air inlet, allowing external air to enter only through the designated air inlet and preventing it from entering through other areas. If an additional air inlet exists during use, such as an unblocked opening on the bottom moxibustion surface, it will create another air inlet. Air entering through this additional inlet will make it difficult to control the airflow inside the moxibustion box, thus affecting the controllability of the moxibustion temperature.

[0004] Portable moxibustion devices commonly found on the market typically employ the structure described above, resulting in a relatively small area occupied by the openings on the moxibustion surface, significantly limiting the usable area of ​​the moxibustion surface. Adding more openings to achieve a larger moxibustion surface would increase airflow variables during use. For example, when performing moxibustion on small areas of the body, such as the neck, due to the large moxibustion surface and numerous openings, only some openings can be blocked by the neck skin. The remaining openings become uncontrolled airflow vents, making it difficult to control the moxibustion temperature. Furthermore, reducing the number of openings would prevent the heat radiation from reaching the acupoints sufficiently, affecting the moxibustion effect.

[0005] Therefore, the existing portable open-flame moxibustion boxes still have many structural defects, which is a research problem that moxibustion equipment manufacturers urgently need to solve. Summary of the Invention

[0006] The purpose of this application is to provide a moxibustion box to solve the technical problem that existing moxibustion boxes use a structure that makes the moxibustion surface small in order to avoid uncontrolled air intake, thus limiting the size of the moxibustion surface.

[0007] To achieve the above objectives, the technical solution adopted in this application is: to provide a moxibustion box, comprising:

[0008] The inner liner has a bracket inside for installing the moxa stick, and the outer shell is provided outside the inner liner;

[0009] A bottom cover is disposed on the inner liner, and an air inlet communicating with the interior of the inner liner is provided between the bottom cover and the outer shell; the bottom cover has a moxibustion surface composed of multiple through holes;

[0010] A baffle is detachably mounted on the inner liner, and a cavity for setting the moxa stick is formed between the baffle and the bracket; the baffle is provided with an output hole that matches the position of the through hole on the bottom cover;

[0011] A transparent sheet is disposed on the baffle and covers the output hole on the baffle.

[0012] The beneficial effects of the moxibustion box provided in this application are as follows: Compared with the prior art, the moxibustion box of this application adds a transparent sheet to the baffle, which seals the opening area on the moxibustion surface. When the moxibustion surface on the moxibustion box comes into contact with small parts of the human body (such as the neck or limbs), due to the sealing of the transparent sheet, there is no opportunity for air to enter from the bottom of the moxibustion box. Air can only enter through the air inlet provided on the moxibustion box, ensuring the uniqueness of the air inlet and effectively avoiding air intake variations. This is beneficial for maintaining a constant temperature for moxibustion inside the moxibustion box.

[0013] Furthermore, by sealing the openings on the moxibustion surface with a transparent sheet, the area of ​​the openings on the moxibustion box can be made similar to the area of ​​the entire bottom cover, resulting in a bottom cover covered with through holes. Correspondingly, the inner liner can also have the same number of output holes as the bottom cover, with these output holes corresponding one-to-one with the holes on the bottom cover. This maximizes the moxibustion surface area, allowing two or more moxa sticks to be used within the inner liner for moxibustion. This ensures that the heat radiation from the moxibustion can fully reach the body through the openings on the moxibustion surface, thereby improving the moxibustion effect.

[0014] The structure of the transparent sheet is improved by incorporating perforations. These perforations connect the output hole on the baffle plate, the through hole on the bottom cover, and the cavity to the outside environment. This allows the central area of ​​the moxibustion surface of the moxibustion box to be positioned on specific parts of the body or acupoints for enhanced moxibustion, further improving the moxibustion effect.

[0015] In one embodiment, the transparent sheet is made of a high-temperature resistant material to give it high-temperature resistance, prevent it from easily deforming, effectively ensure the fit of the transparent sheet to seal each opening, and thus improve the sealing effect.

[0016] The structure of the moxibustion box is improved. The bottom cover also includes a frame for installing the baffle. The baffle is stacked with the transparent sheet and set on the frame. The bottom cover is provided with studs, and the frame is provided with fixing posts corresponding to the positions of the studs. The fixing posts are provided with fixing holes for fasteners to pass through, so that the frame together with the baffle and the transparent sheet on the frame is fixed to the bottom cover.

[0017] In one embodiment, the frame is provided with a guide hole, which is connected to the air inlet, so that external air enters the interior of the moxibustion box from the air inlet set on the moxibustion box, and enters the cavity of the inner liner through the guide hole.

[0018] In one embodiment, the frame is provided with positioning ribs, and both the baffle and the transparent sheet have positioning notches on their outer edges for engaging with the positioning ribs. This allows the output hole on the baffle to automatically align with the through hole on the bottom cover, and simultaneously positions the transparent sheet, effectively preventing the transparent sheet from easily shifting, thus providing a foolproof installation mechanism.

[0019] In one embodiment, the bottom cover is further provided with an insertion hole that matches the position of the positioning rib. The positioning rib is inserted into the insertion hole, thereby improving the fit between the frame opening and the bottom wall of the bottom cover and effectively ensuring the uniqueness of the air inlet on the moxibustion box.

[0020] In one embodiment, the frame and the inner liner are detachably connected, and the frame and the inner liner have interlocking fasteners so that the frame can be fixed to the inner liner by means of a fastener, making it easy to assemble and disassemble.

[0021] The structure of the moxibustion box is further improved. The bottom cover also includes a drawer, and the side of the bottom cover has an installation port. The drawer has an opening, and the drawer slides into the bottom cover from the installation port, so that the output hole on the baffle and the through hole on the bottom cover are both within the projection range of the opening. The transparent sheet is detachably mounted on the drawer and covers the opening on the drawer. Therefore, users can quickly replace the transparent sheet without disassembling the bottom cover and frame of the moxibustion box, effectively improving the convenience of the transparent sheet installation and removal.

[0022] In one embodiment, a cover is provided at the end of the drawer. When the drawer is installed inside the bottom cover, the cover rests on the mounting opening on the side of the bottom cover, thereby improving the sealing of the mounting opening and effectively ensuring the uniqueness of the air inlet on the moxibustion box. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 This is a three-dimensional structural diagram of the moxibustion box provided in the embodiments of this application;

[0025] Figure 2 Exploded view of the moxibustion box provided in the embodiments of this application Figure 1 ;

[0026] Figure 3 Exploded view of the moxibustion box provided in the embodiments of this application Figure 2 ;

[0027] Figure 4 Exploded view of the moxibustion box provided in the embodiments of this application Figure 3 ;

[0028] Figure 5 A schematic diagram of the assembly structure of the baffle, transparent sheet, and frame provided in the embodiments of this application;

[0029] Figure 6 A schematic diagram of the assembly structure of the bottom cover and the surrounding frame provided in an embodiment of this application;

[0030] Figure 7 This is a three-dimensional structural diagram of the bottom cover provided in an embodiment of this application;

[0031] Figure 8 This is a three-dimensional structural diagram of the inner liner provided in an embodiment of this application.

[0032] The following are the labeling elements in the figure:

[0033] 100 - Air inlet; 200 - Positioning notch;

[0034] 1-Inner liner; 10-Cavity; 11-Support; 12-Outer shell; 13-Clamping block;

[0035] 2-Bottom cover; 21-Through hole; 22-Stud; 23-Air guide notch; 24-Reinforcing rib; 241-Main rib; 242-Connecting rib; 243-Air guide gap; 25-Insertion hole;

[0036] 3-Baffle; 31-Output port;

[0037] 4-Transparent sheet; 41-Leakage hole;

[0038] 5-Frame; 51-Fixing post; 511-Fixing hole; 52-Drainage hole; 53-Positioning rib; 54-Cut groove. Detailed Implementation

[0039] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.

[0040] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.

[0041] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0042] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0043] Traditional portable moxibustion devices typically have a designated air inlet, a moxibustion surface at the bottom, and an inner liner to hold the moxa stick. When used, the moxa stick is lit to produce smoke, which is then placed against the body for moxibustion. If more holes are added to the moxibustion surface to achieve a larger surface area, the airflow becomes variable. For example, when performing moxibustion on small areas like the neck, the large surface area and numerous holes mean that only some holes can be blocked by the neck skin. The remaining holes become undesignated air inlets, making it difficult to control the moxibustion temperature. Conversely, reducing the number of holes can prevent the heat radiation from reaching the acupoints effectively, thus affecting the moxibustion's efficacy.

[0044] Therefore, this application provides a novel portable open-flame moxibustion box, which solves the problem that the moxibustion surface area in the market is small and the number of openings is small, which limits the moxibustion surface area and results in a relatively small moxibustion surface area. In addition, the moxibustion temperature can be controlled within a constant temperature range, thereby improving the moxibustion effect. It will now be described in detail.

[0045] Please refer to the following: Figure 1 , Figure 2 and Figure 3 The moxibustion box includes an inner liner 1, a bottom cover 2, a baffle 3, and a transparent sheet 4.

[0046] The inner liner 1 has a bracket 11 for mounting the moxa stick. In this embodiment, as shown... Figure 3 As shown, the support structure 11 inside the inner liner 1 can preferably be composed of multiple support rods extending from the inner wall of the inner liner 1 towards the central axis of the inner liner 1. The middle of these multiple support rods is connected to an annular seat for mounting the moxa stick, thereby centrally positioning the moxa stick within the inner liner 1. The annular seat can be fitted with one, two, or more moxa sticks for moxibustion as needed; no specific limitation is made here.

[0047] The inner liner 1 is provided with an outer shell 12, which covers the inner liner 1. The shape of the outer shell 12 can be set according to design requirements or the outer periphery of the inner liner 1, and is not specifically limited here.

[0048] The bottom cover 2 is mounted on the inner liner 1, and an air inlet 100 communicating with the interior of the inner liner 1 is located between the bottom cover 2 and the outer shell 12. In this embodiment, as... Figure 1 As shown, an air inlet ring is provided between the bottom cover 2 and the outer shell 12, surrounding the outer periphery of the moxibustion box. At least a portion of the air inlet ring is connected to the interior of the inner liner 1 to form an air inlet 100.

[0049] The bottom cover 2 has a moxibustion surface composed of multiple through holes 21. These through holes 21 form the open area on the moxibustion surface, and the spacing between adjacent through holes 21 is uniform. Preferably, these through holes 21 are evenly distributed on the bottom cover 2. The arrangement of the through holes 21 on the bottom cover 2 is set according to the usage requirements and is not specifically limited here.

[0050] Please see Figure 3 The baffle 3 is installed on the inner liner 1 at the end away from the bracket 11, and a cavity 10 for placing the moxa stick is formed between the baffle 3 and the bracket 11. The baffle 3 can be used to receive moxa ash. The baffle 3 is detachably installed on the inner liner 1, which makes it convenient to remove the baffle 3 for cleaning or replacing the moxa stick, etc.

[0051] The baffle 3 is provided with multiple output holes 31, and the heat radiation generated after the moxa stick is lit can be output to the moxibustion surface through these output holes 31. The number of these output holes 31 can preferably be the same as the number of through holes 21 on the bottom cover 2, and their positions correspond one-to-one. The internal cavity 10 of the inner liner 1 can be connected to the outside through the output holes 31 and the through holes 21 on the bottom cover 2.

[0052] A transparent sheet 4 is placed on the baffle 3 and covers the output hole 31 on the baffle 3. The transparent sheet 4 blocks the output hole 31 on the baffle 3. At the same time, since the transparent sheet 4 is made of transparent material, the internal heat radiation can be output normally by utilizing the transmissivity of the transparent sheet 4 and pass through the through hole 21 on the moxibustion surface to reach the human body, thereby achieving the moxibustion effect.

[0053] The transparent sheet 4 can be stacked on the end face of the baffle 3 facing the support 11, so that the transparent sheet 4 is located in the cavity 10 between the baffle 3 and the support 11. Alternatively, the transparent sheet 4 can be stacked on the end face of the baffle 3 facing the bottom cover 2, so that the transparent sheet 4 is located between the baffle 3 and the bottom cover 2.

[0054] In this way, the transparent sheet 4 is used to seal the through hole 21 on the moxibustion surface, avoiding the addition of an extra air inlet 100, making the air inlet 100 on the moxibustion box unique, thereby achieving the purpose of controllable air intake.

[0055] Compared with the prior art, the moxibustion box provided in this application adds a transparent sheet 4 to the baffle 3, which seals the opening area on the moxibustion surface. When the moxibustion surface on the moxibustion box comes into contact with small parts of the human body (such as the neck or limbs), the bottom of the moxibustion box has no chance to enter due to the blockage of the transparent sheet 4. Air can only enter through the air inlet 100 set on the moxibustion box, ensuring the uniqueness of the air inlet 100, effectively avoiding air intake variation, and facilitating constant temperature control of the moxibustion temperature inside the moxibustion box.

[0056] Furthermore, by using a transparent sheet 4 to seal the openings on the moxibustion surface, the area of ​​the openings on the moxibustion surface of the moxibustion box can be made similar to the area of ​​the entire bottom cover 2, resulting in the bottom cover 2 being covered with through holes 21. Correspondingly, the baffle 3 of the inner liner 1 can also have the same number of output holes 31 as the through holes 21 on the bottom cover 2, with these output holes 31 corresponding one-to-one with the positions of the through holes 21 on the bottom cover 2. This maximizes the moxibustion surface, allowing two or more moxa sticks to be used within the inner liner 1 for moxibustion, ensuring that the heat radiation from the moxibustion can fully reach the body through the openings on the moxibustion surface, thereby improving the moxibustion effect.

[0057] An improvement to the structure of the transparent sheet 4 is described in one embodiment of this application; please refer to that embodiment as well. Figure 4 and Figure 5The transparent sheet 4 has a hole 41, and the output hole 31 on the baffle 3, the through hole 21 on the bottom cover 2, and the cavity 10 within the range of the hole 41 are connected to the outside.

[0058] In this embodiment, the leakage hole 41 on the transparent sheet 4 is located in the central region of the transparent sheet 4, and the cavity 10 of the inner liner 1 is connected to the outside through the output hole 31 on the baffle 3 located in the central region and the through hole 21 on the bottom cover 2.

[0059] In this way, the central area of ​​the moxibustion surface of the moxibustion box can be placed on specific parts or acupoints of the body for enhanced moxibustion, thereby further improving the moxibustion effect.

[0060] In practical applications, the transparent sheet 4 continuously resists high-temperature heat radiation on the baffle 3. After long-term use, it is prone to deformation, which can reduce the fit of the transparent sheet 4 in sealing each opening and affect the sealing effect.

[0061] Therefore, in one embodiment of this application, the transparent sheet 4 is preferably made of a high-temperature resistant material, specifically, it is preferably made of polycarbonate (PC). Polycarbonate is a tough thermoplastic resin that is colorless and transparent, and has good flame retardancy and oxidation resistance.

[0062] This gives the transparent sheet 4 high-temperature resistance, preventing it from deforming and effectively ensuring the fit of the transparent sheet 4 to seal each opening, thereby improving the sealing effect.

[0063] For the structure of the moxibustion box, please refer to one embodiment of this application. Figure 5 and Figure 6 The bottom cover 2 also includes a frame 5 for mounting the baffle 3. The baffle 3 and the transparent sheet 4 are stacked on top of each other and set on the frame 5. The transparent sheet 4 blocks the output hole 31 on the baffle 3 and ensures a good fit between it and the surface of the baffle 3.

[0064] The bottom cover 2 is provided with a stud 22, and the frame 5 is provided with a fixing post 51. The fixing post 51 is positioned corresponding to the stud 22, and the fixing post 51 is provided with a fixing hole 511 for fasteners such as screws to pass through.

[0065] In this embodiment, as Figure 5 and Figure 6As shown, at least three vertically arranged studs 22 are evenly distributed around the outer periphery of the through hole 21 on the bottom cover 2. Correspondingly, the frame 5 matches the shape of the moxibustion box, forming a circular frame 5. The outer periphery of the frame 5 is provided with the same number of fixing posts 51 as the studs 22 on the bottom cover 2. These fixing posts 51 are evenly distributed on the frame 5. During installation, the fixing posts 51 on the frame 5 are aligned with the studs 22 on the bottom cover 2, and fasteners such as screws are used to fix them in place, thereby fixing the frame 5 together with the baffle 3 and transparent sheet 4 on the frame 5 to the bottom cover 2.

[0066] In one embodiment of this application, please refer to the following: Figure 1 , Figure 5 and Figure 6 The frame 5 has a guide hole 52, which is connected to the air inlet 100 so that external air enters the interior of the moxibustion box from the air inlet 100 set on the moxibustion box and enters the cavity 10 of the inner liner 1 through the guide hole 52.

[0067] Specifically, such as Figure 5 and Figure 6 As shown, the frame 5 has a set of flow guiding units, preferably composed of three flow guiding holes 52, and the frame 5 has at least two sets of flow guiding units, which are evenly distributed on the ring of the frame 5. The bottom cover 2 is provided with air guiding notches 23 corresponding to the positions of the flow guiding units, and these air guiding notches 23 form air inlets 100 located at the connection between the bottom cover 2 and the outer shell 12.

[0068] In this way, external air enters the interior of the moxibustion box through these air guide openings 23, and then flows into the cavity 10 of the inner liner 1 through the air guide unit on the frame 5, thereby limiting the air intake on the moxibustion box and effectively ensuring the controllability of the moxibustion temperature.

[0069] In practical applications, air guide notches 23 are opened on the outer peripheral wall of the bottom cover 2 so that the wall of this part of the bottom cover 2 is thin and the structural strength is reduced. Under the action of external forces (such as the squeezing force of a human hand), this part is easily damaged, affecting the service life.

[0070] Therefore, in one embodiment of this application, please refer to the following: Figure 6 and Figure 7 The bottom cover 2 is preferably provided with a reinforcing rib 24 inside. The reinforcing rib 24 is provided on the inner wall of the bottom cover 2 with the air guide notch 23, thereby strengthening the structural strength of this part, effectively preventing this part from being easily damaged under the action of external force, and thus extending its service life.

[0071] In addition, the reinforcing rib 24 also serves as an installation marker, allowing the operator to use the position of the reinforcing rib 24 as a reference for aligning the airflow guiding unit and the airflow notch 23 on the frame 5, effectively preventing installation errors.

[0072] Specifically, such as Figure 7 As shown, the reinforcing rib 24 consists of at least one main rib 241 and multiple connecting ribs 242 extending outward from the main rib 241. These connecting ribs 242 are fixedly connected to the inner sidewall and bottom wall of the bottom cover 2, respectively. Adjacent connecting ribs 242 are spaced apart to form a guide gap 243, thereby preventing obstruction of airflow into the guide hole 52 of the frame 5. After external air enters the bottom cover 2 through the air guide opening 23, it can reach the guide hole 52 of the frame 5 through the guide gaps 243 and enter the cavity 10 of the inner liner 1.

[0073] In practical applications, the transparent sheet 4 is directly stacked on the surface of the baffle 3. During the use of the moxibustion box, the transparent sheet 4 is prone to shifting on the baffle 3. In addition, when the baffle 3 is installed on the frame 5, it is difficult to ensure that the output hole 31 on the baffle 3 corresponds one-to-one with the through hole 21 on the bottom cover 2. If there is a deviation in the relative position of the output hole 31 and the through hole 21, it will affect the output effect of heat radiation.

[0074] Therefore, the installation and positioning of the transparent sheet 4 and the baffle 3 are particularly important. In one embodiment of this application, please refer to... Figure 5 The frame 5 is provided with positioning ribs 53, and the outer edges of the baffle 3 and the transparent sheet 4 are provided with positioning notches 200 for engaging with the positioning ribs 53.

[0075] In this embodiment, a plurality of positioning ribs 53 are evenly distributed on the frame opening of the enclosure 5, and the transparent sheet 4 and the baffle 3 are provided with the same number of positioning notches 200 as the positioning ribs 53. The positioning notches 200 on the transparent sheet 4 and the baffle 3 are aligned with the positions of the positioning ribs 53 on the enclosure 5 and respectively engaged. The transparent sheet 4 and the baffle 3 are stacked sequentially on the frame opening of the enclosure 5, and when the enclosure 5 is installed on the bottom cover 2, the transparent sheet 4 and the baffle 3 are pressed tightly against the bottom wall of the bottom cover 2 to fix the transparent sheet 4 and the baffle 3.

[0076] In this way, during the installation of the transparent sheet 4 and the baffle 3, the output hole 31 on the baffle 3 and the through hole 21 on the bottom cover 2 are automatically aligned, and the transparent sheet 4 is positioned at the same time, which effectively prevents the transparent sheet 4 from easily shifting, thus playing a role in preventing installation errors.

[0077] In addition, the positioning ribs 53 on the frame 5 need to be pre-set with a certain protrusion height so that the positioning notches 200 on the transparent sheet 4 and the baffle 3 can be easily fitted onto the positioning ribs 53. However, the top of the positioning ribs 53 will exceed the horizontal plane of the transparent sheet 4 and the baffle 3, which will cause the frame opening on the frame 5 and the bottom wall of the bottom cover 2 to be easily pushed up by the positioning ribs 53 when the frame 5 is installed on the bottom cover 2, forming an air leakage gap, affecting the uniqueness of the air inlet 100 on the moxibustion box.

[0078] Therefore, in one embodiment of this application, please refer to the following: Figure 5 and Figure 7 The bottom cover 2 also has insertion holes 25 that mate with the positioning ribs 53. When the frame 5 is installed on the bottom cover 2, the top of the positioning ribs 53 on the frame 5 can be inserted into the insertion holes 25 on the bottom cover 2, thereby improving the fit between the frame opening of the frame 5 and the bottom wall of the bottom cover 2. This ensures both the fixation of the transparent sheet 4 and the baffle 3 and improves the sealing between the bottom wall of the bottom cover 2 and the frame 5, effectively guaranteeing the uniqueness of the air inlet 100 on the moxibustion box.

[0079] In practical applications, the position of the transparent sheet 4 means that, in addition to sealing the output hole 31 on the baffle 3, it also serves to collect moxa ash. It needs to be removed periodically for cleaning; otherwise, it will affect the transmittance of heat radiation and the moxibustion effect. Furthermore, depending on the usage requirements, transparent sheets 4 with different sized holes 41 can be selected to adjust the size of the area where the openings on the moxibustion surface of the moxibustion box can be fully penetrated.

[0080] Therefore, regarding the structure for replacing the transparent sheet 4 on the moxibustion box, please refer to one embodiment of this application. Figure 6 and Figure 8 The frame 5 and the inner liner 1 are detachable, and the frame 5 and the inner liner 1 have interlocking fasteners.

[0081] Regarding the specific structure of the snap fastener, in this embodiment, as follows: Figure 6 and Figure 8 As shown, the fastener includes fastening blocks 13 disposed on the inner liner 1 and fastening grooves 54 disposed on the frame 5. Specifically, a plurality of L-shaped fastening blocks 13 with protrusions are evenly distributed on the inner side wall of the inner liner 1; correspondingly, the outer periphery of the frame 5 is provided with fastening grooves 54 in the same number and shape as the fastening blocks 13, so that the frame 5 can be fixed to the inner liner 1 by means of a fastener, which is convenient for assembly and disassembly.

[0082] In other embodiments (not shown in the figures), guide rails can be provided on both sides of the connection end between the inner liner 1 and the frame 5, and a sliding groove can be provided on the connection end of the frame 5. In this way, the frame 5 can be installed on the bottom cover 2 first, and then the bottom cover 2 together with the frame 5 can be quickly installed on the inner liner 1 in a "side-sliding" manner, effectively improving the installation efficiency.

[0083] In another embodiment of this application (not shown), the bottom cover 2 also includes a pull plate (not shown). The bottom cover 2 has an installation port (not shown) on its side. The pull plate has an opening and can slide into the bottom cover 2 from the installation port on the side of the bottom cover 2, so that the output hole 31 on the baffle 3 and the through hole 21 on the bottom cover 2 are both located within the projection range of the opening.

[0084] The “opening projection range” on the drawer can be understood as the vertical projection range of the opening on the drawer onto the bottom wall of the bottom cover 2 and onto the baffle 3, respectively. The through hole 21 on the bottom cover 2 and the output hole 31 on the baffle 3 are located within the respective vertical projection ranges of the opening on the drawer.

[0085] The transparent sheet 4 is detachably mounted on the drawer and covers the opening on the drawer. This allows the user to easily replace the transparent sheet 4 on the drawer. When the transparent sheet 4 covers the opening of the drawer, it is positioned between the bottom cover 2 and the baffle 3, thus blocking the through hole 21 on the bottom cover 2 and the output hole 31 on the baffle 3.

[0086] This allows users to quickly replace the transparent sheet 4 without disassembling the bottom cover 2 and the frame 5 of the moxibustion box, effectively improving the convenience of disassembling and assembling the transparent sheet 4.

[0087] In practical applications, since the mounting port is opened on the side of the bottom cover 2, after the pull plate slides into the bottom cover 2, there is a problem with the sealing of the mounting port, which can easily form an external air inlet 100 on the moxibustion box. This will affect the moxibustion temperature control of the moxibustion box.

[0088] Therefore, in one embodiment of this application (not shown in the figure), a cover (not shown in the figure) is also provided on the end of the drawer. When the drawer is installed inside the bottom cover 2, the cover on the drawer rests on the mounting port on the side of the bottom cover 2, thereby improving the sealing of the mounting port and effectively ensuring the uniqueness of the air inlet 100 on the moxibustion box.

[0089] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A moxibustion box, characterized in that, The utility model relates to a moxa stick moxibustion device, comprising: an inner container with a support for installing a moxa stick inside, and an outer shell outside; a bottom cover arranged on the inner container, with an air inlet communicating with the inside of the inner container between the bottom cover and the outer shell; the bottom cover has a moxa surface composed of a plurality of through holes; a baffle detachably arranged on the inner container, forming a cavity for arranging a moxa stick between the baffle and the support; the baffle is provided with an output hole matched with the position of the through hole on the bottom cover; a transparent sheet arranged on the baffle and covering the output hole on the baffle.

2. The moxibustion kit of claim 1, wherein: The transparent sheet is provided with a leakage hole, and the output hole on the baffle, the through hole on the bottom cover and the cavity within the range of the leakage hole are in communication with the outside.

3. The moxibustion kit of claim 1, wherein: The transparent sheet is made of high-temperature resistant material.

4. The moxibustion box according to any one of claims 1 to 3, characterized in that: The bottom cover further comprises a surrounding frame for mounting the baffle, the baffle and the transparent sheet are arranged on the surrounding frame in a superposed manner; the bottom cover is provided with a stud, the surrounding frame is provided with a fixing column corresponding to the position of the stud, and the fixing column is provided with a fixing hole for the fastener.

5. The moxibustion kit of claim 4, wherein: The surrounding frame is provided with a flow guide hole, and the flow guide hole is in communication with the air inlet.

6. The moxibustion kit of claim 4, wherein: The surrounding frame is provided with a positioning rib, and the outer edge of the baffle and the transparent sheet are both provided with a positioning notch for embedding the positioning rib.

7. The moxibustion kit of claim 6, wherein: The bottom cover is further provided with a socket matched with the position of the positioning rib, and the positioning rib is inserted into the socket.

8. The moxibustion kit of claim 4, wherein: The surrounding frame and the inner container are detachably arranged, and the surrounding frame and the inner container are provided with a rotating buckle for mutual buckling.

9. The moxibustion kit of claim 1, wherein: The bottom cover further comprises a suction disc, the side of the bottom cover is provided with a mounting opening, the suction disc is provided with an opening, the suction disc is slid into the bottom cover from the mounting opening, so that the output hole on the baffle and the through hole on the bottom cover are both located within the projection range of the opening; the transparent sheet is detachably arranged on the suction disc and covers the opening on the suction disc.

10. The moxibustion kit of claim 9, wherein: The end of the suction disc is provided with a cover, and when the suction disc is mounted in the bottom cover, the cover rests on the mounting opening of the side of the bottom cover.