Wrist heart meridian acupoint electric heating massage device
By designing a wrist-mounted electrothermal massage device for the Heart Meridian acupoints, and employing a positioning glove mechanism and an electrically heated wristband mechanism, combined with a control mechanism, the device achieves precise contact and synergistic massage of acupoints. This solves the problems of inaccurate acupoint positioning, poor functional synergy, and inflexible control methods in existing devices, thereby improving the user experience and wearing comfort.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- WEST CHINA HOSPITAL SICHUAN UNIV
- Filing Date
- 2026-02-28
- Publication Date
- 2026-05-08
AI Technical Summary
Existing wrist acupoint care devices suffer from problems such as poor acupoint positioning accuracy, poor coordination between heat therapy and massage functions, inflexible control methods, and insufficient wearing comfort, failing to meet users' needs for precise, convenient, stable, and comfortable acupoint electrothermal massage.
A wrist-mounted electrothermal massage device for acupoints along the Heart Meridian was designed. It employs a left-right mirror-symmetrical positioning glove mechanism, combined with an electrothermal wrist sleeve mechanism and a control mechanism, to achieve precise contact and synergistic massage of acupoints. It supports touch operation and wireless control via mobile phone. The overall structure is reasonably laid out and adaptable to different hand and arm sizes.
It achieves precise synergy between acupoint electrothermal therapy and massage, enhancing the user experience. It is easy to operate, highly adaptable, and comfortable to wear, meeting diverse acupoint electrothermal massage needs of users.
Smart Images

Figure CN121987486A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of acupoint massage equipment technology, specifically to an electrothermal massage device for the Heart Meridian acupoints on the wrist. Background Technology
[0002] The wrist is home to several important acupoints, including Shenmen, Lingdao, Tongli, and Yinxi, which all belong to the Hand Shaoyin Heart Meridian and are primarily used to treat heart and mental disorders. Applying heat and massaging these acupoints can calm the mind, relieve anxiety, aid sleep, alleviate physical and mental fatigue, and regulate emotions, making them widely used in clinical acupuncture treatment. Currently, there are many types of wrist acupoint care devices on the market, mainly including simple massage devices, simple heat application devices, and a few composite devices that combine heat application and massage functions. Their effects are primarily aimed at relieving pain and discomfort in the local muscles and soft tissues of the wrist; devices that regulate heart and mental disorders by stimulating acupoints on the Heart Meridian are still relatively rare.
[0003] However, existing composite devices have several shortcomings in practical applications. First, the accuracy of acupoint positioning is poor. Most devices lack a dedicated positioning structure, making it difficult to ensure that the massage and heating components stably adhere to specific acupoints on the wrist, resulting in a significant reduction in the therapeutic effect. Second, the synergy between heating and massage functions is poor. Some devices have heating areas that are too large or too small, failing to accurately cover the target acupoint area. Furthermore, the massage components are mostly integral vibration or pressing structures, unable to achieve targeted massage of single or multiple specific acupoints. Third, the control methods lack flexibility. Some devices only support manual operation and lack remote control functionality. The adjustment of heating temperature, massage intensity, and modes is also inconvenient. In addition, the integrated layout of the heating and massage components in existing devices is not rational enough, easily restricting arm movement and affecting wearing comfort. These problems prevent existing wrist acupoint care devices from fully meeting users' needs for precise, convenient, stable, and comfortable acupoint electrothermal massage. Therefore, there is an urgent need for a Shenmen acupoint electrothermal massage device with optimized structure, reliable positioning, good functional synergy, and flexible control. Summary of the Invention
[0004] The purpose of this invention is to address the deficiencies mentioned in the background art by providing a wrist-mounted electrothermal massage device for acupoints along the Heart Meridian.
[0005] The above-mentioned objective of the present invention is achieved through the following technical solution:
[0006] A wrist-mounted electrothermal massage device for acupoints along the Heart Meridian includes a pair of positioning glove mechanisms arranged in a mirror-symmetrical configuration. Each of the outer ring surfaces of the positioning glove mechanisms in the wrist region is equipped with an electrothermal wrist sleeve mechanism, and each of the outer surfaces of the positioning glove mechanisms in the inner arm region is fixed with a control mechanism.
[0007] The positioning glove mechanism includes an elastic fiber glove that fits the left and right hands of the human body, and an elastic fiber wrist sleeve that is woven together with the elastic fiber glove and wrapped around the wrist and forearm of the human body.
[0008] The electric heating wristband mechanism includes a silicone wristband that is wrapped and fixed to the wrist of an elastic fiber glove, and a graphene heating plate that is wrapped and fixed to the outer surface of the silicone wristband. The inner wrist area of the silicone wristband is inlaid with multiple rubber air collection bags arranged in a rectangular array, and each of the air supply ports of the rubber air collection bags is fixed with a hollow silicone head that penetrates the silicone wristband and contacts the acupoint area of the wrist.
[0009] The control mechanism includes a housing, a control motherboard and a lithium battery fixedly connected to the inner cavity of the housing, and a miniature servo air pump fixed to the side wall of the housing. A touch screen is embedded and fixed on the side wall of the housing away from the positioning glove mechanism.
[0010] In the above technical solution, preferably: the elastic fiber gloves fit the left and right palms of the human body respectively, and the elastic fiber wristbands fit the left and right arms of the human body respectively. The elastic fiber gloves and elastic fiber wristbands are used to allow the massage components inside the electric heating wristband mechanism to fit the Lingdao, Tongli, Yinxi, and Shenmen acupoints in the wrist area, as well as the other acupoints in the wrist area.
[0011] In the above technical solution, preferably, the inner ring sidewall of the silicone wristband is tightly connected to the outer ring surface of the elastic fiber glove and the elastic fiber wrist sleeve.
[0012] In the above technical solution, preferably: the silicone wristband has multiple cavities inside for embedding rubber air collection bags and hollow silicone heads, and the area of the silicone wristband near the wrist has multiple openings for the hollow silicone heads to extend out and massage acupoints after inflation.
[0013] In the above technical solution, preferably: the power supply end of the graphene heating element is connected to the power supply module of the lithium battery through a wiring harness, and the silicone wristband is embedded with a temperature sensor that monitors the wrist temperature and the temperature of the graphene heating element.
[0014] In the above technical solution, preferably: the interior of the rubber air collecting bladder and the hollow silicone head are both hollow, and the port of the rubber air collecting bladder away from the hollow silicone head is respectively connected to a soft air tube that extends to the outside of the silicone wristband. The ends of the soft air tubes converge and are connected to an air supply tube, and the end of the air supply tube is connected to the air supply end of the micro servo air pump.
[0015] In the above technical solution, preferably, a miniature electrically controlled air valve is installed at the connection position between the soft air tube and the rubber air collection bag to realize the intermittent inflation and deflation of the hollow silicone head to achieve the massage effect.
[0016] In the above technical solution, preferably: the outer surface of the outer shell and the outer surface of the elastic fiber wristband are fixedly connected by an adhesive, and a charging port for charging the lithium battery is provided on the outer side of the outer shell.
[0017] In the above technical solution, preferably, the control motherboard is provided with a Bluetooth module for mobile phone connection and control, and a temperature control module for controlling the heating temperature of the graphene heating element.
[0018] In the above technical solution, preferably, the touch screen is provided with an interface for controlling the temperature of the graphene heating element, the heating duration, and the inflation / deflation mode of the micro servo air pump.
[0019] As can be seen from the above technical solution, the wrist acupoint electrothermal massage device provided by the present invention has the following beneficial effects compared with the prior art:
[0020] 1. The device of the present invention can realize the dual functions of electric heating and massage of wrist acupoints. The positioning glove mechanism is adapted to the human palm and arm, which can make the relevant components accurately fit the acupoints such as Lingdao, Tongli, Yinxi, and Shenmen on the wrist, ensuring the targeted effect.
[0021] 2. The electric heating wristband mechanism designed in the device of the present invention can realize the synergy of acupoint hot compress and massage, improving the user experience; the control mechanism supports touch operation and wireless connection control with mobile phone, and can flexibly adjust the heating temperature, duration and inflation / deflation massage mode, making it easy to operate;
[0022] 3. The overall structure of the device of the present invention is reasonably designed and has strong wear adaptability, which can be adapted to different sizes of hands and arms, and has good versatility; the sealing treatment of each connection part can prevent dust and moisture from entering and gas leakage, ensuring stable operation of the device; in addition, the lithium battery has a protection mechanism, making it safe and reliable to use, and the memory module can retain frequently used settings, eliminating the need for repeated adjustments, further improving the convenience of use and meeting the diverse wrist electrothermal massage needs of users. Attached Figure Description
[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the accompanying drawings used in the description of the embodiments of the present invention or the prior art will be briefly introduced and explained below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 A schematic diagram of the overall structure of the wrist electrothermal massage mechanism;
[0025] Figure 2This is a schematic diagram of the positioning glove mechanism;
[0026] Figure 3 A schematic diagram of the control mechanism;
[0027] Figure 4 This is a schematic diagram of the electric heating wristband mechanism;
[0028] Figure 5 This is a schematic diagram of the massage head inside the wristband mechanism.
[0029] Appendix Figure 1 -Appendix Figure 5 The correspondence between the components is as follows:
[0030] 1. Positioning glove mechanism; 1-1. Elastic fiber glove; 1-2. Elastic fiber wristband; 2. Electric heating wristband mechanism; 2-1. Silicone wristband; 2-2. Graphene heating element; 2-3. Rubber air collection bladder; 2-4. Hollow silicone head; 3. Control mechanism; 3-1. Outer shell; 3-2. Touch screen; 3-3. Lithium battery; 3-4. Control motherboard; 3-5. Miniature servo air pump. Detailed Implementation
[0031] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the embodiments described below 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. In order to provide a clearer explanation and description of the technical solutions and implementation methods of the present invention, the following describes specific embodiments that implement the preferred technical solutions of the present invention.
[0032] The wrist-mounted acupoint electrothermal massage device of this embodiment includes a pair of positioning glove mechanisms 1 arranged in a mirror image symmetrically. Each positioning glove mechanism 1 has an electrothermal wrist sleeve mechanism 2 on its outer surface in the wrist region, and a control mechanism 3 is fixed to the outer surface of the positioning glove mechanism 1 in the inner arm region. The positioning glove mechanism 1 includes an elastic fiber glove 1-1 adapted to the left and right hands, and an elastic fiber wrist sleeve 1-2 integrally woven with the elastic fiber glove 1-1 and wrapped around the wrist and forearm. The elastic fiber glove 1-1 fits against the left and right palms, and the elastic fiber wrist sleeve 1-2 fits against the left and right arms. Through the fit of the elastic fiber glove 1-1 and the elastic fiber wrist sleeve 1-2, the massage components inside the electrothermal wrist sleeve mechanism 2 correspond to the Lingdao, Tongli, Yinxi, and Shenmen acupoints in the wrist region, and simultaneously form a close fit with other acupoints in the wrist region. The electrically heated wristband mechanism 2 includes a silicone wristband 2-1 that is wrapped and fixed to the wrist of an elastic fiber glove 1-1. The inner sidewall of the silicone wristband 2-1 is tightly connected to the outer surface of the elastic fiber glove 1-1 and the elastic fiber wristband 1-2. A graphene heating element 2-2 is wrapped and fixed to the outer surface of the silicone wristband 2-1. Multiple rubber air-collecting bladders 2-3 arranged in a rectangular array are embedded in the inner wrist area of the silicone wristband 2-1. Hollow silicone heads 2-4 that penetrate the silicone wristband 2-1 and contact the acupoints on the wrist are fixed to the air supply ports of the rubber air-collecting bladders 2-3. The inside of the silicone wristband 2-1 is provided with multiple cavities for the rubber air-collecting bladders 2-3 and the hollow silicone heads 2-4 to be embedded. The area of the silicone wristband 2-1 near the wrist is provided with multiple openings for the hollow silicone heads 2-4 to extend out and massage acupoints after inflation. The positions of the openings correspond to the distribution positions of the acupoints on the wrist, ensuring that the hollow silicone heads 2-4 can accurately act on the target acupoints after extension.
[0033] The power supply end of the graphene heating element 2-2 is connected to the power supply module of the lithium battery 3-3 via a wiring harness. A temperature sensor is embedded inside the silicone wristband 2-1 to monitor the wrist temperature and the temperature of the graphene heating element 2-2. The temperature sensor is connected to the control mainboard 3-4 via a wiring harness, allowing the collected temperature data to be transmitted to the control mainboard 3-4 in real time. Both the rubber air collection bladder 2-3 and the hollow silicone head 2-4 are hollow. The port of the rubber air collection bladder 2-3 furthest from the hollow silicone head 2-4 is connected to a flexible air tube extending through to the outside of the silicone wristband 2-1. The flexible air tubes are arranged to fit the surfaces of the silicone wristband 2-1 and the elastic fiber wristband 1-2. The ends of the flexible air tubes converge and connect to an air supply tube, the end of which is connected to the air supply end of the micro servo air pump 3-5. Miniature electronically controlled air valves are installed at the connection points between the flexible air tube and the rubber air collection bag 2-3. These valves are connected to the control main board 3-4 via wiring harnesses. The control main board 3-4 outputs control signals to intermittently inflate and deflate the hollow silicone head 2-4 to produce a massage effect. Each miniature electronically controlled air valve can independently control the inflation and deflation of its corresponding rubber air collection bag 2-3, allowing adjustment of the movement of one or more hollow silicone heads 2-4 according to the massage needs of different acupoints. The control mechanism 3 includes a housing 3-1. The outer surface of the housing 3-1 is fixedly connected to the outer surface of the elastic fiber wristband 1-2 with adhesive. A charging port for charging the lithium battery 3-3 is provided on the outer side of the housing 3-1. The charging port is connected to the lithium battery 3-3 via wiring, and a dust plug structure is provided at the charging port to prevent dust from entering and affecting the charging contact. A control motherboard 3-4 and a lithium battery 3-3 are fixedly connected inside the outer shell 3-1. The lithium battery 3-3 is connected to the control motherboard 3-4 via wiring, providing power to the control motherboard 3-4 and the electrical components of the entire device. A miniature servo air pump 3-5 is fixed on the side wall of the outer shell 3-1, and the miniature servo air pump 3-5 is connected to the control motherboard 3-4 via wiring, with its working state regulated by the control motherboard 3-4. A touch screen 3-2 is embedded and fixed on the side wall of the outer shell 3-1 away from the positioning glove mechanism 1, and the touch screen 3-2 is connected to the control motherboard 3-4 via wiring, enabling bidirectional signal transmission. The control motherboard 3-4 includes a Bluetooth module for mobile phone connection and control, and a temperature control module for controlling the heating temperature of the graphene heating element 2-2. The Bluetooth module can establish a wireless connection with the mobile phone, supporting remote control of various functions of the device from the mobile phone. The temperature control module receives temperature data transmitted from the temperature sensor and adjusts the heating power of the graphene heating element 2-2 according to the temperature parameters set by the user, so that the heating temperature is maintained within the user's desired range.
[0034] The touchscreen 3-2 features an interface for controlling the temperature and heating duration of the graphene heating element 2-2, as well as the inflation / deflation mode of the micro servo air pump 3-5. The interface includes clearly labeled operation buttons, allowing users to easily adjust parameters and select functions directly via the touchscreen 3-2. The control motherboard 3-4 also integrates a signal processing module to receive various signals from the temperature sensor, touchscreen 3-2, and Bluetooth transmission from the mobile phone. It then transmits the processed control signals to the graphene heating element 2-2, micro servo air pump 3-5, micro electronically controlled air valve, and other actuators, ensuring coordinated operation between these components. The connection points between the silicone wristband 2-1 and the elastic fiber glove 1-1 and elastic fiber wrist sleeve 1-2 are sealed to prevent external dust and moisture from entering the internal cavity and affecting the normal operation of the rubber air collection bag 2-3 and the hollow silicone head 2-4. All connections between the flexible air tube, air supply tube, and other connecting components are sealed to prevent gas leakage and ensure proper inflation / deflation. The lithium battery 3-3 is equipped with overcharge, over-discharge, and overheat protection modules to ensure its safe use and extend its lifespan. The control motherboard 3-4 also includes a memory module that can remember frequently used temperature parameters, charging / discharging modes, and other settings, eliminating the need for repeated adjustments the next time it is used. The layout of all components in the entire device is reasonable, ensuring functionality while also prioritizing wearing comfort and avoiding significant restriction on arm movement. The elastic fiber gloves 1-1 and 1-2 have elastic structures that can adapt to different hand and arm sizes, enhancing the device's versatility. The graphene heating element 2-2 covers the entire wrist area, ensuring that all acupoints receive a suitable temperature. Multiple rubber air collection bladders 2-3 and hollow silicone heads 2-4 are distributed according to the acupoints on the wrist, allowing for simultaneous or individual massage of multiple acupoints to meet the needs of different users.
[0035] The workflow of this technical solution is as follows: The wrist acupoint electrothermal massage device of this embodiment includes a pair of positioning glove mechanisms 1 arranged in a mirror image symmetrically. Each positioning glove mechanism 1 has an electrothermal wrist sleeve mechanism 2 on its outer surface in the wrist region, and a control mechanism 3 is fixed on its outer surface in the inner arm region. The positioning glove mechanism 1 includes an elastic fiber glove 1-1 adapted to the left and right hands, and an elastic fiber wrist sleeve 1-2 integrally woven with the elastic fiber glove 1-1 and wrapped around the wrist and forearm. The elastic fiber glove 1-1 fits against the left and right palms, and the elastic fiber wrist sleeve 1-2 fits against the left and right arms. Through the fit of the elastic fiber glove 1-1 and the elastic fiber wrist sleeve 1-2, the massage components inside the electrothermal wrist sleeve mechanism 2 correspond to the Lingdao, Tongli, Yinxi, and Shenmen acupoints in the wrist region, and simultaneously form a close fit with other acupoints in the wrist region. The electrically heated wristband mechanism 2 includes a silicone wristband 2-1 that is wrapped and fixed to the wrist of an elastic fiber glove 1-1. The inner sidewall of the silicone wristband 2-1 is tightly connected to the outer surface of the elastic fiber glove 1-1 and the elastic fiber wristband 1-2. A graphene heating element 2-2 is wrapped and fixed to the outer surface of the silicone wristband 2-1. Multiple rubber air-collecting bladders 2-3 arranged in a rectangular array are embedded in the inner wrist area of the silicone wristband 2-1. Hollow silicone heads 2-4 that penetrate the silicone wristband 2-1 and contact the acupoints on the wrist are fixed to the air supply ports of the rubber air-collecting bladders 2-3. The inside of the silicone wristband 2-1 is provided with multiple cavities for the rubber air-collecting bladders 2-3 and the hollow silicone heads 2-4 to be embedded. The area of the silicone wristband 2-1 near the wrist is provided with multiple openings for the hollow silicone heads 2-4 to extend out and massage acupoints after inflation. The positions of the openings correspond to the distribution positions of the acupoints on the wrist, ensuring that the hollow silicone heads 2-4 can accurately act on the target acupoints after extension. The power supply end of the graphene heating element 2-2 is connected to the power supply module of the lithium battery 3-3 via a wiring harness. A temperature sensor is embedded inside the silicone wristband 2-1 to monitor the wrist temperature and the temperature of the graphene heating element 2-2. The temperature sensor is connected to the control mainboard 3-4 via a wiring harness, allowing the collected temperature data to be transmitted to the control mainboard 3-4 in real time. Both the rubber air collection bladder 2-3 and the hollow silicone head 2-4 are hollow. The port of the rubber air collection bladder 2-3 furthest from the hollow silicone head 2-4 is connected to a flexible air tube extending through to the outside of the silicone wristband 2-1. The flexible air tubes are arranged to fit the surfaces of the silicone wristband 2-1 and the elastic fiber wristband 1-2. The ends of the flexible air tubes converge and connect to an air supply tube, the end of which is connected to the air supply end of the micro servo air pump 3-5.Miniature electronically controlled air valves are installed at the connection points between the flexible air tube and the rubber air collection bag 2-3. These valves are connected to the control main board 3-4 via wiring harnesses. The control main board 3-4 outputs control signals to intermittently inflate and deflate the hollow silicone head 2-4 to produce a massage effect. Each miniature electronically controlled air valve can independently control the inflation and deflation of its corresponding rubber air collection bag 2-3, allowing adjustment of the movement of one or more hollow silicone heads 2-4 according to the massage needs of different acupoints. The control mechanism 3 includes a housing 3-1. The outer surface of the housing 3-1 is fixedly connected to the outer surface of the elastic fiber wristband 1-2 with adhesive. A charging port for charging the lithium battery 3-3 is provided on the outer side of the housing 3-1. The charging port is connected to the lithium battery 3-3 via wiring, and a dust plug structure is provided at the charging port to prevent dust from entering and affecting the charging contact. A control motherboard 3-4 and a lithium battery 3-3 are fixedly connected inside the outer shell 3-1. The lithium battery 3-3 is connected to the control motherboard 3-4 via wiring, providing power to the control motherboard 3-4 and the electrical components of the entire device. A miniature servo air pump 3-5 is fixed on the side wall of the outer shell 3-1, and the miniature servo air pump 3-5 is connected to the control motherboard 3-4 via wiring, with its working state regulated by the control motherboard 3-4. A touch screen 3-2 is embedded and fixed on the side wall of the outer shell 3-1 away from the positioning glove mechanism 1, and the touch screen 3-2 is connected to the control motherboard 3-4 via wiring, enabling bidirectional signal transmission. The control motherboard 3-4 includes a Bluetooth module for mobile phone connection and control, and a temperature control module for controlling the heating temperature of the graphene heating element 2-2. The Bluetooth module can establish a wireless connection with the mobile phone, supporting remote control of various functions of the device from the mobile phone. The temperature control module receives temperature data transmitted from the temperature sensor and adjusts the heating power of the graphene heating element 2-2 according to the temperature parameters set by the user, so that the heating temperature is maintained within the user's desired range. The touchscreen 3-2 features an interface for controlling the temperature and heating duration of the graphene heating element 2-2, as well as the inflation / deflation mode of the micro servo air pump 3-5. The interface includes clearly labeled operation buttons, allowing users to easily adjust parameters and select functions directly via the touchscreen 3-2. The control motherboard 3-4 also integrates a signal processing module to receive various signals from the temperature sensor, touchscreen 3-2, and Bluetooth transmission from the mobile phone. It then transmits the processed control signals to the graphene heating element 2-2, micro servo air pump 3-5, micro electronically controlled air valve, and other actuators, ensuring coordinated operation between these components. The connection points between the silicone wristband 2-1 and the elastic fiber glove 1-1 and elastic fiber wrist sleeve 1-2 are sealed to prevent external dust and moisture from entering the internal cavity and affecting the normal operation of the rubber air collection bag 2-3 and the hollow silicone head 2-4. All connections between the flexible air tube, air supply tube, and other connecting components are sealed to prevent gas leakage and ensure proper inflation / deflation. The lithium battery 3-3 is equipped with overcharge, over-discharge, and overheat protection modules to ensure the safety of the lithium battery 3-3 and extend its service life.The control motherboard 3-4 also includes a memory module that can remember frequently used temperature parameters, inflation / deflation modes, and other settings, eliminating the need for repeated adjustments the next time it is used. The layout of all components in the entire device is rational, ensuring functionality while also prioritizing wearing comfort and avoiding significant restriction on arm movement. The elastic structure of the elastic fiber gloves 1-1 and elastic fiber wristbands 1-2 adapts to different hand and arm sizes, enhancing the device's versatility. The graphene heating element 2-2 covers the entire wrist area, ensuring that all acupoints receive a suitable temperature. Multiple rubber air collection bladders 2-3 and hollow silicone heads 2-4 are distributed according to the acupoints on the wrist, allowing for simultaneous or individual massage of multiple acupoints to meet the needs of different users.
[0036] This invention is not limited to the preferred embodiments described above. Anyone should understand that structural changes made under the guidance of this invention, and any technical solutions that are the same as or similar to this invention, fall within the protection scope of this invention. Finally, it should be noted that the structures, proportions, sizes, etc., illustrated in the accompanying drawings are only for illustrative purposes to aid those skilled in the art and are not intended to limit the implementation of this application. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, without affecting the effects and objectives of this application, should still fall within the scope of the technical content disclosed in this application.
Claims
1. A wrist-mounted electrothermal massage device for acupoints along the Heart Meridian, comprising a pair of positioning glove mechanisms (1) arranged in a left-right mirror-symmetrical configuration, characterized in that: The outer ring surface of the positioning glove mechanism (1) is provided with an electric heating wrist sleeve mechanism (2) in the wrist area, and the outer surface of the positioning glove mechanism (1) is fixed with a control mechanism (3) in the arm area. The positioning glove mechanism (1) includes an elastic fiber glove (1-1) adapted to the left and right hands of the human body, and an elastic fiber wristband (1-2) woven together with the elastic fiber glove (1-1) and wrapped around the wrist and forearm of the human body. The electric heating wristband mechanism (2) includes a silicone wristband (2-1) that is wrapped and fixed to the wrist of an elastic fiber glove (1-1), and a graphene heating plate (2-2) that is wrapped and fixed to the outer surface of the silicone wristband (2-1). The inner wrist area of the silicone wristband (2-1) is inlaid with a plurality of rubber air collection bags (2-3) arranged in a rectangular array, and each of the air supply ports of the rubber air collection bags (2-3) is fixed with a hollow silicone head (2-4) that penetrates the silicone wristband (2-1) and contacts the acupoint area of the wrist. The control mechanism (3) includes a housing (3-1), a control motherboard (3-4) and a lithium battery (3-3) fixedly connected in the inner cavity of the housing (3-1), and a miniature servo air pump (3-5) fixed on the side wall of the housing (3-1). A touch screen (3-2) is embedded and fixed on the side wall of the housing (3-1) away from the positioning glove mechanism (1).
2. The wrist-mounted electrothermal massage device for acupoints along the Heart Meridian according to claim 1, characterized in that: The elastic fiber gloves (1-1) are respectively fitted to the left and right palms of the human body, and the elastic fiber wrist sleeves (1-2) are respectively fitted to the left and right arms of the human body. The elastic fiber gloves (1-1) and elastic fiber wrist sleeves (1-2) are used to allow the massage components inside the electric heating wrist sleeve mechanism (2) to fit with the four acupoints Shenmen, Yinxi, Tongli and Lingdao in the wrist area.
3. The wrist acupoint electrothermal massage device according to claim 1, characterized in that: The inner ring sidewall of the silicone wristband (2-1) is tightly connected to the outer ring surface of the elastic fiber glove (1-1) and the elastic fiber wrist sleeve (1-2).
4. The wrist-mounted acupoint electrothermal massage device according to claim 1, characterized in that: The silicone wristband (2-1) has multiple cavities inside for the rubber air collection bladder (2-3) and hollow silicone head (2-4) to be embedded, and the area of the silicone wristband (2-1) near the wrist has multiple openings for the hollow silicone head (2-4) to extend out and massage acupoints after being inflated.
5. The wrist-mounted electrothermal massage device for acupoints along the Heart Meridian according to claim 1, characterized in that: The power supply end of the graphene heating element (2-2) is connected to the power supply module of the lithium battery (3-3) via a wiring harness, and the silicone wristband (2-1) is embedded with a temperature sensor that monitors the wrist temperature and the temperature of the graphene heating element (2-2).
6. The wrist-mounted acupoint electrothermal massage device according to claim 1, characterized in that: The interiors of the rubber air collection bag (2-3) and the hollow silicone head (2-4) are both hollow. The port of the rubber air collection bag (2-3) away from the hollow silicone head (2-4) is connected to a soft air tube that extends to the outside of the silicone wristband (2-1). The ends of the soft air tubes converge and are connected to an air supply tube. The end of the air supply tube is connected to the air supply end of the micro servo air pump (3-5).
7. The wrist-mounted electrothermal massage device for acupoints along the Heart Meridian according to claim 6, characterized in that: Miniature electrically controlled air valves are installed at the connection points between the soft air tube and the rubber air collection bag (2-3) to realize the intermittent inflation and deflation of the hollow silicone head (2-4) to achieve a massage effect.
8. The wrist-mounted electrothermal massage device for acupoints along the Heart Meridian according to claim 1, characterized in that: The outer surface of the outer shell (3-1) is fixedly connected to the outer surface of the elastic fiber wristband (1-2) by an adhesive, and a charging port for charging the lithium battery (3-3) is provided on the outer side of the outer shell (3-1).
9. The wrist-mounted electrothermal massage device for acupoints along the Heart Meridian according to claim 1, characterized in that: The control motherboard (3-4) is equipped with a Bluetooth module for mobile phone connection and control, and a temperature control module for controlling the heating temperature of the graphene heating element (2-2).
10. A wrist-mounted electrothermal massage device for acupoints along the Heart Meridian according to claim 1, characterized in that: The touch screen (3-2) has an interface for controlling the temperature of the graphene heating element (2-2), the heating duration, and the inflation / deflation mode of the micro servo air pump (3-5).