Infrared massage physiotherapy instrument
By using a constant-temperature infrared heating tube and heat dissipation components, the problems of insufficient heat penetration into the patient's body and short equipment lifespan in existing technologies have been solved, achieving effective physiotherapy results and increased equipment durability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN XIN EMPRESS TECH CO LTD
- Filing Date
- 2024-12-31
- Publication Date
- 2026-04-21
AI Technical Summary
Existing technologies suffer from problems such as insufficient heat penetration into the patient's body, and short lifespan due to prolonged operation of the heat source and vibrating components.
It uses a constant-temperature infrared heating tube to emit near-infrared rays that penetrate deep into the patient's body for physiotherapy. At the same time, it uses a mounting bracket to support the inner shell to prevent deformation, and uses a heat dissipation component to dissipate heat from the internal components to extend their service life.
It achieves the therapeutic effect of infrared rays penetrating deep into the patient's body, improving the lifespan of the equipment and the patient's experience.
Smart Images

Figure CN224141360U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of medical and health care technology, and in particular relates to an infrared massage therapy device. Background Technology
[0002] Physiotherapy is a method that uses artificial or natural physical factors to act on the human body, causing a beneficial response to achieve the purpose of preventing and treating diseases. It is an important part of rehabilitation therapy. Physical factors induce human reactions through direct local effects and indirect effects on nerves and body fluids, adjusting blood circulation, improving nutritional metabolism, enhancing immune function, regulating nervous system function, and promoting tissue repair. Thus, it eliminates pathogenic factors, improves pathological processes, and achieves the purpose of treating diseases.
[0003] Chinese patent publication number "CN 205359931 U" discloses a vibration heating massager. The document discloses a heating wire and a vibration motor. The heating wire generates heat, which is then conducted to the patient to accelerate the healing process. The vibration motor drives the massage cover to vibrate, thereby massaging the patient's affected area. However, the heating wire in the document is a conventional heat source, and the heat generated is transferred to the patient through contact. The heat cannot penetrate deep into the patient's body. In addition, the heating wire and vibration motor themselves generate heat during operation, resulting in a short service life for the heating wire and vibration motor. Utility Model Content
[0004] The purpose of this utility model is: based on the inventor's own practice and combined with actual usage, in order to address the shortcomings of the existing technology, an infrared massage therapy device was designed to solve the technical problems in the existing technology that the heat cannot penetrate into the patient's body and that the heat generated by the heating source and vibration components during long-term operation leads to a short service life.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] An infrared massage therapy device includes an outer shell, an inner shell, a mounting bracket, a constant temperature infrared heating tube, a top cover, and a heat dissipation component;
[0007] The outer casing is used to protect the internal components, and the outer casing has a first receiving cavity;
[0008] The inner shell is disposed within the first receiving cavity, and the inner shell has a second receiving cavity;
[0009] The mounting bracket is disposed within the second receiving cavity;
[0010] The constant temperature infrared heating tube is snapped into the bottom of the mounting bracket;
[0011] The heat dissipation component is located at the end of the mounting bracket away from the constant temperature infrared heating tube.
[0012] Furthermore, the constant-temperature infrared heating tube is a near-constant-temperature infrared heating tube, which emits near-infrared light.
[0013] Furthermore, a massage assembly is provided at the bottom of the housing. The massage assembly includes a polarizing motor, a motor mounting bracket, a buffer sleeve, a ventilation hood, and a massage cover. The polarizing motor is disposed within the motor mounting bracket, which is engaged with the ventilation hood. The buffer sleeve is disposed between the motor mounting bracket and the ventilation hood. A portion of the motor mounting bracket extends out of the ventilation hood, and the massage cover is engaged with the portion of the motor mounting bracket that extends out of the ventilation hood.
[0014] Furthermore, the polarization motor includes a motor body and a polarizer, the polarizer being connected to the output end of the motor body, and the motor mounting bracket having a first part and a second part, the motor body being disposed in the first part, and the polarizer being disposed in the second part.
[0015] Furthermore, a first through hole is provided at the center of the ventilation hood, the first through hole having the same outer diameter as the second part, the second part extending out of the first through hole, and the outer wall of the first part being connected to the ventilation hood.
[0016] Furthermore, the buffer sleeve is provided with a second through hole, the diameter of which is the same as the outer diameter of the second part. The buffer sleeve provides ventilation for the second part through the second through hole, and the buffer sleeve is fitted onto the outer wall of the first part.
[0017] Furthermore, a connecting part is provided on one side of the massage cover, the connecting part is engaged with the second part, the outer surface of the second part is provided with a protrusion, and the connecting part is provided with a groove. The massage cover is engaged with the second part by the cooperation of the protrusion and the groove.
[0018] Furthermore, the other side of the massage cover is provided with abrasive teeth, which are integrally formed with the massage cover and are made of rubber.
[0019] Furthermore, both the ventilation cover and the massage cover are provided with ventilation slots, which are connected to the second receiving cavity.
[0020] Furthermore, the heat dissipation assembly includes a cooling fan, a cooling motor, and a fan mounting bracket. The cooling fan is installed inside the fan mounting bracket, and the output end of the cooling motor passes through the fan mounting bracket and is connected to the cooling fan. The heat dissipation assembly includes an air inlet and an air outlet. The air outlet is oriented towards the second receiving cavity. A top cover is provided on the top of the housing, and the air inlet is oriented towards the top cover. An air inlet groove is provided on the top cover, and the air inlet groove communicates with the second receiving cavity.
[0021] The beneficial effects of this utility model are as follows: The infrared massage therapy device provided by this utility model can protect the internal components when the device is dropped or bumped into other objects. The first receiving cavity is used to accommodate the internal components. A constant-temperature infrared heating tube at the bottom of the mounting bracket emits infrared rays that penetrate deep into the patient's body, generating heat to help the patient's injured area receive better therapy. The heat generated by the constant-temperature infrared heating tube not only acts on the patient but also irradiates the inner shell. The increased temperature of the inner shell can cause deformation. Therefore, the mounting bracket in the inner shell supports the inner shell and prevents deformation. The heat dissipation component at the top of the mounting cavity blows air through the second receiving cavity to the inner shell, mounting bracket, and constant-temperature infrared heating tube, dissipating heat and extending the service life of the constant-temperature infrared heating tube, inner shell, and mounting cavity. The air carrying heat is blown towards the patient from the bottom of the outer shell. Attached Figure Description
[0022] The following will refer to the appendix. Figures 1 to 13 This section describes the features, advantages, and technical effects of exemplary embodiments of the present invention.
[0023] Figure 1 This is an overall structural view of the physiotherapy device in this utility model;
[0024] Figure 2 This is a top view of the physiotherapy device of this utility model;
[0025] Figure 3 for Figure 2 Sectional view of AA;
[0026] Figure 4 This is an exploded structural view of the physiotherapy device in this utility model;
[0027] Figure 5 This is an exploded structural view of the massage component in this utility model;
[0028] Figure 6 This is a top view of the motor mounting bracket in this utility model;
[0029] Figure 7 for Figure 6 Sectional view of BB;
[0030] Figure 8 This is an overall structural view of the ventilation hood in this utility model;
[0031] Figure 9 This is an overall structural view of the massage cover in this utility model;
[0032] Figure 10 for Figure 9 Sectional view of CC;
[0033] Figure 11 This is an exploded structural view of the heat dissipation component in this utility model;
[0034] Figure 12 This is an overall structural view of the fan mounting bracket in this utility model;
[0035] Figure 13 This is an overall structural view of the buffer sleeve in this utility model.
[0036] In the diagram: 1. Outer shell; 2. Inner shell; 3. Mounting bracket; 4. Constant temperature infrared heating tube; 5. Heat dissipation assembly; 6. Massage assembly; 7. Top cover;
[0037] 11. First receiving cavity;
[0038] 21. Second receiving cavity;
[0039] 51. Cooling fan; 52. Cooling motor; 53. Fan mounting bracket; 54. Air inlet; 55. Air outlet;
[0040] 61. Polarizing motor; 62. Motor mounting bracket; 63. Buffer sleeve; 64. Ventilation cover; 65. Massage cover;
[0041] 71. Air inlet slot;
[0042] 531, air duct 531;
[0043] 611. Motor body; 612. Polarizer;
[0044] 621. First part; 622. Second part; 623. First cavity; 624. Second cavity; 625. Protrusion;
[0045] 631. Second through hole;
[0046] 641. First through hole; 642. Ventilation slot;
[0047] 651. Connecting part; 652. Groove; 653. Grinding teeth. Detailed Implementation
[0048] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains; the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the application; the terms “comprising” and “having”, and any variations thereof, in the specification, claims, and foregoing description of the drawings are intended to cover non-exclusive inclusion.
[0049] In the description of the embodiments of this application, technical terms such as "first" and "second" are used only to distinguish different objects and should not be construed as indicating or implying relative importance or implicitly specifying the number, specific order, or primary and secondary relationship of the indicated technical features. In the description of the embodiments of this application, "multiple" means two or more, unless otherwise explicitly defined.
[0050] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be related to...
[0051] Other embodiments combined.
[0052] In the description of the embodiments of this application, unless otherwise expressly specified and limited, technical terms such as "installation," "connection," "joining," and "fixing" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. For those skilled in the art, the specific meaning of the above terms in the embodiments of this application can be understood according to the specific circumstances.
[0053] The following is in conjunction with the appendix Figures 1 to 13 The present invention will be described in further detail, but this is not intended to limit the scope of the present invention.
[0054] like Figures 1-3 As shown, this embodiment discloses an infrared massage therapy device, including a shell 1, an inner shell 2, a mounting bracket 3, a constant temperature infrared heating tube 4, a top cover 7, and a heat dissipation component 5;
[0055] The outer casing 1 is used to protect the internal components, and the outer casing 1 has a first receiving cavity 11;
[0056] The inner shell 2 is disposed within the first receiving cavity 11, and the inner shell 2 has a second receiving cavity 21;
[0057] The mounting bracket 3 is disposed within the second receiving cavity 21;
[0058] The constant temperature infrared heating tube 4 is snapped into place at the bottom of the mounting bracket 3;
[0059] The heat dissipation component 5 is located at the end of the mounting bracket 3 away from the constant temperature infrared heating tube 4.
[0060] Specifically, when the physiotherapy device falls to the ground or collides with other objects, the outer shell 1 protects the internal components. The first receiving cavity 11 houses these internal components. The constant-temperature infrared heating tube 4, located at the bottom of the mounting bracket 3, emits infrared rays that penetrate deep into the patient's body. These infrared rays generate heat within the patient, aiding in better physiotherapy at the affected area. The heat generated by the constant-temperature infrared heating tube 4 not only affects the patient but also irradiates the inner shell 2, causing it to heat up and deform. Therefore, the mounting bracket 3 within the inner shell 2 supports it, preventing deformation. The heat dissipation component 5, positioned at the top of the mounting space, directs air through the second receiving cavity 21 towards the inner shell 2, mounting bracket 3, and constant-temperature infrared heating tube 4, dissipating heat and extending their lifespan. The heated air is then blown from the bottom of the outer shell 1 towards the patient, further enhancing the physiotherapy effect and improving the patient's experience.
[0061] In this embodiment, the constant temperature infrared heating tube 4 is a near-constant temperature infrared heating tube, which emits near-infrared light.
[0062] Specifically, infrared radiation is divided into near-infrared and far-infrared radiation. The difference between near-infrared and far-infrared radiation lies in their wavelength, thermal effect, and penetration depth. The wavelength of far-infrared radiation is longer than that of near-infrared radiation, so the distinction between them lies in their wavelength. In terms of thermal effect, far-infrared radiation has a stronger thermal effect, producing a uniform erythema and a noticeable warming sensation when it irradiates human skin. However, its penetration is weaker, and the heat only affects the surface of the skin. While the thermal effect of near-infrared radiation is weaker than that of far-infrared radiation, near-infrared radiation has a stronger penetrating ability, allowing it to penetrate deeper into human tissues, thus providing patients with better therapeutic effects.
[0063] like Figure 5As shown, in this embodiment, a massage assembly 6 is provided at the bottom of the outer casing 1. The massage assembly 6 includes a polarization motor 61, a motor mounting bracket 62, a buffer sleeve 63, a ventilation hood 64, and a massage cover 65. The polarization motor 61 is disposed inside the motor mounting bracket 62, and the motor mounting bracket 62 is snapped into the ventilation hood 64. The buffer sleeve 63 is disposed between the motor mounting bracket 62 and the ventilation hood 64. A portion of the motor mounting bracket 62 extends out of the ventilation hood 64. The massage cover 65 is snapped into the portion of the motor mounting bracket 62 that extends out of the ventilation hood 64.
[0064] Specifically, the massage component 6 is designed to enhance the therapeutic effect on the patient. When the polarization motor 61 is working, it drives the massage cover 65 to vibrate. The massage cover 65 is in direct contact with the patient's body. The vibration of the massage cover 65 relaxes the patient's muscle tissue, relieves muscle spasms, and improves blood circulation. The motor mounting bracket 62 is used to limit the body of the polarization motor 61 and prevent the polarization motor 61 from deviating. The working principle of the polarization motor 61 is that by driving the polarizer 612 on the output end of the polarization motor 61 to rotate, an eccentric force is generated. The eccentric force drives the massage cover 65 to vibrate. In other words, the polarization motor 61 does not need to be directly connected to the massage cover 65.
[0065] Meanwhile, the motor mounting bracket 62 can also protect the polarization motor 61. When the polarization motor 61 is working, its polarizer 612 rotates rapidly along the polarization motor 61. Any foreign matter that comes into contact with the polarizer 612 will cause damage to the polarization motor 61.
[0066] The motor mounting bracket 62 is connected to the ventilation hood 64, and the ventilation hood 64 is fixedly connected to the housing. In order to prevent the vibration generated by the polarization motor 61 from damaging the ventilation hood 64, a buffer sleeve 63 that can absorb vibration and buffer is provided between the ventilation hood 64 and the motor mounting bracket 3.
[0067] like Figure 5-7 As shown, in this embodiment, the polarization motor 61 includes a motor body 611 and a polarizer 612. The polarizer 612 is connected to the output end of the motor body 611. The motor mounting bracket 62 has a first part 621 and a second part 622. The motor body 611 is disposed in the first part 621 and the polarizer 612 is disposed in the second part 622.
[0068] Specifically, the first part 621 and the second part 622 are an integral structure. The first part 621 is provided with a first cavity 623, and the second part 622 is provided with a second cavity 624. The first cavity 623 and the second cavity 624 are connected. The motor body 611 is disposed in the first cavity 623. When the polarization motor 61 is working, the motor body 611 will not rotate or change its position in any other way. Therefore, the diameter of the first cavity 623 is the same as the outer diameter of the motor body 611, thereby fixing the motor body 611. The polarizer 612 is disposed in the second cavity 624. The polarizer 612 is the source of vibration, and the polarizer 612 will rotate eccentrically around the output end of the motor body 611. In order to prevent the second part 622 from affecting the rotation of the polarizer 612, the diameter of the second cavity 624 is larger than the outer circumference diameter of the polarizer 612 when it rotates.
[0069] like Figure 8 As shown, in this embodiment, a first through hole 641 is provided at the center of the ventilation hood 64. The outer diameter of the first through hole 641 is the same as that of the second part 622. The second part 622 extends out of the first through hole 641, and the outer wall of the first part 621 is connected to the ventilation hood 64.
[0070] Specifically, the first through hole 641 is used for the second part 622 to pass through. The second part 622 is the position with the strongest vibration. The ventilation cover 64 is fixedly connected to the outer shell 1. In order to prevent the vibration generated by the second part 622 from causing the ventilation cover 64 to detach from the outer shell 1, the first through hole 641 is provided to provide clearance for the second part 622. At the same time, the inner wall of the first through hole 641 contacts the first part 621. The first through hole 641 extends upward out of the wall, and the wall contacts the first part 621, thereby fixing the first part 621.
[0071] like Figure 13 As shown, in this embodiment, the buffer sleeve 63 is provided with a second through hole 631. The diameter of the second through hole 631 is the same as the outer diameter of the second part 622. The buffer sleeve 63 provides ventilation for the second part 622 through the second through hole 631. The buffer sleeve 63 is fitted onto the outer wall of the first part 621.
[0072] Specifically, although the strongest vibration is located in the second part 622, the vibration of the polarization motor 61 is transmitted to the first part 621 when it is working. Therefore, a buffer sleeve 63 is set between the motor mounting bracket 62 and the ventilation hood 64. The buffer sleeve 63 covers the first part 621 so that the first part 621 does not directly contact the ventilation hood 64. The buffer sleeve 63 absorbs the vibration and reduces the impact of the motor mounting bracket 62 on the ventilation hood 64. The second through hole 631 is also to provide clearance for the second part 622 during installation and to better cover the first part 621.
[0073] like Figure 9 As shown, in this embodiment, a connecting part 651 is provided on one side of the massage cover 65. The connecting part 651 is engaged with the second part 622. A protrusion 625 is provided on the outer surface of the second part 622. A groove 652 is provided in the connecting part 651. The massage cover 65 is engaged with the second part 622 through the cooperation of the protrusion 625 and the groove 652.
[0074] Specifically, the massage cover 65 is connected to the second part 622 through the connecting part 651. The vibration generated by the polarization motor 61 when it is working is transmitted to the massage cover 65 through the connecting part 651. The massage cover 65 vibrates and massages the human skin to improve the therapeutic effect.
[0075] On the other hand, such as Figure 7 and Figure 9 As shown, the massage cover 65 is engaged with the latch 625 through the groove 652, so that the massage cover 65 can be disengaged from the second part 622. When the massage cover 65 is not needed, it can be simply removed.
[0076] like Figure 10 As shown, in this embodiment, the other side of the massage cover 65 is provided with a friction tooth 653, which is integrally formed with the massage cover 65 and is made of rubber.
[0077] Specifically, when the massage cover 65 performs vibration therapy, the massage teeth 653 press and stimulate acupoints on the human body, activate blood circulation, and enhance the therapeutic effect. The rubber structure of the massage teeth 653 can reduce discomfort for patients during use.
[0078] This embodiment features multiple massage covers 65 that can be used in rotation. The diameter and softness of the molars 653 on the different massage covers 65 vary. The appropriate massage cover 65 is used according to the area to be massaged. For example, when massaging the head, a massage cover 65 with a smaller diameter and higher softness of the molars 653 is used. During the massage, the smaller diameter and higher softness of the molars 653 can provide a better user experience without causing harm to the user's head. On the other hand, when massaging the shoulders or waist, a massage cover 65 with a larger diameter and lower softness of the molars 653 is used. These areas correspond to the human skeleton, so the lower softness of the molars 653 is required for a deeper massage.
[0079] like Figure 8 and Figure 9 As shown, in this embodiment, both the ventilation cover 64 and the massage cover 65 are provided with ventilation slots 642, which are connected to the second receiving cavity 21.
[0080] Specifically, after the ventilation hood 64 and massage hood 65 are installed, the heat dissipation system dissipates heat from the constant temperature infrared heating tube 4. The air carrying heat is blown out through the ventilation slot 642 and finally comes into contact with the patient's skin. Whether only the ventilation hood 64 is installed or both the ventilation hood 64 and massage hood 65 are installed, the airflow will not be affected because both the ventilation hood 64 and massage hood 65 are equipped with ventilation hood 64.
[0081] On the other hand, in some cases, when the massage cover 65 is not needed to massage the human body, the massage cover 65 can be removed, and the physiotherapy device in this embodiment can be used as a hair dryer.
[0082] like Figure 11 and Figure 12 As shown, in this embodiment, the heat dissipation component 5 includes a heat dissipation fan 51, a heat dissipation motor 52, and a fan mounting bracket 53. The heat dissipation fan 51 is installed in the fan mounting bracket 53. The output end of the heat dissipation motor 52 passes through the fan mounting bracket 53 and is connected to the heat dissipation fan 51. The heat dissipation component 5 includes an air inlet 54 and an air outlet 55. The air outlet 55 is disposed facing the second receiving cavity 21. A top cover 7 is disposed on the top of the outer shell 1. The air inlet 54 is disposed facing the top cover 7. An air inlet groove 71 is disposed on the top cover 7. The air inlet groove 71 is connected to the second receiving cavity 21.
[0083] Specifically, the cooling fan 51 is installed inside the fan mounting bracket 53, which protects the cooling fan 51. Since the cooling fan 51 rotates at high speed during operation, even slight contact with other components can damage it. The fan mounting bracket 53 protects the cooling fan 51. At the same time, the fan mounting bracket 53 is equipped with an air duct 531, which allows the cooling fan 51 to better concentrate airflow, thereby improving the heat dissipation effect. The air inlet slot 71 on the top cover 7 allows external air to be drawn into the inner shell 2 through the cooling fan 51.
[0084] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style of the specification is merely for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
[0085] Based on the disclosure and teachings of the above specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments described above, and any obvious improvements, substitutions, or modifications made by those skilled in the art based on this utility model are within the protection scope of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model.
Claims
1. An infrared massage therapy device, characterized in that: Includes outer shell, inner shell, mounting bracket, constant temperature infrared heating tube, top cover and heat dissipation components; The outer casing is used to protect the internal components, and the outer casing has a first receiving cavity; The inner shell is disposed within the first receiving cavity, and the inner shell has a second receiving cavity; The mounting bracket is disposed within the second receiving cavity; The constant temperature infrared heating tube is snapped into the bottom of the mounting bracket; The heat dissipation component is located at the end of the mounting bracket away from the constant temperature infrared heating tube.
2. The infrared massage physiotherapy instrument according to claim 1, characterized in that: The constant-temperature infrared heating tube is a near-constant-temperature infrared heating tube.
3. The infrared massage physiotherapy instrument according to claim 1, characterized in that: The bottom of the housing is provided with a massage assembly, which includes a polarizing motor, a motor mounting bracket, a buffer sleeve, a ventilation hood, and a massage cover. The polarizing motor is disposed in the motor mounting bracket, which is snapped into the ventilation hood. The buffer sleeve is disposed between the motor mounting bracket and the ventilation hood. A portion of the motor mounting bracket extends out of the ventilation hood, and the massage cover is snapped into the portion of the motor mounting bracket that extends out of the ventilation hood.
4. The infrared massage therapy device according to claim 3, characterized in that: The polarization motor includes a motor body and a polarizer. The polarizer is connected to the output end of the motor body. The motor mounting bracket has a first part and a second part. The motor body is disposed in the first part, and the polarizer is disposed in the second part.
5. The infrared massaging and physiotherapy apparatus according to claim 4, characterized in that: The ventilation hood has a first through hole at its center. The first through hole has the same outer diameter as the second part. The second part extends out of the first through hole, and the outer wall of the first part is connected to the ventilation hood.
6. The infrared massaging and physiotherapy apparatus according to claim 5, characterized in that: The buffer sleeve is provided with a second through hole, the diameter of which is the same as the outer diameter of the second part. The buffer sleeve provides ventilation for the second part through the second through hole, and the buffer sleeve is fitted onto the outer wall of the first part.
7. The infrared massaging and physiotherapy apparatus according to claim 4, characterized in that: The massage cover has a connecting part on one side, which engages with the second part. The outer surface of the second part has a protrusion, and the connecting part has a groove. The massage cover engages with the second part through the cooperation of the protrusion and the groove.
8. The infrared massage physiotherapy instrument according to claim 7, characterized in that: The other side of the massage cover is provided with abrasive teeth, which are integrally formed with the massage cover and are made of rubber.
9. The infrared massaging and physiotherapy apparatus according to claim 3, characterized in that: Both the ventilation cover and the massage cover are provided with ventilation slots, which are connected to the second receiving cavity.
10. The infrared massaging and physiotherapy apparatus according to claim 1, characterized in that: The heat dissipation assembly includes a cooling fan, a cooling motor, and a fan mounting bracket. The cooling fan is installed inside the fan mounting bracket. The output end of the cooling motor passes through the fan mounting bracket and is connected to the cooling fan. The heat dissipation assembly includes an air inlet and an air outlet. The air outlet is oriented towards the second receiving cavity. A top cover is provided on the top of the housing. The air inlet is oriented towards the top cover. An air inlet slot is provided on the top cover and communicates with the second receiving cavity.
Citation Information
Patent Citations
Shake massager that generates heat
CN205359931U