Moxibustion fumigation cylinder with temperature adjusting device

By combining the inner and outer cylinder screw connection structure with a temperature sensor, the problems of complex temperature control and skin burns in existing moxibustion fumigation devices are solved, achieving simple and effective temperature regulation and low-cost production.

CN224523605UActive Publication Date: 2026-07-21ZHUZHOU CENT HOSPITAL
View PDF 3 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHUZHOU CENT HOSPITAL
Filing Date
2025-01-26
Publication Date
2026-07-21

Smart Images

  • Figure CN224523605U_ABST
    Figure CN224523605U_ABST
Patent Text Reader

Abstract

The utility model provides a moxa -burning cylinder with temperature adjusting device, including inner tube, outer tube, base and top moxa -burning part, inner tube is screwed together with outer tube through the lifting thread, and the height of top moxa -burning part is adjusted with base through rotation, inner tube air hole and outer tube air hole are arranged respectively on the side wall of inner tube and outer tube contact, and inner tube air hole and outer tube air hole are mutually arranged in pairs, and the size of air hole is adjusted through the lifting thread, the utility model is mutually matched with inner tube air hole and outer tube air hole through the lifting thread, not only can the height of moxa -burning stick in the fumigating cylinder be adjusted, but also the air amount that enters the fumigating cylinder can be adjusted, to further adjust the combustion degree of moxa -burning, effectively control the fumigating temperature of moxa -burning, and avoid that temperature is too high.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to a monitoring system device for train freight cars, and more particularly to a moxibustion fumigation cylinder with a temperature regulating device; the moxibustion fumigation cylinder with a temperature regulating device can be adjusted in real time according to the required fumigation temperature; it belongs to the technical field of moxibustion operation device. Background Technology

[0002] Moxibustion, commonly known as moxibustion therapy, is a treatment method that uses moxa sticks or cones made from mugwort leaves. The heat generated by burning the moxa sticks or cones stimulates acupoints or specific areas of the body, thereby stimulating the flow of Qi (vital energy) to regulate disordered physiological and biochemical functions, thus achieving the purpose of preventing and treating diseases. The mechanism of action of moxibustion is similar to that of acupuncture, and they can complement each other in therapeutic effects. Moreover, moxibustion has many advantages, such as being simple to perform, inexpensive, and having significant effects, so it is increasingly used as a traditional Chinese medical technique.

[0003] However, because moxibustion sticks are burned and applied close to the skin, the temperature near the burning point is extremely high. Combined with factors such as the rolling of the moxa cone and the falling of the ember, even slight carelessness can cause burns. Patients with reduced or absent sensation in certain areas are also prone to overheating burns. Therefore, to prevent burns during moxibustion, various moxibustion tools are now commonly used. This has led to the emergence of many moxibustion fumigation devices on the market. These devices improve upon traditional moxibustion equipment in various ways, including warm barrel moxibustion, warm box moxibustion, portable moxibustion, and fire dragon moxibustion devices. However, most of these so-called moxibustion fumigation devices currently on the market lack temperature control features, or their temperature control mechanisms are overly complex and inconvenient to use. Therefore, improvements are necessary.

[0004] After searching, no patent documents were found to be identical to the technical solution of this utility model. However, some similar technical solutions were found, and the most similar patent documents are as follows: 1. A utility model patent with patent number CN202420302527.9, entitled "A Moxibustion Device," discloses a moxibustion device including a fixing component for fixing a moxa stick and a frame for supporting the fixing component. The frame has a hollow section into which the moxa stick extends. The fixing component has an adjustment structure for adjusting the position of the moxa stick in the hollow section. The adjustment structure includes a threaded post with one end into which the moxa stick can be inserted. The fixing component also includes a fixing box with an elongated threaded hole. The threaded post is threaded into the threaded hole, and the length direction of the threaded hole is consistent with the height direction of the frame. However, the adjustment mechanism of this device is too simple, only adjusting the height by adjusting the screw, and cannot control the degree of moxibustion. Moreover, the moxa stick of this device is completely exposed. Although there is a mesh for isolation, the possibility of the moxa head falling off from the side cannot be ruled out.

[0005] 2. A utility model patent with patent number CN202323361085.X and titled "Anti-scalding Moxibustion Box" discloses an anti-scalding moxibustion box, including a lid, a body, and a fixing strap. It also includes a temperature control mechanism and an ash collection device. The temperature control mechanism includes a temperature sensor, a power supply, an alarm, and an adjusting baffle. The temperature sensor, power supply, and alarm are mounted on the lid and electrically connected to the power supply. The ash collection device includes a collection tray and a connecting rod. When the moxa stick burns, if the temperature sensor detects that the temperature is too high or too low, the controller activates the alarm. The operator can adjust the airflow by sliding the adjusting baffle to control the temperature and prevent scalding. While the disclosed technical solution has relatively complete functions, the overall structure is quite complex, especially the moxa stick adjusting device, which requires moving the adjusting baffle up and down within a groove. This can easily lead to the moxa stick falling off automatically.

[0006] 3. A utility model patent with patent number CN202323097694.9, entitled "A Temperature-Controllable Moxibustion Box," discloses a temperature-controllable moxibustion box, comprising a box body one, a display panel on the top of the box body one, a box body two threadedly connected to the bottom of the box body one, an activated carbon temperature control cover fixedly connected to the top of the inner wall of the box body two, a perforated mesh fixedly connected to the inner wall of the box body two, an activated carbon filter layer fixedly connected to the bottom of the inner wall of the box body two, multiple alarms fixedly connected to the bottom of the inner wall of the box body two, a perforated base fixedly connected to the bottom of the box body two, and a groove formed on the left side of the box body one. However, this patent's technical solution also suffers from structural complexity, especially the complex structure for adjusting the height of the moxibustion stick, which requires adjustment via a pair of bevel gears, making manufacturing difficult and resulting in a high cost.

[0007] Through careful analysis of the above patents, although some people have proposed improved technical solutions for temperature regulation of moxibustion fumigation, the existing technical improvement solutions still generally suffer from shortcomings such as complex structure, inconvenience of use, and high cost. Thus, the problems mentioned above still exist, so it is necessary to improve them. Utility Model Content

[0008] The technical problem to be solved by this utility model is that, in view of the shortcomings of existing moxibustion fumigation devices, such as inconvenience in temperature control, complex temperature control mechanism, inconvenient operation, and high cost, a moxibustion fumigation cylinder with simple structure, convenient temperature control operation, good temperature control effect, no skin burn phenomenon, and low cost is proposed.

[0009] This utility model is mainly achieved through the following technical solution: a moxibustion fumigation cylinder with a temperature regulating device, the moxibustion fumigation cylinder comprising: An inner cylinder with vent holes distributed on its side wall; a base is screwed to the bottom of the inner cylinder. An outer cylinder with ventilation holes distributed on its side walls; a moxibustion insert is provided on the top surface of the outer cylinder; Furthermore, the inner cylinder and the outer cylinder are connected together by a lifting thread, and the height of the moxibustion component at the top and the base can be adjusted by rotation; the vent holes of the inner cylinder and the outer cylinder are matched and their overlap can be adjusted by rotation to control the amount of air entering the combustion chamber of the moxibustion stick.

[0010] Furthermore, the inner cylinder vent and the outer cylinder vent are arranged in pairs on the sides of the inner and outer cylinders. When the outer cylinder rotates, the overlap between the inner cylinder vent and the outer cylinder vent is adjusted by the rotation between the outer and inner cylinders and the up and down adjustment of the lifting screw, thereby changing the size of the vent of the moxibustion cylinder and controlling the amount of air entering the combustion chamber of the moxibustion cylinder.

[0011] Furthermore, the inner cylinder vent and the outer cylinder vent are elongated waist-shaped through holes. When the outer cylinder and the inner cylinder are rotated to the bottom through the lifting screw, that is, when the moxibustion stick is closest to the base, the overlap between the inner cylinder vent and the outer cylinder vent is the greatest, that is, the air passage of the inner cylinder vent and the outer cylinder vent is the greatest.

[0012] Furthermore, the vent holes in the inner cylinder and the outer cylinder are arranged in a matching manner on the sides of the inner and outer cylinders along the vertical plane of the moxibustion cylinder axis, or arranged obliquely on the sides of the inner and outer cylinders, and the size of the air inlet vent holes is adjusted by the degree of overlap between them.

[0013] Furthermore, the lifting thread is located at the opening of the inner cylinder and the sleeve, and the lifting thread is a multi-start high-angle thread; the pitch of the lifting thread must ensure that the vent holes of the inner cylinder and the outer cylinder are completely closed or opened to each other after rotating to the determined helix angle.

[0014] Furthermore, a damping sleeve is provided between the lifting thread and the inner and outer cylinders. The damping sleeve is attached to the outer surface of the lifting thread of the inner cylinder or the inner surface of the lifting thread of the outer cylinder, and the damping sleeve prevents the free lifting and lowering between the inner and outer cylinders.

[0015] Furthermore, the base includes a bottom cover and a middle partition. The middle partition is fitted into the bottom opening of the inner cylinder and supported by a support sleeve. The bottom cover is screwed onto the bottom opening of the inner cylinder via a bottom thread. Ventilation holes are evenly distributed on both the bottom cover and the middle partition to form a double-isolation ventilation structure, which facilitates moxibustion fumigation.

[0016] Furthermore, a temperature sensor is provided on the inner side of the bottom cover. The temperature sensor is in close contact with the inner surface of the bottom cover and is connected to an alarm indicator light via a wire. An alarm is triggered when the temperature of the bottom cover reaches a set value.

[0017] Furthermore, the top-inserted moxibustion component includes a moxibustion stick clamping sleeve with a moxibustion stick mounting hole in the middle. The outer part of the moxibustion stick clamping sleeve is divided into an upper part and a lower part. The lower part of the outer part of the moxibustion stick clamping sleeve has an adjusting thread, which is screwed into a threaded hole in the top panel of the outer cylinder, forming a mechanism that allows the moxibustion stick to move up and down. The upper part of the outer part of the moxibustion stick clamping sleeve is provided with a rotating disk, and the up and down movement of the moxibustion stick clamping sleeve can be adjusted by manually adjusting the rotating disk.

[0018] Furthermore, a moxibustion stick clamping piece is provided inside the moxibustion stick mounting hole of the moxibustion stick clamping sleeve, and the moxibustion stick is fixed by the clamping piece.

[0019] The beneficial effects of the above-described technical solution adopted by this utility model are as follows: This utility model adopts a screw-on connection between inner and outer cylinders, and adjusts the height of the moxibustion stick and the bottom cover by screwing on the connection. At the same time, the air intake of the combustion chamber of the moxibustion cylinder is adjusted synchronously by rotating, which effectively controls the temperature of the moxibustion stick, thereby effectively adjusting the temperature of the moxibustion fumigation and avoiding excessive temperature burns to the skin. It has the following advantages.

[0020] 1. Through the multi-head screw thread between the inner and outer cylinders, the height of the moxibustion stick above the skin of the fumigation site and the air intake of the combustion chamber of the moxibustion cylinder can be adjusted simultaneously. This allows for control of the combustion temperature of the moxibustion stick from two aspects, further increasing the regulation of the moxibustion temperature. 2. This utility model has air inlets provided on the side walls of the inner and outer cylinders. The size of the air inlets can be adjusted by rotating the rod to adjust the height of the moxibustion stick. The size of the overall air inlet is controlled by the degree of overlap between the air inlets of the inner and outer cylinders, thereby effectively controlling the amount of air entering the combustion chamber of the moxibustion cylinder. 3. This utility model adopts an inner cylinder vent hole and an outer cylinder vent hole arranged obliquely on the side. By designing the angle of inclination, the ratio of the lifting height to the overlap of the vent holes can be adjusted, which can more effectively control the appropriate temperature of the moxibustion stick fumigation and minimize the adjustment amount. 4. This utility model has a top-insertion moxibustion component at the top, which can adjust the distance of the moxibustion strip into the combustion chamber of the moxibustion cylinder in real time, ensuring that the moxibustion strip can be replenished in time when the fumigation intensity is insufficient; 5. The overall structure of this utility model is simple, consisting of only two main parts: an inner cylinder and an outer cylinder. It is also very easy to manufacture, as there are no irregularly shaped parts, so the cost is very low and it is easy to promote and apply. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the overall structure of the present utility model; Figure 2 This is a schematic cross-sectional view of the structure of this utility model; Figure 3 This is a schematic diagram of the opening and closing structure of the air inlet of this utility model; Figure 4 This is an enlarged structural schematic diagram of the screw-on connection between the inner and outer cylinders of this utility model; Figure 5 This is a schematic diagram of the oblique arrangement structure of the air inlet of this utility model. Detailed Implementation

[0022] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments. Example 1

[0023] As shown in the attached figure, a moxibustion fumigation cylinder with a temperature regulating device includes: An inner cylinder 1 has multiple vent holes 101 distributed on its side wall; a base 2 is screwed to the bottom of the inner cylinder 1. An outer cylinder 3 has ventilation holes 301 distributed on its side wall; a moxibustion insert 4 is provided on the top surface of the outer cylinder 3. Furthermore, the inner cylinder 1 and the outer cylinder 3 are screwed together by the lifting thread 5, and the height of the top moxibustion component 4 and the base 2 can be adjusted by rotation; the inner cylinder vent 101 and the outer cylinder vent 301 are matched with each other, and the overlap can be adjusted by rotation to control the air intake in the moxibustion strip combustion chamber 6.

[0024] Furthermore, as shown in the appendix Figure 4 As shown, the lifting thread 5 between the inner cylinder 1 and the outer cylinder 3 is a multi-start, large-helix-angle thread. The specific number of threads and the helix angle or pitch are determined according to the needs of adjusting the lifting of the moxibustion stick, and the overlap requirements of the inner cylinder vent hole 101 and the outer cylinder vent hole 301 must also be considered. Preferably, a thread with 2-3 starts is selected, and the helix angle is controlled between 25-40 degrees. The general principle is that when the inner cylinder 1 rotates upward relative to the outer cylinder 3, the inner cylinder vent hole 101 and the outer cylinder vent hole 301 gradually close to each other. The further downward the rotation, the higher the overlap between the inner cylinder 1 vent hole 101 and the outer cylinder vent hole 301, until the inner cylinder vent hole 101 and the outer cylinder vent hole 301 completely overlap at the bottom, and the vent hole is opened to its maximum extent.

[0025] To prevent the inner cylinder 1 and the outer cylinder 3 from falling down due to rotation, a damping sleeve 7 is provided between the lifting thread 5 and the inner cylinder 1 and the outer cylinder 2. The damping sleeve 7 is attached to the outer surface of the lifting thread of the inner cylinder 1 or the inner surface of the lifting thread of the outer cylinder 3. The damping sleeve 7 increases the resistance and prevents the free lifting between the inner cylinder 1 and the outer cylinder 3.

[0026] The inner cylinder vent 101 and the outer cylinder vent 301 are elongated, waist-shaped holes, arranged in a matching manner on the sides of the inner cylinder 1 and the outer cylinder 3 along the vertical plane of the moxibustion cylinder axis, that is, arranged horizontally on the side walls of the inner cylinder 1 and the outer cylinder 3. The number is determined according to the immediate needs. Preferably, 2-3 inner cylinder vent 101 and outer cylinder vent 301 are evenly distributed on the sides of the inner cylinder 1 and the outer cylinder 3. It should be noted that the inner cylinder vent 101 and the outer cylinder vent 301 must be set in pairs, that is, one inner cylinder vent 101 and one outer cylinder 3 vent 301 are respectively set at the same side wall position of the inner cylinder 1 and the outer cylinder 3. One inner cylinder vent 101 and one outer cylinder vent 301 at the same position constitute a pair. When the outer cylinder 3 rotates relative to the inner cylinder 1, not only will the outer cylinder 3 rise or fall relative to the inner cylinder 1, but the degree of overlap between the inner cylinder vent 101 and the outer cylinder vent 301 will also be adjusted due to the rotation of the inner cylinder relative to the outer cylinder. It is worth noting that the adjustment of the overlap between the inner cylinder vent 101 and the outer cylinder vent 301 is not a simple horizontal overlap adjustment, but also involves the adjustment of the degree of overlap in the vertical direction.

[0027] The base 2 includes a bottom cover 8 and a middle partition 9. The middle partition 8 is inserted into the bottom opening 102 of the inner cylinder and supported by the support sleeve 10. The bottom cover 8 is screwed onto the bottom opening 103 of the inner cylinder by a bottom thread 11. Ventilation holes 12 are evenly distributed on both the bottom cover 8 and the middle partition 9 to form a double-isolation ventilation structure, which facilitates moxibustion fumigation.

[0028] A temperature sensor 13 is provided on the inner side of the bottom cover 8. The temperature sensor 13 is in close contact with the inner surface of the bottom cover 8 and is connected to the alarm indicator light 21 through the wire 14. An alarm is triggered when the temperature of the bottom cover 8 reaches the set value.

[0029] The top-inserted moxibustion component 4 includes a moxibustion stick clamping sleeve 15. The moxibustion stick clamping sleeve 15 has a moxibustion stick mounting hole 16 in the middle. The outer part of the moxibustion stick clamping sleeve 15 is divided into an upper part 17 and a lower part 18. The lower part 18 of the outer part of the moxibustion stick clamping sleeve is an adjusting thread. The adjusting thread is screwed into the threaded hole 22 of the top panel 20 of the outer cylinder, forming a mechanism in which the moxibustion stick 19 can move up and down. The upper part 17 of the outer part of the moxibustion stick clamping sleeve is provided with a rotating disk. The up and down movement of the moxibustion stick clamping sleeve 15 can be adjusted by manually adjusting the rotating disk.

[0030] In addition, a moxibustion strip clamping piece (not shown in the figure) is provided in the moxibustion strip mounting hole 16 of the moxibustion strip clamping sleeve 15 to fix the moxibustion strip.

[0031] The working principle of this utility model is as follows: First, ignite the moxibustion stick, then insert the ignited moxibustion stick into the moxibustion stick clamping sleeve; alternatively, the moxibustion stick can be inserted into the moxibustion stick clamping sleeve before ignition. Next, screw the ignited moxibustion stick, along with the moxibustion stick clamping sleeve, onto the threaded hole at the top of the outer cylinder and adjust it to a suitable height. Then, screw the outer cylinder onto the inner cylinder via the lifting thread, first screwing the outer cylinder all the way down so that the vent holes of the inner and outer cylinders are fully open and overlapped, ensuring the vent holes are fully open and the moxibustion stick is closest to the base. At this point, you can hold the moxibustion tube and perform fumigation on the desired area. However, if the temperature exceeds the set temperature, the temperature sensor inside the base will trigger an alarm. In this case, you need to adjust the vertical position of the inner cylinder relative to the outer cylinder to adjust the temperature. Temperature adjustment is a dual adjustment of height and vent opening, which can quickly lower the burning temperature of the moxibustion stick until the temperature alarm stops. Example 2

[0032] The basic structure and principle of Embodiment 2 are the same as those of Embodiment 1, including an inner cylinder 201 and an outer cylinder 203. A base 202 is located at the bottom of the inner cylinder 201, and a moxibustion insert 204 is provided on the top surface of the outer cylinder 203. The only difference is that the ventilation holes 204 formed on the side walls of the inner and outer cylinders are mutually matched and obliquely arranged, with an inclination angle α between 15 and 45 degrees. The specific angle is determined according to the lifting angle of the inner and outer cylinders' lifting threads and the required air intake. The overlap is adjusted by rotating the holes to control the air intake within the moxibustion stick combustion chamber. This ventilation hole arrangement is more conducive to adjusting the air intake. Because of the oblique arrangement, only a slight rotation is needed to close or open the ventilation holes, allowing for a smaller lifting angle between the inner and outer cylinders and better stability.

[0033] The embodiments listed above are merely for clear and complete description of the technical solution of this utility model in conjunction with the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model, not all of them. Furthermore, terms such as "upper," "lower," "front," "rear," and "middle" used in this specification are only for clarity of description and are not intended to limit the scope of implementation of this utility model. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of implementation of this utility model. Simultaneously, the structures, proportions, sizes, etc., depicted in the accompanying drawings are only used to complement the content disclosed in the specification for those skilled in the art to understand and read, and are not intended to limit the implementation conditions of this utility model. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to the size, without affecting the effects and purposes achieved by this utility model, should still fall within the scope of the technical content disclosed in this utility model. 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.

[0034] The beneficial effects of this utility model are: This utility model adopts a screw-on connection between inner and outer cylinders, and adjusts the height of the moxibustion stick and the bottom cover by screwing on the connection. At the same time, the air intake of the combustion chamber of the moxibustion cylinder is adjusted synchronously by rotating, which effectively controls the temperature of the moxibustion stick, thereby effectively adjusting the temperature of the moxibustion fumigation and avoiding excessive temperature burns to the skin. It has the following advantages.

[0035] 1. Through the multi-head screw thread between the inner and outer cylinders, the height of the moxibustion stick above the skin of the fumigation site and the air intake of the combustion chamber of the moxibustion cylinder can be adjusted simultaneously. This allows for control of the combustion temperature of the moxibustion stick from two aspects, further increasing the regulation of the moxibustion temperature. 2. This utility model has air inlets provided on the side walls of the inner and outer cylinders. The size of the air inlets can be adjusted by rotating the rod to adjust the height of the moxibustion stick. The size of the overall air inlet is controlled by the degree of overlap between the air inlets of the inner and outer cylinders, thereby effectively controlling the amount of air entering the combustion chamber of the moxibustion cylinder. 3. This utility model adopts an inner cylinder vent hole and an outer cylinder vent hole arranged obliquely on the side. By designing the angle of inclination, the ratio of the lifting height to the overlap of the vent holes can be adjusted, which can more effectively control the appropriate temperature of the moxibustion stick fumigation and minimize the adjustment amount. 4. This utility model has a top-insertion moxibustion component at the top, which can adjust the distance of the moxibustion strip into the combustion chamber of the moxibustion cylinder in real time, ensuring that the moxibustion strip can be replenished in time when the fumigation intensity is insufficient; 5. The overall structure of this utility model is simple, consisting of only two main parts: an inner cylinder and an outer cylinder. It is also very easy to manufacture, as there are no irregularly shaped parts, so the cost is very low and it is easy to promote and apply.

Claims

1. A moxibustion fumigation cylinder with a temperature regulating device, characterized in that, The moxibustion fumigation tube includes: An inner cylinder with vent holes distributed on its side wall; a base is screwed to the bottom of the inner cylinder. An outer cylinder with ventilation holes distributed on its side walls; a moxibustion insert is provided on the top surface of the outer cylinder; Furthermore, the inner cylinder and the outer cylinder are connected together by a lifting thread, and the height of the moxibustion component at the top and the base can be adjusted by rotation; the vent holes of the inner cylinder and the outer cylinder are matched and their overlap can be adjusted by rotation to control the amount of air entering the combustion chamber of the moxibustion stick.

2. The moxibustion fumigation cylinder with a temperature regulating device as described in claim 1, characterized in that: The inner cylinder vent and the outer cylinder vent are arranged in pairs on the sides of the inner and outer cylinders. When the outer cylinder rotates, the overlap between the inner cylinder vent and the outer cylinder vent is adjusted by the rotation between the outer and inner cylinders and the up and down adjustment of the lifting screw, thereby changing the size of the vent of the moxibustion cylinder and controlling the amount of air entering the combustion chamber of the moxibustion cylinder.

3. The moxibustion fumigation cylinder with a temperature regulating device as described in claim 2, characterized in that: The inner cylinder vent and outer cylinder vent are elongated waist-shaped through holes. When the outer cylinder and inner cylinder are rotated to the bottom through the lifting screw, that is, when the moxibustion stick is closest to the base, the overlap between the inner cylinder vent and outer cylinder vent is the greatest, that is, the air passage of the inner cylinder vent and outer cylinder vent is the greatest.

4. The moxibustion fumigation cylinder with a temperature regulating device as described in claim 2, characterized in that: The inner cylinder vent and the outer cylinder vent are arranged in a matching manner on the sides of the inner and outer cylinders along the vertical plane of the moxibustion cylinder axis, or arranged obliquely on the sides of the inner and outer cylinders, and the size of the air inlet vent is adjusted by the degree of overlap between them.

5. The moxibustion fumigation cylinder with a temperature regulating device as described in claim 1, characterized in that: The lifting thread is located at the opening of the inner cylinder and the sleeve. The lifting thread is a multi-start high-angle thread. The pitch of the lifting thread must ensure that the vent holes of the inner cylinder and the outer cylinder are completely closed or opened after the rotation is determined.

6. The moxibustion fumigation cylinder with a temperature regulating device as described in claim 5, characterized in that: A damping sleeve is provided between the lifting thread and the inner and outer cylinders. The damping sleeve is attached to the outer surface of the lifting thread of the inner cylinder or the inner surface of the lifting thread of the outer cylinder, and the damping sleeve prevents the free lifting and lowering between the inner and outer cylinders.

7. The moxibustion fumigation cylinder with a temperature regulating device as described in claim 5, characterized in that: The base includes a bottom cover and a middle partition. The middle partition is inserted into the bottom opening of the inner cylinder and supported by a support sleeve. The bottom cover is screwed onto the bottom opening of the inner cylinder by a bottom thread. Ventilation holes are evenly distributed on both the bottom cover and the middle partition to form a double-isolation ventilation structure, which facilitates moxibustion fumigation.

8. The moxibustion fumigation cylinder with a temperature regulating device as described in claim 7, characterized in that: A temperature sensor is installed on the inner side of the bottom cover. The temperature sensor is in close contact with the inner surface of the bottom cover and is connected to an alarm indicator light through a wire. An alarm is triggered when the temperature of the bottom cover reaches a set value.

9. The moxibustion fumigation cylinder with a temperature regulating device as described in claim 1, characterized in that: The top-mounted moxibustion component includes a moxibustion stick clamping sleeve with a moxibustion stick mounting hole in the middle. The outer part of the moxibustion stick clamping sleeve is divided into an upper and a lower part. The lower part of the outer part of the moxibustion stick clamping sleeve has an adjusting thread, which is screwed into a threaded hole in the top panel of the outer cylinder, forming a mechanism that allows the moxibustion stick to move up and down. The upper part of the outer part of the moxibustion stick clamping sleeve is provided with a rotating disk, and the up and down movement of the moxibustion stick clamping sleeve can be adjusted by manually adjusting the rotating disk.

10. The moxibustion fumigation cylinder with a temperature regulating device as described in claim 9, characterized in that: A moxibustion strip clamping plate is provided in the moxibustion strip installation hole of the moxibustion strip clamping sleeve, and the moxibustion strip is fixed by the clamping plate.