A visually adjustable moxibustion jar with rapid temperature control.
Patent Information
- Application Number
- CN202522199647.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-10-17
AI Technical Summary
[0004]为了弥补以上不足,本实用新型提供了一种可视上下快速调温药灸罐,旨在改善了现有技术中“传统艾灸罐结构简单,难以控制艾灸材料与人体皮肤的距离,进而无法根据不同患者的体质、病症及治疗需求灵活调节灸疗温度”的问题
1、本实用新型中,通过上下拉动艾灸筒,即可利用塑料块的弹性形变与圆锥卡盘、多级卡槽的配合,实现多个固定高度的快速切换与锁定,从而能够快速改变了艾灸热源与皮肤的距离,从而能够快速、精准地控制灸疗温度,满足不同体质和病症的差异化温度需求,提高了实用性。
Smart Images

Figure CN224723448U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of moxibustion jars, and in particular to a visually adjustable moxibustion jar with rapid temperature control. Background Technology
[0002] Moxibustion, a traditional Chinese medicine therapy with a long history and wide application, occupies an important position in my country's medical and health care field. It uses the heat stimulation and medicinal effects generated by burning materials such as mugwort to act on specific acupoints of the human body in order to achieve the purpose of unblocking meridians, regulating qi and blood, strengthening the body's resistance and eliminating pathogens, and preventing and treating diseases.
[0003] However, traditional moxibustion tools are mostly in the form of moxibustion boxes and moxibustion jars, which have relatively simple structures. During the moxibustion process, it is difficult to accurately control the distance between the moxibustion material and the human skin. This makes it impossible to flexibly adjust the moxibustion temperature according to the different physical conditions, symptoms and treatment needs of different patients. If the temperature is too high, it may burn the skin and cause pain to the patient. If the temperature is too low, it will not achieve the ideal moxibustion effect and affect the treatment process. Therefore, it is not very practical. Utility Model Content
[0004] To overcome the above shortcomings, this utility model provides a visually adjustable moxibustion jar with rapid temperature control, which aims to improve the problem in the prior art that "traditional moxibustion jars have a simple structure, making it difficult to control the distance between the moxibustion material and the human skin, and thus unable to flexibly adjust the moxibustion temperature according to the different physical conditions, symptoms and treatment needs of different patients".
[0005] To achieve the above objectives, this utility model adopts the following technical solution: a visually adjustable, rapidly temperature-controlled moxibustion jar, comprising a tower-shaped pull-out shell, with a bamboo base mounted at the bottom of the tower-shaped pull-out shell via an installation component, and a pull-out moxibustion cylinder mounted at the top of the tower-shaped pull-out shell via a temperature-controlled component. The pull-out moxibustion cylinder contains a placement component. The temperature-controlled component includes two sets of symmetrically fixed positioning blocks fixedly connected to the top of the tower-shaped pull-out shell, with a plastic block fixedly connected to the middle of each of the two sets of positioning blocks. The inner walls of the two sets of plastic blocks... Near the top, a conical chuck is fixedly connected. Positioning grooves are opened on the outer walls of both sides of the pull-type moxibustion cylinder. Two sets of positioning blocks are slidably inserted into the inner wall of the positioning grooves. Near the center of the two sets of positioning grooves, multiple sets of evenly distributed slots are vertically opened on the outer walls of both sides of the pull-type moxibustion cylinder. The conical chuck is engaged with the inner wall of the slot. Transparent windows are fixedly connected to the front and rear sides of the tower-shaped pull-type outer shell near the middle. Mica paper is attached to the inner wall of the tower-shaped pull-type outer shell and the transparent window are engaged and fitted.
[0006] As a further description of the above technical solution: The placement component includes positioning screw sleeves, three sets of which are fixedly connected to the inner wall of the pull-type moxibustion cylinder in a ring array. The bottom end of the positioning screw sleeves is bolted with a positioning plate and a second carbon fiber filter cotton. The positioning plate is located at the bottom end of the second carbon fiber filter cotton. A copper needle is installed through the center of the positioning plate and the second carbon fiber filter cotton and is connected to the screw sleeve. A mica sheet is threaded onto the outer wall of the copper needle near the center.
[0007] As a further description of the above technical solution: The mounting assembly includes mounting buckles, and two sets of mounting buckles are provided, which are respectively fixedly connected to the left and right sides of the tower-shaped pull-out housing near the bottom. The bottom of the tower-shaped pull-out housing is snapped with a buckle, and the front and rear outer walls of the buckle are fixedly connected with a locking block.
[0008] As a further description of the above technical solution: The positioning block is set in U-shape and arc shape, and the plastic block is set in arc shape.
[0009] As a further description of the above technical solution: The tower-shaped pull-out shell has smoke exhaust holes on its left and right sides, and carbon fiber filter cotton is attached to its inner wall in a snap-fit manner with the smoke exhaust holes.
[0010] As a further description of the above technical solution: The inner wall of the pull-type moxibustion cylinder is provided with a mica tube near the bottom, and the mica sheet is provided on the inner wall of the mica tube.
[0011] As a further description of the above technical solution: The bottom of the bamboo is fixedly installed at the bottom of the buckle, and the buckle is L-shaped.
[0012] As a further description of the above technical solution: The mounting buckle is designed in the shape of an opening.
[0013] This utility model has the following beneficial effects: 1. In this utility model, by pulling the moxibustion cylinder up and down, the elastic deformation of the plastic block, together with the conical chuck and multi-level slots, can achieve rapid switching and locking of multiple fixed heights. This allows for quick changes in the distance between the moxibustion heat source and the skin, enabling rapid and precise control of the moxibustion temperature. This meets the differentiated temperature requirements of different constitutions and symptoms, thus improving practicality.
[0014] 2. In this utility model, the burning status and remaining amount of the moxibustion material inside can be observed in real time through the transparent window and high-temperature resistant mica paper set on the tower-shaped outer shell, without interrupting the moxibustion treatment or disassembling the equipment. This realizes the visualization and intelligence of the temperature adjustment process, which greatly improves the accuracy and convenience of moxibustion treatment. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the overall device in this utility model; Figure 2 This is a three-dimensional structural breakdown diagram of the tower-shaped pull-out shell and the pull-out moxibustion cylinder in this utility model; Figure 3 This is a three-dimensional cross-sectional view of the tower-shaped pull-out shell in this utility model and a three-dimensional structural disassembly diagram of the tower-shaped pull-out shell and the buckle. Figure 4 This is a three-dimensional structural breakdown diagram of the tower-shaped pull-out shell, mica paper, carbon fiber smoke filter cotton, and pull-out moxibustion cylinder in this utility model. Figure 5 This is a three-dimensional cross-sectional view of the pull-type moxibustion cylinder of this utility model; Figure 6 This is a three-dimensional cross-sectional view of the pull-type moxibustion cylinder in this utility model, and a three-dimensional structural disassembly diagram of the pull-type moxibustion cylinder, positioning plate and mica cylinder. Figure 7 This is a three-dimensional structural breakdown diagram of the copper needle, mica sheet, positioning disc, and carbon fiber filter cotton in this utility model.
[0016] Legend: 1. Pull-out moxibustion cylinder; 2. Tower-shaped pull-out outer shell; 3. Bamboo bottom; 4. Temperature control component; 5. Installation component; 6. Placement component; 21. Mica paper; 22. Carbon fiber filter cotton I; 41. Positioning block; 42. Plastic block; 43. Conical chuck; 44. Slot I; 45. Positioning slot; 46. Transparent window; 51. Mounting buckle; 52. Clip; 53. Buckle; 61. Positioning screw sleeve; 62. Carbon fiber filter cotton II; 63. Positioning plate; 64. Copper needle; 65. Mica sheet; 66. Mica cylinder. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0018] Reference Figure 1 , Figure 2 and Figure 4 This utility model provides an embodiment of a visually adjustable, rapidly temperature-controlled moxibustion jar, comprising a tower-shaped pull-out shell 2 serving as the main support structure of the jar. A bamboo base 3 is mounted to the bottom of the tower-shaped pull-out shell 2 via an mounting component 5. The mounting component 5 facilitates the detachable connection between the tower-shaped pull-out shell 2 and the bamboo base 3, allowing for easy disassembly, cleaning, or replacement of the bamboo base 3. The bamboo base 3 contacts the human skin, transferring heat for moxibustion. The bamboo material has good thermal conductivity and skin-friendliness, preventing skin burns. A temperature-adjusting component 4 is provided at the top of the tower-shaped pull-out shell 2. The pull-out moxibustion cylinder 1 has a ventilation opening at the top and a customizable brand logo sticker at the center. The position of the pull-out moxibustion cylinder 1 can be adjusted by the temperature control component 4 to change the moxibustion distance, achieving rapid temperature adjustment to meet different moxibustion temperature requirements. The pull-out moxibustion cylinder 1 is used to hold moxibustion materials and provide a heat source carrier for moxibustion. It can be pulled up and down to adjust the temperature with the temperature control component 4. The pull-out moxibustion cylinder 1 has a placement component 6 inside, which is used to fix moxibustion materials, such as moxa sticks or moxa cones, to ensure stable combustion of the moxibustion materials and filter impurities produced during combustion.
[0019] Furthermore, the temperature control component 4 includes two sets of symmetrically fixed positioning blocks 41 fixedly connected to the top of the tower-shaped pull-out housing 2. The positioning blocks 41, in conjunction with the positioning grooves 45, limit the sliding direction of the pull-out moxibustion cylinder 1 to prevent it from deviating during sliding. A plastic block 42 is fixedly connected to the middle of each of the two sets of positioning blocks 41. The plastic block 42 is elastic and can be reset by deformation when the conical chuck 43 is squeezed, allowing it to be locked into the slot 44 to achieve height adjustment of the pull-out moxibustion cylinder 1. Conical chucks 43 are fixedly connected to the inner walls of both sets of plastic blocks 42 near the top. The conical chucks 43 and... The slot 44 engages with the pull-type moxibustion cylinder 1 to fix it at different heights, thereby locking the moxibustion temperature. The outer walls of both sides of the pull-type moxibustion cylinder 1 are provided with positioning grooves 45. The positioning grooves 45 provide sliding tracks for the positioning blocks 41 to ensure that the pull-type moxibustion cylinder 1 moves up and down along a fixed path, ensuring temperature adjustment stability. The two sets of positioning blocks 41 are slidably inserted into the inner walls of the positioning grooves 45. The outer walls of both sides of the pull-type moxibustion cylinder 1 are provided with multiple evenly distributed slots 44 that engage with the conical chuck 43 to position the pull-type moxibustion cylinder 1.
[0020] Furthermore, the conical chuck 43 is engaged with the inner wall of the slot 44. Transparent windows 46 are fixedly connected to the front and rear sides of the tower-shaped pull-out housing 2 near the center, facilitating observation of the burning status and remaining amount of the internal moxibustion material. The progress of moxibustion can be monitored without disassembly. Mica paper 21 is fitted and engaged with the inner wall of the tower-shaped pull-out housing 2, opposite to the transparent windows 46. The mica paper 21 blocks the high temperature and sparks generated by the burning moxibustion, protecting the transparent windows 46 from damage. It also has good thermal conductivity, ensuring no impact on heat transfer during moxibustion. Positioning block 4... 1. The plastic block 42 is set in a U-shape and an arc shape. The U-shape is used for installation of the plastic block 42, and the arc shape is used to make the positioning block 41 slide against the inner wall of the positioning groove 45. The plastic block 42 is set in an arc shape to make it slide against the inner wall of the positioning groove 45, thereby increasing the stability of adjustment. The left and right sides of the tower-shaped pull-out housing 2 are provided with smoke exhaust holes for smoke exhaust. The inner wall of the smoke exhaust hole is fitted with carbon fiber filter cotton 22 in a snap-fit manner with the smoke exhaust hole position, which is used to further filter and exhaust impurities and odors in the smoke, thereby improving the cleanliness of the moxibustion environment.
[0021] Reference Figure 5 , Figure 6 and Figure 7 The placement component 6 includes positioning screw sleeves 61 that use bolts to install and position the positioning disc 63 and the carbon fiber filter cotton 62. Three sets of positioning screw sleeves 61 are arranged in a ring array and fixedly connected to the inner wall of the pull-type moxibustion cylinder 1. The bottom end of the positioning screw sleeves 61 is bolted to support the positioning disc 63 and the carbon fiber filter cotton 62. The carbon fiber filter cotton 62 filters the smoke and impurities produced by moxibustion combustion, reducing harmful substances in the smoke and improving the comfort of the moxibustion environment. The positioning disc 63 is located at the bottom end of the carbon fiber filter cotton 62. The positioning disc 63 and the carbon fiber filter cotton 62 are connected at their center and, through the screw sleeves, are fitted with inserts for inserting moxibustion materials such as moxa cones. Inside, copper needles 64 are used to fix the moxibustion material and prevent it from tipping over or falling during combustion. Mica sheets 65 are threadedly installed on the outer wall of the copper needles 64 near the center. The mica sheets 65 have high temperature resistance and insulation properties, which can prevent the heat transferred by the copper needles 64 from damaging other components and ensure the safety of the moxibustion process. A mica tube 66 is set on the inner wall of the pull-type moxibustion cylinder 1 near the bottom to block the high temperature generated by the moxibustion from being transferred to the outer wall of the pull-type moxibustion cylinder 1, preventing burns to the hands when using it. The mica sheets 65 are set on the inner wall of the mica tube 66 to avoid direct contact between the mica sheets 65 and the inner wall of the pull-type moxibustion cylinder 1, reducing the impact of high temperature on the cylinder wall, and also helping to fix the position of the moxibustion material.
[0022] Reference Figure 1 , Figure 3 and Figure 4The installation component 5 includes a mounting buckle 51. The mounting buckle 51 cooperates with the locking block 52 to achieve the locking and fixing of the buckle 53 to the tower-shaped pull-out housing 2, ensuring the stable installation of the bamboo bottom 3. Two sets of mounting buckles 51 are provided, and are respectively fixedly connected to the left and right sides of the tower-shaped pull-out housing 2 near the bottom. The bottom of the tower-shaped pull-out housing 2 is fitted with the buckle 53, which serves as the connecting medium between the bamboo bottom 3 and the tower-shaped pull-out housing 2, facilitating quick disassembly and installation of the bamboo bottom 3. The inner wall of the tower-shaped pull-out housing 2 near the bottom has a protrusion that cooperates with the groove on the buckle 53. It can be inserted and rotated to reach the depth of the groove for positioning, achieving a quick installation effect. At the same time, the groove also has a protrusion to increase the stability of the installation. The front and rear outer walls of the buckle 53 are fixedly connected with the buckle blocks 52. The buckle blocks 52 are L-shaped and have protrusions on the front and rear sides of the top. The inner wall of the mounting buckle 51 is also provided with grooves. The buckle blocks 52 on another set of moxibustion jars can be inserted into the mounting buckles 51 on the adjacent set of moxibustion jars to connect the two sets of moxibustion jars, thereby increasing stability. The bamboo bottom 3 is fixedly installed at the bottom of the buckle 53. The buckle 53 realizes the indirect connection between the bamboo bottom 3 and the tower-shaped pull-out shell 2, which facilitates the individual replacement of the bamboo bottom 3. The buckle blocks 52 are L-shaped and the mounting buckles 51 are open-shaped to adapt to the structure of the L-shaped buckle blocks 52, which facilitates the quick insertion and locking of the buckle blocks 52, while simplifying the installation operation and improving the ease of disassembly.
[0023] Working principle: In use, the bamboo bottom 3 is fixed to the bottom end of the buckle 53. Then, the buckle 53 is engaged with the bottom end of the tower-shaped pull-out housing 2 by the cooperation of the protrusion at the bottom end of the inner wall and the groove of the buckle 53. Next, the positioning plate 63 and the carbon fiber filter cotton 62 are installed on the inner wall of the pull-out moxibustion cylinder 1 by the three sets of annular array positioning screw sleeves 61 and bolts. Then, the moxibustion material is inserted into the copper needle 64 at the center of the positioning plate 63 and the carbon fiber filter cotton 62. The mica sheet 65 on the outer wall of the needle 64 is placed inside the mica tube 66 at the bottom of the inner wall of the pull-type moxibustion cylinder 1. This prevents the copper needle 64 from damaging the components due to heat transfer and also helps to fix the moxibustion material. The mica tube 66 also blocks the high temperature from being transferred to the outer wall of the pull-type moxibustion cylinder 1 to avoid burns. By inserting the pull-type moxibustion cylinder 1 into the tower-shaped pull-type outer shell 2, two sets of symmetrical positioning blocks 41 are slidably inserted into the positioning grooves 45 of the pull-type moxibustion cylinder 1. The arc-shaped plastic block 42 in the middle of the positioning block 41 drives the cone at the top. When the pull-type moxibustion cylinder 1 is pulled up and down, the plastic block 42 deforms, causing the conical chuck 43 to disengage from or engage with the multiple sets of slots 44 on the outer wall of the pull-type moxibustion cylinder 1. By changing the height of the pull-type moxibustion cylinder 1, the distance between the moxibustion material and the bamboo bottom 3 is adjusted, thereby locking the required moxibustion temperature. During the moxibustion process, the transparent windows 46 on the front and rear sides of the tower-shaped pull-type outer shell 2 facilitate observation of the burning status and remaining amount of the moxibustion material. The mica paper 21 attached to its inner wall blocks high-temperature sparks, protecting the transparent windows 46 without affecting heat transfer. The smoke generated by the moxibustion combustion is discharged through the smoke vents on the left and right sides of the tower-shaped pull-type outer shell 2. The carbon fiber filter cotton 22 on the inner wall of the smoke vent and the carbon fiber filter cotton 62 inside the pull-type moxibustion cylinder 1 work together to filter smoke impurities and odors. Finally, the heat is transferred to the human skin through the bamboo bottom 3 to achieve moxibustion. At the same time, a plaster can be pasted on the bottom of the bamboo bottom 3 for application to the human skin during moxibustion, utilizing the heat conduction of the moxa to improve the therapeutic effect.
[0024] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A visually adjustable, rapidly temperature-controlled moxibustion jar, comprising a tower-shaped pull-out outer shell (2), characterized in that: The bottom of the tower-shaped pull-out shell (2) is fitted with a bamboo base (3) via an installation component (5). The top of the tower-shaped pull-out shell (2) is fitted with a pull-out moxibustion cylinder (1) via a temperature control component (4). The interior of the pull-out moxibustion cylinder (1) is fitted with a placement component (6). The temperature control component (4) includes two sets of symmetrically fixed positioning blocks (41) fixedly connected to the top of the tower-shaped pull-out shell (2). A plastic block (42) is fixedly connected to the middle of each of the two sets of positioning blocks (41). A conical chuck (43) is fixedly connected to the inner wall of each of the two sets of plastic blocks (42) near the top. The pull-out moxibustion cylinder (1) The left and right outer walls are provided with positioning grooves (45), and the two sets of positioning blocks (41) are slidably inserted into the inner wall of the positioning grooves (45). The left and right outer walls of the pull-type moxibustion tube (1) are provided with multiple sets of evenly distributed slots (44) at the center of the two sets of positioning grooves (45). The conical chuck (43) is engaged in the inner wall of the slot (44). The front and rear sides of the tower-shaped pull-type outer shell (2) are fixedly connected with transparent windows (46) near the middle. The inner wall of the tower-shaped pull-type outer shell (2) and the transparent window (46) are respectively engaged and fitted with mica paper (21).
2. The visually adjustable, rapidly temperature-regulating moxibustion jar according to claim 1, characterized in that: The placement component (6) includes a positioning screw sleeve (61), which is provided in three sets and is fixedly connected to the inner wall of the pull-type moxibustion cylinder (1) in a ring array. The bottom end of the positioning screw sleeve (61) is bolted with a positioning plate (63) and a carbon fiber filter cotton II (62). The positioning plate (63) is located at the bottom end of the carbon fiber filter cotton II (62). A copper needle (64) is installed through the center of the positioning plate (63) and the carbon fiber filter cotton II (62) and together with the screw sleeve. A mica sheet (65) is threaded on the outer wall of the copper needle (64) near the center.
3. The visually adjustable, rapidly temperature-regulating moxibustion jar according to claim 1, characterized in that: The mounting component (5) includes mounting buckles (51), which are provided in two sets and are fixedly connected to the left and right sides of the tower-shaped pull-out housing (2) near the bottom. The bottom of the tower-shaped pull-out housing (2) is fitted with buckles (53), and the front and rear outer walls of the buckles (53) are fixedly connected with buckle blocks (52).
4. The visually adjustable, rapidly temperature-regulating moxibustion jar according to claim 1, characterized in that: The positioning block (41) is set in U shape and arc shape, and the plastic block (42) is set in arc shape.
5. A visually adjustable, rapidly temperature-regulating moxibustion jar according to claim 1, characterized in that: The tower-shaped pull-out shell (2) has smoke exhaust holes on its left and right sides, and its inner wall is fitted with carbon fiber filter cotton (22) in a snap-fit manner with the smoke exhaust holes.
6. A visually adjustable, rapidly temperature-regulating moxibustion jar according to claim 2, characterized in that: The inner wall of the pull-type moxibustion tube (1) is provided with a mica tube (66) near the bottom, and the mica sheet (65) is provided on the inner wall of the mica tube (66).
7. A visually adjustable, rapidly temperature-regulating moxibustion jar according to claim 3, characterized in that: The bottom of the bamboo (3) is fixedly installed at the bottom of the buckle (53), and the buckle (52) is L-shaped.
8. A visually adjustable, rapidly temperature-regulating moxibustion jar according to claim 7, characterized in that: The mounting buckle (51) is designed with an opening shape.