Red light needle warming moxibustion instrument for ear massage

Through the combination of infrared heating module and magnetic positioning auxiliary module, scalds and inaccurate positioning caused by improper operation of traditional moxibustion are solved, and safe, accurate and comfortable treatment of ear warm moxibustion is achieved.

CN120478147AActive Publication Date: 2025-08-15AIR FORCE MEDICAL CENT PLA
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Patent Information

Application Number
CN202510921283.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-04
Publication Date
2025-08-15
Estimated Expiration
2045-07-04

AI Technical Summary

Technical Problem

Improper operation of traditional moxibustion and fumigation methods can easily burn the patient's ears and inaccurate positioning, resulting in serious consequences such as hearing loss.

Method used

The infrared heating module is used to generate heat and the precise temperature control and stable adsorption of the warm moxibustion device is achieved through controlled negative pressure adsorption and magnetic positioning auxiliary modules, and acupuncture positioning and fixing are achieved by combining flexible guide columns and electromagnets.

Benefits of technology

It avoids the risk of scalds, improves treatment effect and positioning accuracy, and improves user experience and comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of medical instruments, and provides an ear massage red light needle warming moxibustion instrument, which comprises a needle warming moxibustion device, an infrared heating module, an adsorption module, a positioning auxiliary module and a control module, and is characterized in that the needle warming moxibustion device is provided with a heat collection cabin for concentrating and conducting heat to an ear treatment area; the infrared heating module is arranged on the warm moxibustion device to realize warm stimulation treatment; the adsorption module is arranged on the side, close to the ear, of the needle warming moxibustion device and used for adsorbing the needle warming moxibustion device to the skin surface of the ear through the controllable negative pressure adsorption effect. The positioning auxiliary module is arranged in the heat gathering cabin corresponding to the ear acupuncture points so as to position and fix the acupuncture points; the control module is electrically connected with the infrared heating module, the adsorption module and the positioning auxiliary module and used for adjusting the temperature of the infrared heating module. Heat is generated through the infrared heating module and transmitted to the ears, the infrared heating module and the control module work cooperatively, the intelligent temperature control function of the needle warming moxibustion device is achieved, and therefore the remarkable treatment effect is achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical devices, in particular to an ear massage red light moxibustion instrument. Background Art

[0002] The use of auricular acupuncture points for healthcare is a key component of Traditional Chinese Medicine (TCM), with a history of over 2,000 years in my country. The auricle, like an inverted human body, connects to the body's internal organs. Twelve meridians directly or indirectly reach the ear. Because the ear is so closely connected to the meridians and internal organs, any pathology anywhere in the body is reflected through the meridians to the corresponding areas on the auricle. Appropriate stimulation of these auricular acupuncture points, including moxibustion, can help unclog the meridians leading to the affected area, ultimately preventing disease.

[0003] At present, in clinical work, ear moxibustion treatment often involves hanging a lit moxa stick in the air to smoke various acupuncture points on the ear, allowing the medicinal heat to have a local therapeutic effect. This requires the operator to have a high level of technical skills and rich experience. If the operation is improper, it is easy to burn the patient's ears and even cause serious consequences such as hearing loss. Summary of the Invention

[0004] The present invention provides an ear massage red light moxibustion device, which generates heat through an infrared heating module and transmits it to the ear. It works in conjunction with a control module to realize the intelligent temperature control function of the moxibustion device, thereby achieving significant therapeutic effects. The specific implementation method is as follows: An ear massage red light moxibustion instrument comprises a moxibustion device having a heat collecting chamber for concentrating and conducting heat to an ear treatment area; An infrared heating module is provided on the moxibustion device, and is used to emit far infrared rays of a predetermined wavelength range to the acupuncture points on the ear to achieve thermal stimulation therapy; The adsorption module is located on the side of the moxibustion device close to the ear, and is used to adsorb the moxibustion device to the surface of the ear skin through controllable negative pressure adsorption; A positioning auxiliary module is provided in the heat collection chamber corresponding to the ear acupuncture points. The positioning auxiliary module includes a flexible guide column, a flexible connecting device, and a magnetic component. The magnetic component includes an electromagnet provided on the flexible connecting device and a patch applied to the ear acupuncture point. The patch is magnetic and attracts the electromagnet to achieve positioning and fixation of the acupuncture point. The control module is electrically connected to the infrared heating module, the adsorption module, and the positioning auxiliary module respectively, and the control module is used to realize temperature regulation of the infrared heating module.

[0005] As a further solution of the present invention, the infrared heating module includes a single-layer or multi-layer graphene film, an electrode, and two insulating films. The electrode is arranged at the edge of the graphene film, and the graphene film and the electrode are sandwiched between the two insulating films.

[0006] As a further solution of the present invention, the infrared heating module is fixedly connected to the moxibustion device through a heat insulation layer, and the heat insulation layer has the function of reflecting far infrared rays.

[0007] As a further solution of the present invention, the infrared heating modules are arranged in a circle along the inner side of the heat collecting chamber.

[0008] As a further solution of the present invention, the adsorption module includes a suction cup body, which is arranged on the moxibustion device and is vacuumed by a vacuum device so that the moxibustion device is adsorbed on the surface of the ear skin. The deflation action is completed by a pressure regulating device. The suction cup body is connected to the vacuum device and the pressure regulating device through pipelines respectively.

[0009] As a further solution of the present invention, the suction cup main body includes an adsorption shell having an adsorption cavity, and an adsorption column mounted on the adsorption shell. An air valve is provided between the adsorption column and the adsorption shell. The air valve is movably arranged in the suction cup main body. The air valve forms an adsorption channel, and the adsorption channel is connected to the vacuum device through a pipeline.

[0010] As a further solution of the present invention, the adsorption module further includes a pressure sensor and a one-way valve, both of which are arranged on the inlet pipeline of the adsorption module. The pressure sensor is arranged adjacent to the adsorption module and communicates with the adsorption channel.

[0011] As a further solution of the present invention, the air valve is conical in shape, the adsorption chamber of the adsorption shell matches the shape of the air valve, and an elastic valve is circumferentially provided on the outer wall of the air valve, the edge of the elastic valve abuts against the inner wall of the adsorption shell.

[0012] As a further solution of the present invention, the pressure regulating device includes a shell having an active cavity and a driving element, the shell is formed with an air inlet and an exhaust hole, the air inlet and exhaust holes are both connected to the active cavity, a cover body is movably provided in the active cavity, and an exhaust port is provided on the cover body. Under the action of the driving element, the cover body is driven to move along the active cavity, thereby controlling the exhaust volume of the exhaust port per unit time.

[0013] As a further solution of the present invention, a plurality of exhaust ports are provided, and the plurality of exhaust ports are arranged in sequence along the moving direction of the cover.

[0014] Due to the adoption of the above technical solution, the beneficial technical effects of the present invention are: 1. Compared with the traditional moxibustion fumigation method, the present invention is safer and avoids the burn problem caused by improper operation of the ignited moxa stick hanging in the air to smoke the various acupuncture points of the ear. The control module accurately controls the temperature of the infrared heating module, which helps to radiate far infrared to the treatment area, thereby improving the treatment effect. 2. The present invention uses the electromagnet on the flexible guide column to magnetically fix the patch attached to the ear acupuncture point, which can help the operator more accurately find and fix it on the specific ear acupuncture point, avoiding positioning errors caused by lack of experience, and further improving the positioning accuracy of the moxibustion device; 3. The present invention applies the moxibustion device to ear treatment by setting a point-suction low-negative pressure mode, ensuring that the moxibustion device acts more stably on specific acupuncture points or treatment areas, and does not cause pressure and compression on the skin and tissues during the treatment process, thereby improving the user experience and comfort of the moxibustion device. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a structural diagram of an ear massage red light moxibustion instrument in a specific embodiment of the present invention; Figure 2 This is a partial structural diagram of an ear massage red light moxibustion instrument according to a specific embodiment of the present invention; Figure 3 This is a cross-sectional view of an ear massage red light moxibustion device according to a specific embodiment of the present invention; Figure 4 For the present invention Figure 3 A magnified view of the structure of part A; Figure 5 This is a bottom view of an ear massage red light moxibustion device according to a specific embodiment of the present invention; Figure 6 is a cross-sectional view of a positioning auxiliary module in a specific embodiment of the present invention; Figure 7 This is a structural diagram of a positioning auxiliary module in a specific embodiment of the present invention; Figure 8 is a cross-sectional view of a pressure regulating device in a specific embodiment of the present invention; Figure 9 It is a cross-sectional view of an infrared heating module in a specific embodiment of the present invention; Figure 10 This is a schematic structural diagram of the connection between the moxibustion device and the elastic clamp in a specific embodiment of the present invention; Figure 11 It is a schematic diagram of the structure of the ear acupuncture point patch in a specific embodiment of the present invention.

[0016] Description of reference numerals: 100, moxibustion device, 200, connector, 300, patch, 400, elastic clamp, 500, display module, 1. Middle shell, 2. Base, 3. Top shell, 4. Base silicone pad, 5. Heat collection chamber, 6. Positioning auxiliary module, 7. Adsorption port, 8. Charging port, 9. Protrusion, 10. Installation cavity, 11. Vacuum device, 12. One-way valve, 13. Pipeline, 14. Tee pipe, 15. Pipeline branch, 16. Pressure sensor, 17. Adsorption module, 18. Pressure regulating device, 19. Cylinder, 20. Graphene membrane, 21. Front cover, 201, limiting flange, 202, joint, 601, flexible guide post, 602, bottom plate, 603, spring, 604, movable plate, 605, chain, 606, guide post, 607, electromagnet, 608, guide groove, 1601, circulation channel, 1701, adsorption shell, 1702, adsorption chamber, 1703, air valve, 1704, adsorption channel, 1705, elastic valve, 1706, adsorption column, 1707, elastic gasket, 1708, connection end, 1801. Outer shell, 1802. Active cavity, 1803. Air inlet, 1804. Exhaust hole, 1805. Cover, 1806. Surrounding wall, 1808. Exhaust port. DETAILED DESCRIPTION

[0017] The specific implementation of the present invention is described below with reference to the accompanying drawings and embodiments: It should be noted that the structures, proportions, sizes, etc. illustrated in the drawings of this specification are only used to match the contents disclosed in the specification for people familiar with this technology to understand and read, and are not used to limit the conditions under which the present invention can be implemented. Any structural modification, change in proportional relationship or adjustment of size should still fall within the scope of the technical content disclosed in the present invention without affecting the efficacy and purpose that can be achieved by the present invention.

[0018] At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" quoted in this specification are only for the convenience of description and are not used to limit the scope of implementation of the present invention. Changes or adjustments to their relative relationships should be regarded as the scope of implementation of the present invention without substantially changing the technical content.

[0019] The present invention provides an ear massage and red light moxibustion device, developed based on the TCM theory of external treatment for internal diseases. It utilizes infrared heat, magnetic fields, and red light technology. It combines warming, unblocking, and nourishing yang. Combined with warm scraping, warm pushing, and moxibustion therapy on meridian acupoints, it helps detoxify and dispel blood stasis, dispel cold and dampness, unclog congested meridians, and warm and replenish deficient yang energy. As the saying goes, "all diseases stem from stasis," maintaining unobstructed meridians and sufficient yang energy strengthens one's immunity.

[0020] Combine Figures 1 to 11 As shown, the present invention includes a moxibustion device 100, an infrared heating module, an adsorption module 17, a positioning auxiliary module 6, and a control module. The moxibustion device 100 has a heat collection chamber 5 for concentrating and conducting heat to the ear treatment area; the infrared heating module is provided on the moxibustion device 100, and the infrared heating module is used to emit far infrared rays of a predetermined wavelength range to the ear acupuncture points to achieve warm stimulation treatment; the adsorption module 17 is provided on the side of the moxibustion device 100 close to the ear, and is used to adsorb the moxibustion device 100 on the ear skin surface through controllable negative pressure adsorption; the positioning auxiliary module 6 ...; the positioning auxiliary module 6 is provided on the side of the moxibustion device 100 close to the ear The auxiliary module 6 is arranged in the heat collection cabin 5 corresponding to the ear acupuncture points. The positioning auxiliary module 6 includes a flexible guide column 601, a flexible connecting device, and a magnetic component. The magnetic component includes an electromagnet 607 arranged on the flexible connecting device, and also includes a patch 300 applied to the ear acupuncture point. The patch 300 is magnetic and attracts the electromagnet 607 to achieve positioning and fixation of the acupuncture point; the control module is electrically connected to the infrared heating module, the adsorption module 17, and the positioning auxiliary module 6 respectively, and the control module is used to achieve temperature regulation of the infrared heating module.

[0021] Specifically, the moxibustion device 100 uses an infrared heating module to generate heat and emits far-infrared rays of a predetermined wavelength range to the acupuncture points on the ear. This radiation is beneficial to the human body and can achieve gentle and effective warm stimulation therapy, which helps to promote blood circulation, relieve muscle tension, and help to dredge the meridians, thereby achieving the purpose of preventing and treating diseases. On this basis, combined with the control module, the precise adjustment of the temperature of the infrared heating module can be achieved. Specifically, the control module includes a temperature sensor, a microprocessor, a drive circuit, a constant temperature controller, and a display module 500. The temperature sensor is an NTC thermistor, which is integrated in the heat collection chamber 5 and close to the infrared heating module. It is responsible for converting the detected temperature into an electrical signal and transmitting it to the microprocessor for processing. The temperature sensor monitors the actual temperature of the heat collection chamber 5 in real time. The microprocessor receives data from the temperature sensor, calculates and controls according to the set target temperature, and then controls the power output of the infrared heating module through the drive circuit. At the same time, the data measured by the infrared heating module after operation is transmitted to the control module in real time, and the current temperature can be displayed in real time via the display module 500. The display module 500 may also be equipped with an input and confirmation module to allow the operator to adjust information such as the temperature setting and the remaining time. In addition, the thermostat controller is an existing technology and generally adopts a PID (proportional-integral-differential) control algorithm, which can quickly respond to temperature changes and maintain temperature stability, thereby ensuring the safety and effectiveness of the treatment process.

[0022] As a preferred embodiment, the moxibustion device 100 is provided with a power supply module for providing electrical energy to the infrared heating module, the adsorption module 17, the positioning auxiliary module 6, and the control module, and a charging interface 8 is reserved on the moxibustion device 100. The charging interface 8 is a USB interface, which provides a standardized and convenient charging method for the power supply module. The power supply module identifies whether the USB charging interface is connected and automatically switches to the charging mode according to the connection status. When the power supply module detects that the USB interface is connected to an external power supply, it receives power through the USB interface and charges the battery.

[0023] In the above scheme, combined with Figure 9 As shown, the infrared heating module includes a single-layer or multi-layer graphene film 20, an electrode, and two insulating films. The electrode is arranged at the edge of the graphene film 20, and the graphene film 20 and the electrode are sandwiched between the two insulating films. The infrared heating module selects the graphene film 20 as the heating element, and reserves electrode areas at the head and tail ends of the graphene film 2002, and connects it to the power circuit with conductive glue. In order to ensure effective radiation of heat and air circulation, a hollow front cover 21 is installed on the heat collection cabin 5, and the front cover 21 is firmly installed on the heat collection cabin 5 by fasteners such as bolts. The front cover 21 not only serves to fix the infrared heating module, but also ensures that the heat can directly act on the ear skin.

[0024] In the above embodiment, the infrared heating module is fixedly connected to the moxibustion device 100 via a thermal insulation layer, which has the function of reflecting far-infrared rays. The thermal insulation layer is made of a material that reflects far-infrared rays. The far-infrared rays radiated by the infrared heating module toward the inner wall of the heat collection chamber 5 are reflected toward the center, which not only further improves heating efficiency and therapeutic effects, but also reduces the heat applied to the inner wall of the heat collection chamber 5.

[0025] In the above scheme, the infrared heating module is arranged in a circle along the inner edge of the heat collection chamber 5. The infrared heating module has a ring structure. According to the shape and size of the heat collection chamber 5, the size of the required graphene film is measured and marked. A layer of conductive glue is evenly coated on the inner wall of the heat collection chamber 5. The graphene film with an insulating film is firmly adhered to the heat collection chamber 5. The graphene is arranged in a circle along the circumference of the heat collection chamber 5. The surrounding arrangement ensures that heat is radiated to the ear acupuncture point area from multiple directions, avoiding local overheating or cold areas. It also concentrates heat inside the heat collection chamber 5, reducing outward diffusion. The "cavity heat collection" effect is utilized to make the heat more concentrated on the target area, thereby improving the treatment effect.

[0026] In order to ensure that the moxibustion device 100 acts more stably on a specific acupuncture point or treatment area, an adsorption module 17 is integrated on the moxibustion device 100. Figure 2As shown, the adsorption module 17 includes a suction cup body, which is arranged on the moxibustion device 100 and is vacuumed by the vacuum device 11 so that the moxibustion device 100 is adsorbed on the surface of the ear skin. The deflation action is completed by the pressure regulating device 18. The suction cup body is connected to the vacuum device 11 and the pressure regulating device 18 through the pipeline 13 respectively. Specifically, the moxibustion device 100 includes a top shell 3, a middle shell 1, and a base 2 that are assembled together, and the three form an installation cavity 10 for installing the adsorption module 17. The vacuum device 11 and the suction cup body are integrated in the installation cavity 10. The bottom of the base 2 is provided with a base 2 silicone pad 4. The base silicone pad 4 and the connecting end 1708 of the adsorption module 17 are interconnected and fixed to form an adsorption port 7. The base silicone pad 4 has a flat end face to help it stick to the ear skin. At the same time, its soft nature plays a buffering role on the ear skin. The moxibustion device 100 is adsorbed on the surface of the ear skin by vacuuming through the vacuum device 11, which can ensure that the moxibustion device 100 can be safely and stably adsorbed on the surface of the ear skin, and the pressure regulating device 118 is used to achieve the best adsorption effect to improve patient comfort.

[0027] In the above scheme, combined with Figure 3 and Figure 4 As shown, the suction cup body includes an adsorption shell 1701 with an adsorption chamber 1702, and an adsorption column 1706 mounted on the adsorption shell 1701. An air valve 1703 is provided between the adsorption column 1706 and the adsorption shell 1701. The air valve 1703 is movably arranged in the suction cup body. The air valve 1703 forms an adsorption channel 1704, and the adsorption channel 1704 is connected to the vacuum device 11 through a pipeline 13. The vacuum device 11 selects a vacuum pump. Specifically, the shell 1701 is connected to the installation cavity 10, and the air valve 1703 is arranged between the shell 1701 and the adsorption column 1706, and the air valve 1703 and the adsorption column 1706 can slide along the adsorption cavity 1702. An elastic gasket 1707 is provided between the air valve 1703 and the adsorption shell 1701 and connected. Vacuuming is carried out by a vacuum pump to drive the air valve 1703 and the adsorption column 1706 to move, so that the adsorption cavity 1702 is in a vacuum state, so that the moxibustion device 100 is adsorbed on the skin surface of the ear, thereby ensuring that the moxibustion device 100 can be safely and stably adsorbed on the skin surface of the ear.

[0028] In the above solution, the air valve 1703 is conical in shape. The adsorption chamber 1702 of the adsorption housing 1701 matches the shape of the air valve 1703. An elastic flap 1705 is circumferentially provided on the outer wall of the air valve 1703, with the edge of the elastic flap 1705 abutting against the inner wall of the adsorption housing 1701. The adsorption column 1706 is sleeved within the adsorption channel 1704 and is also conical in shape. The elastic flap 1705 is provided on the outer wall of the air valve 1703, with its edge abutting against the inner wall of the adsorption housing 1701, thereby ensuring the sealing of the suction cup body and allowing one-way air flow.

[0029] In the above solution, the adsorption module 17 further includes a pressure sensor 16 and a one-way valve 12. Both the pressure sensor 16 and the one-way valve 12 are provided on the inlet pipe 13 of the adsorption module 17. The pressure sensor 16 is arranged adjacent to the adsorption module 17 and communicates with the adsorption channel 1704. The pressure sensor 16 is formed with a flow channel 1601, which is connected to the adsorption chamber 1702. The flow channel 1601 is responsible for transmitting the pressure value within the adsorption chamber 1702 to the control module, which determines whether the adsorption is in the optimal state. After presetting the pressure value (a lower pressure value should be set when applied to the ear skin), the adsorption module 17 can control the adsorption pressure under the control of the control module through the adsorption time of the vacuum pump and the continuously monitored pressure sensor 16 to ensure that the moxibustion device 100 can be stably adsorbed on the ear skin.

[0030] As a preferred embodiment, multiple groups of suction cup bodies and pressure sensors 16 are provided, and the multiple groups of suction cup bodies and pressure sensors 16 are arranged at equal intervals along the circumference of the moxibustion device 100. Adjacent pressure sensors 16 are connected to each other through the pipeline branch 15. Multiple suction cup bodies form multiple adsorption points to ensure that the moxibustion device 100 can be more stably adsorbed on the surface of the ear skin.

[0031] Combine Figure 8As shown, conventional negative pressure suction is too strong, which can easily cause ear discomfort or even congestion. To avoid this, the moxibustion device 100 is equipped with a pressure regulating device 18. This pressure regulating device 18 is electrically connected to the control module to adjust the suction module 17 to a low negative pressure mode (5-10kPa), ensuring that the moxibustion device 100 is more comfortable when it is attached to the ear skin surface. Specifically, a three-way pipe 14 is provided on the pipeline 13, and the three pipe ends of the three-way pipe 14 are respectively connected to the circulation channel 1601 of the vacuum pump, the pressure regulating device 18 and the pressure sensor 16. The pressure regulating device 18 includes a shell 1801 with an active cavity 1802, and a driving element. The shell 1801 is formed with an air inlet 1803 and an exhaust hole 1804. The air inlet 1803 and the exhaust hole 1804 are both connected to the active cavity 1802. A cover body 1805 is movably provided in the active cavity 1802, and an exhaust port 1808 is provided on the cover body 1805. Under the action of the driving element, the cover body 1805 is driven to move along the active cavity 1802, thereby controlling the exhaust volume of the exhaust port 1808 per unit time. The driving element is set as a cylinder 19. When the negative pressure in the adsorption module 17 is too high, the cylinder 19 is started. Under the action of the cylinder 19, the cover body 1805 moves up and down along the active cavity 1802 to drive the exhaust port 1808 to move synchronously, thereby changing the opening of the exhaust hole 1804. By controlling the displacement speed and stroke of the cover body 1805, the exhaust volume per unit time can be accurately adjusted to achieve dynamic adjustment of the negative pressure level in the adsorption cavity 1702 to meet the pressure requirements of different treatment stages.

[0032] In the above scheme, a plurality of exhaust ports 1808 are provided, and the plurality of exhaust ports 1808 are arranged in sequence along the moving direction of the cover body 1805. By distributing the plurality of exhaust ports 1808 along the moving path of the cover body 1805, multi-stage pressure relief control can be achieved. By changing the position of the cover body 1805, the displacement of the exhaust port 1808 and the exhaust hole 1804 is selected to achieve different exhaust rates, thereby adapting to the needs of different treatment stages, such as constant pressure maintenance, slow pressure relief and other modes. In specific applications, the cover body 1805 moves up and down along the movable cavity 1802 under the action of the cylinder 19, and each exhaust port 1807 corresponds to a specific exhaust area, thereby forming a continuous exhaust change. The control module automatically adjusts the position of the cover body 1805 according to the feedback value of the pressure sensor 16 to maintain the set pressure.

[0033] As a preferred embodiment, a peripheral wall 1806 is provided at the connection between cover 1805 and housing 1801. Wall 1806 is made of an elastic material, such as silicone. When pressure regulating device 18 is not regulating pressure, wall 1806 always maintains a tight fit with the inner wall of housing 1801, effectively preventing gas from leaking from exhaust hole 1804, thereby ensuring controllable pressure regulation.

[0034] As a preferred embodiment, in order to achieve accurate positioning and fixation of the moxibustion device 100, Figure 6 、 Figure 7 and Figure 10 As shown, the moxibustion device 100 is provided with a positioning auxiliary module 6 corresponding to the heat collection chamber 5, and there are multiple positioning auxiliary modules 6, and the multiple positioning auxiliary modules 6 correspond one to one with the ear acupuncture points. In order to make the positioning auxiliary module 6 suitable for the precise positioning of the acupuncture points of different patients, the positioning auxiliary module 6 includes a flexible guide column 601, a flexible connecting device, and a magnetic component. The magnetic component includes an electromagnet 607 provided on the flexible connecting device, and also includes a patch 300 applied to the ear acupuncture point. The patch 300 is magnetic and attracts the electromagnet 607 to achieve the positioning and adsorption fixation of the acupuncture point. Specifically, the moxibustion device 100 is provided with a connector 202, which is provided in the heat collection chamber 5 and is screwed to the flexible guide column 601. The flexible guide column 601 is used to guide and preliminarily position the moxibustion device 100 on the ear to ensure that the infrared heating module can cover the target acupuncture point. The flexible guide post 601 has a certain degree of curvature and elasticity to adapt to the shape of the auricle of different users. Therefore, a soft but relatively rigid material, such as medical-grade silicone or TPU, should be selected to provide sufficient support without causing damage to the skin. The flexible connection device is configured as a chain 605. The flexible guide post 601 is provided with a guide groove 608 corresponding to the chain 605. The edge of the chain 605 slides in the guide groove 608. The electromagnet 607 is connected to the chain 605 via a guide post 606. The guide post 606 can slide along the guide groove 608. The electromagnet 607 generates a magnetic field through current control, which attracts the patch 300 attached to the acupuncture point on the ear, thereby achieving precise positioning and fixation of the acupuncture point.

[0035] In the above scheme, a base plate 602 is provided on the flexible guide post 601, and a movable plate 604 is provided below the base plate 602, which can move along the length of the flexible guide post 601. The base plate 602 and the movable plate 604 are connected by a spring 603. The spring 603 can provide a buffering force to ensure that the moxibustion device 100 can better fit the skin of the ear, while reducing pressure on the skin, improving wearing comfort and therapeutic effects. The moxibustion device 100 is guided to the ear by the flexible guide post 601. During the process of the electromagnet 607 attracting the patch 300, the chain 605 drives the flexible guide post 601 to make fine adjustments, so that the infrared heating module is aligned with the target acupuncture point. When the moxibustion device 100 approaches the ear, the electromagnet 607 moves upward and drives the movable plate 604 to move along the flexible guide column 601 to compress the spring 603, so that the movable plate 604 can adapt to different auricle shapes and height differences, ensuring that multiple positioning auxiliary modules 6 can fit on the ear skin. At the same time, the electromagnet 607 and the patch 300 attract each other, thereby further enhancing the fixing effect. As a preferred embodiment, a heating element is integrated on the flexible guide column 601, and the heating element is embedded in the flexible guide column. The heating element is a graphene film. The heating element can be connected to the control module through a wire. The temperature adjustment of the heating element is achieved by the control module, thereby performing targeted heating on multiple key acupuncture points on the ear, activating the acupuncture points on the ear, improving the absorption efficiency of the drug, helping to assist the ear acupuncture bean / patch therapy, improving the targeted efficacy, and can also be linked with the infrared heating module to form a "dual heat source collaborative heating system" to enhance the treatment effect.

[0036] In this embodiment, when a short-term or local treatment is required for a specific acupuncture point on the ear, the moxibustion device 100 can be used directly, thereby flexibly adjusting the position and treatment time of the moxibustion device 100; when it is necessary to wear it for a long time or to perform continuous treatment during activities, the moxibustion device 100 can be used in combination with the ear acupuncture point 100. Figure 9 As shown, it can be worn on the patient's head through an elastic clamp 400, and the moxibustion device 100 is relatively arranged at both ends of the elastic clamp 400. A connecting seat 200 is provided on the elastic clamp 400. The connecting seat 200 and the moxibustion device 100 are fixedly connected by fasteners such as bolts. For patients who need frequent use or require longer treatment, the moxibustion device 100 can be used in conjunction with the elastic clamp 400 to ensure stability during the treatment process, thereby facilitating treatment while doing housework or other activities, greatly improving the applicability of the equipment and user experience.

[0037] Many other changes and modifications can be made without departing from the spirit and scope of the present invention. It should be understood that the present invention is not limited to the specific embodiments, and the scope of the present invention is defined by the appended claims.

Claims

1. An ear massage red light moxibustion instrument, characterized in that: The moxibustion device (100) comprises a heat collecting chamber (5) for concentrating and conducting heat to an ear treatment area; An infrared heating module is provided on the moxibustion device (100), and is used to emit far infrared rays of a predetermined wavelength range to the acupuncture points on the ear to achieve thermal stimulation therapy; An adsorption module (17) is provided on a side of the moxibustion device (100) close to the ear, and is used to adsorb the moxibustion device (100) onto the surface of the ear skin through a controllable negative pressure adsorption effect; A positioning auxiliary module (6) is provided in the heat collecting cabin (5) corresponding to the ear acupuncture points, the positioning auxiliary module (6) comprising a flexible guide column (601), a flexible connecting device, and a magnetic component, the magnetic component comprising an electromagnet (607) provided on the flexible connecting device, and further comprising a patch (300) applied to the ear acupuncture points, the patch (300) being magnetic and mutually attracted to the electromagnet (607) to achieve positioning and fixing of the acupuncture points; The control module is electrically connected to the infrared heating module, the adsorption module (17), and the positioning auxiliary module (6), respectively, and the control module is used to achieve temperature regulation of the infrared heating module.

2. The ear massage red light moxibustion instrument according to claim 1, characterized in that: The infrared heating module comprises a single-layer or multi-layer graphene film (20), an electrode, and two insulating films, wherein the electrode is arranged at the edge of the graphene film (20), and the graphene film (20) and the electrode are sandwiched between the two insulating films.

3. The ear massage red light moxibustion instrument according to claim 1, characterized in that: The infrared heating module is fixedly connected to the moxibustion device (100) via a heat insulation layer, and the heat insulation layer has the function of reflecting far infrared rays.

4. The ear massage red light moxibustion instrument according to claim 1, characterized in that: The infrared heating module is arranged in a circle along the inner edge of the heat collecting chamber (5).

5. The ear massage red light moxibustion instrument according to claim 1, characterized in that: The adsorption module (17) includes a suction cup body, which is arranged on the moxibustion device (100) and is vacuumed by the vacuum device (11) so that the moxibustion device (100) is adsorbed on the surface of the ear skin, and the degassing action is completed by the pressure regulating device (18). The suction cup body is connected to the vacuum device (11) and the pressure regulating device (18) through the pipeline (13).

6. The ear massage red light moxibustion instrument according to claim 5, characterized in that: The suction cup body comprises an adsorption shell (1701) having an adsorption cavity (1702), and an adsorption column (1706) sleeved on the adsorption shell (1701), an air valve (1703) is provided between the adsorption column (1706) and the adsorption shell (1701), the air valve (1703) is movably provided in the suction cup body, the air valve (1703) forms an adsorption channel (1704), and the adsorption channel (1704) is connected to the vacuum device (11) via a pipeline (13).

7. The ear massage red light moxibustion instrument according to claim 6, characterized in that: The adsorption module (17) further comprises a pressure sensor (16) and a one-way valve (12), both of which are arranged on the inlet pipeline (13) of the adsorption module (17), and the pressure sensor (16) is arranged adjacent to the adsorption module (17) and communicates with the adsorption channel (1704).

8. The ear massage red light moxibustion instrument according to claim 6, characterized in that: The air valve (1703) is conical in shape, the adsorption chamber (1702) of the adsorption shell (1701) matches the shape of the air valve (1703), and an elastic valve (1705) is circumferentially provided on the outer wall of the air valve (1703), and the edge of the elastic valve (1705) abuts against the inner wall of the adsorption shell (1701).

9. The ear massage red light moxibustion instrument according to claim 5, characterized in that: The pressure regulating device (18) comprises a housing (1801) having an active cavity (1802) and a driving element, wherein the housing (1801) is formed with an air inlet (1803) and an air outlet (1804), wherein the air inlet (1803) and the air outlet (1804) are both connected to the active cavity (1802), and a cover (1805) is movably provided in the active cavity (1802), and an air outlet (1808) is provided on the cover (1805). Under the action of the driving element, the cover (1805) is driven to move along the active cavity (1802), thereby controlling the exhaust volume of the air outlet (1808) per unit time.

10. The ear massage red light moxibustion instrument according to claim 9, characterized in that: There are multiple exhaust ports (1808), and the multiple exhaust ports (1808) are arranged in sequence along the moving direction of the cover body (1805).