Energy-gathered moxibustion device base
By setting a reinforced ventilation structure on the inner wall of the moxibustion device base, the problems of poor base structural strength and heat dispersion are solved, heat accumulation and ash prevention are achieved, and the assembly process is simplified.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUBEI QIAITANG TECH CO LTD
- Filing Date
- 2024-12-31
- Publication Date
- 2026-05-01
AI Technical Summary
Existing moxibustion device bases have poor structural strength, heat is easily dissipated, assembly procedures are cumbersome, and it is difficult to effectively prevent dust accumulation.
The inner wall of the base is equipped with a reinforced ventilation structure, which is composed of a solid annular plate, connecting column, reinforcing rib and solid circular plate as one piece to enhance the structural strength. It is connected to the air inlet through the "rice" shaped distribution of through holes to concentrate heat and block dust.
The base has enhanced structural strength, concentrates heat and reduces heat dispersion, effectively blocks dust, prevents ash from falling, and simplifies the assembly process.
Smart Images

Figure CN224179975U_ABST
Abstract
Description
Technical Field
[0006] , ,
[0005] , ,
[0004] ,
[0001] The utility model belongs to the field of daily necessities, and particularly relates to an energy - gathering moxibustion device base. Background Art
[0002] The energy - gathering base of the moxibustion device is usually a hollow structure for air circulation. For example, the trumpet - shaped cavity plastic structure disclosed in the Chinese utility model patent "CN207693907U An Insert - type Moxibustion Base That Can Be Attached". This hollow structure results in poor strength of the base, and it is prone to dent and deform towards the interior of the cavity during use. Also, due to the large diameter of the cavity, heat is easily dispersed. At the same time, in order to prevent the ash from moxibustion combustion from falling to the bottom, it is necessary to set adhesive tape at the bottom of the base or separately set an ash - receiving net at the top of the base as an ash - blocking structure, which makes the assembly process cumbersome when manufacturing the base. Summary of the Invention
[0003] In order to solve the problems existing in the prior art, the utility model provides a moxibustion device base with a reinforcement ventilation structure provided on the inner wall of the base, which not only enhances the structural strength but also can gather heat. The specific technical solution adopted is as follows: An energy - gathering moxibustion device base is provided below the barrel of the moxibustion device. The upper layer of the base is inserted into the barrel of the moxibustion device from below. The base is integrally composed of an upper layer, a lower layer, and a bottom. The outer diameter of the upper layer of the base is smaller than the inner diameter of the moxibustion barrel, and the outer diameter of the lower layer of the base is larger than the outer diameter of the moxibustion device barrel. The diameter of the lower layer of the base gradually increases or is the same. The bottom of the base is annular. A plurality of air inlet holes are provided at the junction of the lower layer and the bottom of the base. At the junction of the upper part and the lower part of the base, a reinforcement ventilation structure is provided on the inner wall of the base. The reinforcement ventilation structure is integrally composed of a solid annular plate located on the outer circle, a connecting column located on the inner circle, a plurality of reinforcing ribs, and a solid circular plate. The solid annular plate is substantially integrated with the inner wall of the base. The overall longitudinal section formed by the connecting column, the plurality of reinforcing ribs, and the solid circular plate is U - shaped. The upper end of the connecting column is integrally connected to the inner edge of the solid annular plate. Each reinforcing rib is integrally connected to the lower end of the connecting column at one end and to the outer edge of the solid circular plate at the other end, making the plane where the solid circular plate is located lower than the plane where the solid annular plate is located. The plurality of reinforcing ribs are distributed in a "rice" shape around the solid circular plate. A fan - shaped through - hole is formed between adjacent reinforcing ribs, and the fan - shaped through - hole between the reinforcing ribs is communicated with the air inlet holes at the bottom.
[0004] Moreover, a paste layer and a release paper layer matching the size of the annular bottom are provided below the bottom of the base. <
[0007] Moreover, the lower layer of the base is in the shape of a frustum of a cone or a plum blossom shape with a gradually increasing diameter, or the lower layer of the base is in the shape of a cylinder with the same diameter.
[0008] Moreover, the diameter of the solid circular plate is 1 / 4 of the diameter of the solid annular plate.
[0009] Moreover, the diameter of the connecting column is 1 / 2 of the diameter of the solid annular plate.
[0010] Moreover, the radius of the circle where the sector-shaped through hole is located is 1 - 2 cm.
[0011] Moreover, the height of the connecting column is 1 / 3 - 1 / 2 of the height of the lower layer of the base.
[0012] Compared with the prior art, the beneficial effects of the technical solution are as follows:
[0013] 1. The inner wall of the base at the junction of the upper part and the lower part of the base is provided with a reinforcement ventilation structure, which is integrally composed of a solid annular plate located in the outer circle, a connecting column located in the inner circle, a plurality of reinforcing ribs, and a solid circular plate. This reinforcement ventilation structure enhances the lateral structural strength of the base, preventing it from deforming inwardly by concave. At the same time, the through holes formed between the reinforcing ribs distributed in a "rice" shape are connected to the intake holes at the bottom, ensuring that air can flow into the cylinder.
[0014] 2. Since the heat generated by the moxibustion combustion can only be transmitted downward through the through holes, the heat energy can be concentrated in the central area where the sector-shaped through hole is located, reducing the problem that the heat is easily dissipated due to the large diameter of the base cavity.
[0015] 3. The solid annular plate of the reinforcement ventilation structure can play a role in blocking ash. The diameter of the solid circular plate is only 1 / 4 of the diameter of the solid annular plate, the diameter of the connecting column is 1 / 2 of the diameter of the solid annular plate, and the radius of the circle where the sector-shaped through hole is located is 1 - 2 cm, so that the ash generated by the moxibustion combustion will not fall to the bottom through the separately sector-shaped through hole. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic structural diagram of the embodiment;
[0017] Figure 2 is a schematic structural diagram of the reinforcement ventilation structure;
[0018] Description of the reference numerals in the drawings:
[0019] Upper layer 1, lower layer 2, bottom 3, intake hole 4, solid annular plate 5, connecting column 6, reinforcing rib 7, solid circular plate 8, sector-shaped through hole 9, medicinal material layer 10. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] The present utility model will be described in detail below in conjunction with the accompanying drawings and embodiments. The content of the present utility model is not limited to the following embodiments.
[0021] A converging moxibustion device base is provided below the moxibustion device barrel body. The upper layer of the base is inserted into the moxibustion device barrel body from below, as Figure 1 shown. The base is integrally composed of an upper layer 1, a lower layer 2, and a bottom 3. The outer diameter of the upper layer of the base is smaller than the inner diameter of the moxibustion barrel, and the outer diameter of the lower layer of the base is larger than the outer diameter of the moxibustion device barrel body. The lower layer of the base is in the shape of a plum blossom with a gradually increasing diameter. The bottom of the base is annular, and a number of air inlet holes 4 are provided at the junction of the lower layer and the bottom of the base; at the junction of the upper part and the lower part of the base, a reinforcement ventilation structure is provided on the inner wall of the base. The reinforcement ventilation structure is integrally composed of a solid annular plate 5 located on the outer circle, a connecting column 6 located on the inner circle, a plurality of reinforcing ribs 7, and a solid circular plate 8. As Figure 2 shown, the solid annular plate is substantially integrated with the inner wall of the base. The longitudinal section of the whole formed by the connecting column, the plurality of reinforcing ribs, and the solid circular plate is U-shaped. The upper end of the connecting column is substantially integrated with the inner edge of the solid annular plate. Each reinforcing rib is substantially integrated at one end with the lower end of the connecting column and at the other end with the outer edge of the solid circular plate, so that the plane where the solid circular plate is located is lower than the plane where the solid annular plate is located. The plurality of reinforcing ribs are distributed in a "rice" shape around the solid circular plate, and a fan-shaped through hole 9 is formed between adjacent reinforcing ribs. The fan-shaped through holes between the reinforcing ribs are communicated with the air inlet holes at the bottom.
[0022] Moreover, a circular medicinal material layer 10 is provided below the bottom of the base. The medicinal material layer is jointly composed of two layers of flexible materials and medicinal materials such as ginger provided between the two layers of flexible materials. The flexible materials can be made of cloth. The medicinal material layer can not only increase the variety of moxibustion medicinal materials but also further prevent the ashes from falling. The bottom edge of the medicinal material layer can be provided with glue to increase the adhesion.
[0023] In order to increase the adhesion of the base, a paste layer and a release paper layer matching the size of the annular bottom can also be directly provided below the bottom of the base.
[0024] Moreover, the upper layer of the base is cylindrical; the lower layer of the base can be replaced with a frustum-shaped one with a gradually increasing diameter or a cylindrical one with the same diameter.
[0025] Moreover, the diameter of the solid circular plate is 1 / 2 of the diameter of the solid annular plate; the diameter of the connecting column is 1 / 2 of the diameter of the solid annular plate; the height of the connecting column is 1 / 3 to 1 / 2 of the height of the lower layer of the base; the through holes between the reinforcing ribs are fan-shaped, and the radius of the circle formed by the through holes is 1 to 2 cm. The selection of these structural ratios can enable the structural strength of the moxibustion device base and fully meet the functional requirements of ash blocking and air circulation.
[0026] Compared with the prior art, the beneficial effects of the present technical solution are as follows:
[0027] 1. The inner wall of the base at the junction of the upper part and the lower part of the base is provided with a reinforcement ventilation structure. The reinforcement ventilation structure is integrally composed of a solid annular plate located in the outer circle, connecting columns located in the inner circle, multiple reinforcing ribs, and a solid circular plate. This reinforcement ventilation structure enhances the lateral structural strength of the base, preventing it from deforming inwardly. At the same time, the through-holes formed between the reinforcing ribs distributed in a "rice" shape are connected to the air inlet holes at the bottom, ensuring that air can flow into the cylinder.
[0028] 2. Since the heat generated by the burning of moxa can only be transmitted downward through the through-holes, the heat energy can be concentrated in the central area where the fan-shaped through-holes are located, reducing the problem of easy heat dissipation caused by the large diameter of the base cavity.
[0029] 3. The solid annular plate of the reinforcement ventilation structure can play a role in dust blocking. The diameter of the solid circular plate is only 1 / 4 of the diameter of the solid annular plate, and the diameter of the connecting column is 1 / 2 of the diameter of the solid annular plate. The circular radius formed by the through-holes of the solid circular plate is 1 - 2 cm, and the area of a single fan-shaped through-hole is less than one-sixth of π square centimeters. The ashes generated by the burning of moxa will not fall from the fan-shaped through-holes alone to the bottom. The structure of multiple fan-shaped through-holes can also significantly reduce the situation where the holes are blocked, ensuring that air always flows through the air inlet holes and the fan-shaped through-holes.
Claims
1. A base for a focused moxibustion device, disposed below the body of the moxibustion device, wherein the upper layer of the base is inserted into the body of the moxibustion device from below, characterized in that: The base is integrally composed of an upper layer, a lower layer and a bottom. The outer diameter of the upper layer of the base is smaller than the inner diameter of the moxibustion tube, and the outer diameter of the lower layer of the base is larger than the outer diameter of the body of the moxibustion device. The diameter of the lower layer of the base gradually increases or is the same. The bottom of the base is annular, and a number of air inlet holes are provided at the junction of the lower layer and the bottom of the base; a reinforcement ventilation structure is provided on the inner wall of the base at the junction of the upper part and the lower part of the base. The reinforcement ventilation structure is integrally composed of a solid annular plate located in the outer circle, a connecting column located in the inner circle, a plurality of reinforcing ribs and a solid circular plate. The solid annular plate is substantially integrated with the inner wall of the base. The longitudinal section of the whole formed by the connecting column, the plurality of reinforcing ribs and the solid circular plate is U-shaped. The upper end of the connecting column is integrally connected to the inner edge of the solid annular plate. Each reinforcing rib is integrally connected to the lower end of the connecting column at one end and integrally connected to the outer edge of the solid circular plate at the other end, so that the plane where the solid circular plate is located is lower than the plane where the solid annular plate is located. The plurality of reinforcing ribs are distributed in a "rice" shape around the solid circular plate, and a fan-shaped through hole is formed between adjacent reinforcing ribs. The fan-shaped through holes between the reinforcing ribs are communicated with the air inlet holes at the bottom.
2. The energy-concentrating moxibustion device base according to claim 1, characterized in that: A paste layer and a release paper layer matching the size of the annular bottom are provided below the bottom of the base.
3. The energy-concentrating moxibustion device base according to claim 1, characterized in that: A circular medicinal material layer is provided below the bottom of the base. The medicinal material layer is jointly composed of two layers of flexible materials and the medicinal materials provided between the two layers of flexible materials. An adhesive is provided at the bottom edge of the medicinal material layer.
4. The cone-type moxibustion device base according to claim 1, characterized in that: The upper layer of the base is cylindrical.
5. The cone-type moxibustion device base according to claim 1, characterized in that: The lower layer of the base is a frustum-shaped or plum blossom-shaped with a gradually increasing diameter, or the lower layer of the base is a cylindrical shape with the same diameter.
6. The energy-concentrating moxibustion device base according to claim 1, characterized in that:
7. The energy-concentrating moxibustion device base according to claim 6, characterized in that: The diameter of the circular ventilation plate is 1 / 4 of the diameter of the solid annular plate.
8. The energy-concentrating moxibustion device base according to claim 1, characterized in that: The diameter of the connecting column is 1 / 2 of the diameter of the solid annular plate.
9. The cone-type moxibustion device base according to claim 1, characterized in that: The radius of the circle where the fan-shaped through hole is located is 1 - 2 cm. The height of the connecting column is 1 / 3 - 1 / 2 of the height of the lower layer of the base.
Citation Information
Patent Citations
Socket type can paste moxa -moxibustion base
CN207693907U