Far-infrared and far-infrared blended portable moxibustion therapy instrument
Through the portable moxibustion device that integrates far infrared and near infrared, combined with far infrared and near infrared devices and conductive heating rods, the operational difficulties of traditional moxibustion are solved, and the portable, safe and pollution-free moxibustion effect is achieved, which is suitable for self-care of ordinary people.
Patent Information
- Application Number
- CN202511142562.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-15
- Publication Date
- 2025-10-10
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional moxibustion is difficult to operate, requires professional assistance, is inconvenient to carry, and may cause burns and environmental pollution. Existing moxibustion equipment is not easy to carry and requires professional operation, making it difficult to promote among ordinary people.
A portable moxibustion device that integrates far and near infrared is designed, which includes far infrared and near infrared generating devices, combined with conductive heating rods and volatilization rods. The temperature and air supply are controlled by a controller to achieve close-range infrared radiation and effective volatilization of mugwort essential oil, adapting to the treatment needs of different acupoints.
It realizes safe, portable and pollution-free moxibustion therapeutic effects. Through the combined effects of far and near infrared resonance radiation and mugwort essential oil, it achieves therapeutic effects similar to traditional moxibustion, avoids burns, and is suitable for self-care of ordinary people.
Smart Images

Figure CN120754455A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of health care devices, and in particular to a portable moxibustion device that combines near and far infrared with external infrared. Background Art
[0002] Moxibustion therapy has a history of thousands of years in my country. As early as the Yellow Emperor's Classic of Internal Medicine, it was stated that "where acupuncture cannot reach, moxibustion can." The Introduction to Medicine also states, "For those suffering from deficiency, moxibustion allows the fire to boost vital energy; for those suffering from excess, moxibustion allows the excess to disperse with the fire; for those suffering from cold, moxibustion warms the Qi; for those suffering from heat, moxibustion draws out stagnant heat, thus drying it out." This demonstrates the importance of moxibustion. Moxibustion primarily generates high temperatures by burning moxa leaves. This heat is then stimulated through a combination of acupuncture points, medications, and thermal stimulation, achieving the goal of medical treatment and health.
[0003] Numerous studies have found that the effects of moxibustion are primarily due to the thermal energy radiation generated by burning moxa, followed by the effects of the corresponding active ingredients in the medicinal flavor. Not all thermal stimulation can achieve the desired effect. The wavelength of radiation emitted by burning moxa ranges from 0.8 to 5.0 μm, indicating that the moxibustion radiation spectrum includes not only far-infrared radiation but also near-infrared radiation. Meridians are channels through which qi and blood flow through the internal organs, and acupoints are the sites of qi and blood flow into and out of these meridians. They serve as both the reflex points for organ pathology and the stimulation points for acupuncture treatment. Moxibustion may utilize a feedback regulation mechanism based on the stimulated infrared resonance generated at acupoints to correct the disordered energy / information metabolism in pathological conditions. At the same time, components such as eucalyptol contained in moxa smoke enter the body through transdermal absorption, regulating the body's immune system and ultimately restoring normal function. However, traditional manual moxibustion and box moxibustion are difficult to perform and pose risks of burns, environmental pollution, and fire. Existing moxibustion equipment is generally difficult to carry and requires specialized personnel for operation, requiring high professional expertise. Therefore, only by designing a safe, effective, portable and pollution-free moxibustion instrument based on full consideration of the infrared radiation characteristics of human acupoints and traditional moxibustion, and transferring moxibustion energy to acupoint tissues through far- and near-infrared resonance radiation, can it achieve therapeutic effects close to or equivalent to those of traditional moxibustion, making it easier to promote moxibustion to ordinary people. Summary of the Invention
[0004] The purpose of the present invention is to provide a portable moxibustion device that integrates far and near infrared and external infrared to solve the problems raised in the above background technology.
[0005] A portable moxibustion device that integrates near and far infrared and external moxibustion, characterized by comprising
[0006] An infrared chamber, wherein a far infrared generating device and a near infrared generating device are provided in the infrared chamber, wherein the far infrared generating device can emit far infrared rays, and the near infrared generating device can emit near infrared rays;
[0007] One end of the infrared chamber is detachably connected to a capsule chamber, wherein a plurality of nano-cigarette sticks are arranged in the capsule chamber, wherein the nano-cigarette sticks pass through the bead cover and the capsule chamber, wherein a conductive heating stick is arranged in the nano-cigarette stick, wherein a volatile stick is also arranged in the nano-cigarette stick, wherein one end of the volatile stick passes through the nano-cigarette stick and is placed in the capsule chamber, and an wormwood essential oil capsule is arranged outside the volatile stick;
[0008] One end of the capsule compartment is provided with an insulation compartment, and the other end of the insulation compartment is provided with a control compartment. A power supply is provided in the control compartment, and the power supply is electrically connected to a controller, and the controller is electrically connected to the conductive heating rod, which can control the heating of the conductive heating rod to evaporate the mugwort essential oil in the mugwort essential oil sac that has penetrated the volatile rod;
[0009] An air supply device is also provided in the control compartment.
[0010] Preferably, the infrared chamber includes a bead cover, a bead rack is fixedly connected to the bead cover, a plurality of ventilation holes are opened in the inner circle of the bead rack, a plurality of mounting holes are equidistantly provided on the outer circle of the bead rack along the circumference, far-infrared ceramic beads are arranged in several of the mounting holes, and the near-infrared generating device includes a near-infrared bead, which is electrically connected to the power supply.
[0011] Furthermore, the far-infrared ceramic beads are made of far-infrared ceramic materials.
[0012] Preferably, the capsule bin is cylindrical, one end of the capsule bin is provided with a thread for threaded connection with the infrared bin, an oblong hole is provided on the outer surface of the capsule bin, a transparent observation cover is sleeved and connected inside the capsule bin, a capsule bin interlayer is provided inside the capsule bin, a first air outlet is provided on the side of the capsule bin interlayer facing the bead cover, a first air inlet is provided on the side of the capsule bin interlayer away from the bead cover, and an air hole is provided on the bead cover corresponding to the first air outlet.
[0013] Furthermore, the heat-insulating chamber includes an air outlet hood, which is a hollow structure. A tube wall interlayer is provided on the inner wall of the air outlet hood. The tube wall interlayer is located on the inner side of the air outlet hood and is provided with a second air outlet. The second air outlet is connected to the first air inlet, and the tube wall interlayer is connected to the control chamber. A conductive frame is also fixedly connected to the air outlet hood, one end of the conductive frame is electrically connected to the conductive heating rod, and the other end of the conductive frame is electrically connected to the controller, so a partition plate is also provided between the heat-insulating chamber and the capsule chamber, and the partition plate is provided with air holes.
[0014] Furthermore, the control compartment is fixedly connected to one side of the air outlet hood, the control compartment is communicated with the tube wall interlayer, the air supply device includes an electric motor and a fan, the fan is fixedly connected to the output shaft of the motor, the exhaust direction of the fan is toward the air outlet hood, the motor is electrically connected to the controller, and a number of air inlet holes are opened on the control compartment.
[0015] Furthermore, the near-infrared generating device is also provided with an infrared temperature detection module, and the infrared temperature detection module is electrically connected to the controller.
[0016] Preferably, a display module and a numerical control module are fixedly connected to the outside of the control compartment, and the display module and the numerical control module are electrically connected to the controller.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] The present invention has a simple structure and is easy to use. It effectively solves the drawbacks of ordinary far-infrared therapeutic devices and near-infrared therapeutic devices on the market and improves the therapeutic effect. The numerical control module can control the program in the controller and then control the conductive heating rod in the capsule. The heating of the conductive heating rod will increase the volatilization speed of the mugwort essential oil on the volatilization rod. The temperature sensor can sense the temperature change of the human acupuncture point facing the bead cover, and the controller controls the switch of the conductive heating rod and the near-infrared generating device, so that the skin surface can maintain the appropriate temperature of the mugwort essential oil while preventing burns. The maximum temperature can be set according to the personalized needs of specific parts or patients with specific diseases. At the same time, under the control of the controller, the motor rotates to drive the fan to generate flowing air, and the air is blown towards the infrared chamber. Therefore, the volatile essential oil can be blown to the affected area outside the bead cover. The infrared chamber is in close contact with the acupuncture points of the human body. At the same time, when the far-infrared ceramic beads on the far-infrared disk come into contact with the human skin, the far-infrared ceramic beads will emit far-infrared rays with a wavelength of 2 to 18 μm, which enter the human skin and subcutaneous tissue, increase the temperature of the irradiated tissue, and enable the heat to penetrate into the human tissue to reach a certain depth of hot compress. Combined with the effect of the near-infrared rays emitted by the near-infrared generating device, it can induce stimulated resonance of infrared radiation along the meridians of the human body surface, correct the functional disorder of energy or information metabolism under pathological conditions, and at the same time enable the wormwood essential oil components to enter the microcirculation more efficiently, thereby playing a therapeutic role. This device is small and portable, does not require open flames, has controllable temperature, and is easy to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present invention from a first viewing angle;
[0020] Figure 2 This is a schematic diagram of the overall structure of an embodiment of the present invention from a second viewing angle;
[0021] Figure 3This is a schematic diagram of the internal structure of the bead cover in one embodiment of the present invention;
[0022] Figure 4 The figure is a schematic diagram of the cut-away internal structure of an embodiment of the present invention.
[0023] In the figure: 1. Infrared chamber; 11. Bead cover; 12. Bead rack; 13. Far-infrared ceramic beads; 14. Near-infrared beads; 15. Mounting plate; 2. Capsule chamber; 21. Partition plate; 22. Air vent; 23. Transparent observation cover; 24. Nano smoke stick; 25. Volatile stick; 26. Capsule chamber interlayer; 27. Mugwort essential oil capsule; 3. Insulation chamber; 31. Conductive rack; 32. Tube wall interlayer; 33. Air outlet hood; 4. Control chamber; 41. Fan; 42. Air inlet. DETAILED DESCRIPTION
[0024] The following will be combined with specific embodiments and attached Figure 1-4 , clearly and completely describe the technical solutions in the embodiments of the present invention.
[0025] A portable moxibustion device that integrates near and far infrared and external infrared includes an infrared chamber 1, a capsule chamber 2, a heat-insulating chamber 3, and a control chamber 4. The four chambers are interconnected to form a shape that is convenient for hand-holding, making it convenient for users to perform hand-held operation.
[0026] The infrared chamber 1 is provided with a far-infrared generating device and a near-infrared generating device. The far-infrared generating device can emit far-infrared rays, and the near-infrared device can emit near-infrared rays. The infrared chamber 1 includes a trumpet-shaped bead cover 11 and a mounting plate 15 fixedly connected to the narrow end of the bead cover 11. A bead rack 12 is fixedly connected to the wide end of the bead cover 11. The inner ring of the bead rack 12 is provided with four ventilation holes at equal distances along the circumference. A large number of mounting holes are provided at equal distances along the circumference on the outer ring of the bead rack 12. A far-infrared ceramic bead 13 is provided in each mounting hole. The far-infrared ceramic bead 13 is made of far-infrared ceramic material. The far-infrared ceramic beads 13 and the near-infrared beads 14 are both prior art. The far-infrared and near-infrared rays enter the human skin and subcutaneous tissue, causing the temperature of the irradiated tissue to rise, so that the heat has a deep hot compress in the tissue, achieving a good hot compress effect. At the same time, under the joint action of the frequency-modulated far and near infrared rays, the infrared radiation along the meridians on the human body surface can be induced to undergo stimulated resonance, thereby correcting the functional disorder of energy / information metabolism under pathological conditions.
[0027] One end of the infrared chamber 1 is detachably connected to a capsule chamber 2, which is cylindrical and has a thread at one end. The capsule chamber 2 is threadedly connected to the narrow end of the bead cover 11, and an oblong hole is provided on the outer surface of the capsule chamber 2. A transparent observation cover 23 is sleeved and connected to the capsule chamber 2, through which the internal situation can be observed. The capsule chamber 2 is a hollow structure, and a capsule chamber interlayer 26 is provided in the capsule chamber 2 entity. The space of the capsule chamber interlayer 26 is relatively closed, with only two openings, namely a first air outlet on the side facing the bead cover 11 and a first air inlet 42 on the side away from the bead cover 11. An air hole is provided at the position corresponding to the first air outlet on the bead cover 11, so that the air in the capsule chamber interlayer 26 can flow from the air outlet through the air hole into the bead cover 11. Three nano-cigarette sticks 24 are provided in the capsule chamber 2, and the three nano-cigarette sticks 24 are arranged in a herringbone shape around the near-infrared generating device. The nano-cigarette stick 24 passes through the mounting plate 15, and its two ends are respectively located in the bead cover 11 and the capsule 2, and the nano-cigarette stick 24 is fixedly connected to the mounting plate 15. A conductive heating rod is provided in the nano-cigarette stick 24, and a volatility stick 25 is also provided in the nano-cigarette stick 24. One end of the volatility stick 25 passes through the nano-cigarette stick 24 and is placed in the capsule 2, and the other end is located in the nano-cigarette stick 24, and is located in the nano-cigarette stick 24 near the conductive heating rod. An wormwood essential oil capsule 27 is provided outside the volatility stick 25. The wormwood essential oil capsule 27 is a prior art, which adopts a heat-resistant transparent material. The wormwood essential oil capsule 27 is filled with wormwood essential oil. The wormwood essential oil can penetrate along the volatility stick 25 to one end close to the conductive heating rod. After being heated, the conductive heating rod can heat the wormwood essential oil on the nearby volatility stick 25 to volatilize, thereby making the wormwood essential oil produce the same effect as wormwood burning.
[0028] An insulating chamber 3 is provided at the end of the capsule chamber 2 away from the bead cover 11. The insulating chamber 3 includes an air outlet hood 33. The air outlet hood 33 is a hollow structure. A tube wall interlayer 32 is provided on the inner wall of the air outlet hood 33. The tube wall interlayer 32 is located on the inner side of the air outlet hood 33 and is provided with a second air outlet. The second air outlet is connected to the first air inlet 42 of the capsule chamber interlayer 26. A conductive frame 31 is also fixedly connected to the air outlet hood 33. The conductive frame 31 is electrically connected to the conductive heating rod and the near-infrared beads 14 to provide a power supply path for them. A partition plate 21 is also provided between the insulating chamber 3 and the capsule chamber 2. The partition plate 21 separates the capsule chamber 2 and the insulating chamber 3. An air vent 22 is provided on the partition plate 21, and the conductive frame 31 passes through the partition plate 21.
[0029] A control compartment 4 is provided on the bottom side of the insulation compartment 3, and a power supply is provided in the control compartment 4. The power supply is electrically connected to a controller, and the controller is electrically connected to the conductive frame 31, so as to realize the control power supply to power electrical equipment such as the conductive heating rod, so as to control the heating of the conductive heating rod to evaporate the mugwort essential oil in the mugwort essential oil capsule 27 that penetrates the vaporizing rod 25.
[0030] The tube wall interlayer 32 is connected to the control chamber 4. An air supply device is also provided in the control chamber 4. The air supply device includes a motor and a fan 41. The motor is fixedly connected to the control chamber 4. The motor is electrically connected to the controller. The fan 41 is fixedly connected to the output shaft of the motor. The exhaust direction of the fan 41 is toward the side where the air outlet cover 33 is located. The controller can control the rotation of the motor to make the fan 41 generate flowing wind. The wind will enter the tube wall interlayer 32 of the air outlet cover 33 from the control chamber 4, be compressed and guided to the capsule interlayer 26 under the special shape of the air outlet cover 33, and then enter the bead cover 11 through the first air outlet of the capsule interlayer 26, thereby blowing the inside of the bead cover 11 The volatile wormwood essential oil is blown toward the four vents of the bead rack 12. When in use, the bead rack 12 will be aligned with the meridian acupuncture points of the human body. The volatile wormwood essential oil will be blown by the fan 41 and will be more enriched in the human skin facing the bead cover. Under the joint action of the far-infrared ceramic beads 13, the near-infrared rays generated by the near-infrared generating device and the volatile wormwood essential oil, the temperature of the irradiated tissue can be increased, and the heat can have a hot compress depth in the tissue, inducing stimulated resonance of the infrared radiation along the meridians of the human body surface, correcting the functional disorder of energy / information metabolism in the pathological state, and at the same time making the wormwood essential oil components enter the microcirculation more efficiently, thereby playing a therapeutic role.
[0031] The control compartment 4 is provided with a plurality of air inlet holes 42 . The air inlet holes 42 are located on the control compartment 4 and below the fan 41 .
[0032] The near-infrared generating device is also provided with an infrared temperature detection module, which is an existing technology. The infrared temperature detection module is electrically connected to the controller through the conductive frame 31, and can monitor the surface temperature of the human skin corresponding to the four ventilation holes in the center of the bead frame 12 and transmit it to the controller in real time. The program in the controller controls the start of the motor according to the temperature. The program is commonly used in the existing technology. When the skin surface temperature exceeds the moving temperature (generally 60°C), the controller program immediately controls the conductive heating rod and the near-infrared generating device to stop working, and at the same time continuously starts the motor of the air supply device to rotate to supply air and dissipate heat to prevent overheating and burns to the human skin.
[0033] A display module and a numerical control module are fixedly connected to the outside of the control chamber 4. The display module and the numerical control module are both electrically connected to the controller. The display module and the numerical control module are both existing technologies. The information received by the controller is transmitted to the display module and displayed through the display module, which facilitates the user to intuitively obtain temperature information. The numerical control module is equipped with switches and operating devices, which can be manually controlled and set. The monitoring alarm temperature of the infrared temperature detection module can be actively controlled. The alarm temperature can be set according to different situations to suit different parts of the human body. For example, for diabetic patients, the control alarm temperature needs to be set at 42°C. When the skin position of the patient facing the device reaches 42°C, the near-infrared beads 14 need to be turned off and the motor turned on at the same time, so that the fan 41 blows air to cool the part of the human body facing the device to prevent complications caused by burns. The control chamber 4 is also equipped with a power supply. The power supply uses a lithium battery. The lithium battery is electrically connected to the controller, and the controller controls the on and off of the power supply to the components that need power.
[0034] The device is compact and portable, does not require open flames, has controllable temperature, and is easy to use.
[0035] Working process: First, the main switch is turned on through the numerical control module. The program in the controller will control the operation according to the prescribed process. First, the near-infrared generator is activated, and the conductive heating rod is controlled to heat up after being energized, so that the mugwort essential oil on the volatile rods 25 of the three nano-smoke sticks 24 can be atomized for 1-10 seconds. When the infrared temperature detection module detects that the regional temperature exceeds 60°C, the conductive heating rod and the near-infrared generator are both powered off for 1-10 seconds. At the same time, the air supply device is continuously energized, causing the fan 41 to rotate, dissipating heat while pushing the volatilized mugwort essential oil to move toward the four ventilation areas of the bead rack 12. At the same time, when the far-infrared ceramic microbeads on the far-infrared disk come into contact with human skin, the far-infrared microbeads' wavelength of 2-18μm far-infrared rays enter the human skin and subcutaneous tissue, which can increase the temperature of the irradiated tissue and make the heat have a deep heat compress in the tissue, inducing stimulated resonance of infrared radiation along the meridians of the human body surface. This can correct the functional disorder of energy / information metabolism in pathological conditions, and at the same time, make the mugwort essential oil enter the microcirculation more efficiently, achieving better human absorption effect.
[0036] Except for the technical features described in the specification, all other technical features are known technologies to those skilled in the art.
[0037] In the present invention, "up", "down", "left", "right", "front" and "back" are relative positions used to conveniently describe positional relationships, and therefore cannot be understood as absolute positions to limit the scope of protection.
[0038] The above content is merely an example and explanation of the structure of the present invention. Those skilled in the art may make various modifications or additions to the described specific embodiments or replace them in a similar manner. As long as they do not deviate from the structure of the invention or exceed the scope defined by the claims, they should all fall within the scope of protection of the present invention.
Claims
1. A portable moxibustion device that combines near and far infrared, characterized in that: include An infrared chamber, wherein a far infrared generating device and a near infrared generating device are provided in the infrared chamber, wherein the far infrared generating device can emit far infrared rays, and the near infrared generating device can emit near infrared rays; One end of the infrared chamber is detachably connected to a capsule chamber, wherein a plurality of nano-cigarette sticks are arranged in the capsule chamber, wherein the nano-cigarette sticks pass through the bead cover and the capsule chamber, wherein a conductive heating stick is arranged in the nano-cigarette stick, wherein a volatile stick is also arranged in the nano-cigarette stick, wherein one end of the volatile stick passes through the nano-cigarette stick and is placed in the capsule chamber, and an wormwood essential oil capsule is arranged outside the volatile stick; One end of the capsule compartment is provided with an insulation compartment, and the other end of the insulation compartment is provided with a control compartment. A power supply is provided in the control compartment, and the power supply is electrically connected to a controller, and the controller is electrically connected to the conductive heating rod, which can control the heating of the conductive heating rod to evaporate the mugwort essential oil in the mugwort essential oil sac that has penetrated the volatile rod; An air supply device is also provided in the control compartment.
2. The portable moxibustion device for near-infrared and far-field fusion according to claim 1, characterized in that: The infrared chamber includes a bead cover, a bead rack is fixedly connected to the bead cover, a plurality of ventilation holes are opened in the inner circle of the bead rack, a plurality of mounting holes are equidistantly provided on the outer circle of the bead rack along the circumference, and far-infrared ceramic beads are arranged in several of the mounting holes. The near-infrared generating device includes a near-infrared bead, and the near-infrared bead is electrically connected to the power supply.
3. A portable moxibustion device for near-infrared and far-field fusion according to claim 2, characterized in that: The far-infrared ceramic beads are made of far-infrared ceramic materials.
4. The portable moxibustion device for near-infrared and far-field fusion according to claim 1, characterized in that: The capsule chamber is cylindrical, and one end of the capsule chamber is provided with a thread for threaded connection with the infrared chamber. An oblong hole is provided on the outer surface of the capsule chamber, and a transparent observation cover is sleeved and connected to the capsule chamber. A capsule chamber interlayer is provided in the capsule chamber, and a first air outlet is provided on the side of the capsule chamber interlayer facing the bead cover, and a first air inlet is provided on the side of the capsule chamber interlayer away from the bead cover, and an air hole is provided on the bead cover corresponding to the first air outlet.
5. The portable moxibustion device for near-infrared and far-field fusion according to claim 4, characterized in that: The heat-insulating chamber includes an air outlet hood, which is a hollow structure. A tube wall interlayer is provided on the inner wall of the air outlet hood. A second air outlet is provided on the inner side of the air outlet hood. The second air outlet is connected to the first air inlet. The tube wall interlayer is connected to the control chamber. A conductive frame is also fixedly connected to the air outlet hood. One end of the conductive frame is electrically connected to the conductive heating rod, and the other end of the conductive frame is electrically connected to the controller. Therefore, a partition plate is provided between the heat-insulating chamber and the capsule chamber, and air holes are provided on the partition plate.
6. The portable moxibustion device for near-infrared and far-field fusion according to claim 5, characterized in that: The control compartment is fixedly connected to one side of the air outlet hood, and the control compartment is communicated with the tube wall interlayer. The air supply device includes a motor and a fan. The fan is fixedly connected to the output shaft of the motor, and the exhaust direction of the fan is toward the air outlet hood. The motor is electrically connected to the controller, and a plurality of air inlet holes are opened on the control compartment.
7. The portable moxibustion device for near-infrared and far-field fusion according to claim 1, characterized in that: The near-infrared generating device is further provided with an infrared temperature detection module, and the infrared temperature detection module is electrically connected to the controller.
8. The portable moxibustion device for near-far infrared fusion according to claim 7, characterized in that: The outer side of the control compartment is fixedly connected with a display module and a numerical control module, and the display module and the numerical control module are electrically connected to the controller.