Controllable moxibustion device with temperature sensing
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-08-11
AI Technical Summary
雷火灸理疗效果的关键在于热力和药力的结合,所以温度控制很重要,过热会烫伤,温度不够且理疗效果不佳
[0025] This utility model provides a temperature-sensing, controllable traditional Chinese medicine moxibustion device. It utilizes a flexible, woven fiber-based temperature-sensing strip that can bend and conform to the body's curves. During moxibustion, a nano-zinc oxide coating on its surface creates a gradual color change within a 40-60°C range, alerting elderly users to excessively high skin temperatures and preventing burns. A retractable, adjustable bracket at the lower end serves to install and store the flexible temperature-sensing strip and control the moxibustion height, eliminating the need for handheld use and reducing effort. Furthermore, the interlocking inner adjustment disc and outer adjustment ring at the upper end of the cylinder allow for precise forward pushing of the moxibustion column, avoiding the significant errors associated with manual column advancement. The device boasts a reasonable and innovative structural design, employing multiple design features to provide overheat warnings and flexible temperature adjustment. It is simple, convenient, and comfortable to operate.
Smart Images

Figure CN224612918U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a traditional Chinese medicine physiotherapy device, and more particularly to a controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing. Background Technology
[0002] Thunder-fire moxibustion is a traditional Chinese medicine therapy that uses the heat generated by burning medicinal substances and their medicinal properties to stimulate acupoints. The moxa sticks used may contain other Chinese herbal ingredients. During application, a thunder-fire moxibustion device is used to ignite the moxa cone, allowing the heat to penetrate the body and warm the meridians, promote blood circulation, remove blood stasis, and dispel dampness and cold. Thunder-fire moxibustion is widely used in traditional Chinese massage, rehabilitation therapy, and other fields, and has certain effects on relieving pain and promoting blood circulation. The key to the therapeutic effect of thunder-fire moxibustion lies in the combination of heat and medicinal properties; therefore, temperature control is crucial. Excessive heat can cause burns, while insufficient temperature will result in poor therapeutic effects.
[0003] However, existing moxibustion devices require operators with certain medical and healthcare experience for precise control. Untrained users cannot control the temperature of the moxibustion, and slight carelessness can easily cause burns or other accidental injuries, especially for elderly people with slower reaction times who are less sensitive to temperature. Furthermore, existing moxibustion devices are suspended, making it impossible to maintain a stable distance from the skin for extended periods. Also, depending on the degree of burning, the moxa stick needs to be manually pushed forward continuously, and the distance pushed cannot be precisely controlled, making operation inconvenient. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing, addressing the aforementioned technical defects of existing thunder-fire moxibustion devices during use.
[0005] To solve the above-mentioned technical problems, this utility model adopts the following technical solution:
[0006] A temperature-sensing, controllable traditional Chinese medicine moxibustion device includes a cylinder, an inner adjustable insert plate, an outer adjustable dial, a wind control filter, an adjustable bracket, and a flexible temperature-sensing strip, wherein:
[0007] The inner cavity of the cylinder is coaxially provided with an inner adjusting plate for installing moxibustion columns, and the outer circumference is threaded with an outer adjusting ring, which is limited and connected to the U-shaped locking blocks on the left and right sides of the inner adjusting plate.
[0008] The air control filter is installed at the lower opening of the cylinder, and the adjustable bracket is installed below the air control filter. The adjustable bracket is telescopically installed in the guide groove of the lower outer periphery of the cylinder via a support rod, and the flexible temperature sensing strip is provided in the storage groove on the inner side of the support rod.
[0009] Preferably, the cylinder is a cylindrical structure that runs vertically through the top and bottom, with symmetrical strip-shaped guide holes on the left and right side walls at the top end. Strip-shaped guide platforms that cooperate with the U-shaped locking blocks are provided on both sides of the strip-shaped guide holes, and first threads are provided on the outer side walls of the cylinder on both sides of the strip-shaped guide holes.
[0010] Preferably, the front and rear side walls of the upper end of the cylinder are symmetrically provided with first scales, and a plurality of vent holes are equally spaced on the lower end of the circumference. The inner side wall of the lower end is provided with a receiving groove for accommodating the wind baffle plate of the wind control filter screen corresponding to the position of the vent holes.
[0011] Preferably, a plurality of radially arranged guide grooves are provided on the periphery of the lower end of the cylinder, the guide grooves are located between two adjacent vent holes, and a locking block is provided in the groove at the lower end of the guide groove.
[0012] Preferably, the inner adjustable insertion plate includes an insertion plate body and U-shaped locking blocks disposed on the left and right sides of the insertion plate body, wherein:
[0013] The insert plate body has several through holes evenly distributed on it, and several tapered insert rods are spaced apart at the bottom. The left and right sides of the insert plate are respectively connected to the corresponding U-shaped card blocks through connecting blocks.
[0014] Preferably, the outer adjusting ring is a circular ring structure, movably disposed within the corresponding U-shaped locking block, and its inner peripheral wall is provided with a second thread that mates with the first thread, and its outer peripheral wall is provided with a plurality of anti-slip blocks at intervals.
[0015] Preferably, the air control filter includes a filter body and an annular frame, wherein:
[0016] The filter body is a conical structure with an upward convex center, and has several mesh holes evenly distributed on it. The outer periphery is connected to the annular frame to form a dust accumulation groove at the connection point.
[0017] More preferably, the wind control filter further includes a wind deflector and a rotating lever, wherein:
[0018] The wind deflector consists of several Z-shaped plates, with their lower ends spaced on the periphery of the annular frame and their upper ends correspondingly embedded in the receiving groove on the inner circumferential wall of the lower end of the cylinder, for controlling the size of the ventilation holes.
[0019] There are several rotating levers, which are installed at the bottom of the outer perimeter of the annular frame, and each of them has anti-slip textures on its outer side for rotating the wind deflector.
[0020] Preferably, the adjustable bracket includes an annular base and a plurality of support rods, wherein:
[0021] The annular base has several square holes spaced apart, and several vertically arranged support rods are spaced apart on its circumference. The outer wall of the support rod is provided with a second scale.
[0022] The inner wall of the support rod has a vertically opening in the middle for accommodating the flexible temperature-sensing strip, and serrated grooves are provided on both sides to cooperate with the locking block at the lower end of the cylinder.
[0023] Preferably, the flexible temperature sensing strip is a fiber-woven flexible temperature sensing strip, and its surface is covered with a nano zinc oxide coating that can achieve a color gradient in the range of 40-60℃.
[0024] The present invention adopts the above technical solution and has the following technical effects compared with the prior art:
[0025] This utility model provides a temperature-sensing, controllable traditional Chinese medicine moxibustion device. It utilizes a flexible, woven fiber-based temperature-sensing strip that can bend and conform to the body's curves. During moxibustion, a nano-zinc oxide coating on its surface creates a gradual color change within a 40-60°C range, alerting elderly users to excessively high skin temperatures and preventing burns. A retractable, adjustable bracket at the lower end serves to install and store the flexible temperature-sensing strip and control the moxibustion height, eliminating the need for handheld use and reducing effort. Furthermore, the interlocking inner adjustment disc and outer adjustment ring at the upper end of the cylinder allow for precise forward pushing of the moxibustion column, avoiding the significant errors associated with manual column advancement. The device boasts a reasonable and innovative structural design, employing multiple design features to provide overheat warnings and flexible temperature adjustment. It is simple, convenient, and comfortable to operate. Attached Figure Description
[0026] Figure 1 This is a three-dimensional structural diagram of a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to the present invention. Figure 1 ;
[0027] Figure 2 This is a three-dimensional structural diagram of a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to the present invention. Figure 2 ;
[0028] Figure 3 This is a schematic diagram of the main structure of a controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing according to the present invention.
[0029] Figure 4 This utility model Figure 3 The diagram shows a cross-sectional view of a temperature-sensing, controllable traditional Chinese medicine moxibustion device.
[0030] Figure 5 This is a schematic diagram of the explosive structure of a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model. Figure 1 ;
[0031] Figure 6 This is a schematic diagram of the explosive structure of a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model. Figure 2 ;
[0032] Figure 7 This is a schematic diagram of the three-dimensional structure of the inner cylinder of a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model. Figure 1 ;
[0033] Figure 8 This is a schematic diagram of the three-dimensional structure of the inner cylinder of a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model. Figure 2 ;
[0034] Figure 9 This is a three-dimensional structural diagram of the internal adjustable insertion plate in a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model. Figure 1 ;
[0035] Figure 10 This is a three-dimensional structural diagram of the internal adjustable insertion plate in a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model. Figure 2 ;
[0036] Figure 11 This is a three-dimensional structural diagram of the external adjustment dial of a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model.
[0037] Figure 12 This is a three-dimensional structural diagram of the air control filter in a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model. Figure 1 ;
[0038] Figure 13 This is a three-dimensional structural diagram of the air control filter in a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model. Figure 2 ;
[0039] Figure 14 This is a three-dimensional structural diagram of the adjustable support in a temperature-sensing controllable traditional Chinese medicine thunder-fire moxibustion device according to this utility model. Detailed Implementation
[0040] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0041] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0042] In some embodiments, such as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, a controllable traditional Chinese medicine moxibustion device with temperature sensing is provided, including a cylinder 100, an inner adjustable insertion plate 200, an outer adjustable dial 300, an air control filter 400, an adjustable bracket 500, and a flexible temperature sensing strip 600. This device can effectively solve the problems of burn risk, complicated operation, and inability to stably control the distance between the moxibustion column and the skin caused by the lack of temperature sensing and automatic distance adjustment function in traditional moxibustion devices.
[0043] Specifically, the inner cavity of the cylinder 100 is coaxially provided with an inner adjusting plate 200 for mounting the moxibustion column 700, and an outer adjusting ring 300 is threaded on the outer circumference. The outer adjusting ring 300 is limited and connected to the U-shaped locking blocks 205 on the left and right sides of the inner adjusting plate 200. The installation position of the moxibustion column 700 is adjusted by the cooperation between the cylinder 100 and the inner adjusting plate 200. The limiting connection between the outer adjusting ring 300 and the U-shaped locking blocks 205 converts the rotational adjustment into linear displacement, avoiding direct manual contact with the moxibustion column 700.
[0044] A wind control filter 400 is installed at the lower opening of the cylinder 100 to filter combustion impurities and prevent them from falling directly onto the user's skin and causing burns. An adjustable bracket 500 is installed below the wind control filter 400. The adjustable bracket 500 is telescopically mounted within a guide groove 107 on the lower outer periphery of the cylinder 100 via a support rod 502. The telescopic design of the guide groove 107 of the adjustable bracket 500 allows for stable height adjustment of the device.
[0045] In addition, a flexible temperature-sensing strip 600 is provided in the storage groove 503 inside the support rod 502. By embedding the flexible temperature-sensing strip 600 in the storage groove of the support rod 502, the flexible temperature-sensing strip 600 can be quickly pulled out and brought close to the skin to sense the temperature at the skin location in real time. After use, it can be hidden and stored in the storage groove 503. It is especially suitable for elderly people with slow reaction and can effectively solve the problem of burns caused by insensitivity to temperature.
[0046] In this temperature-sensing controllable TCM thunder-fire moxibustion device, the various components work together. The external adjustment ring 300 drives the internal adjustment plate 200 to move axially, controlling the combustion progress of the moxibustion column 700. The adjustable bracket 500 is used to maintain a fixed distance between the cylinder 100 and the skin. The flexible temperature-sensing strip 600 monitors the skin temperature in real time and reminds users to adjust the combustion intensity in time, forming a closed-loop temperature control.
[0047] In some of these embodiments, such as Figure 5 , Figure 6 , Figure 7 and Figure 8 As shown, to achieve linear adjustment of the inner adjustment disc 200 on the cylinder 100, a cylinder 100 with a specific guiding structure is constructed to achieve precise adjustment. Specifically, the cylinder 100 adopts a cylindrical structure that runs vertically through the cylinder. Slot-shaped guide holes 101 are symmetrically arranged on the left and right side walls of its upper end. Slot-shaped guide platforms 102, which cooperate with the U-shaped locking blocks 205, are arranged on both sides of the slot-shaped guide holes 101. The symmetrically arranged slot-shaped guide holes 101 provide an axial movement trajectory for the U-shaped locking blocks 205, forming a double-limiting structure with the slot-shaped guide platforms 102, which can effectively prevent deviation during adjustment.
[0048] First threads 103 are respectively provided on the outer walls of the cylinder on both sides of the strip-shaped guide hole 101. The first threads 103 on both sides of the strip-shaped guide hole 101 form a threaded pair with the outer adjusting ring 200. By rotating the outer adjusting ring 200, the U-shaped locking block 205 is driven to move precisely along the strip-shaped guide hole 101, thereby realizing fine-tuning control of the height of the moxibustion column 700. This structural design converts rotational motion into linear displacement, which not only ensures adjustment accuracy but also simplifies the operation.
[0049] In some of these embodiments, such as Figure 7 and Figure 8 As shown, first scales 106 are symmetrically arranged on the front and rear side walls of the upper end of the cylinder 100. By symmetrically arranging the first scales 106 on the upper end of the cylinder 100, it is convenient to observe the adjustment scale of the insertion depth of the moxibustion column 700 from different angles, so as to achieve precise control of the distance between the heat source and the skin.
[0050] Several ventilation holes 104 are equidistantly opened on the lower end of the cylinder 100. The ventilation holes 104 equidistantly opened at the lower end can evenly distribute the oxygen required for combustion, maintain the combustion stability of the moxa stick 700, and avoid sudden temperature changes due to uneven oxygen supply.
[0051] Furthermore, a receiving groove 105 is provided on the inner side wall at the lower end of the cylinder 100 at the position corresponding to the vent 104 to accommodate the baffle plate 404 on the air control filter 400. By providing the receiving groove 105 at the position corresponding to the vent 104, the baffle plate 404 of the air control filter 400 can be accurately embedded in the groove. This ensures the alignment accuracy between the baffle plate 404 and the vent 104 to adjust the air intake, and also fixes the baffle plate 404 through the groove structure to prevent displacement, thereby stabilizing the combustion temperature.
[0052] In some of these embodiments, such as Figure 7 and Figure 8As shown, in order to facilitate the stable and reliable installation of the adjustable bracket 500, a number of radially arranged guide grooves 107 are provided on the circumference of the lower end of the cylinder 100. By arranging the guide grooves 107 radially on the circumference of the lower end of the cylinder 100, the support rod 502 can be extended and retracted along a specific path to adjust its height.
[0053] The guide groove 107 is located between two adjacent vent holes 104, and a locking block 108 is provided in the groove at its lower end. The locking block 108 in the groove at the lower end of the guide groove 107 forms a limiting structure with the sawtooth groove 504 on the inner side of the support rod 502. The support rod is locked by the engagement of the sawtooth and the locking block, thereby ensuring that the adjustable bracket 500 can stably fix the distance between the cylinder 100 and the skin in any extension or retraction state.
[0054] In some of these embodiments, such as Figure 9 and Figure 10 As shown, the internal adjustment insert plate 200 includes an insert plate body 201 and U-shaped locking blocks 205 disposed on the left and right sides of the insert plate body 201. The insert plate body 201 has several through holes 202 evenly distributed on it, and several tapered insert rods 203 are disposed at intervals at the bottom. The tapered insert rods 203 can be inserted into the bottom of the moxibustion column 700 to fix the position and prevent displacement during combustion.
[0055] On the left and right sides of the insertion plate body 201, corresponding U-shaped locking blocks 205 are connected by connecting blocks 204. The connecting blocks 204 on the left and right sides rigidly connect the U-shaped locking blocks 205 to the insertion plate body 201, so that the rotational movement of the outer adjustment ring 200 is transmitted to the insertion plate body 201 through the U-shaped locking blocks 205, realizing the axial movement of the entire insertion plate within the cylinder 100, thereby adjusting the distance between the moxibustion column 700 and the human skin.
[0056] In some of these embodiments, such as Figure 5 , Figure 6 and Figure 11 As shown, a rotatable adjustment mechanism is constructed by the cooperation of a circular ring 200 and a U-shaped locking block 205. The outer adjustment ring 300 has a circular structure and is movably set in the corresponding U-shaped locking block 205, facilitating single-finger operation. Furthermore, a second thread 301 is provided on the inner circumferential wall of the circular ring 200, which mates with the first thread 103. The second thread 301 and the first thread 103 on the cylinder form a threaded pair, converting the rotational motion into linear displacement of the inner adjustment disc, thereby achieving precise control of the advance distance without direct contact with the moxibustion column.
[0057] Furthermore, several anti-slip blocks 302 are spaced apart on the outer peripheral wall of the annular dial 200. By increasing the surface friction coefficient, the anti-slip blocks 302 solve the problem of slippage caused by sweaty hands during moxibustion using traditional smooth metal rings, ensuring the reliability of the adjustment action. Compared with the traditional manual push rod structure, this internal and external threaded transmission method avoids the high temperature of the combustion end being conducted to the operating parts, and can also precisely control the displacement of each adjustment through the thread lead.
[0058] In some of these embodiments, such as Figure 12 and Figure 13 As shown, the air control filter 400 includes a filter body 401 and an annular frame 403. The filter body 401 is a conical structure with an upward convex center, on which a plurality of mesh holes 402 are evenly distributed. The outer periphery is connected to the annular frame 403 to form an ash collection groove at the connection point. The ash collection groove structure formed by the conical filter body 401 and the annular frame 402 ensures that the ash produced during combustion is concentrated and deposited at the connection point, preventing clogging of the mesh holes 402 and affecting the efficiency of the treatment. Furthermore, the conical mesh structure not only increases the filtration area but also guides the airflow distribution more evenly through the central convexity, ensuring combustion stability while reducing the risk of localized high temperatures.
[0059] In addition, such as Figure 12 and Figure 13 As shown, the air control filter 400 also includes a baffle plate 404 and a rotating lever 405. Several baffle plates 404 are arranged in a Z-shaped plate structure, with their lower ends spaced on the periphery of the annular frame 403, and their upper ends correspondingly embedded in the receiving groove 105 on the inner peripheral wall of the lower end of the cylinder 100, used to control the size of the vent holes 104. The Z-shaped baffle plates 404, by embedding themselves in the receiving groove 105 of the cylinder, can change their overlapping area with the vent holes 104 as the annular frame 403 rotates, thereby precisely adjusting the air intake and controlling the combustion temperature.
[0060] Several rotary levers 405 are installed at the bottom of the outer perimeter of the annular frame 403, and each has anti-slip texture on its outer side for rotating the wind deflector 404. The anti-slip texture design on the rotary levers 405 enhances the stability of operation during manual adjustment and avoids adjustment deviations caused by slippage.
[0061] In some of these embodiments, such as Figure 5 , Figure 6 and Figure 14As shown, the adjustable bracket 500 includes an annular base 501 and several support rods 502. The annular base 501 has several square holes 506 spaced apart, and three vertically arranged support rods 502 are spaced apart on its circumference, forming a stable triangular support structure with the annular base 501 and the three support rods 502 arranged vertically. The serrated grooves 504 on the inner side of the support rods 502 engage with the cylinder locking block 108, achieving multi-level height fixation of the bracket and avoiding the problem of easy displacement in traditional suspension methods.
[0062] A second scale 505 is provided on the outer wall of the support rod 502. The combination of the second scale 505 and the flexible temperature sensing strip 600 in the storage groove allows the user to observe the temperature change simultaneously when adjusting the height of the bracket and to quantify the safety distance through the physical scale.
[0063] The support rod 502 has a vertically opening in the middle of its inner sidewall for accommodating the flexible temperature sensing strip 600. The flexible temperature sensing strip 600 is integrated into the vertical storage groove 503 on the inner side of the support rod 502, which facilitates its unfolding and storage.
[0064] On both sides of the support rod 502, there are serrated grooves 504 that cooperate with the locking block 108 at the lower end of the cylinder 100. The serrated grooves 504 and the inclined tooth surface of the locking block 108 are designed to produce a staged damping sensation during the extension and retraction of the support rod 502, which not only prevents accidental loosening but also facilitates one-handed operation and positioning.
[0065] In addition, such as Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, a temperature-sensing structure combining fiber and nano-zinc oxide coating is constructed, possessing both flexibility and temperature feedback functionality. Specifically, the flexible temperature-sensing strip 600 is a flexible temperature-sensing strip woven from fibers, with a surface covered by a nano-zinc oxide coating that achieves a color gradient within the 40-60℃ range. The fiber-woven flexible temperature-sensing strip 600 can adapt to the complex internal structure of the device and fits snugly into the storage slot 503 for stable installation.
[0066] When the flexible temperature-sensing strip 600 is unfolded and applied to the skin, it can sense the temperature changes generated by the burning moxibustion column 700 in real time. The color-gradient properties of the nano-zinc oxide coating visually indicate the temperature status through color changes within the key therapeutic temperature range of 40-60℃, allowing the operator to determine whether it is within the safe range without relying on experience. The nano-zinc oxide coating with a color-response range of 40-60℃ directly corresponds to the effective temperature range required for thunder-fire moxibustion therapy, preventing burns caused by excessive temperature and avoiding insufficient temperature affecting the therapeutic effect.
[0067] In addition, regarding material selection, the cylinder 100 can be made of lightweight and heat-resistant kraft paper tube material. The internal adjustment plate 200, external adjustment ring 300, air control filter 400, and adjustable bracket 500 can be made of easy-to-operate metal or plastic materials, such as stainless steel or aluminum alloy.
[0068] Combination Figures 1 to 6 As shown, the temperature-sensing controllable traditional Chinese medicine moxibustion device operates as follows: The moxibustion column 700 is inserted into the cylinder 100 from the bottom and fixedly mounted on the inner adjustable plate 200. After igniting the moxibustion column 700, the air control filter 400 is manually pressed into the lower port of the cylinder 100, ensuring that each wind baffle 404 is embedded in the corresponding ventilation hole 104. The ventilation volume is adjusted by rotation. Then, the support height of the adjustable bracket 500 is adjusted as needed. After adjustment, the device is placed on the skin, and the flexible temperature-sensing strip 600 is pulled out and placed against the skin for moxibustion treatment. During use, the outer adjustment ring 300 is manually rotated, causing the inner adjustable plate 200 to move linearly downwards, thus advancing the moxibustion column 700. The device allows for flexible adjustment and control based on temperature changes in the flexible temperature-sensing strip 600, accommodating long-term moxibustion treatments for elderly patients and offering greater ease of use.
[0069] Finally, the following points should be noted: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection", and "linkage" should be interpreted broadly, and can be mechanical or electrical connections, or internal connections between two components, or direct connections. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change.
[0070] Secondly, the accompanying drawings of the embodiments disclosed in this utility model only involve the structures involved in the embodiments disclosed in this utility model. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this utility model can be combined with each other.
[0071] Finally, the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. 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 controllable traditional Chinese medicine thunder fire moxibustion device with temperature sensing, characterized in that, It includes a cylinder (100), an inner adjustable insert plate (200), an outer adjustable dial (300), a wind control filter (400), an adjustable bracket (500), and a flexible temperature sensing strip (600), wherein: The inner cavity of the cylinder (100) is coaxially provided with an inner adjusting plate (200) for installing moxa sticks (700), and the outer peripheral body is threaded with an outer adjusting ring (300), and the outer adjusting ring (300) is limitedly connected to the U-shaped locking blocks (205) on the left and right sides of the inner adjusting plate (200). The air control filter (400) is installed at the lower opening of the cylinder (100), and the adjustable bracket (500) is installed below the air control filter (400). The adjustable bracket (500) is telescopically installed in the guide groove (107) of the lower outer periphery of the cylinder (100) via a support rod (502), and the flexible temperature sensing strip (600) is provided in the storage groove (503) inside the support rod (502).
2. The controllable moxibustion device with temperature sensing according to claim 1, characterized in that, The cylinder (100) is a cylindrical structure that runs vertically through the top and bottom. The left and right side walls at the top end are symmetrically provided with strip-shaped guide holes (101). On both sides of the strip-shaped guide holes (101), there are strip-shaped guide platforms (102) that cooperate with the U-shaped locking block (205). The outer side walls of the cylinder on both sides of the strip-shaped guide holes (101) are respectively provided with first threads (103).
3. The controllable moxibustion device with temperature sensing according to claim 1, characterized in that, The front and rear side walls of the upper end of the cylinder (100) are symmetrically provided with first scales (106), and a number of ventilation holes (104) are equally spaced on the lower end of the circumference. The inner side wall of the lower end is provided with a receiving groove (105) for accommodating the wind baffle (404) on the wind control filter (400) at the position of the ventilation holes (104).
4. The controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing according to claim 1, characterized in that, The lower end of the cylinder (100) has a plurality of radially arranged guide grooves (107) on its periphery. The guide grooves (107) are located between two adjacent vent holes (104), and a locking block (108) is provided in the groove at its lower end.
5. The controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing according to claim 1, characterized in that, The inner adjustable spacing insert (200) includes an insert body (201) and U-shaped locking blocks (205) disposed on the left and right sides of the insert body (201), wherein: The insert plate body (201) has several through holes (202) evenly distributed on it, and several tapered insert rods (203) are spaced apart at the bottom. The left and right sides of the insert plate are respectively connected to the corresponding U-shaped card blocks (205) through connecting blocks (204).
6. The controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing according to claim 1, characterized in that, The external adjustment ring (300) is a circular ring structure, which is movably set in the corresponding U-shaped block (205), and its inner peripheral wall is provided with a second thread (301) that cooperates with the first thread (103), and its outer peripheral wall is provided with a number of anti-slip blocks (302) at intervals.
7. The controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing according to claim 1, characterized in that, The wind control filter (400) includes a filter body (401) and an annular frame (403), wherein: The filter body (401) is a conical structure with an upward convex center, and a number of mesh holes (402) are evenly distributed on it. The outer periphery is connected to the annular frame (403) to form a dust accumulation groove at the connection between the two.
8. The controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing according to claim 7, characterized in that, The wind control filter (400) further includes a wind deflector (404) and a rotating lever (405), wherein: The wind deflector (404) consists of several Z-shaped plates. Its lower end is installed on the periphery of the annular frame (403) at intervals, and its upper end is correspondingly embedded in the receiving groove (105) of the inner peripheral wall of the lower end of the cylinder (100) to control the size of the ventilation hole (104). There are several rotating paddles (405), which are installed at the bottom of the outer periphery of the annular frame (403), and each of them is provided with anti-slip texture on the outside, for rotating the wind deflector (404).
9. The controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing according to claim 1, characterized in that, The adjustable bracket (500) includes an annular base (501) and several support rods (502), wherein: The annular base (501) is provided with a plurality of square holes (506) spaced apart, and a plurality of vertically arranged support rods (502) are spaced apart on its periphery. The outer side wall of the support rods (502) is provided with a second scale (505). The inner wall of the support rod (502) has a vertically opened storage groove (503) for accommodating the flexible temperature sensing strip (600) in the middle, and serrated grooves (504) are respectively provided on both sides to cooperate with the locking block (108) at the lower end of the cylinder (100).
10. The controllable traditional Chinese medicine thunder-fire moxibustion device with temperature sensing according to claim 1, characterized in that, The flexible temperature sensing strip (600) is a flexible temperature sensing strip woven from optical fibers, and its surface is covered with a nano zinc oxide coating that can achieve a color gradient in the range of 40-60℃.