Comfortable meridian instrument
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-26
- Publication Date
- 2026-08-11
AI Technical Summary
上述技术可分别实现振动按摩和间歇式按摩两种模式,由于缺乏有效的减震设计,马达工作时产生的振动会直接传递到使用者的手部,长时间使用容易导致手部疲劳,且通过高频振动产生类似按摩的刺激,刺激效果有限
本实用新型一种握持舒适的经络仪,驱动马达带动传动板转动,传动板带动第二球头围绕第一球头转动,使得按摩板在公转的时保持倾斜状态,能够对按摩部位揉捏按摩,配合按摩凸起的按压作用,按摩效果显著提升;
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Figure CN224612912U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of meridian massage device technology, and in particular to a meridian massage device that is comfortable to hold. Background Technology
[0002] Traditional meridian instruments generate massage-like stimulation through high-frequency vibration, simulating the "shaking" technique in traditional massage. High-frequency vibration can relax muscles, relieve tension and fatigue, promote lymphatic fluid flow, help eliminate toxins from the body, and reduce local edema by promoting lymphatic circulation. Chinese Patent Publication No. CN206745599U discloses a meridian vibration massager, including a protective shell, a shell through hole, and a mode adjustment plate. The outer wall of the protective shell is equipped with an adjustment plate locking device. A massage plate is positioned opposite the mode adjustment plate on the side facing the shell through hole. A massage plate return spring and a guide post are arranged and connected between the mode adjustment plate and the massage plate. Massage columns are arranged on the massage plate. A drive motor is installed inside the protective shell, and a drive cam is fixedly connected to the drive motor. A vibration motor is fixedly installed on the massage plate. A power interface corresponding to the vibration motor and drive motor is provided through the protective shell. By pushing the mode adjustment plate, either the vibration motor or the drive motor can be selected. The drive motor drives the massage columns for intermittent massage via the drive cam, while the vibration motor provides vibration massage, achieving continuous massage of the patient's nerves. Therefore, this device can provide two massage modes, and the massage is effortless. The above technologies can achieve two modes: vibration massage and intermittent massage. Due to the lack of effective shock absorption design, the vibration generated when the motor is working will be directly transmitted to the user's hand. Prolonged use can easily lead to hand fatigue. Moreover, the stimulation effect of producing massage-like stimulation through high-frequency vibration is limited. Utility Model Content
[0003] The purpose of this invention is to provide a meridian instrument that is comfortable to hold, so as to solve the technical problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following solution to the aforementioned technical problems: A comfortable-to-hold meridian device, comprising: The shell has a receiving groove on the side facing the human skin; Massage component, which is located within the receiving groove and in contact with human skin; and A shock-absorbing bracket is connected between the housing and the massage assembly; The massage assembly includes a drive motor, the output end of which is fixed with a first ball head and a transmission plate. The outer side of the first ball head is ball-jointed to a massage plate, and the end of the transmission plate away from the first ball head is fixedly connected to a second ball head. The first ball head and the second ball head are ball-jointed to different positions of the massage plate.
[0005] As a further embodiment of this utility model, the first ball head is located on the extension line of the output end of the drive motor, and the first ball head and the second ball head are staggered vertically.
[0006] As a further embodiment of this utility model, the massage plate has multiple massage protrusions on the side facing the human body, and the side of the massage protrusions that contacts the human skin has a curved structure.
[0007] As a further embodiment of the present invention, the shock-absorbing bracket includes a housing fixed to a drive motor, and at least one first shock-absorbing element is fixed between the housing and the side of the receiving groove facing the human skin.
[0008] As a further embodiment of this utility model, the shock-absorbing bracket also includes second shock-absorbing elements equidistantly distributed around the outer peripheral wall of the cover. One end of the second shock-absorbing element is fixed to the cover, and the end of the second shock-absorbing element away from the cover is fixed to the inner peripheral wall of the receiving groove.
[0009] As a further embodiment of this utility model, a retaining edge is fixed at the edge of the opening of the receiving groove, and a part of the massage board is located inside the retaining edge, while the other part is in contact with human skin.
[0010] As a further embodiment of this utility model, the end of the shell away from human skin is provided with a narrow diameter portion, which gradually widens from the middle to both ends.
[0011] As a further embodiment of this invention, the narrow diameter portion is provided with an inclined platform for mounting physical buttons on the side away from human skin.
[0012] Compared with the prior art, the beneficial effects of this utility model are: This utility model discloses a meridian massager that is comfortable to hold. The drive motor drives the transmission plate to rotate, and the transmission plate drives the second ball head to rotate around the first ball head, so that the massage plate remains tilted during the revolution, which can knead and massage the massage area. Combined with the pressing action of the massage protrusions, the massage effect is significantly improved. This utility model provides a meridian instrument that is comfortable to hold. The first and second shock-absorbing elements respectively achieve vertical and circumferential shock absorption, effectively absorbing the vibration generated when the motor is working, significantly reducing the impact of vibration on the user's hand, improving grip comfort, reducing fatigue caused by prolonged use, and the ergonomic design of the narrow diameter section and inclined table makes holding and operation more convenient and comfortable. Attached Figure Description
[0013] The present invention will be further described below with reference to the accompanying drawings and embodiments: Figure 1 This is a three-dimensional structural diagram of a meridian instrument that is comfortable to hold according to this utility model; Figure 2 This is a side sectional view of a meridian instrument that is comfortable to hold according to this utility model; Figure 3 This is a structural diagram of the massage component in a meridian instrument that is comfortable to hold, according to this utility model. Figure 4 This is a top sectional view of a meridian instrument that is comfortable to hold according to this utility model.
[0014] The components represented by each number in the attached diagram are listed below: 1. Housing; 11. Receiving groove; 111. Enclosure edge; 12. Narrow diameter section; 13. Inclined platform; 2. Massage assembly; 21. Drive motor; 22. First ball head; 23. Transmission plate; 24. Massage plate; 241. Massage protrusion; 25. Second ball head; 3. Shock-absorbing bracket; 31. Cover; 32. First shock-absorbing element; 33. Second shock-absorbing element. Detailed Implementation
[0015] The present invention will be further described below with reference to the embodiments.
[0016] Please see Figure 1-4This utility model provides a comfortable-to-hold meridian massager, including a housing 1, a massage component 2, and a shock-absorbing bracket 3. A PCB board and a lithium battery are installed inside the housing 1. The PCB board controls the operation of electronic components, and the lithium battery provides power to the PCB board and other electronic components. The lithium battery is also electrically connected to a charging port to charge, ensuring the meridian massager's battery life. A receiving groove 11 is provided on the side of the housing 1 facing the human skin. The main function of the receiving groove 11 is to provide an installation position for the massage component 2, ensuring that the massage component 2 can be stably fixed to the housing 1 and can directly contact the human skin. The massage component 2 is located within the receiving groove 11 and comes into contact with the human skin. The direct contact between the massage component 2 and the human skin provides a massage effect. The massage component 2 can employ any of the following: vibration massage, intermittent massage, or kneading massage. The shock-absorbing bracket 3 is connected between the housing 1 and the massage component 2. By absorbing vibration, the shock-absorbing bracket 3 can provide a more stable grip experience. Users will not feel hand soreness or discomfort when using the meridian device for a long time. It can also reduce noise caused by vibration, making the meridian device quieter during use, improving the user experience, and increasing user satisfaction with the product. Furthermore, the massage assembly 2 includes a drive motor 21, the output end of which is fixed with a first ball head 22 and a transmission plate 23. The outer side of the first ball head 22 is ball-jointed to a massage plate 24. The end of the transmission plate 23 away from the first ball head 22 is fixedly connected to a second ball head 25. The first ball head 22 and the second ball head 25 are ball-jointed to different positions of the massage plate 24 respectively. Specifically, two ball joint grooves are provided on the surface of the massage plate 24. The first ball head 22 and the second ball head 25 are respectively embedded in the two ball joint grooves. When the user uses the meridian instrument, the drive motor 21 drives the transmission plate 23 to rotate. The transmission plate 23 drives the second ball head 25 to rotate around the first ball head 22, so that the massage plate 24 can simulate the action of manual kneading.
[0017] Furthermore, the first ball head 22 is located on the extension line of the output end of the drive motor 21, and the first ball head 22 and the second ball head 25 are staggered vertically. Specifically, by staggering the first ball head 22 and the second ball head 25, the massage plate 24 can maintain an inclined state. During the rotation of the massage plate 24, it can better simulate the kneading action in manual massage, providing a more natural and effective massage effect.
[0018] Furthermore, the massage plate 24 is provided with a plurality of massage protrusions 241 on the side facing the human body, and the side of the massage protrusions 241 that contacts the human skin has a curved structure. Specifically, the curved massage protrusions 241 can better conform to the contours of human skin after being pressed, ensuring that the massage stimulation can be evenly transmitted to the skin and muscle tissue, and its ends can more effectively stimulate the meridians, promote blood circulation and relax muscles.
[0019] Furthermore, the shock-absorbing bracket 3 includes a housing 31 fixed to the drive motor 21, and at least one first shock-absorbing element 32 is fixed between the housing 31 and the side of the receiving groove 11 facing the human skin. Specifically, the main function of the first damping element 32 is to absorb the vertical vibration generated when the drive motor 21 is working, which can effectively reduce the impact of the longitudinal vibration generated when the drive motor 21 is working on the housing 1 and the user's hand, and significantly improve the comfort of holding.
[0020] Furthermore, the shock-absorbing bracket 3 also includes second shock-absorbing elements 33 equidistantly distributed around the outer peripheral wall of the cover 31. One end of the second shock-absorbing element 33 is fixed to the cover 31, and the end of the second shock-absorbing element 33 away from the cover 31 is fixed to the inner peripheral wall of the receiving groove 11. Specifically, the second damping element 33 is equidistantly distributed on the outer peripheral wall of the housing 31, which can uniformly absorb vibrations from all directions. It can effectively reduce the impact of lateral vibration generated by the drive motor 21 on the housing 1 and the user's hand, and significantly improve the comfort of holding. Optionally, the damping element can be any one of the following: damping spring, spring damper, airbag, rubber, silicone or polyurethane foam.
[0021] Furthermore, a retaining edge 111 is fixed to the edge of the opening of the receiving groove 11, and a part of the massage plate 24 is located inside the retaining edge 111, while the other part is in contact with human skin; Specifically, the enclosure edge 111 provides some space for the movement of the massage board 24, with most of the massage board 24 located in this space and the other part in contact with the skin. The enclosure edge 111 can restrict the position of the massage board 24 and the cover 31, preventing them from shifting excessively or falling off during operation due to vibration or external force. As a preferred option, to enhance the sealing of the meridian instrument, an annular corrugated sleeve can be connected between the massage plate 24 and the cover 31. The corrugated sleeve is made of silicone or rubber material and can prevent external dust from entering.
[0022] Furthermore, the end of the shell 1 away from human skin is provided with a narrow diameter portion 12, which gradually widens from the middle to both ends; Specifically, the narrow diameter section 12 is similar to a "spindle" or "dumbbell" shape, with a relatively narrow middle section that is easy for users to grip with their fingers, providing a comfortable grip point, and relatively wide ends that can prevent hand slippage, reduce the possibility of misoperation, and improve safety of use.
[0023] Furthermore, the narrow diameter portion 12 is provided with an inclined platform 13 for mounting physical buttons on the side away from human skin; Specifically, the tilted tabletop 13 design makes the physical buttons more in line with the natural operating angle of human fingers. When holding the meridian device, the user can easily press the physical buttons with their thumb, making it convenient to control the meridian device. The user can adjust the working mode, intensity, etc. of the meridian device through the buttons.
[0024] Working principle: When in use, the user holds the narrow diameter part 12 with four fingers and uses the thumb to press the physical button to control the meridian instrument. After the drive motor 21 is powered on, the drive motor 21 drives the transmission plate 23 to rotate. The transmission plate 23 drives the second ball head 25 to rotate around the first ball head 22, so that the massage plate 24 remains tilted during revolution, which can knead and massage the massage area. At the same time, the massage protrusions 241 play a role in pressing the meridian massage, which can increase the massage effect. It is worth noting that the first shock-absorbing element 32 can realize vertical shock absorption, and the second shock-absorbing element 33 can realize circumferential shock absorption, which can effectively absorb and buffer the vibration generated during motor operation. When the meridian instrument is working, it can significantly reduce the impact of vibration on the user's hand, improve the comfort of holding, and reduce discomfort during long-term use.
Claims
1. A meridian instrument that is comfortable to hold, characterized in that, include: The shell (1) has a receiving groove (11) on the side facing the human skin. Massage component (2), which is located within the receiving groove (11) and in contact with human skin; and A shock-absorbing bracket (3) is connected between the housing (1) and the massage assembly (2); The massage component (2) includes a drive motor (21), the output end of which is fixed with a first ball head (22) and a transmission plate (23). The outer side of the first ball head (22) is connected to a massage plate (24). The end of the transmission plate (23) away from the first ball head (22) is fixedly connected to a second ball head (25). The first ball head (22) and the second ball head (25) are respectively connected to different positions of the massage plate (24) via ball joints.
2. The meridian instrument with a comfortable grip according to claim 1, characterized in that: The first ball head (22) is located on the extension line of the output end of the drive motor (21), and the first ball head (22) and the second ball head (25) are staggered vertically.
3. The meridian instrument with a comfortable grip according to claim 1, characterized in that: The massage plate (24) has multiple massage protrusions (241) on the side facing the human body, and the side of the massage protrusions (241) that contacts the human skin has a curved structure.
4. The meridian instrument with a comfortable grip according to claim 1, characterized in that: The shock-absorbing bracket (3) includes a housing (31) fixed to a drive motor (21), and at least one first shock-absorbing element (32) is fixed between the housing (31) and the side of the receiving groove (11) facing the human skin.
5. A meridian instrument with a comfortable grip according to claim 4, characterized in that: The shock-absorbing bracket (3) also includes a second shock-absorbing element (33) distributed equidistantly around the outer peripheral wall of the cover (31). One end of the second shock-absorbing element (33) is fixed to the cover (31), and the end of the second shock-absorbing element (33) away from the cover (31) is fixed to the inner peripheral wall of the receiving groove (11).
6. A meridian instrument with a comfortable grip according to claim 1, characterized in that: The opening edge of the receiving groove (11) is fixed with a retaining edge (111), and a part of the massage plate (24) is located inside the retaining edge (111), while the other part is in contact with human skin.
7. A meridian instrument with a comfortable grip according to claim 1, characterized in that: The shell (1) has a narrow diameter section (12) at one end away from the human skin, and the narrow diameter section (12) gradually widens from the middle to both ends.
8. A meridian instrument with a comfortable grip according to claim 7, characterized in that: The narrow diameter portion (12) has an inclined platform (13) on the side away from human skin for installing physical buttons.
Citation Information
Patent Citations
Main and collateral channels vibration massage appearance
CN206745599U