Massager

By designing a massager including a massage component, a transmission component and a drive component, the problem of a single massage mode of existing massagers is solved, multiple massage modes are provided, and the massage effect is improved.

CN223474080UActive Publication Date: 2025-10-28DONGGUAN QIANHE ELECTRONICS TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422157922.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-10-28
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

The existing massagers have a single massage mode and are unable to provide a better massage effect.

Method used

A massager is designed, which includes a massage component, a transmission component and a drive component. The transmission component drives the massage element to perform telescopic and rotational motions, and combined with the vibration function of the vibrating element, multiple massage modes are provided.

Benefits of technology

A variety of massage methods are realized, and the massage effect is improved.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223474080U_ABST
    Figure CN223474080U_ABST
Patent Text Reader

Abstract

The utility model provides a massager which comprises a massage assembly, a transmission assembly connected with the massage assembly and a driving assembly. The massage assembly comprises a massage part and a vibration part, and the vibration part drives the massage part to vibrate for massage. And the driving assembly drives the massage piece to do telescopic motion and rotary motion through the transmission assembly for massage. The massager provided by the utility model can provide various massage modes for a user, and has a better massage effect.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of health care massage equipment technology, and in particular to a massager. Background Technology

[0002] With the increasingly fast pace of life, people face greater work pressure, often working overtime to complete tasks. After a stressful day, the body becomes fatigued, and to relieve this fatigue and maintain physical and mental health, people generally use massage devices. For example, people use massage devices to massage their back, neck, hands, legs, waist, and feet to relieve fatigue. However, existing massage devices have limited massage methods and cannot provide optimal massage effects. Utility Model Content

[0003] In view of the above-mentioned defects in the prior art, the present invention provides a massager, which aims to solve the problem that the existing massagers have a single massage mode and cannot provide a better massage effect.

[0004] This utility model provides a massager, comprising:

[0005] A massage assembly includes a massage element and a vibrating element, wherein the vibrating element drives the massage element to vibrate;

[0006] A transmission component, connected to the massage component; and

[0007] The drive assembly drives the massage element to perform telescopic and rotational movements via the transmission assembly.

[0008] Furthermore, the transmission assembly includes:

[0009] The rotating component, connected to the drive assembly, is provided with at least one guide groove that is spirally or inclinedly arranged;

[0010] The abutment abuts against the guide groove;

[0011] Movable component, used to fix the supporting component; and

[0012] A connector is connected to the massage assembly. The connector is movably accommodated in the rotating member and rotatably connected to the moving member. When the rotating member rotates, it drives the connector and the massage assembly to rotate together. The abutment interacts with the groove wall of the guide groove, causing the abutment to drive the moving member, the connector, and the massage assembly to extend and retract.

[0013] Furthermore, the rotating component has a first receiving groove, and the connecting component is movably received in the first receiving groove. When the rotating component rotates, the groove wall of the first receiving groove drives the connecting component to rotate as well.

[0014] Furthermore, the rotating component also has a second receiving groove spaced apart from the first receiving groove, and the output shaft of the drive assembly is received in the second receiving groove.

[0015] Furthermore, the connector includes:

[0016] The first connecting part is movably accommodated in the rotating member;

[0017] The second connecting part is connected to the massage component; and

[0018] The third connecting part is connected to the first connecting part and / or the second connecting part, and is rotatably connected to the movable part.

[0019] Furthermore, the second connecting portion is inclined to the first connecting portion; or, the second connecting portion is straight to the first connecting portion.

[0020] Furthermore, the abutment includes:

[0021] The resisting part; and

[0022] Mounting part, used for mounting the supporting part;

[0023] The movable component includes:

[0024] A first through hole is used to accommodate the rotating component; and

[0025] The receiving part includes a receiving groove and a first through hole communicating with the first through hole. The mounting part is received in the receiving groove, and the supporting part passes through the first through hole and abuts against the guide groove.

[0026] Furthermore, the transmission assembly further includes a mounting member installed on the drive assembly, and the movable member is movably sleeved outside the mounting member. The mounting member includes:

[0027] The second through hole, in which the rotating member is rotatably accommodated;

[0028] The second through hole communicates with the second through hole, and the abutting member passes through the second through hole and abuts against the guide groove.

[0029] Furthermore, the transmission assembly also includes:

[0030] A fixing member is used to connect the connecting member and the moving member. The fixing member has a third through hole through which the connecting member rotatably passes and is connected to the massage assembly.

[0031] Furthermore, the massage component also includes:

[0032] A connecting part is connected to the massage element and the moving element, and the vibrating element is accommodated in the connecting part.

[0033] In this invention, the massager includes a massage component, a transmission component connected to the massage component, and a drive component. The massage component includes a massage element and a vibrating element; the vibrating element drives the massage element to vibrate, thus providing a massage. The drive component, through the transmission component, drives the massage element to perform telescopic movements (i.e., movements towards and away from the drive component) and rotational movements (i.e., circular movements around its axis), thereby providing a massage. Thus, the massager can provide users with multiple massage modes and has a superior massage effect. Attached Figure Description

[0034] To more clearly illustrate the solution of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0035] Figure 1 This is a schematic diagram of the structure of the massager according to the first embodiment of this utility model.

[0036] Figure 2 yes Figure 1 An exploded view of the massager shown.

[0037] Figure 3 yes Figure 1 An exploded view of the massager from another angle.

[0038] Figure 4 yes Figure 1 The massager shown is a cross-sectional view.

[0039] Figure 5A yes Figure 2 The diagram shows the structure of the rotating component of the massager.

[0040] Figure 5B yes Figure 2 A schematic diagram of the rotating component of the massager from another angle.

[0041] Figure 6 yes Figure 2 The diagram shows the structure of the support component of the massager.

[0042] Figure 7 yes Figure 2 A schematic diagram of the structure of the first connector of the massager shown.

[0043] Figure 8A yes Figure 2 The diagram shows the structure of the moving part of the massager.

[0044] Figure 8B yes Figure 2 A schematic diagram of the moving part of the massager from another angle.

[0045] Figure 9A yes Figure 2 A schematic diagram of the structure of the first mounting component of the massager shown.

[0046] Figure 9B yes Figure 2 A structural schematic diagram of the first mounting component of the massager from another angle.

[0047] Figure 10A yes Figure 2 A schematic diagram of the fixing component of the massager shown.

[0048] Figure 10B yes Figure 2 A schematic diagram of the fixing component of the massager from another angle.

[0049] Figure 11 yes Figure 2 The diagram shows the structure of the drive unit of the massager.

[0050] Figure 12A yes Figure 2 A schematic diagram of the structure of the second mounting component of the massager shown.

[0051] Figure 12B yes Figure 2 A structural schematic diagram of the second mounting component of the massager from another angle.

[0052] Figure 13 This is a schematic diagram of a portion of the structure of the massager according to the second embodiment of this utility model.

[0053] Figure 14 yes Figure 13 An exploded view of the massager shown.

[0054] Figure 15 yes Figure 13 The massager shown is a cross-sectional view.

[0055] Figure 16 yes Figure 14 The diagram shows the structure of the rotating component of the massager.

[0056] Figure 17A yes Figure 14 The diagram shows the structure of the moving part of the massager.

[0057] Figure 17B yes Figure 14 A schematic diagram of the moving part of the massager from another angle.

[0058] Figure 18 yes Figure 14 A schematic diagram of the structure of the first connector of the massager shown.

[0059] Figure 19 yes Figure 14 A schematic diagram of the structure of the first mounting component of the massager shown.

[0060] Figure 20A yes Figure 14 A schematic diagram of the structure of the second connector of the massager shown.

[0061] Figure 20B yes Figure 14 A schematic diagram of the second connector of the massager from another angle.

[0062] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0063] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0064] Reference Figure 1-1 2. The first embodiment of this utility model provides a massager 100, which can be used to massage various parts of the human body, including the back, head, shoulders, neck, hands, legs, waist, abdomen, and feet. Specifically, the massager 100 can be a back massager, head massager, shoulder and neck massager, hand massager, waist massage pad, abdominal massager, leg massager, foot massager, massage chair, or massage chair cushion, etc. The above is merely an example of the uses of the massager 100 of this utility model and is not a limitation. Users can use the massager 100 according to their own needs and preferences.

[0065] The massager 100 includes a massage component 10, a transmission component 20 connected to the massage component 10, and a drive component 30. The massage component 10 includes a massage element 11 and a vibrating element 12. The vibrating element 12 drives the massage element 11 to vibrate, thus providing a massage. The drive component 30, through the transmission component 20, drives the massage element 11 to perform telescopic movements (i.e., movements towards and away from the drive component 30) and rotational movements (i.e., circular movements around its axis), providing a massage. Thus, the massager 100 can provide users with multiple massage modes and has a better massage effect. To enhance the aesthetics and safety of the massager 100, it may also include a protective component covering the massage component 10, the transmission component 20, and the drive component 30. The protective component may be made of cloth, silicone, or rubber.

[0066] The massage assembly 10 also includes a connecting shell 13, which is generally cylindrical. The massage element 11 is connected to the connecting shell 13, and the vibrating element 12 is housed within the connecting shell 13. When the vibrating element 12 vibrates, it can drive the massage element 11 to vibrate through the connecting shell 13, thereby providing a massage. Of course, the vibrating element 12 can also be further housed within the massage element 11 to increase the massage intensity.

[0067] The massage element 11 can be made of silicone, plastic, or metal. The massage element 11 has a roughly U-shaped cross-section with an internal cavity 110 to reduce weight and prevent excessive massage force. One end of the massage element 11 is open, and its inner wall has a groove 111 adjacent to the opening, forming a step (not shown). The outer wall of the connecting shell 13 has a groove 132, in which the step is accommodated, connecting the massage element 11 to the connecting shell 13.

[0068] The connecting shell 13 is generally columnar in shape, with openings at both ends and an internal receiving cavity 130. The end of the connecting shell 13 furthest from the massage member 11 also has a protruding connecting portion 131 for connection with the transmission assembly 20. The inner wall of the receiving cavity 130 has a protruding step 133, into which the vibrating member 12 can be accommodated and rest on or fixedly mounted on the step 133. Specifically, the vibrating member 12 has an outer flange 121, which rests on or is fixedly mounted on the step 133.

[0069] The transmission assembly 20 includes a rotating member 21 with a guide groove 211, a supporting member 22 abutting against the groove wall of the guide groove 211, a movable member 23 connected to the supporting member 22, a first connecting member 24 movably accommodated in the rotating member 21 and connected to the connecting part 131 and the movable member 23, and a first mounting member 25 for mounting the rotating member 21.

[0070] The rotating member 21 is generally cylindrical in shape, and its outer surface is provided with at least one guide groove 211 arranged spirally or obliquely. The guide groove 211 is preferably a bidirectional closed oblique groove or spiral groove arranged symmetrically along the axial direction of the rotating member 21. The guide groove 211 may have a high point 2111 near the massage member 11 and a low point 2112 away from the massage member 11. When the rotating member 21 rotates, the abutting part 221 of the abutting member 22 can slide along the guide groove 211, abut against the groove wall of the guide groove 211, and reciprocate between the high point 2111 and the low point 2112 of the guide groove 211, thereby driving the moving member 23, the first connecting member 24, and the massage assembly 10 to perform telescopic movements together.

[0071] The rotating member 21 has a first receiving groove 212 and a second receiving groove 213 spaced apart along the axial direction. The rod-shaped connecting portion 241 of the first connecting member 24 is movably received in the first receiving groove 212. The inner wall of the first receiving groove 212 includes at least one arc-shaped wall 2121 and at least one straight wall 2122 connected to the arc-shaped wall 2121. The outer wall of the connecting portion 241 also includes at least one arc-shaped wall 2411 and at least one straight wall 2412 connected to the arc-shaped wall 2411. When the connecting portion 241 is received in the first receiving groove 212, the arc-shaped wall 2121 is correspondingly arranged with the arc-shaped wall 2411, and the straight wall 2122 is correspondingly arranged with the straight wall 2412, so that the rotating member 21 can drive the first connecting member 24 to rotate. The output shaft 311 of the drive assembly 30 can be accommodated in the second receiving groove 213. When the output shaft 311 drives the rotating member 21 to rotate, it can drive the first connecting member 24 to rotate as well. The first receiving groove 212 and the second receiving groove 213 are separated by a baffle 214 to avoid collision interference between the output shaft 311 and the connecting part 241. The rotating member 21 also has a protrusion 215 at the end near the massage member 11, and a step 216 is formed accordingly. The first receiving groove 212 passes through the protrusion 215.

[0072] The supporting member 22 further includes a mounting portion 222, which can be a cuboid, cube, or irregular structure. The mounting portion 222 may have a protrusion 2221, which holds the supporting portion 221 against the guide groove 211. The upper surface of the protrusion 2221 may have a mounting groove (not shown), in which the supporting portion 221 can be fixedly or rotatably accommodated; or the upper surface of the protrusion 2221 may be a plane (not shown), which holds the supporting portion 221 against the guide groove 211. The supporting portion 221 can be a screw or a ball bearing, etc. The mounting portion 222 also has at least one mounting hole 2222.

[0073] The movable member 23 is generally columnar in shape and has a first through hole 230, and is movably fitted onto the first mounting member 25. The lower end of the movable member 23 also has a receiving portion 231, which may include a receiving groove 2311, a first through hole 2312 formed in the bottom wall of the receiving groove 2311, and at least one receiving hole 2313 formed in the bottom wall of the receiving groove 2311. When the mounting member 222 is received in the receiving groove 2311, at least one connector (not shown) can be received in the mounting hole 2222 and the receiving hole 2313, stably mounting the supporting member 22 in the receiving groove 2311. The mounting portion 222 can be accommodated in the receiving groove 2311. The protrusion 2221 can be disposed adjacent to the first through hole 2312 or at least partially extend into or out of the first through hole 2312. The abutting portion 221 extends out of the first through hole 2312 and abuts against the guide groove 211. The inner wall of the moving member 23 may also be provided with a protruding strip 2314 along the axial direction, which can be integrally formed with the receiving portion 231. The first through hole 2312 and the receiving hole 2313 can pass through the protruding strip 2314. At least one connecting portion 2321 may also be protruding on the end wall 232 of the moving member 23.

[0074] The first connector 24 further includes a connecting portion 242, which is inclined relative to the connecting portion 241. In a specific embodiment, the angle between the central axis of the connecting portion 241 and the central axis of the connecting portion 242 is 10° to 60°, specifically 10°, 20°, 30°, 40°, 50°, or 60°. The connecting portion 242 can be cylindrical, polygonal, or irregular in structure. The connecting portion 242 can be accommodated in the connecting portion 131 of the connecting shell 13, connecting the first connector 24 to the massage assembly 10. Compared to the technical solution where the connecting portion 242 and the connecting portion 241 are linearly connected, when the connecting portion 242 is inclined relative to the connecting portion 241, the massage area of ​​the massage assembly 10 during rotation is larger, providing a better massage effect. Of course, this does not mean that the connecting portion 242 cannot be linearly connected to the connecting portion 241. The first connector 24 further includes a connecting portion 243 connected to the connecting portion 241 and / or the connecting portion 242, wherein the outer wall of the connecting portion 243 is provided with a flange 2431. The connecting portion 243 may also be obliquely connected to the connecting portion 241, wherein the angle between the central axis of the connecting portion 241 and the central axis of the connecting portion 243 is 10~60°, specifically 10°, 20°, 30°, 40°, 50°, or 60°.

[0075] The first mounting member 25 includes a second through hole 230, a mounting portion 251, and a mounting portion 252 disposed on the mounting portion 251. The second through hole 230 can penetrate the mounting portion 251 and the mounting portion 252. The mounting portion 252 also has a second through hole 2522 communicating with the second through hole 230, and the second through hole 2522 can penetrate a portion of the end wall 2521. When the rotating member 21 is rotatably accommodated in the second through hole 230, the end wall 2521 rests on the step 216 of the rotating member 21 to prevent the rotating member 21 from moving upward when rotating. The shape of the inner wall of the first through hole 230 of the moving member 23 matches the shape of the outer wall of the mounting portion 252. In a specific embodiment, the inner wall of the first through hole 230 is approximately hexagonal, and the outer wall of the mounting portion 252 is also approximately hexagonal, but other shapes are also possible. The mounting portion 251 has at least one mounting hole 2511.

[0076] The fixing member 26 has a third through hole 260 in its approximate central area. The inner wall of the third through hole 260 is recessed with a receiving groove 261. The fixing member 26 also has at least one receiving hole 262. The connecting part 241 is movably received in the first receiving groove 212. The connecting part 243 is rotatably received in the third through hole 260 of the fixing member 26. The flange 2431 of the connecting part 243 is rotatably mounted on the end wall 232 of the moving member 23 and rotatably received in the receiving groove 261 of the fixing member 26. The connecting part 242 extends out of the third through hole 260 and is received in the connecting part 131 via a bushing 27. When the flange 2431 and the fixing member 26 are mounted on the end wall 232 of the moving member 23, the connecting part 2321 of the moving member 23 can be received in the receiving hole 262 of the fixing member 26, connecting the moving member 23 to the fixing member 26 and the first connecting member 24. Thus, when the movable member 23 extends or retracts, it can simultaneously drive the first connecting member 24 and the fixed member 26 to extend or retract.

[0077] The drive assembly 30 further includes a second mounting member 32. Both the first mounting member 25 and the rotating member 21 can be disposed on the second mounting member 32 of the drive assembly 30. The output shaft 311 of the drive member 31 can pass through the first mounting member 25 and the second mounting member 32 and be accommodated in the second receiving groove 213 of the rotating member 21. The second mounting member 32 includes a mounting portion 321 and a mounting portion 322 connected to each other. The mounting portion 321 is used to mount the drive member 31. The upper end 312 of the drive member 31 can be mounted in the mounting portion 321, and the shape of the mounting portion 321 matches the shape of the upper end 312 of the drive member 31. In one specific embodiment, the mounting portion 321 is generally square, and the upper end 312 of the drive member 31 can also be generally square; the mounting portion 321 is generally cylindrical, and the upper end 312 of the drive member 31 can also be generally cylindrical. The mounting portion 322 is used to mount the rotating member 21 and the first mounting member 25. The mounting portion 322 has a through hole 3221 in its approximate central area. The first mounting member 25 and the rotating member 21 are mounted on the mounting portion 322. The output shaft 311 of the driving member 31 can pass through the through hole 3221 and the second through hole 230 and be accommodated in the second receiving groove 213. The mounting portion 322 has at least one connecting post 3222, which can be accommodated in the mounting hole 2511 of the mounting portion 251, connecting the second mounting member 32 and the first mounting member 25. The mounting portion 322 also has at least one connecting hole 3223. The upper end 312 of the driving member 31 has at least one connecting hole 3121. At least one connecting member (not shown) can be accommodated in the connecting hole 3223 and the connecting hole 3121, stably mounting the driving member 31 in the second mounting member 32.

[0078] The working principle of the massager 100 of this utility model is as follows: The output shaft 311 of the drive member 31 drives the rotating member 21 to rotate, and the rotating member 21 drives the massage assembly 10 to rotate together through the first connecting member 24; the supporting part 221 abuts against the guide groove 211 of the rotating member 21. Since the rotating member 21 is rotatably mounted on the first mounting member 25 and the second mounting member 32, the supporting part 221 can extend and retract, and drive the moving member 23, the first connecting member 24, the fixing member 26 and the massage assembly 10 to extend and retract together. In this way, the massage assembly 10 can perform extension and retraction and rotation at the same time. The vibrating member 12 in the massage assembly 10 can drive the massage member 11 to vibrate, so that the massage assembly 10 can perform extension and retraction, rotation and vibration at the same time to perform massage.

[0079] Reference Figure 13-2 0. The second embodiment of this utility model provides a massager 100, which is similar to the massager 100 of the first embodiment. The differences between the two are at least as follows:

[0080] The lower end of the rotating member 21 may also form a connecting part 217. The second receiving groove 213 of the rotating member 21 can pass through the connecting part 217. The connecting part 217 can be mounted on the second mounting part 32 of the drive assembly 30. The output shaft 311 of the drive assembly 31 is connected to the connecting part 217.

[0081] The receiving portion 231 of the movable member 23 can extend at least partially out of the movable member 23, forming a notch 2315 to prevent the lower end of the movable member 23 from colliding with the first mounting member 25. The movable member 23 has a support portion 233 in its inner ring, and the first through hole 230 penetrates the support portion 233.

[0082] The connecting portions 241 and 242 of the first connector 24 are connected in a straight line, that is, the included angle between them is 0° or 180°. The flange 2431 of the first connector 24 is rotatably mounted on the support portion 233, and the fixing member 26 can be mounted on the end wall 232, and can also be further mounted on the flange 2431, so that the first connector 24 is rotatably disposed between the moving member 23 and the fixing member 26.

[0083] The first mounting member 25 has a support portion 253 on its inner ring, and the second through hole 230 passes through the support portion 253. The rotating member 21 can pass through the second through hole 230, and the bushing 28 can be disposed on the support portion 253 and sleeved on the rotating member 21. The second through hole 2522 is arranged axially and passes through the arc surface 2531 of the end wall 252 and the support portion 253, forming a straight surface 2532.

[0084] The transmission assembly 20 further includes a second connector 29, which includes a connecting portion 291 and a connecting portion 292. The connecting portion 291 is located at the lower end of the second connector 29 and has a groove 2911. The connecting portion 242 of the first connector 24 can be accommodated in the groove 2911, connecting the second connector 29 to the first connector 24. The connecting portion 292 has a groove 2921, in which different types of massage components 10 can be accommodated, connecting the massage component 10 to the transmission assembly 20.

[0085] The massager 100 of the second embodiment does not show massage components, but the massager 100 of the second embodiment can be detachably connected to various different types of massage components via the second connector 29 to provide different massage modes. For example, it can be connected to the massage claws of a head massager, or to the massage roller assembly of a waist massager, etc.

[0086] The above description is only a preferred embodiment of the present invention and does not limit the patent scope of the present invention. All equivalent structural transformations made by using the contents of the present invention specification and drawings under the utility model concept, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. A massager, characterized in that, include: The massage assembly (10) includes a massage element (11) and a vibrating element (12), wherein the vibrating element (12) drives the massage element (11) to vibrate; The transmission assembly (20) is connected to the massage assembly (10); and The drive assembly (30) drives the massage element (11) to perform telescopic and rotational movements via the transmission assembly (20).

2. The massager according to claim 1, characterized in that, The transmission assembly (20) includes: The rotating component (21) is connected to the drive assembly (30) and has at least one guide groove (211) that is spirally or inclined. The abutment (22) abuts against the guide groove (211); Movable member (23) for fixing the supporting member (22); and The connector (24) is connected to the massage component (10). The connector (24) is movably accommodated in the rotating component (21) and rotatably connected to the moving component (23). When the rotating component (21) rotates, it drives the connector (24) and the massage component (10) to rotate together. The abutment (22) interacts with the groove wall of the guide groove (211), so that the abutment (22) drives the moving component (23), the connector (24), and the massage component (10) to extend and retract.

3. The massager according to claim 2, characterized in that, The rotating component (21) has a first receiving groove (212), and the connecting component (24) is movably received in the first receiving groove (212). When the rotating component (21) rotates, the groove wall of the first receiving groove (212) drives the connecting component (24) to rotate together.

4. The massager according to claim 3, characterized in that, The rotating component (21) is also provided with a second receiving groove (213) spaced apart from the first receiving groove (212), and the output shaft (311) of the drive assembly (30) is received in the second receiving groove (213).

5. The massager according to claim 2, characterized in that, The connector (24) includes: The first connecting part (241) is movably accommodated in the rotating member (21); The second connecting part (242) is connected to the massage assembly (10); and The third connecting part (243) is connected to the first connecting part (241) and / or the second connecting part (242) and is rotatably connected to the moving part (23).

6. The massager according to claim 5, characterized in that, The second connecting part (242) is inclined to the first connecting part (241); or, the second connecting part (242) is straight to the first connecting part (241).

7. The massager according to claim 2, characterized in that, The abutment (22) includes: The resisting part (221); and Mounting part (222) is used to mount the supporting part (221); The movable component (23) includes: A first through hole (230) is used to accommodate the rotating member (21); and The receiving part (231) includes a receiving groove (2311) and a first through hole (2312) communicating with the first through hole (230). The mounting part (222) is received in the receiving groove (2311), and the supporting part (221) passes through the first through hole (2312) and abuts against the guide groove (211).

8. The massager according to claim 2, characterized in that, The transmission assembly (20) further includes a mounting member (25) mounted on the drive assembly (30), and the movable member (23) is movably sleeved outside the mounting member (25). The mounting member (25) includes: The rotating member (21) is rotatably accommodated in the second through hole (250); The second through hole (2522) communicates with the second through hole (250), and the abutment (22) passes through the second through hole (2522) and abuts against the guide groove (211).

9. The massager according to claim 2, characterized in that, The transmission assembly (20) also includes: A fixing member (26) is used to connect the connecting member (24) and the moving member (23). The fixing member (26) has a third through hole (260). The connecting member (24) rotatably passes through the third through hole (260) and is connected to the massage assembly (10).

10. The massager according to claim 2, characterized in that, The massage component (10) also includes: The connecting shell (13) is connected to the massage element (11) and the connecting element (24), and the vibrating element (12) is housed in the connecting shell (13).