Vibrating massager
By adopting the design of vibration generation system and flexible connector in the handheld massager, the existing massager's driving structure is complex, high cost and limited service life, and the effects of simple structure, low cost, low wear rate and long service life are achieved.
Patent Information
- Application Number
- CN202420602249.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-26
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-03-26
AI Technical Summary
The existing handheld massagers have complex driving structures, high production costs, high failure rate and limited service life.
The vibration massager design is adopted that includes a vibration generation system and a flexible connector. The vibration generation system generates high-frequency vibrations through a motor, an eccentric counterweight block and a motor frame. The flexible connector flexibly fixes the vibration massage part to the handheld part.
It achieves the effects of simple structure, low production cost, low wear and loss rate and long service life, while improving the effect and quality of vibration massage.
Smart Images

Figure CN222854204U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a massager, in particular to a massager comprising a vibration massage part and a hand-held part. When in use, the vibration massage part generates a vibration force. When the vibration force of the vibration massage part acts on a human body, the vibration massage effect on a specific part of the human body can be achieved. Background Art
[0002] With the continuous improvement of people's quality of life, people now pay more and more attention to fitness exercises. Fitness exercises can strengthen the body and shape the body. After completing fitness exercises, proper muscle massage can relieve fatigue and muscle soreness.
[0003] In order to meet people's needs, manufacturers have developed some muscle massagers, the more typical ones are as follows Figure 1 A handheld massager is shown, which mainly includes a body 1 and a massage head 2, wherein the massage head 2 is assembled at the front end of the body 1, and its main working principle is described as follows.
[0004] The body 1 is provided with a motor and a driving structure, and the massage head 2 is assembled at the front end of the driving structure. When working, the motor drives the driving structure to perform high-speed reciprocating motion back and forth. At the same time, the driving structure drives the massage head 2 to perform high-speed reciprocating motion back and forth. At this moment, when the massage head 2 acts on the human body, the vibration force of the massage head 2 is used to massage the muscles of specific parts of the human body.
[0005] However, the above-mentioned handheld massager still has many disadvantages when in use, which are described below respectively.
[0006] Firstly, the driving structure of the above-mentioned handheld massager is relatively complex, the production cost is relatively high, and the failure rate is also relatively high.
[0007] Secondly, since the driving structure needs to perform high-speed back-and-forth reciprocating motion when working, the movement wear and tear of each component is relatively large during operation, so the overall product life is limited.
[0008] This is considered to be the main disadvantage of traditional technology. Utility Model Content
[0009] The technical solution adopted by the utility model is: a vibration massager, which includes a vibration massage part and a hand-held part, wherein the vibration massage part is connected to the hand-held part, a massage head unit is arranged on the vibration massage part, and the vibration massage part includes a vibration generating system and a flexible connector, wherein the vibration generating system is used to generate high-frequency vibration, and the vibration generating system synchronously drives the vibration massage part to perform high-frequency vibration, wherein the flexible connector is connected between the vibration massage part and the hand-held part, and the flexible connector is used to flexibly fix the vibration massage part on the hand-held part, and by means of the vibration generating system and the flexible connector, the vibration massage part can perform high-frequency vibration relative to the hand-held part.
[0010] A vibration massager comprises a vibration massage part and a hand-held part, wherein the vibration massage part is connected to the hand-held part and a massage head unit is arranged on the vibration massage part.
[0011] The massage head unit comprises a plurality of side massage heads and a plurality of top massage heads, wherein the plurality of side massage heads are dispersedly arranged around the side of the vibration massage part, wherein the plurality of top massage heads are arranged on the top of the vibration massage part.
[0012] The vibration massage part includes a vibration generating system and a flexible connector, wherein the vibration generating system is used to generate high-frequency vibrations, and the vibration generating system synchronously drives the vibration massage part to perform high-frequency vibrations. The vibration generating system is arranged in the vibration massage part, wherein the flexible connector is connected between the vibration massage part and the hand-held part, and the flexible connector is used to flexibly fix the vibration massage part on the hand-held part.
[0013] The vibration generating system includes a motor, an eccentric counterweight and a motor frame, wherein the motor is fixedly arranged in the motor frame, the motor includes a motor stator, a motor rotor and a rotating shaft, the eccentric counterweight is fixedly and eccentrically arranged on the motor rotor of the motor, the flexible connecting body is connected between the motor frame and the handheld part, the motor is an external rotating motor, the motor rotor is a motor rotating shell, and the eccentric counterweight is fixedly and eccentrically arranged on one side of the motor rotating shell.
[0014] A plurality of massage head connection structures are arranged around the motor frame, and a plurality of the lateral massage heads are connected to the plurality of the massage head connection structures in a one-to-one correspondence.
[0015] The motor frame also includes a frame top cover, wherein the frame top cover is arranged on the top of the motor frame, and a plurality of top massage heads are arranged on the outer top of the frame top cover.
[0016] The flexible connector is made of elastic or flexible material, and includes a deformable body, which is connected between the motor frame and the handheld part of the vibration generating system. The flexible connector also includes a motor frame wrapping body, which is wrapped around the outside of the motor frame.
[0017] The flexible connecting body also includes a hard fixing frame, which is made of hard material and is embedded in the deformation body.
[0018] The flexible connecting body also includes a hard anti-slip frame, which is made of hard material and inserted into the deformable body. The top of the hard anti-slip frame is fixedly connected to the bottom of the motor frame.
[0019] The deformation body is provided with a fixing groove and an anti-slip cavity, wherein the hard fixing frame is inserted in the fixing groove, and the hard anti-slip frame is inserted in the anti-slip cavity.
[0020] The flexible connecting body also includes a handle fixing groove, which is arranged on the outer surface of the deformation body, and the top of the hand-held part is clamped in the handle fixing groove.
[0021] The beneficial effects of the utility model are as follows: the utility model provides a vibration massager, which directly and flexibly fixes the vibration massage part on the handheld part through a flexible connector. When working, the vibration generating system 300 drives the vibration massage part 100 to vibrate at high frequency to achieve the effect of vibration massage on the human body.
[0022] The utility model provides a vibration massager which has the advantages of simple structure and low production cost.
[0023] The utility model provides a vibration massager, which has the advantages of simple structure, low wear and tear rate between structures and long product service life.
[0024] The utility model provides a vibration massager, the vibration massage part of which has a large vibration direction range and has the advantage of good vibration massage effect.
[0025] The utility model provides a vibration massager, wherein a flexible connector directly and flexibly fixes a vibration massage part on a hand-held part. The flexible connector can realize a connection function and a shock-absorbing function at the same time. At the same time, the flexible connector can reduce the vibration force transmitted from the vibration massage part to the hand-held part, thereby enhancing the user's feeling of holding the hand-held part and improving the quality of use.
[0026] The utility model provides a vibration massager, the working mode of the internal motor of which is simple and the structure is stable, and the service life of the motor can be greatly prolonged. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a schematic diagram of a muscle massager in the prior art.
[0028] Figure 2 It is a structural schematic diagram of the massager of the utility model.
[0029] Figure 3 It is a vibration schematic diagram of the massager of the utility model.
[0030] Figure 4 It is a schematic diagram of the cross-sectional structure of the massager of the utility model.
[0031] Figure 5 The utility model is a three-dimensional exploded schematic diagram of the massager.
[0032] Figure 6 It is a cross-sectional structural schematic diagram of the first embodiment of the massager motor of the utility model being fixed in the motor frame.
[0033] Figure 7 It is a cross-sectional structural schematic diagram of a second implementation mode of the massager motor of the utility model being fixed in the motor frame.
[0034] Figure 8 It is a schematic diagram of the connection structure of the motor frame and the massage head of the massager of the utility model.
[0035] Fig. 9 The utility model is a schematic diagram of the assembly plate of the motor frame of the massager.
[0036] Fig.10 The figure is a schematic diagram of the working principle of the deformation body of the flexible connector of the massager of the utility model.
[0037] Fig.11 It is a schematic cross-sectional structure diagram of the flexible connector of the massager of the utility model.
[0038] Fig.12 It is a three-dimensional structural schematic diagram of the vibration massage part and the flexible connector of the massager of the utility model.
[0039] Fig.13 The utility model is a three-dimensional exploded schematic diagram of the massager.
[0040] Fig.14 It is an exploded schematic diagram of the massager of the utility model. DETAILED DESCRIPTION
[0041] like Figures 1 to 14 As shown, a vibration massager includes a vibration massage part 100 and a hand-held part 200.
[0042] like Figures 1 to 2 As shown, the vibration massage part 100 is connected to the hand-held part 200.
[0043] When in use, the user holds the hand-held part 200, and the vibration massage part 100 generates a vibration force. When the vibration force of the vibration massage part 100 acts on the human body, it can achieve the effect of vibration massage on specific parts of the human body.
[0044] The vibration massage part 100 is provided with a massage head unit.
[0045] In a specific implementation, the massage head unit includes a plurality of side massage heads 110 and a plurality of top massage heads 120 , wherein the plurality of side massage heads 110 are dispersedly arranged around the sides of the vibration massage part 100 , and wherein the plurality of top massage heads 120 are arranged on the top of the vibration massage part 100 .
[0046] The vibration massage part 100 includes a vibration generating system 300 and a flexible connector 400, wherein the vibration generating system 300 is used to generate high-frequency vibration, and the vibration generating system 300 synchronously drives the vibration massage part 100 to perform high-frequency vibration.
[0047] During specific implementation, the vibration generating system 300 is disposed in the vibration massage part 100 .
[0048] The flexible connector 400 is connected between the vibration massage part 100 and the hand-held part 200 , and the flexible connector 400 is used to flexibly fix the vibration massage part 100 on the hand-held part 200 .
[0049] The vibration generating system 300 and the flexible connector 400 enable the vibration massage part 100 to vibrate at a high frequency relative to the hand-held part 200 .
[0050] The main design idea of the utility model is to flexibly fix the vibration massage part 100 directly on the hand-held part 200 through the flexible connector 400. When working, the vibration generating system 300 drives the vibration massage part 100 to vibrate at high frequency to achieve the effect of vibration massage on the human body. The product produced according to the design of the utility model mainly has the following advantages.
[0051] First, the utility model has the advantages of simple structure and low production cost. Secondly, the utility model has the advantages of simple structure, low wear and loss rate between structures, and long product service life. Thirdly, the vibration massage part 100 of the utility model has a large vibration direction range and has the advantage of good vibration massage effect. Thirdly, the utility model directly and flexibly fixes the vibration massage part 100 on the hand-held part 200 through the flexible connector 400. The flexible connector 400 can realize the shock absorption function while realizing the connection function. The flexible connector 400 can reduce the vibration force transmitted from the vibration massage part 100 to the hand-held part 200, thereby enhancing the user's feeling of holding the hand-held part 200 and improving the quality of use. Finally, the product produced by the design concept of the utility model has a simple internal motor working mode and a stable structure, which can greatly extend the service life of the motor.
[0052] like Figures 4 to 5 As shown, the vibration generating system 300 includes a motor 310, an eccentric counterweight 320 and a motor frame 330, wherein the motor 310 is fixedly arranged in the motor frame 330, the motor 310 includes a motor stator 311, a motor rotor 312 and a rotating shaft 313, the eccentric counterweight 320 is fixedly eccentrically arranged on the motor rotor 312 of the motor 310, and the flexible connecting body 400 is connected between the motor frame 330 and the handheld part 200.
[0053] When working, the motor 310 is energized, and the motor rotor 312 rotates relative to the motor stator 311. With the help of the eccentric counterweight block 320, the motor frame 330 vibrates at a high frequency, so that the vibration generating system 300 drives the vibration massage part 100 to vibrate at a high frequency, so as to achieve the effect of vibration massage of the human body through the vibration massage part 100.
[0054] In the above process, the flexible connector 400 can firstly realize the function of mechanical connection, and secondly, the flexible connector 400 can isolate vibrations of the handheld part 200, thereby achieving the function of shock absorption.
[0055] In a specific implementation, the massage head unit is directly connected to the motor frame 330 to make the transmission of high-frequency vibration more direct.
[0056] During specific implementation, the motor 310 is an external rotating motor, the motor rotor 312 is the motor rotating shell, the eccentric counterweight 320 is fixedly eccentrically arranged on one side of the motor rotating shell, a magnetic pole core is fixedly arranged on the motor rotating shell, and a magnetic pole coil winding is arranged on the motor stator 311.
[0057] In order to stably fix the motor 310 in the motor frame 330 to stabilize the structure, there are multiple implementation methods during the specific implementation, which are described in detail as follows.
[0058] like Figure 6 As shown, in embodiment one, the rotating shaft 313 includes a bottom extension shaft 340, wherein the bottom extension shaft 340 is extended and arranged at the lower end portion of the rotating shaft 313, the bottom extension shaft 340 is located outside the motor 310, and a bottom bearing 341 is arranged at the bottom of the motor frame 330, wherein the bottom extension shaft 340 is arranged in the bottom bearing 341, and the motor 310 is arranged in the motor frame 330 by means of the bottom extension shaft 340 and the bottom bearing 341.
[0059] like Figure 7 As shown, in the second embodiment, the rotating shaft 313 includes a bottom extension shaft 340 and a top extension shaft 350, wherein the bottom extension shaft 340 is extended and arranged at the lower end of the rotating shaft 313, and the top extension shaft 350 is extended and arranged at the upper end of the rotating shaft 313, and the bottom extension shaft 340 and the top extension shaft 350 are both located outside the motor 310, and a bottom bearing 341 is arranged at the bottom of the motor frame 330, and a top bearing 351 is arranged at the top of the motor frame 330, wherein the bottom extension shaft 340 is arranged in the bottom bearing 341, and the top extension shaft 350 is arranged in the top bearing 351, and the bottom of the motor 310 is arranged in the motor frame 330 by means of the bottom extension shaft 340 and the bottom bearing 341, and the top of the motor 310 is arranged in the motor frame 330 by means of the top extension shaft 350 and the top bearing 351.
[0060] The structure of the second embodiment can stably fix the motor 310 in the motor frame 330 to stabilize the structure.
[0061] like Figure 8 As shown, in a specific implementation, a plurality of massage head connection structures 331 are arranged around the motor frame 330, and a plurality of the lateral massage heads 110 are connected to the plurality of the massage head connection structures 331 in a one-to-one correspondence. In practice, in order to facilitate assembly, the massage head connection structure 331 is an externally convex threaded bolt, and the lateral massage heads 110 are screwed on the externally convex threaded bolt.
[0062] like Fig. 9 As shown, in a specific implementation, a mounting plate 332 is connected to the bottom of the motor frame 330 , and the mounting plate 332 is connected to the bottom of the motor frame 330 by screws, and the bottom bearing 341 is disposed in the mounting plate 332 .
[0063] During specific implementation, the motor frame 330 also includes a frame top cover 333 , wherein the frame top cover 333 is covered on the top of the motor frame 330 , a plurality of the top massage heads 120 are arranged on the outer top of the frame top cover 333 , and the top bearing 351 is arranged on the inner bottom of the frame top cover 333 .
[0064] In a specific implementation, the flexible connector 400 is made of an elastic or flexible material, such as rubber, elastic silicone, etc.
[0065] like Fig.10 As shown, the flexible connector 400 includes a deformable body 410, which is connected between the motor frame 330 of the vibration generating system 300 and the hand-held part 200. When the motor 310 is working, the deformable body 410 can make the motor frame 330 vibrate at a high frequency on the hand-held part 200.
[0066] like Figures 11 to 12 As shown, the flexible connector 400 further includes a motor frame wrapping body 420, and the motor frame wrapping body 420 wraps around the outside of the motor frame 330. During specific implementation, the deformation body 410 and the motor frame wrapping body 420 are connected to form a whole, and the two can be processed and formed at one time.
[0067] The flexible connector 400 also includes a hard fixing frame 430, which is made of a hard material, such as hard plastic, stainless steel, etc. The hard fixing frame 430 is embedded in the deformable body 410. When the vibration generating system 300 performs high-frequency vibration, the hard fixing frame 430 is used to limit the maximum deformation value of the deformable body 410 and stabilize the deformable body 410.
[0068] The flexible connecting body 400 also includes a hard anti-detachment frame 440, which is made of a hard material, such as hard plastic, stainless steel, etc. The hard anti-detachment frame 440 is inserted into the deformable body 410, and the top of the hard anti-detachment frame 440 is fixedly connected to the bottom of the motor frame 330. When the vibration generating system 300 performs high-frequency vibration, the hard anti-detachment frame 440 is used to stabilize the motor frame 330 to prevent the vibration generating system 300 from escaping from the handheld part 200.
[0069] During specific implementation, a fixing groove 411 and an anti-slip cavity 412 are provided in the deformable body 410, wherein the hard fixing frame 430 is inserted in the fixing groove 411, and the hard anti-slip frame 440 is inserted in the anti-slip cavity 412. In practice, the hard fixing frame 430 and the hard anti-slip frame 440 are both tubular, and the hard fixing frame 430 and the hard anti-slip frame 440 are concentric tube structures.
[0070] The flexible connector 400 further includes a handle fixing groove 450 , which is disposed on the outer surface of the deformable body 410 , and the top of the hand-held portion 200 is snap-fitted into the handle fixing groove 450 .
[0071] like Figures 13 to 14 As shown, in a specific implementation, the hand-held part 200 includes a first handle cover 210 and a second handle cover 220 , and the first handle cover 210 and the second handle cover 220 are covered together to form the hand-held part 200 .
[0072] The hand-held part 200 also includes an upper fixing ring 230 and a lower fixing ring 240, which are respectively screwed on the upper and lower ends of the hand-held part 200. During the specific implementation, the tops of the first handle cover 210 and the second handle cover 220 are respectively clamped in the handle fixing groove 450 of the flexible connector 400 to complete the assembly and fixation of the flexible connector 400 and the hand-held part 200.
[0073] In a specific implementation, the handheld part 200 also includes a handle protection cover 250, which is sleeved on the outside of the first handle cover 210 and the second handle cover 220 to fix the structure of the handheld part 200 and enhance the user's hand-holding texture.
Claims
1. A vibration massager, characterized in that: The invention comprises a vibration massage part and a hand-held part, wherein the vibration massage part is connected to the hand-held part, and a massage head unit is arranged on the vibration massage part. The vibration massage part includes a vibration generating system and a flexible connector, wherein the vibration generating system is used to generate high-frequency vibrations, and the vibration generating system synchronously drives the vibration massage part to perform high-frequency vibrations, wherein the flexible connector is connected between the vibration massage part and the hand-held part, and the flexible connector is used to flexibly fix the vibration massage part on the hand-held part, and with the help of the vibration generating system and the flexible connector, the vibration massage part can perform high-frequency vibrations relative to the hand-held part.
2. A vibrating massager as claimed in claim 1, characterized in that: The vibration generating system includes a motor, an eccentric counterweight and a motor frame, wherein the motor is fixedly arranged in the motor frame, the motor includes a motor stator, a motor rotor and a rotating shaft, the eccentric counterweight is fixedly and eccentrically arranged on the motor rotor of the motor, and the flexible connector is connected between the motor frame and the handheld part.
3. A vibrating massager as claimed in claim 2, characterized in that: The rotating shaft includes a bottom extension shaft, wherein the bottom extension shaft is extended at the lower end of the rotating shaft, the bottom extension shaft is located outside the motor, and a bottom bearing is arranged at the bottom of the motor frame, wherein the bottom extension shaft is arranged in the bottom bearing, and the motor is arranged in the motor frame by means of the bottom extension shaft and the bottom bearing.
4. A vibrating massager as claimed in claim 2, characterized in that: The rotating shaft includes a bottom extension shaft and a top extension shaft, wherein the bottom extension shaft is extended at the lower end of the rotating shaft, and the top extension shaft is extended at the upper end of the rotating shaft, and both the bottom extension shaft and the top extension shaft are located outside the motor, a bottom bearing is provided at the bottom of the motor frame, and a top bearing is provided at the top of the motor frame, wherein the bottom extension shaft is provided in the bottom bearing, and the top extension shaft is provided in the top bearing, the bottom of the motor is provided in the motor frame by means of the bottom extension shaft and the bottom bearing, and the top of the motor is provided in the motor frame by means of the top extension shaft and the top bearing.
5. A vibrating massager as claimed in claim 2, characterized in that: The flexible connecting body is made of elastic or flexible material and includes a deformable body, which is connected between the motor frame and the handheld part of the vibration generating system.
6. A vibrating massager as claimed in claim 5, characterized in that: The flexible connecting body also includes a motor frame wrapping body, and the motor frame wrapping body wraps around the outside of the motor frame.
7. A vibrating massager as claimed in claim 5, characterized in that: The flexible connecting body also includes a hard fixing frame, which is made of a hard material and is embedded in the deformable body. The flexible connector also includes a hard anti-slip frame, which is made of a hard material and is inserted into the deformable body. The top of the hard anti-slip frame is fixedly connected to the bottom of the motor frame. A fixing groove and an anti-slip cavity are provided in the deformation body, wherein the hard fixing frame is inserted in the fixing groove, and the hard anti-slip frame is inserted in the anti-slip cavity.
8. A vibrating massager as claimed in claim 1, characterized in that: The hand-held part includes a first handle cover and a second handle cover, and the first handle cover and the second handle cover are combined to form the hand-held part. The hand-held part also includes an upper fixing ring and a lower fixing ring, and the upper fixing ring and the lower fixing ring are respectively screwed on the upper and lower ends of the hand-held part.
9. A vibrating massager as claimed in claim 2, characterized in that: The massage head unit includes a plurality of side massage heads and a plurality of top massage heads, wherein the plurality of side massage heads are dispersedly arranged around the sides of the vibration massage part, wherein the plurality of top massage heads are arranged on the top of the vibration massage part. The bottom of the motor frame is connected to a mounting plate, which is connected to the bottom of the motor frame by screws. The motor frame also includes a frame top cover, wherein the frame top cover is arranged on the top of the motor frame, and a plurality of top massage heads are arranged on the outer top of the frame top cover. A plurality of massage head connection structures are arranged around the motor frame, and a plurality of the lateral massage heads are connected to the plurality of the massage head connection structures in a one-to-one correspondence.
10. A vibration massager, characterized in that: The invention comprises a vibration massage part and a hand-held part, wherein the vibration massage part is connected to the hand-held part, and a massage head unit is arranged on the vibration massage part. The massage head unit includes a plurality of side massage heads and a plurality of top massage heads, wherein the plurality of side massage heads are dispersedly arranged around the sides of the vibration massage part, wherein the plurality of top massage heads are arranged on the top of the vibration massage part. The vibration massage part includes a vibration generating system and a flexible connector, wherein the vibration generating system is used to generate high-frequency vibrations, and the vibration generating system synchronously drives the vibration massage part to perform high-frequency vibrations, and the vibration generating system is arranged in the vibration massage part, wherein the flexible connector is connected between the vibration massage part and the hand-held part, and the flexible connector is used to flexibly fix the vibration massage part on the hand-held part, The vibration generating system comprises a motor, an eccentric counterweight and a motor frame, wherein the motor is fixedly arranged in the motor frame, the motor comprises a motor stator, a motor rotor and a rotating shaft, the eccentric counterweight is fixedly and eccentrically arranged on the motor rotor of the motor, the flexible connecting body is connected between the motor frame and the handheld part, the motor is an external rotating motor, the motor rotor is a motor rotating shell, and the eccentric counterweight is fixedly and eccentrically arranged on one side of the motor rotating shell. A plurality of massage head connection structures are arranged around the motor frame, and a plurality of the side massage heads are connected to the plurality of the massage head connection structures one by one. The motor frame also includes a frame top cover, wherein the frame top cover is arranged on the top of the motor frame, and a plurality of top massage heads are arranged on the outer top of the frame top cover. The flexible connector is made of elastic or flexible material, and includes a deformable body connected between the motor frame and the handheld part of the vibration generating system. The flexible connector also includes a motor frame wrapping body, and the motor frame wrapping body is wrapped around the outside of the motor frame. The flexible connecting body also includes a hard fixing frame, which is made of a hard material and is embedded in the deformable body. The flexible connector also includes a hard anti-slip frame, which is made of a hard material and is inserted into the deformable body. The top of the hard anti-slip frame is fixedly connected to the bottom of the motor frame. The deformation body is provided with a fixing groove and an anti-slip cavity, wherein the hard fixing frame is inserted in the fixing groove, and the hard anti-slip frame is inserted in the anti-slip cavity. The flexible connecting body also includes a handle fixing groove, which is arranged on the outer surface of the deformation body, and the top of the hand-held part is clamped in the handle fixing groove.