A detachable device for low-frequency pulse massager
Patent Information
- Application Number
- CN202522513583.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-26
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-26
AI Technical Summary
磁吸结构的连接稳定性不足,在使用过程中容易因肢体活动或轻微外力拉扯而意外脱落,导致治疗中断
[0016]上述提供的一种低频脉冲按摩件的便于拆卸装置通过“夹体+偏心轴+锁紧件”的机械配合,在按摩件两侧用夹体提供刚性支撑,偏心轴贯穿夹体并一端抵接夹体,另一端连接可转动的锁紧件,用户只需转动锁紧件,就能带动偏心轴在夹体内滑动,从而增大或释放对按摩件的夹持力,实现按摩件的锁紧或解锁。提高了按摩件的拆装效率。具有显著的实用价值和经济效益。
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Figure CN224786102U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of massage device technology, and in particular to a device for easy disassembly of a low-frequency pulse massage component. Background Technology
[0002] As low-frequency pulse massagers come into direct contact with the skin and require regular replacement or cleaning, ease of disassembly is crucial.
[0003] However, massage devices are typically secured directly to the main unit or fixed components using miniature screws. While this method provides a secure connection, disassembly is extremely inconvenient. Users must use specialized tools such as screwdrivers, making the process cumbersome, inefficient, and prone to stripping screws due to frequent tightening, severely impacting user experience and daily maintenance. Some methods employ magnetic adsorption for quick disassembly. While these simplify the process, they have significant drawbacks. The magnetic structure lacks connection stability and is prone to accidental detachment due to limb movement or slight external pulling, interrupting treatment. Furthermore, magnetic adsorption struggles to provide continuous and uniform clamping force, potentially affecting the stability of electrode contact with the skin, thus impacting pulsed current conduction and treatment safety.
[0004] It is evident that existing technical solutions face a dilemma in the fixation of massage components: screws provide reliable fastening but have low disassembly efficiency; while quick disassembly methods such as magnetic attraction are difficult to balance the stability and reliability of the connection. Utility Model Content
[0005] In view of this, it is necessary to provide an easy-to-disassemble device for low-frequency pulse massage components to solve the above problems.
[0006] Embodiments of this application provide a device for easy disassembly of a low-frequency pulse massage element, comprising a massage element and a fixing component. One end of the fixing component clamps the massage element, and the other end is electrically connected to a conductive element to generate a low-frequency pulse current. The fixing component further includes: Clamping bodies, with the massage element located between the clamping bodies; An eccentric shaft passes through and penetrates the clamping body, with one end of the eccentric shaft abutting against one side of the clamping body; A locking element is connected to the other end of the eccentric shaft, and the locking element rotates relative to the clamping body about the eccentric shaft, while the eccentric shaft slides within the clamping body, so as to lock or unlock the massage element.
[0007] In at least one embodiment of this application, the easy-to-disassemble device for the low-frequency pulse massage element has the following configurations: in the locked state, the eccentric shaft is attached to the side close to the massage element, and the locking member is attached to the clamp; in the unlocked state, the eccentric shaft is attached to the side away from the massage element, and the locking member is not attached to the clamp.
[0008] In at least one embodiment of this application, the easy-to-disassemble device for the low-frequency pulse massage element has a clamping groove provided in the clamping body, the massage element is located in the clamping groove, and in the locked state, the clamping groove is relatively close to the massage element.
[0009] In at least one embodiment of this application, the easy-to-disassemble device for the low-frequency pulse massage element has a conductive surface on the contact surface between the clamp and the massage element.
[0010] In at least one embodiment of this application, the easy-to-disassemble device for the low-frequency pulse massage element includes a locking member comprising: Handheld part, user-held rotating part; The rotating part has an eccentric shaft passing through it, and the rotating part is located inside the handheld part.
[0011] In at least one embodiment of this application, the detachable device for the low-frequency pulse massage component has a through hole in the rotating part, and the through hole is fitted and connected to the eccentric shaft.
[0012] In at least one embodiment of this application, the easy-to-disassemble device for the low-frequency pulse massage element includes a clamping body comprising: The protrusion, in the locked state, abuts against the handle.
[0013] In at least one embodiment of this application, the easy-to-disassemble device for the low-frequency pulse massage element, wherein the locking element and the eccentric shaft are made of 304 stainless steel.
[0014] In at least one embodiment of this application, the easy-to-disassemble device for the low-frequency pulse massage element has a clamp made of aluminum.
[0015] In at least one embodiment of this application, the low-frequency pulse massage element is a detachable device, wherein the massage element is a physiotherapy scraper.
[0016] The aforementioned easy-to-disassemble device for a low-frequency pulse massage element utilizes a mechanical combination of a clamp, an eccentric shaft, and a locking component. The clamp provides rigid support on both sides of the massage element, while the eccentric shaft passes through the clamp, with one end abutting against it and the other end connected to a rotatable locking component. The user simply rotates the locking component to cause the eccentric shaft to slide within the clamp, thereby increasing or releasing the clamping force on the massage element and locking or unlocking it. This improves the efficiency of assembling and disassembling the massage element, demonstrating significant practical value and economic benefits. Attached Figure Description
[0017] Figure 1 A perspective view of the locked state of an easy-to-disassemble device for a low-frequency pulse massage component. Figure 2 for Figure 1 Enlarged view of the locked state of the easy-to-disassemble device for a low-frequency pulse massage component. Figure 3 A perspective view of the detachable device for a low-frequency pulse massage component in its released state. Figure 4 for Figure 3 Enlarged view of the detachable device of the low-frequency pulse massage component in the released state. Figure 5 for Figure 1 A side cross-sectional view of the locked state of the easy-to-disassemble device for a low-frequency pulse massage component.
[0018] Explanation of main component symbols 100. A device for easy disassembly of a low-frequency pulse massage component; 10. Massage component; 20. Fixing component; 21. Clamp; 22. Eccentric shaft; 23. Locking component; 30. Conductive component. Detailed Implementation
[0019] The embodiments of this application will now be described with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments.
[0020] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or may also have an intervening component. When a component is considered to be "placed" on another component, it can be directly placed on the other component or may also have an intervening component. The terms "top," "bottom," "upper," "lower," "left," "right," "front," "back," and similar expressions used in this article are for illustrative purposes only.
[0021] Embodiments of this application provide a device for easy disassembly of a low-frequency pulse massage component, comprising: Massage device that conforms to human skin; A fixing component, with one end clamping the massage element and the other end electrically connected to a conductive element to generate a low-frequency pulse current, includes: a clamping body, with the massage element located between the clamping bodies; an eccentric shaft passing through and penetrating the clamping body, with one end of the eccentric shaft abutting against one side of the clamping body; and a locking member connected to the other end of the eccentric shaft, which rotates relative to the clamping body around the eccentric shaft and slides within the clamping body to lock or unlock the massage element. The aforementioned easy-to-disassemble device for a low-frequency pulse massage element utilizes the mechanical cooperation of "clamping body + eccentric shaft + locking member." The clamping bodies provide rigid support on both sides of the massage element, the eccentric shaft passes through the clamping body and abuts against it at one end, and the other end is connected to a rotatable locking member. The user only needs to rotate the locking member to cause the eccentric shaft to slide within the clamping body, thereby increasing or releasing the clamping force on the massage element and locking or unlocking it. This improves the efficiency of assembling and disassembling the massage element and has significant practical value and economic benefits. The following detailed description of some embodiments of this application is provided in conjunction with the accompanying drawings. Unless otherwise specified, the following embodiments and features can be combined with each other.
[0022] Please see Figure 1 - Figure 5 The embodiments of this application provide an easy-to-disassemble device 100 for a low-pulse massage element, including a massage element 10, a fixing component 20, and a conductive component 30, wherein the fixing component 20 includes a clamp 21, an eccentric shaft 22, and a locking component 23.
[0023] Specifically, the massage element 10 is a component that comes into contact with human skin. Its main function is to transmit a massage effect to the skin through low-frequency pulsed current, thereby relieving fatigue and relaxing muscles. Because the massage element 10 is in direct contact with human skin, it can effectively transmit current pulses, ensuring the accuracy and comfort of the massage effect.
[0024] Furthermore, the clamp 21 is used to fix the massage element 10 in a proper position, allowing the massage element 10 to stably contact the skin. The clamp 21 is designed to ensure that the massage element 10 will not move or fall off during use. Through precise structural design and fixing function, the clamp 21 ensures that the massage element 10 remains stable during use, effectively preventing a reduction in massage effect due to movement of the massage element 10. An eccentric shaft 22 passes through and through the clamp 21, enabling the massage element 10 to achieve locking and unlocking functions. One end of the eccentric shaft 22 contacts one side of the clamp 21, and the other end is connected to the locking member 23. The eccentric shaft 22 adjusts the clamping force through rotation and sliding. In the locked state, the eccentric shaft 22 helps to fix the massage element 10 and prevent it from falling off; in the unlocked state, the eccentric shaft 22 slides to release the clamping force, allowing the massage element 10 to be easily removed. The locking member 23 is connected to the other end of the eccentric shaft 22 and can rotate around the eccentric shaft 22 to control the locking and unlocking states of the massage element 10.
[0025] Furthermore, in the locked state, the eccentric shaft 22 is tightly pressed against the clamping body 21 on one side of the massage element 10 by rotation and sliding. At this time, the locking member 23 forms a stable contact with the clamping body 21, providing a continuous clamping force to ensure that the massage element 10 is fixed in the proper position and prevents loosening or falling off. With this structure, the massage element 10 will not shift or fall off during use, maintaining a stable massage effect and enhancing the safety and comfort of use.
[0026] In the unlocked state, the eccentric shaft 22 slides to the side away from the massage element 10, the locking element 23 separates from the clamp 21, releasing the clamping force, and the user can easily remove the massage element 10. This simple unlocking mechanism allows users to easily disassemble the massage element 10, facilitating cleaning, maintenance, and replacement. This design greatly improves the ease of use and maintainability of the device.
[0027] Specifically, the eccentric shaft 22, through rotation and sliding, ensures that the massage element 10 is securely clamped in the fixing assembly 20. In the locked state, one side of the eccentric shaft 22 is in contact with one side of the massage element 10, ensuring that the clamp 21 applies a continuous clamping force to the massage element 10, preventing the massage element 10 from loosening or falling off. This design allows the massage element 10 to maintain a stable fixed position, ensuring the continuity and stability of the massage effect during use. This design also prevents the massage element 10 from easily shifting or falling off during use, enhancing the safety of the massage device. Keeping the massage element 10 in the position desired by the user helps achieve a consistent massage effect, improving the accuracy and reliability of the massage effect.
[0028] Furthermore, in the locked state, the locking member 23 forms a tight contact with the clamping body 21, providing a strong clamping force to ensure that the massage element 10 will not loosen or fall off during use. The cooperative design of the locking member 23 and the clamping body 21 prevents the massage element 10 from sliding or falling off during use, ensuring the stability of the device. This structure greatly improves the fixation of the massage element 10, reduces discomfort caused by loosening of the massage element 10, and enhances the comfort and stability of use. The function of the locking member 23 is to ensure that the massage element 10 is firmly fixed in the proper position and prevents it from shifting during massage. In the unlocked state, the other side of the eccentric shaft 22 (i.e., the side away from the massage element 10) separates from the massage element 10, releasing the clamping force. At this time, the massage element 10 can be easily removed for disassembly and cleaning. This sliding process of the eccentric shaft 22 realizes the locking and unlocking mechanism, making it convenient for user operation. In the unlocked state, the release of the massage element 10 from the clamp 21 ensures that the user can quickly disassemble the massage element 10 for cleaning, maintenance, or replacement, thereby improving the maintainability and ease of use of the device. This design simplifies the disassembly process of the massage element 10, providing a better user experience, especially in application scenarios where frequent cleaning or replacement of the massage element 10 is required. In the unlocked state, the locking element 23 separates from the clamp 21, releasing the clamping force, and the massage element 10 can be easily removed. At this time, the locking element 23 no longer exerts force on the clamp 21, allowing the massage element 10 to be freely removed from the clamp 21. The design of releasing the clamping force ensures the simplicity of the disassembly process, allowing the user to quickly disassemble the massage element 10 without complicated operating steps. This design improves the maintenance and operating efficiency of the device, especially in scenarios where regular cleaning or replacement of the massage element 10 is required, the unlocking mechanism provides great convenience.
[0029] Specifically, the clamping body 21 provides a dedicated space for the massage element 10 by creating a clamping groove in its structure, allowing the massage element 10 to be accurately and securely clamped. The purpose of the clamping groove design is to ensure that the massage element 10 is not easily moved or loosened within the clamping body 21, thereby ensuring stability during the massage process. The clamping groove provides a fixed support for the massage element 10, allowing it to remain in a suitable working position. This design improves the stability of the massage device and prevents the massage element 10 from shifting position or falling off during use. In addition, the clamping groove design makes the device more compact, facilitating assembly and disassembly, and improving the overall convenience of the device.
[0030] Furthermore, in the working state, the massage element 10 is fixed within the clamping body 21 via the clamping groove. Once positioned within the clamping groove, the massage element 10 can operate stably under the support of the clamping body 21, preventing any unnecessary displacement or vibration and ensuring the accuracy of the massage effect. This design effectively prevents the massage element 10 from sliding or loosening during use, ensuring it always remains in the correct working position, thereby improving the stability of the massage effect. In addition, ensuring a close fit between the massage element 10 and the clamping groove enhances the tight contact between the massage element 10 and the clamping body 21, contributing to improved clamping force and equipment safety.
[0031] Furthermore, in the locked state, the clamping groove fully engages with the massage element 10, ensuring that the clamp 21 tightly holds the massage element 10. At this time, the locking element 23, through its cooperation with the clamp 21, firmly secures the massage element 10, preventing any loosening or detachment during use. In the locked state, the tight contact between the massage element 10 and the clamping groove provides sufficient clamping force, ensuring the stability and effectiveness of the massage element 10 during use. The massage element 10 is less prone to displacement or detachment, maintaining a consistent massage effect. In addition, the design of the clamping groove allows for a tighter contact between the massage element 10 and the clamp 21, further improving the comfort of the device; the user will not experience discomfort due to movement of the massage element 10.
[0032] Specifically, the contact surface between the clamp 21 and the massage element 10 is designed to be conductive. This design not only achieves physical clamping between the clamp 21 and the massage element 10, but also ensures that the low-frequency pulse current is effectively transmitted to the massage element 10 through the conductive surface. The conductive surface of the clamp 21 and the contact surface of the massage element 10 cooperate to ensure that the current can be smoothly transmitted during the massage process, providing a stable low-frequency pulse electrotherapy effect.
[0033] Furthermore, by designing the contact surface of the clamp 21 as a conductive surface, it is ensured that the current can be effectively transmitted to the interior of the massage element 10 during use, thereby enhancing the electrotherapy effect. The conductive surface design reduces potential impedance losses during current contact and improves the efficiency of the low-frequency pulse current.
[0034] Specifically, the locking member 23 includes a handle and a rotating part. The handle provides a convenient grip for the user, allowing the user to easily rotate the locking member 23 to lock or unlock the massage member 10, thereby improving the convenience and comfort of operation. The rotating part is designed to allow the eccentric shaft 22 to pass through it, ensuring that the eccentric shaft 22 can move smoothly during rotation, thereby controlling the clamping state of the clamp 21 on the massage member 10.
[0035] Furthermore, users can precisely adjust the clamping force through rotation, maintaining the stability of the massage element 10 and preventing it from loosening or falling off during use, thereby enhancing the continuity and comfort of the massage effect. After the eccentric shaft 22 passes through the rotating part, the clamping force can be adjusted by rotation. In the locked state, it pushes the clamp 21 to tightly clamp the massage element 10, ensuring stability. In the unlocked state, the movement of the eccentric shaft 22 releases the clamping force, allowing the massage element 10 to be easily disassembled. This design simplifies the locking and unlocking process, improving the stability of the device, ease of use, and reliability of the massage effect.
[0036] Specifically, the through hole in the rotating part allows the eccentric shaft 22 to be tightly connected to the rotating part through the hole, ensuring synchronous movement of the two during rotation, thereby adjusting the clamping state of the clamp 21 on the massage piece 10. The tight fit between the through hole and the eccentric shaft 22 ensures smooth rotation operation and avoids jamming caused by weak connection or improper design.
[0037] Furthermore, the through hole in the rotating part allows the eccentric shaft 22 to be tightly connected to the rotating part through the hole, ensuring synchronous movement of the two during rotation, thereby adjusting the clamping state of the clamp 21 on the massage member 10. The tight fit between the through hole and the eccentric shaft 22 ensures smooth rotation operation and avoids jamming caused by weak connection or improper design.
[0038] Specifically, the protrusion in the clamp 21 abuts against the handle of the locking member 23 in the locked state, forming a stable mechanical connection. The protrusion serves as a guide and support, ensuring a secure connection between the clamp 21 and the massage member 10, and effectively transmitting clamping force to prevent the massage member 10 from loosening or falling off during use. Through the design of the protrusion, the connection between the locking member 23 and the clamp 21 is tighter, ensuring that the massage member 10 is always kept in the proper position.
[0039] Furthermore, in the locked state, the contact between the protrusion and the handle forms a stable support point, ensuring the massage component 10 is firmly clamped and not easily slipped off or shifted, thus enhancing the stability of the device. Simultaneously, the user can easily adjust the clamping force by rotating the handle, utilizing the supporting effect of the protrusion, simplifying operation and improving the ease of use of the device.
[0040] Specifically, the locking element 23 and the eccentric shaft 22 are made of 304 stainless steel, which is corrosion-resistant, high-temperature resistant, and high-strength. This ensures stability under long-term use and frequent operation, improving durability and reliability, and guaranteeing stable operation of the equipment in humid or high-temperature environments. The wear resistance and oxidation resistance of 304 stainless steel further enhance the safety and service life of the equipment. The clamping body 21 is made of aluminum, which is lightweight, easy to process, and has good thermal conductivity, reducing the weight of the equipment, enhancing ease of operation, and effectively preventing overheating. The aluminum design also ensures that the clamping body 21 provides stable clamping force without affecting the performance of the equipment.
[0041] Furthermore, the massage component 10, acting as a therapeutic scraping tool, combines low-frequency pulse electrotherapy and physical massage to effectively soothe muscles, promote blood circulation, and relieve fatigue, providing multi-functional therapeutic effects and enhancing user experience and treatment outcomes. This design offers better stability, convenience, and therapeutic benefits, meeting users' needs for multi-functionality, long-term durability, and comfortable use.
[0042] Therefore, the aforementioned easy-to-disassemble device for a low-frequency pulse massage element utilizes a mechanical combination of a clamping body, an eccentric shaft, and a locking element. The clamping body 21 provides rigid support on both sides of the massage element 10. The eccentric shaft 22 passes through the clamping body 21, with one end abutting against it and the other end connected to a rotatable locking element 23. The user only needs to rotate the locking element 23 to cause the eccentric shaft 22 to slide within the clamping body 21, thereby increasing or releasing the clamping force on the massage element 10, thus locking or unlocking it. This improves the efficiency of assembling and disassembling the massage element 10 and has significant practical value and economic benefits.
[0043] The above description is merely an embodiment of this application. It should be noted that those skilled in the art can make improvements without departing from the inventive concept of this application, but these improvements all fall within the protection scope of this application.
Claims
1. A device for easy disassembly of a low-frequency pulse massage component, characterized in that, include: Massage device that conforms to human skin; A fixing component, one end of which clamps the massage element, and the other end of which is electrically connected to a conductive element to generate a low-frequency pulse current, the fixing component comprising: Clamping bodies, with the massage element located between the clamping bodies; An eccentric shaft passes through and penetrates the clamping body, with one end of the eccentric shaft abutting against one side of the clamping body; A locking element is connected to the other end of the eccentric shaft, and the locking element rotates relative to the clamping body about the eccentric shaft, while the eccentric shaft slides within the clamping body, so as to lock or unlock the massage element. In the locked state, the eccentric shaft rotates and slides to press against the clamping body on one side of the massage piece; at this time, the locking element and the clamping body form a stable contact, providing a continuous clamping force to ensure that the massage piece is fixed in the proper position and prevents it from loosening or falling off. In the unlocked state, the eccentric shaft slides to the side away from the massage piece, the locking piece separates from the clamp, releasing the clamping force, and the user can easily remove the massage piece.
2. The easy-to-disassemble device for the low-frequency pulse massage component according to claim 1, characterized in that, In the locked state, the eccentric shaft is close to the side of the massage member, and the locking member is in contact with the clamping body; In the unlocked state, the eccentric shaft is attached to the side away from the massage component, and the locking component is not attached to the clamp.
3. The easy-to-disassemble device for the low-frequency pulse massage component according to claim 1, characterized in that, The clamp body has a clamping groove, the massage element is located in the clamping groove, and in the locked state, the clamping groove is relatively fitted to the massage element.
4. The easy-to-disassemble device for the low-frequency pulse massage component according to claim 1, characterized in that, The contact surface between the clamp and the massage element is designed to be conductive.
5. The easy-to-disassemble device for the low-frequency pulse massage component according to claim 1, characterized in that, The locking element includes: Handheld part, user-held rotating part; The rotating part has an eccentric shaft passing through it, and the rotating part is located inside the handheld part.
6. The easy-to-disassemble device for the low-frequency pulse massage component according to claim 5, characterized in that, The rotating part has a through hole, which is fitted and connected to the eccentric shaft.
7. The easy-to-disassemble device for the low-frequency pulse massage component according to claim 5, characterized in that, The clamp body includes: The protrusion, in the locked state, abuts against the handle.
8. The easy-to-disassemble device for the low-frequency pulse massage component according to claim 1, characterized in that, The locking element and the eccentric shaft are made of 304 stainless steel.
9. The easy-to-disassemble device for the low-frequency pulse massage component according to claim 1, characterized in that, The clamp is made of aluminum.
10. The easy-to-disassemble device for the low-frequency pulse massage component according to claim 1, characterized in that, The massage device is a physiotherapy scraping board.