High altitude countermeasure application of traditional Chinese medicine moxibustion device
By designing a moxibustion device that includes a box, a rotating cylinder, and a control mechanism, the problem of insufficient moxibustion in the low-oxygen environment of high altitude is solved. It achieves full combustion of the moxa stick and precise control of the moxa smoke, thereby improving the efficiency of moxibustion and making it suitable for traditional Chinese medicine moxibustion for altitude sickness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-29
- Publication Date
- 2026-03-24
AI Technical Summary
Existing moxibustion devices do not burn completely in the low-oxygen environment of high altitudes, producing harmful substances. The temperature is unstable, and the heating moxibustion effect is poor, making it difficult to effectively relieve altitude sickness symptoms in high-altitude environments.
A device comprising a box, a rotating cylinder, a moxibustion mechanism, and a control mechanism was designed. By burning moxa sticks and heating moxa cakes, the air intake is increased using a conveying component, the amount of moxa smoke delivered is controlled, and excess moxa smoke is stored in an air storage bag, thereby improving the efficiency of moxibustion.
In a low-oxygen environment, ensure the moxa sticks burn completely, control the output of moxa smoke, avoid waste, extend the moxibustion time, improve the efficiency of moxibustion, and alleviate altitude sickness.
Smart Images

Figure CN121401122B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical physiotherapy devices, specifically a traditional Chinese medicine moxibustion device for altitude sickness. Background Technology
[0002] Altitude sickness is a condition caused by oxygen deficiency, resulting in symptoms such as headache, chest tightness, nausea, and fatigue, after the human body enters a high-altitude, low-oxygen environment. Traditional Chinese medicine believes that its core pathogenesis is "invasion of cold pathogens and stagnation of qi and blood." Moxibustion on acupoints such as Baihui (to raise yang and lift sunken qi), Dazhui (to warm and unblock the meridians), and Zusanli (to replenish qi and blood) can effectively dredge the meridians, harmonize qi and blood, and alleviate the symptoms of altitude sickness.
[0003] Existing moxibustion devices are generally divided into combustion type and heating type. Combustion type moxa sticks can increase the warming effect through the volatile oils in the moxa smoke, while heating type moxa cakes only use electric heating to make the effective components in the moxa cake volatilize and take effect, which is smokeless moxibustion. In high-altitude areas, the atmospheric pressure is relatively low and the low oxygen environment of the plateau can easily lead to incomplete combustion of moxa sticks, producing more carbon monoxide and tar and other harmful substances that can damage the body. At the same time, when combustion is incomplete, the moxibustion temperature will fluctuate significantly. Too high a temperature may burn the skin, while too low a temperature will not achieve the therapeutic effect. Heating type moxa cakes do not produce moxa smoke, and their effect is slightly inferior to that of traditional combustion type moxibustion. Summary of the Invention
[0004] The purpose of this invention is to provide a traditional Chinese medicine moxibustion device for altitude sickness that facilitates the improvement of moxibustion efficiency in low-oxygen environments, so as to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a traditional Chinese medicine moxibustion device for altitude sickness, comprising a box, a moxibustion mechanism, and a control mechanism. A rotating cylinder is rotatably connected inside the box, and the rotating cylinder is made of fire-resistant metal. The moxibustion mechanism includes a threaded cap threaded to the inner wall of the top of the rotating cylinder. A heating box is fixedly connected inside the box, and a conveying component for smoke delivery is provided inside the box. The moxibustion mechanism can perform moxibustion operations in the required situations by burning moxa sticks and heating moxa cakes, and the conveying component increases the air intake, improving the combustion efficiency of the moxa sticks. The control mechanism includes an air storage bladder fixedly installed on the box. The control mechanism can control the amount of smoke delivered when the moxa sticks burn, and the air storage bladder stores and quantitatively discharges excess smoke, avoiding excessive smoke discharge and waste due to rapid burning of the moxa sticks, thus improving the efficiency of moxibustion in low-oxygen environments.
[0006] Preferably, the conveying component includes a rotating ring fixedly installed on the outer wall of the rotating cylinder, a plug rod for fixing the moxa stick is fixedly connected to the threaded cover, multiple sets of first air inlet slots and first air outlet slots are evenly provided on the box body, multiple sets of second air outlet slots that can communicate with the first air outlet slots are evenly provided on the outer wall of the rotating cylinder, multiple sets of second air inlet slots that are always connected to the first air inlet slots are evenly provided on the outer wall of the rotating cylinder, and an annular groove that communicates with the first air inlet slot is provided in the box body, and a driving component for increasing the air intake is provided in the annular groove to facilitate the conveying of flue gas.
[0007] Preferably, the control mechanism further includes a partition plate installed inside the box body. A storage cavity is provided inside the box body, and the partition plate is fixedly installed inside the storage cavity. Multiple sets of first through holes are provided on the rotating cylinder. A first one-way valve that can communicate with the first through holes is provided on the side of the storage cavity. A second one-way valve that communicates with the gas storage bag is provided on the side of the storage cavity. The first one-way valve is used to control the unidirectional flow of smoke into the storage cavity. The second one-way valve is used to control the unidirectional flow of smoke into the gas storage bag. A control component for controlling the smoke delivery state is provided inside the storage cavity, which facilitates the control of the amount of moxa smoke delivered when the moxa stick is burning. Excess moxa smoke is stored and quantitatively discharged through the gas storage bag, avoiding the situation where the moxa smoke is discharged too quickly and wasted due to the moxa stick burning too fast.
[0008] Preferably, the control component includes a lifting plate installed in the storage cavity. The outer wall of the lifting plate is slidably connected to the side walls of the storage cavity and the partition plate in the vertical direction. A second through hole communicating with the gas storage bag is opened on the side of the storage cavity. The second through hole is located below the second one-way valve. Multiple sets of electric telescopic rods are fixedly connected inside the box. The telescopic ends of the electric telescopic rods are fixedly connected to the bottom surface of the lifting plate. An output component for conveying flue gas to the first gas outlet slot is provided inside the box to facilitate control of the flue gas conveying status.
[0009] Preferably, the output component includes multiple sets of control valves installed inside the housing, multiple sets of connecting pipes are provided inside the housing, the connecting pipes are used to connect the storage cavity and the first gas outlet slot, the control valves are fixedly installed inside the connecting pipes, and multiple sets of third through holes that can be connected to the connecting pipes are evenly provided on the rotating ring to facilitate the delivery of flue gas to the first gas outlet slot.
[0010] Preferably, the driving component includes a drive motor fixedly installed inside the housing, a drive gear coaxially fixedly connected to the output end of the drive motor, a fan wheel rotatably connected inside the annular groove, and an external gear ring coaxially fixedly connected to the bottom of the fan wheel. The external gear ring meshes with the drive gear to increase the air intake and ensure complete combustion of the moxa stick. A semiconductor carbon monoxide sensor can be installed inside the rotating cylinder to detect the carbon monoxide content in the flue gas inside the rotating cylinder, and the impeller speed is increased when the carbon monoxide content is greater than a set value to increase the oxygen supply.
[0011] Preferably, an ignition gun is fixedly connected to the heating box, and a heating wire is fixedly connected to the first gas outlet groove. One end of the heating wire is fixedly connected to the heating box to facilitate the ignition of the moxa stick. The temperature of the output moxa smoke can be precisely controlled through the heating wire.
[0012] Preferably, the upper end of the box body is provided with multiple sets of arc-shaped grooves, and the outer wall of the rotating cylinder is fixedly connected with an arc-shaped block that is slidably connected to the inner wall of the arc-shaped groove. The two ends of the arc-shaped block are provided with magnetic attraction structures that can magnetically attract the two ends of the arc-shaped groove, so that the rotating cylinder can only rotate and be limited along the set arc of the arc-shaped groove, and control different flue gas delivery states at the two ends of the arc-shaped groove to achieve the required function.
[0013] Preferably, a heat insulation ring is fixedly connected to the bottom edge of the heating box, and a bottom cover is threadedly connected to the inner wall of the heat insulation ring. Multiple sets of third air outlet grooves are evenly opened on the surface of the bottom cover. One end of the third air outlet groove is connected to one end of the second air outlet groove, which facilitates the fixing and replacement of the moxa cake and facilitates the discharge of smoke.
[0014] Preferably, the outer wall of the box is fixedly connected with two sets of straps to facilitate fixing the box in the required position.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] This invention provides a traditional Chinese medicine moxibustion device for altitude sickness, which solves the problems of existing moxibustion devices being unable to fully burn and accurately control the amount of smoke when used for altitude sickness, resulting in unsatisfactory therapeutic effects. The moxibustion device can perform moxibustion operations in the required situations by burning moxa sticks and heating moxa cakes. It increases the air intake through a conveying component to improve the combustion efficiency of the moxa sticks. The control mechanism controls the amount of moxa smoke delivered during the burning of the moxa sticks, and the excess moxa smoke is stored and quantitatively discharged through an air storage bag, avoiding the situation where the moxa smoke is discharged too quickly and wasted due to the burning of the moxa sticks too quickly, thus extending the moxibustion time and ensuring the efficiency of moxibustion. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0018] Figure 2 This is a schematic diagram of the bottom structure of the box body of the present invention;
[0019] Figure 3 This is a cross-sectional view of the box structure of the present invention;
[0020] Figure 4 for Figure 3 Enlarged view of region A in the middle;
[0021] Figure 5 This is a partial structural diagram of the driving component of the present invention;
[0022] Figure 6 for Figure 5 Enlarged view of region B in the middle;
[0023] Figure 7 This is a partial structural cross-sectional view of the control mechanism of the present invention;
[0024] Figure 8 for Figure 7 Enlarged view of region C;
[0025] Figure 9 This is a partial structural diagram of the conveying component of the present invention;
[0026] Figure 10 for Figure 9 Enlarged view of region D in the middle.
[0027] In the diagram: 1-Box body; 2-Rotating cylinder; 3-Threaded cover; 4-Heating box; 5-Conveying component; 6-Air storage bladder; 7-Rotating ring; 8-Insertion rod; 9-First air inlet groove; 10-First air outlet groove; 11-Second air outlet groove; 12-Second air inlet groove; 13-Annular groove; 14-Driver; 15-Divider plate; 16-Storage cavity; 17-First through hole; 18-First one-way valve; 19-Second one-way valve; 20-Control component; 21 - Lifting plate; 22- Second through hole; 23- Electric telescopic rod; 24- Output component; 25- Control valve; 26- Connecting pipe; 27- Third through hole; 28- Drive motor; 29- Drive gear; 30- Fan wheel; 31- External gear ring; 32- Ignition gun; 33- Heating wire; 34- Arc groove; 35- Arc block; 36- Heat insulation ring; 37- Bottom cover; 38- Third air outlet groove; 39- Binding strap; 40- Moxa stick; 41- Moxa cake. Detailed Implementation
[0028] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0029] Please see Figures 1-10 This invention provides a technical solution: a traditional Chinese medicine moxibustion device for altitude sickness, comprising a box body 1, a moxibustion mechanism, and a control mechanism. A rotating cylinder 2 is rotatably connected inside the box body 1. The rotating cylinder 2 is made of fire-resistant metal. Multiple sets of arc-shaped grooves 34 are formed at the upper end of the box body 1. Arc-shaped blocks 35 are fixedly connected to the outer wall of the rotating cylinder 2 and slidably connected to the inner wall of the arc-shaped grooves 34. Magnetic attraction structures are provided at both ends of the arc-shaped blocks 35, enabling magnetic attraction with the ends of the arc-shaped grooves 34. Two sets of straps 39 are fixedly connected to the outer wall of the box body 1. The moxibustion mechanism includes a threaded cap 3 threadedly connected to the inner wall of the top of the rotating cylinder 2. A heating box 4 is fixedly connected inside the box body 1, and an ignition gun 32 is fixedly connected to the heating box 4. A heat insulation ring 36 is fixedly connected to the bottom edge of the device. A bottom cover 37 is threadedly connected to the inner wall of the heat insulation ring 36. Multiple sets of third air outlet grooves 38 are evenly opened on the surface of the bottom cover 37. The box body 1 is equipped with a conveying component 5 for conveying smoke. The moxibustion mechanism can realize the moxibustion operation in the required situation by burning the moxa stick 40 and heating the moxa cake 41. The conveying component 5 increases the air intake and improves the combustion efficiency of the moxa stick 40. The control mechanism includes an air storage bag 6 fixedly installed on the box body 1. The control mechanism can control the amount of moxa smoke conveyed when the moxa stick 40 is burning. The air storage bag 6 stores the excess moxa smoke and discharges it in a quantitative manner to avoid the situation where the moxa smoke is discharged too quickly and wasted due to the moxa stick 40 burning too quickly.
[0030] Please see Figures 3-10The conveying component 5 shown in the figure includes a rotating ring 7 fixedly installed on the outer wall of the rotating cylinder 2, and a plug 8 for fixing the moxa stick 40 is fixedly connected to the threaded cover 3. Multiple sets of first air inlet grooves 9 and first air outlet grooves 10 are evenly distributed on the box body 1. Multiple sets of second air outlet grooves 11 that can communicate with the first air outlet grooves 10 are evenly distributed on the outer wall of the rotating cylinder 2. Multiple sets of second air inlet grooves 12 that are always connected to the first air inlet grooves 9 are evenly distributed on the outer wall of the rotating cylinder 2. An annular groove 13 that communicates with the first air inlet grooves 9 is provided inside the box body 1. A heating wire 33 is fixedly connected in an air outlet groove 10. One end of the heating wire 33 is fixedly connected to the heating box 4. A drive component 14 for increasing the air intake is provided in an annular groove 13. The drive component 14 includes a drive motor 28 fixedly installed in the box 1. The drive motor 28 is preferably an LD60 micro motor. A drive gear 29 is coaxially fixedly connected to the output end of the drive motor 28. A fan wheel 30 is rotatably connected in the annular groove 13. An external gear ring 31 is coaxially fixedly connected to the bottom of the fan wheel 30. The external gear ring 31 meshes with the drive gear 29.
[0031] Please see Figures 3-10 The control mechanism shown in the figure also includes a partition plate 15 installed inside the box body 1. A storage cavity 16 is provided inside the box body 1. The partition plate 15 is fixedly installed inside the storage cavity 16. Multiple sets of first through holes 17 are provided on the rotating cylinder 2. A first one-way valve 18 that can communicate with the first through holes 17 is provided on the side of the storage cavity 16. A second one-way valve 19 that communicates with the gas storage bag 6 is provided on the side of the storage cavity 16. The first one-way valve 18 is used to control the flue gas to flow into the storage cavity 16 in one direction. The second one-way valve 19 is used to control the flue gas to flow into the gas storage bag 6 in one direction. A control component 20 for controlling the flue gas delivery status is provided inside the storage cavity 16.
[0032] Please see Figures 3-10 The control component 20 shown in the figure includes a lifting plate 21 installed in the storage cavity 16. The outer wall of the lifting plate 21 is slidably connected to the side walls of the storage cavity 16 and the partition plate 15 in the vertical direction. The side of the storage cavity 16 is provided with a second through hole 22 that communicates with the gas storage bag 6. The second through hole 22 is located below the second one-way valve 19. Multiple sets of electric telescopic rods 23 are fixedly connected inside the box body 1. The telescopic ends of the electric telescopic rods 23 are fixedly connected to the bottom surface of the lifting plate 21. The box body 1 is provided with an output component 24 for conveying flue gas to the first gas outlet slot 10. The output component 24 includes multiple sets of control valves 25 installed inside the box body 1. Multiple sets of connecting pipes 26 are opened inside the box body 1. The connecting pipes 26 are used to connect the storage cavity 16 and the first gas outlet slot 10. The control valves 25 are fixedly installed inside the connecting pipes 26. Multiple sets of third through holes 27 that can communicate with the connecting pipes 26 are evenly opened on the rotating ring 7.
[0033] Working principle: One end of the moxa stick 40 is loosened by inserting it through the insertion rod 8 to facilitate subsequent ignition and combustion. The other end of the moxa stick 40 is then inserted into the insertion rod 8 for fixation. The threaded cap 3 is screwed into the rotating cylinder 2 for fixation. Simultaneously with starting the ignition gun 32, the drive motor 28 is started. The drive motor 28 drives the drive gear 29 to rotate, which in turn causes the external gear ring 31 to drive the impeller 30 to rotate. This draws air from the outside through the first air intake groove 9 to the second air intake groove 12, reaching one end of the moxa stick 40, thus increasing the oxygen supply during ignition (the impeller 30 rotates only slowly at this time and will not extinguish the flame). In this situation, the first air outlet 10 is connected to the second air outlet 11, the first through hole 17 is not connected to the first one-way valve 18, and the third through hole 27 is not connected to the connecting pipe 26. The gas in the rotating cylinder 2 will be discharged to the outside through the first air outlet 10, the second air outlet 11 and the third air outlet 38, realizing one-way gas delivery and continuously supplying oxygen to the rotating cylinder 2. After the moxa stick 40 is fully lit, the ignition gun 32 is turned off. When in an environment with sufficient oxygen, the strap 39 can be directly fixed to the body, and the bottom cover 37 can be aligned with the position to be moxibusted for moxibustion.
[0034] When in a high-altitude, low-oxygen area, the bottom cover 37 needs to be opened, the moxa stick 41 placed in the heating box 4, and the bottom cover 37 closed again. Simultaneously, the speed of the drive motor 28 is increased to improve the combustion efficiency of the moxa stick 40. At this time, the moxa stick 40 burns faster, and the direct output of moxa smoke can burn the body. Therefore, the rotating cylinder 2 needs to be rotated in the opposite direction, causing the arc-shaped block 35 to slide to the other end of the arc-shaped groove 34 and be magnetically locked. At this time, the first air outlet groove 10 and the second air outlet groove 11 are disconnected, and the first through hole 17 is connected to the first one-way valve 18. The rotating cylinder 2 drives the rotating ring 7 to rotate, connecting the third through hole 27 to the connecting pipe 26. At this time, the electric telescopic rod 23 is activated. The lifting plate 21 is driven to move up and down repeatedly, and each time it descends, it is positioned above the second passage to prevent the gas in the gas storage bag 6 from flowing back into the storage chamber 16 through the second through hole 22. By adjusting the exhaust volume of the control valve 25, the output rate of the smoke can be controlled. At the same time, the moxa cake 41 heats the moxa for moxibustion, and the quantitative output of moxa smoke can achieve precise control of the temperature and amount of smoke for moxibustion while reducing the waste of moxa smoke. The fan wheel 30 continuously supplies oxygen to the rotating cylinder 2. If the smoke inside the rotating cylinder 2 is not discharged, it will affect the internal oxygen supply. Therefore, it is necessary to continuously discharge the smoke to improve the combustion efficiency of the moxa stick 40.
[0035] When the lifting plate 21 moves downward, the smoke in the rotating cylinder 2 can be drawn into the storage chamber 16 through the first through hole 17 and the first one-way valve 18. When the lifting plate 21 moves upward, the smoke in the storage chamber 16 can be input into the air bladder 6 through the second one-way valve 19, causing the air bladder 6 to expand and temporarily store the smoke. The smoke in the storage chamber 16 can be continuously and stably output through the control valve 25. When the moxa stick 40 has finished burning, the drive motor 28 and the electric telescopic rod 23 are stopped, and the lifting plate 21 is controlled to move downward to the bottom, so that the second through hole 22 can connect with the storage chamber 16 and the control valve 25. When valve 25 is connected, the gas in the gas storage bag 6 can be continuously transported in reverse to the storage chamber 16. The control valve 25 continues to supply smoke to the connecting pipe 26 and the first gas outlet groove 10. The heating wire 33 in the first gas outlet groove 10 can heat the output smoke and control the temperature. The gas storage bag 6 is made of elastic material, which can fully discharge the internal smoke into the storage chamber 16 during continuous rebound, prolonging the smoke supply time and avoiding the situation where the amount of moxa smoke emitted increases and the duration is shortened due to the accelerated combustion of the moxa stick 40, thus ensuring the duration and efficiency of moxibustion.
[0036] It is worth noting that, in order to reduce consumables and lower operating costs, this device does not have an oxygen storage device to increase the oxygen content inside the box 1. Instead, it increases the airflow velocity to improve the combustion efficiency of the moxa stick 40. However, this increases the burning speed of the moxa stick 40 and the rate of moxa smoke production. Directly releasing a large amount of moxa smoke can make it difficult to control the temperature of moxibustion on the skin, causing discomfort. If the moxa smoke is released to the outside, it will be wasteful. Therefore, a device is designed that can improve the combustion efficiency of the moxa stick 40 while initially collecting and slowly releasing the moxa smoke. At the same time, this solution also adds a heated moxa cake 41 to achieve this. The device now features an auxiliary moxibustion function, enabling it to perform moxibustion in various settings and in different ways. It can perform smokeless moxibustion alone, or combustion moxibustion alone. In high-altitude environments, it can simultaneously heat the moxa cake 41 for moxibustion while burning and storing the moxa stick 40, and quantitatively outputting the moxa smoke to achieve dual moxibustion in high-altitude environments. This moxibustion method avoids incomplete combustion of the moxa stick 40, ensuring that it burns completely, and also allows for quantitative control of the amount of moxa smoke output. In addition, the heated moxa cake 41 volatilizes the effective components, solving the problem that moxa cake 41 moxibustion cannot produce moxa smoke.
[0037] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0038] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A traditional Chinese medicine moxibustion device for treating altitude sickness, characterized in that, include: Box body (1), and a rotating cylinder (2) is rotatably connected inside the box body (1); Also includes: The moxibustion mechanism includes a threaded cover (3) that is threaded to the inner wall of the top of the rotating cylinder (2), a heating box (4) that is fixedly connected inside the box body (1), and a conveying component (5) for conveying smoke inside the box body (1). The moxibustion mechanism can perform moxibustion operations in the required situation by burning moxa sticks and heating moxa cakes, and increase the air intake through the conveying component (5) to improve the combustion efficiency of moxa sticks. The control mechanism includes an air storage bladder (6) fixedly installed on the box (1). The control mechanism can control the amount of moxa smoke delivered when the moxa stick is burning, and store and quantitatively discharge excess moxa smoke through the air storage bladder (6) to avoid the situation where the moxa smoke is discharged too quickly and wasted due to the moxa stick burning too fast. The conveying component (5) includes a rotating ring (7) fixedly installed on the outer wall of the rotating cylinder (2), and a plug rod (8) for fixing the moxa stick is fixedly connected to the threaded cover (3). Multiple sets of first air inlet grooves (9) and first air outlet grooves (10) are evenly opened on the box body (1). Multiple sets of second air outlet grooves (11) that can communicate with the first air outlet grooves (10) are evenly opened on the outer wall of the rotating cylinder (2). Multiple sets of second air inlet grooves (12) that are always connected to the first air inlet grooves (9) are evenly opened on the outer wall of the rotating cylinder (2). An annular groove (13) that communicates with the first air inlet groove (9) is opened in the box body (1). A driving component (14) for increasing the air intake is provided in the annular groove (13). The control mechanism also includes a partition plate (15) installed inside the box body (1). A storage cavity (16) is provided inside the box body (1). The partition plate (15) is fixedly installed inside the storage cavity (16). Multiple sets of first through holes (17) are provided on the rotating cylinder (2). A first one-way valve (18) is provided on the side of the storage cavity (16) and is connected to the first through hole (17). A second one-way valve (19) is provided on the side of the storage cavity (16) and is connected to the gas storage bag (6). The first one-way valve (18) is used to control the flue gas to flow into the storage cavity (16) in one direction. The second one-way valve (19) is used to control the flue gas to flow into the gas storage bag (6) in one direction. A control component (20) for controlling the flue gas delivery status is provided inside the storage cavity (16). The control component (20) includes a lifting plate (21) installed in the storage cavity (16). The outer wall of the lifting plate (21) is slidably connected to the side wall of the storage cavity (16) and the partition plate (15) in the vertical direction. The side of the storage cavity (16) is provided with a second through hole (22) that communicates with the gas storage bag (6). The second through hole (22) is located below the second one-way valve (19). Multiple sets of electric telescopic rods (23) are fixedly connected inside the box body (1). The telescopic end of the electric telescopic rod (23) is fixedly connected to the bottom surface of the lifting plate (21). The box body (1) is provided with an output component (24) for conveying flue gas to the first gas outlet slot (10). The output component (24) includes multiple sets of control valves (25) installed inside the housing (1). Multiple sets of connecting pipes (26) are opened inside the housing (1). The connecting pipes (26) are used to connect the storage cavity (16) and the first air outlet groove (10). The control valves (25) are fixedly installed inside the connecting pipes (26). Multiple sets of third through holes (27) that can be connected to the connecting pipes (26) are evenly opened on the rotating ring (7).
2. The traditional Chinese medicine moxibustion device for altitude sickness according to claim 1, characterized in that: The driving component (14) includes a drive motor (28) fixedly installed in the housing (1). The output end of the drive motor (28) is coaxially fixedly connected to a drive gear (29). A windmill (30) is rotatably connected in the annular groove (13). An external gear ring (31) is coaxially fixedly connected to the bottom of the windmill (30). The external gear ring (31) meshes with the drive gear (29).
3. The traditional Chinese medicine moxibustion device for altitude sickness according to claim 1, characterized in that: An ignition gun (32) is fixedly connected to the heating box (4), and a heating wire (33) is fixedly connected inside the first air outlet groove (10). One end of the heating wire (33) is fixedly connected to the heating box (4).
4. The traditional Chinese medicine moxibustion device for altitude sickness according to claim 1, characterized in that: The upper end of the box (1) has multiple sets of arc grooves (34), and the outer wall of the rotating cylinder (2) is fixedly connected to an arc block (35) that is slidably connected to the inner wall of the arc groove (34). The two ends of the arc block (35) are provided with magnetic attraction structures that can magnetically attract the two ends of the arc groove (34).
5. The traditional Chinese medicine moxibustion device for altitude sickness according to claim 1, characterized in that: A heat insulation ring (36) is fixedly connected to the bottom edge of the heating box (4), and a bottom cover (37) is threadedly connected to the inner wall of the heat insulation ring (36). Multiple sets of third air outlet grooves (38) are evenly opened on the surface of the bottom cover (37).
6. The traditional Chinese medicine moxibustion device for altitude sickness according to claim 1, characterized in that: The outer wall of the box (1) is fixedly connected with two sets of straps (39).
Citation Information
Patent Citations
Medicinal moxibustion device and use method thereof
CN118001141A
portable moxibustion device
JP3110308U