Vibration massage device
Patent Information
- Application Number
- CN202522036785.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-09-22
AI Technical Summary
[0002]目前市面上的振动按摩装置,在使用振动按摩功能时,用于供用户握持的部分具有较强的振动感,导致用户在使用一段时间后手部发麻,严重影响用户的使用体验和对产品的使用意愿
[0024] In this invention, the vibrating element transmits vibration to the vibrating bracket, which then transmits the vibration to the two sides that abut against it. This means the vibration is transmitted to the vibrating massage surface, providing a vibrating massage to the area in contact with it. Because a buffer structure exists between the vibrating bracket and the perforated bracket, this structure, acting as a medium for transmitting vibration to the perforated bracket, absorbs and attenuates some of the vibration energy transmitted by the vibrating bracket. This reduces the vibration sensation on the perforated bracket, thus weakening the vibration on the operating sidewall of the housing and helping to prevent numbness in the user's hands when using the vibrating massage device. Since the buffer structure only absorbs and attenuates vibration energy in the direction from the vibrating bracket to the perforated bracket, without interfering with the vibration energy transmitted in the first direction, the vibrating massage surface still exhibits a strong vibration sensation, providing an effective massage and soothing effect.
Smart Images

Figure CN224699397U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of massage equipment technology, and in particular to a vibration massage device. Background Technology
[0002] Currently available vibration massagers often have a strong vibration in the grip area when using the vibration massage function, causing numbness in the user's hands after a period of use, severely impacting the user experience and reducing their willingness to use the product. However, reducing the frequency and amplitude of the vibration in the massager weakens its vibration massage function, failing to provide a soothing massage effect on the user's area. Utility Model Content
[0003] The main purpose of this invention is to provide a vibration massage device that can provide a good vibration massage effect while reducing the vibration sensation in the grip area.
[0004] To achieve the above objectives, the vibration massage device proposed in this utility model includes:
[0005] A housing having two sides disposed opposite each other in a first direction, and a gripping sidewall circumferentially disposed between the two sides, wherein at least one of the two sides is a vibrating massage surface;
[0006] A hollow bracket, which abuts against the gripping sidewall and encloses an installation space extending in the first direction;
[0007] The vibration assembly includes a vibration bracket and a vibration element mounted on the vibration bracket. The vibration bracket is located in the middle of the installation space and extends along the first direction, having a top side and a bottom side opposite to each other. The top side and the bottom side respectively abut against two sides of the housing in the first direction.
[0008] A buffer structure is provided in the installation space and abuts against the vibration component and the hollow bracket.
[0009] In one embodiment, the buffer structure includes a soft rubber mesh.
[0010] In one embodiment, the housing is made of soft rubber.
[0011] In one embodiment, a first connecting structure is provided at the edge of the soft rubber mesh, and a second connecting structure is provided in the middle of the soft rubber mesh. The first connecting structure is connected to the hollow support, and the second connecting structure is connected to the vibration support.
[0012] In one embodiment, the hollow support includes an upper support and a lower support, which can be assembled in a first direction of the housing and clamp the first connecting structure in the first direction of the housing.
[0013] In one embodiment, the first connecting structure includes a connecting ring portion, and the upper bracket and the lower bracket are respectively provided with a first mounting post and a second mounting post. The first mounting post can extend into the connecting ring portion and the second mounting post. The connecting ring is provided with a receiving hole on the side near the second mounting post, and the second mounting post can be inserted into the receiving hole.
[0014] In one embodiment, the second connection structure includes a through hole, and the vibration bracket includes a top bracket and a bottom bracket. The top bracket and the bottom bracket have a first snap-fit member and a second snap-fit member disposed opposite to each other in a first direction of the housing. The first snap-fit member can pass through the through hole and snap-fit with the second snap-fit member.
[0015] In one embodiment, the soft rubber mesh has a positioning groove in the middle, the through hole is formed in the groove wall of the positioning groove, and the positioning groove can be fitted onto one of the top support and the bottom support.
[0016] In one embodiment, the first snap-fit member includes an extension rod and a snap-fit protrusion disposed on the extension rod near one end of the second snap-fit member. The second snap-fit member includes a snap-fit hole through which the extension rod can pass and the snap-fit protrusion can snap into the snap-fit hole.
[0017] In one embodiment, the vibration massage device is further provided with a storage battery electrically connected to the vibrating element. The storage battery is disposed on the vibration bracket. A partition plate is sandwiched between the vibration motor and the storage battery. The sides of the storage battery and the vibrating element that are far apart from each other in the first direction abut against the top and bottom sides of the vibration bracket, respectively. The partition plate and the soft rubber mesh are configured with the same structure.
[0018] In one embodiment, the housing includes a main shell portion and a cover portion. The main shell portion abuts against the hollowed-out bracket. The cover portion and a portion of the main shell portion are partially formed to create the vibration massage surface. The cover portion is engaged with the top or bottom side of the vibration bracket via a fixing bracket. The cover portion and the fixing bracket are integrally formed.
[0019] In one embodiment, the housing is further provided with a hanging rope portion.
[0020] In one embodiment, the housing is provided with two opposing vibrating massage surfaces in the first direction.
[0021] In one embodiment, the vibrating massage surface is provided with a plurality of comb-like structures.
[0022] In one embodiment, the vibrating massage surface is provided with a plurality of flexible massage pins.
[0023] In one embodiment, the vibration massage device further includes a control module, which includes a main control board and a button group disposed on the main control board, and the main control board is electrically connected to the vibrating element.
[0024] In this invention, the vibrating element transmits vibration to the vibrating bracket, which then transmits the vibration to the two sides that abut against it. This means the vibration is transmitted to the vibrating massage surface, providing a vibrating massage to the area in contact with it. Because a buffer structure exists between the vibrating bracket and the perforated bracket, this structure, acting as a medium for transmitting vibration to the perforated bracket, absorbs and attenuates some of the vibration energy transmitted by the vibrating bracket. This reduces the vibration sensation on the perforated bracket, thus weakening the vibration on the operating sidewall of the housing and helping to prevent numbness in the user's hands when using the vibrating massage device. Since the buffer structure only absorbs and attenuates vibration energy in the direction from the vibrating bracket to the perforated bracket, without interfering with the vibration energy transmitted in the first direction, the vibrating massage surface still exhibits a strong vibration sensation, providing an effective massage and soothing effect. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0026] Figure 1 A schematic diagram of a structure of an embodiment of the vibration massage device provided by this utility model;
[0027] Figure 2 for Figure 1 A structural schematic diagram of another perspective of the embodiment shown;
[0028] Figure 3 for Figure 1 A cross-sectional view of the embodiment shown;
[0029] Figure 4 for Figure 1 The illustrated embodiment is a cross-sectional view taken along another section line;
[0030] Figure 5 for Figure 1 Exploded view of the embodiment shown;
[0031] Figure 6 for Figure 1 A partial structural diagram of the embodiment shown;
[0032] Figure 7 for Figure 1 A cross-sectional view of the vibration component in the illustrated embodiment;
[0033] Figure 8 for Figure 1 Another partial structural diagram of the embodiment shown;
[0034] Figure 9 for Figure 1 The schematic diagram of the flexible mesh structure in the embodiment shown is as follows;
[0035] Figure 10 for Figure 1 A partial structural schematic diagram of the vibration component in the illustrated embodiment;
[0036] Figure 11 for Figure 1 A cross-sectional view of the cover in the illustrated embodiment;
[0037] Figure 12 for Figure 1 A schematic diagram of the cover portion in the illustrated embodiment.
[0038] Explanation of icon numbers:
[0039] 100. Shell; 11. Grip sidewall; 12. Vibrating massage surface; 121. Comb structure; 13. Main shell; 14. Cover; 15. Hanging cord; 16. Flexible massage pins;
[0040] 200. Hollowed-out bracket; 21. Installation space; 22. Upper bracket; 221. First assembly column; 23. Lower bracket; 231. Second assembly column;
[0041] 300. Vibration assembly; 31. Vibration bracket; 311. Top bracket; 312. First snap-fit component; 313. Extension rod; 314. Snap-fit protrusion; 32. Bottom bracket; 321. Second snap-fit component; 322. Snap-fit hole; 33. Vibration component;
[0042] 400. Buffer structure; 41. Soft rubber mesh; 42. First connecting structure; 421. Connecting ring; 422. Accommodating hole; 43. Second connecting structure; 431. Through hole; 44. Positioning groove; 441. Divider plate; 45. First support ring; 46. Connecting rib;
[0043] 500, storage battery;
[0044] 600. Fixed bracket;
[0045] 700. Control module; 71. Main control board.
[0046] 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
[0047] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.
[0048] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0049] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0050] This utility model proposes a vibration massage device.
[0051] Please see Figures 1 to 12 In one embodiment of this utility model, the vibration massage device includes:
[0052] The housing 100 has two sides disposed opposite each other in a first direction, and a gripping sidewall 11 circumferentially disposed between the two sides, wherein at least one of the two sides is a vibrating massage surface 12.
[0053] The hollow bracket 200 abuts against the grip side wall 11 and encloses an installation space 21 extending in the first direction;
[0054] The vibration assembly 300 includes a vibration bracket 31 and a vibration element 33 mounted on the vibration bracket 31. The vibration bracket 31 is located in the middle of the installation space 21 and extends along a first direction, having a top side and a bottom side that are arranged opposite to each other. The top side and the bottom side abut against two sides of the housing 100 in the first direction, respectively.
[0055] The buffer structure 400 is located in the installation space 21 and abuts against the vibration component 300 and the hollow bracket 200.
[0056] In the technical solution of this utility model, the vibrating element 33 transmits vibration to the vibrating bracket 31, which then transmits the vibration to the two sides that abut against it, i.e., it can transmit vibration to the vibrating massage surface 12, thereby providing vibration massage to the parts in contact with the vibrating massage surface 12. Since a buffer structure 400 is provided between the vibrating bracket 31 and the hollow bracket 200, the buffer structure 400, as a medium for transmitting vibration from the vibrating bracket 31 to the hollow bracket 200, can absorb and attenuate some of the vibration energy transmitted by the vibrating bracket 31, thereby reducing some of the vibration sensation on the hollow bracket 200 and thus weakening the vibration sensation on the operating side wall of the housing 100. This helps to prevent numbness in the user's hands due to vibration when using the vibration massage device. Since the buffer structure 400 only absorbs and attenuates the vibration energy in the direction from the self-vibrating support 31 to the hollow support 200, and does not interfere with the vibration energy transmitted by the vibrating support 31 in the first direction, the vibrating massage surface 12 still has a strong vibration sensation, which can have an effective massage and soothing effect.
[0057] It should be noted that the buffer structure 400 can hold the vibration bracket 31 in the middle of the installation space 21, preventing the vibration bracket 31 from shaking within the installation space 21 during vibration. In this embodiment, the first direction is the thickness direction of the shell, but in other embodiments, the first direction can also be the width direction or the length direction of the shell.
[0058] In one embodiment, the buffer structure 400 includes a soft rubber mesh 41, which absorbs and attenuates the vibration energy transmitted from the vibration support 31 to the hollow support 200 by utilizing the flexible deformation characteristic of the soft rubber. In other embodiments, the buffer structure 400 may also include an elastic element, one end of which is connected to the vibration support 31 and the other end to the hollow support 200, which absorbs and attenuates the vibration energy in the direction from the vibration support 31 to the hollow support 200 by the elastic deformation of the elastic element. In another embodiment, the buffer structure 400 may also include a shock-absorbing material filled between the vibration support 31 and the hollow support 200 to absorb and attenuate the vibration energy in the direction from the vibration support 31 to the hollow support 200; further, the shock-absorbing material may include a damping gel.
[0059] In one embodiment, the housing 100 is made of soft rubber. That is, when vibration is transmitted from the perforated support 200 to the grip sidewall 11 on the housing 100, the grip sidewall 11 can undergo flexible deformation to absorb and attenuate the vibration energy. Furthermore, during the transmission of vibration from the vibration massage surface 12 to the grip sidewall 11, the vibration massage surface 12 of the housing 100, the structure between the vibration massage surface 12 and the grip sidewall 11, and the grip sidewall 11 itself can all undergo flexible deformation to absorb and attenuate the vibration energy. This further reduces the vibration sensation in the user's hand and prevents numbness caused by vibration. In other embodiments, the housing 100 can be made of a hard material, with a soft rubber shock-absorbing strip encircling the grip sidewall 11.
[0060] In one embodiment, a first connecting structure 42 is provided at the edge of the flexible mesh 41, and a second connecting structure 43 is provided at the middle of the flexible mesh 41. The first connecting structure 42 is connected to the perforated bracket 200, and the second connecting structure 43 is connected to the vibration bracket 31. This allows the flexible mesh 41 to be installed between the perforated bracket 200 and the vibration bracket 31, and helps maintain the connection between the flexible mesh 41 and the vibration bracket 31 and the perforated bracket 200 during vibration. The first connecting structure 42 and the second connecting structure 43 also allow the flexible mesh 41 to limit the vibration bracket 31 to the middle of the installation space 21 through its own tension. In other embodiments, the flexible mesh 41 may fill the gap between the perforated bracket 200 and the vibration bracket 31, and be able to abut against the perforated bracket 200 and the vibration bracket 31.
[0061] In one embodiment, the perforated bracket 200 includes an upper bracket 22 and a lower bracket 23, which can be assembled in a first direction of the housing 100 and clamp the first connecting structure 42 in the first direction of the housing 100. This restricts the movement of the soft rubber mesh 41 in the first direction of the housing 100, preventing the soft rubber mesh 41 from detaching from the perforated bracket 200 in the first direction of the housing 100 during the absorption and attenuation of vibration energy. Furthermore, the design of the perforated bracket 200 consisting of an upper bracket 22 and a lower bracket 23 facilitates the installation of the soft rubber mesh 41 onto the perforated bracket 200 during the manufacturing process. In other embodiments, the perforated bracket 200 may not have an upper bracket 22 and a lower bracket 23; instead, the perforated bracket 200 and the soft rubber mesh 41 may be integrally molded during manufacturing using an injection molding process.
[0062] In one embodiment, the first connecting structure 42 includes a connecting ring portion 421. The upper support 22 and the lower support 23 are respectively provided with a first mounting post 221 and a second mounting post 231. The first mounting post 221 can extend into the connecting ring portion 421 and the second mounting post 231 to radially restrict the soft rubber mesh 41 in the connecting ring portion 421, preventing the soft rubber mesh 41 from detaching radially from the hollow support 200 during the absorption and attenuation of vibration energy. The connecting ring portion 421 has a receiving hole 422 on the side near the second mounting post 231, into which the second mounting post 231 can be inserted. This effectively increases the contact area between the connecting ring portion 421 and the second mounting post 231, enhancing the compressive strength between the connecting ring portion 421 and the first and second mounting posts 221 and 231, making the connection between the soft rubber mesh 41 and the hollow housing 100 more stable. Furthermore, multiple connecting rings 421 are provided and evenly distributed along the circumferential spacing of the soft rubber mesh 41, so that the soft rubber mesh 41 is subjected to uniform force in its extension direction, which helps to uniformly absorb and attenuate the vibration energy transmitted on the self-vibrating support 31. Specifically, the first mounting post 221 is provided on the upper support 22, and the second mounting post 231 is provided on the lower support 23. In other embodiments, the first connecting structure 42 may be other connecting structures, which are not limited here.
[0063] In one embodiment, the second connecting structure 43 includes a through hole 431, and the vibration bracket 31 includes a top bracket 311 and a bottom bracket 32. The top bracket 311 and the bottom bracket 32 have a first snap-fit member 312 and a second snap-fit member 321 disposed opposite to each other in a first direction of the housing 100. The first snap-fit member 312 can pass through the through hole 431 and snap-fit with the second snap-fit member 321. At this time, the top bracket 311 and the bottom bracket 32 clamp the soft rubber mesh 41 in the first direction of the housing 100, that is, in the axial direction of the soft rubber mesh 41. And the soft rubber mesh 41 is snapped in the extending direction of the soft rubber mesh 41 by the first snap-fit member 312. This realizes the assembly of the soft rubber mesh 41 with the vibration bracket 31. The design of the top bracket 311 and the bottom bracket 32 helps to improve the convenience of installing the soft rubber mesh 41 on the vibration bracket 31. In other embodiments, the second connecting structure 43 may be other connecting structures, which are not limited here.
[0064] In one embodiment, the flexible mesh 41 has a positioning groove 44 in its middle, and a through hole 431 is formed in the groove wall of the positioning groove 44. The positioning groove 44 can be fitted onto one of the top support 311 and the bottom support 32. This effectively increases the contact area between the flexible mesh 41 and the vibration support 31, enhances the compressive strength between the flexible mesh 41 and the vibration support 31, and makes the connection between the flexible mesh 41 and the vibration support 31 more stable. In other embodiments, the positioning groove 44 may not be provided.
[0065] Furthermore, between the vibration support 31 and the hollow support 200, the flexible mesh 41 includes a first support ring 45 disposed between the hollow support 200 and the vibration support 31, and a plurality of connecting ribs 46 connecting the first support ring 45 and the positioning groove 44. The connecting ribs 46 are evenly distributed circumferentially along the first support ring 45, and the connecting ring portion 421 is disposed on the side of the first support ring 45 away from the connecting ribs 46. That is, by reducing the structure of the flexible mesh 41 between the vibration support 31 and the hollow support 200, the vibration energy that the flexible mesh 41 can transmit is reduced, and by enhancing the flexible deformation capability of the flexible mesh 41, the absorption and attenuation performance of the flexible mesh 41 on the transmitted vibration energy is improved. In other embodiments, the flexible mesh 41 between the vibration support 31 and the hollow support 200 may also have a plurality of support rings, and connecting ribs 46 are provided between adjacent support rings.
[0066] In one embodiment, the first snap-fit member 312 includes an extension rod 313 and a snap-fit protrusion 314 disposed on the extension rod 313 near one end of the second snap-fit member 321. The second snap-fit member 321 includes a snap-fit hole 322, through which the extension rod 313 can pass, and the snap-fit protrusion 314 can snap into the snap-fit hole 322. This allows for a stable connection between the top support 311 and the bottom support 32 while the vibrating bracket 31 is stably connected to the soft mesh 41, preventing the top support 311 and the bottom support 32 from detaching from each other in the first direction of the housing 100 during vibration of the vibrating bracket 31. Specifically, the first snap-fit member 312 is disposed on the top support 311, and the second snap-fit member 321 is disposed on the bottom support 32. Further, the through hole 431 is formed on the side wall and bottom wall of the positioning groove 44 to allow the extension rod 313 to pass through. In other embodiments, the first snap-fit connector 312 and the second snap-fit connector 321 may be other snap-fit structures, which are not limited here.
[0067] In one embodiment, the vibration massage device is further provided with a storage battery 500 electrically connected to the vibrating element 33. The storage battery 500 is disposed on the vibration support 31, and a partition plate 441 is sandwiched between the vibration motor and the storage battery 500. The sides of the storage battery 500 and the vibrating element 33 that are far apart from each other in the first direction abut against the top and bottom sides of the vibration support 31, respectively. The partition plate and the soft rubber mesh 41 are configured with the same structure. The storage battery 500 can improve the ease of use of the vibration massage device, realizing the function of being ready to use anytime, anywhere. When the vibrating element 33 vibrates, the storage battery 500 can act as a medium for transmitting vibration in the first direction of the housing 100, so as to transmit the vibration to the opposite sides of the housing 100 in the first direction, that is, it can effectively transmit the vibration to the vibration massage surface 12.
[0068] A soft rubber mesh 41 is sandwiched between the vibrating element 33 and the storage battery 500. Due to the flexible deformation of the soft rubber mesh 41, the vibration of the vibrating element 33 can be clearly transmitted to the storage battery 500, effectively enhancing the vibration sensation on the vibrating massage surface 12. It should be noted that the partition plate is formed with the bottom wall of the positioning groove 44. In other embodiments, the storage battery 500 may not be present.
[0069] In one embodiment, the housing 100 includes a main housing portion 13 and a cover portion 14. The main housing portion 13 abuts against the hollowed-out bracket 200. A portion of the cover portion 14 and the main housing portion 13 are structurally formed to create a vibrating massage surface 12. The cover portion 14 is engaged with the top or bottom side of the vibrating bracket 31 via a fixing bracket 600. The cover portion 14 and the fixing bracket 600 are integrally formed. By opening the cover portion 14, parts can be assembled into the main housing 100 during production, facilitating maintenance and inspection of the internal structure of the main housing 100. When assembling the cover portion 14 and the main housing portion 13, the fixing bracket 600 is simply engaged with the vibrating bracket 31. Furthermore, the integral forming of the fixing bracket 600 and the cover portion 14 prevents the cover portion 14 from falling off the main housing portion 13 when the vibrating massage surface 12 vibrates. In other embodiments, the cover portion 14 and the fixing bracket 600 can be connected by adhesive or other means.
[0070] In one embodiment, the housing 100 is further provided with a hanging cord portion 15, so that the vibration massage device can be hung on a hook on the wall when not in use. In other embodiments, the hanging cord portion 15 may not be provided.
[0071] In one embodiment, the vibrating massage surface 12 has a plurality of protruding comb-like structures 121 to massage the scalp while combing hair. Further, the comb-like structures 121 are integrally formed with the housing 100. In other embodiments, the comb-like structures 121 may be made of hard plastic. In another embodiment, the vibrating massage surface 12 has a plurality of protruding massage structures, such as massage balls.
[0072] In one embodiment, the housing 100 is provided with two vibrating massage surfaces 12 facing each other in a first direction. That is, the vibrating massage device can achieve double-sided massage. In other embodiments, it may have only one vibrating massage surface 12.
[0073] In one embodiment, the vibrating massage surface 12 is provided with a plurality of flexible massage pins 16. Since the vibrating element 33 can transmit vibrations to the two sides that abut against the vibrating support 31, both opposing vibrating massage surfaces 12 have a strong vibration sensation. When one vibrating massage surface 12 is provided with a comb-like structure 121 or other massage structure, the other vibrating massage surface 12 can have a plurality of flexible massage pins 16, which can be used to massage the face or other parts of the human body. After the flexible massage pins 16 transmit the vibration sensation to the human body, they can be used to clean the skin of the face or other parts of the human body. In other embodiments, the vibrating massage surface 12 may not be present.
[0074] In one embodiment, the vibration massage device further includes a control module 700. The control module 700 includes a main control board 71 and a button group disposed on the main control board 71. The main control board 71 is electrically connected to the vibrating element 33 to adjust the start / stop and vibration frequency of the vibrating element 33. Further, the button group includes a start / stop button, an increment adjustment button, and a decrement adjustment button. In other embodiments, the button group may include only one button, and the start / stop and vibration frequency of the vibrating element 33 are adjusted by the duration of pressing the button.
[0075] The above description is merely an exemplary embodiment of the present utility model and does not limit the scope of protection of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the scope of protection of the present utility model.
Claims
1. A vibration massage device, characterized in that, include: A housing having two sides disposed opposite each other in a first direction, and a gripping sidewall circumferentially disposed between the two sides, wherein at least one of the two sides is a vibrating massage surface; A hollow bracket, which abuts against the gripping sidewall and encloses an installation space extending in the first direction; The vibration assembly includes a vibration bracket and a vibration element mounted on the vibration bracket. The vibration bracket is located in the middle of the installation space and extends along the first direction, having a top side and a bottom side opposite to each other. The top side and the bottom side respectively abut against two sides of the housing in the first direction. A buffer structure is provided in the installation space and abuts against the vibration component and the hollow bracket.
2. The vibration massage device as described in claim 1, characterized in that, The buffer structure includes a soft rubber mesh; And / or, the housing is made of soft rubber.
3. The vibration massage device as described in claim 2, characterized in that, The soft rubber mesh has a first connecting structure at its edge and a second connecting structure in its middle. The first connecting structure is connected to the hollow support, and the second connecting structure is connected to the vibration support.
4. The vibration massage device as described in claim 3, characterized in that, The hollow support includes an upper support and a lower support, which can be assembled in a first direction of the housing and clamp the first connecting structure in the first direction of the housing.
5. The vibration massage device as described in claim 4, characterized in that, The first connecting structure includes a connecting ring portion. The upper bracket and the lower bracket are respectively provided with a first assembly post and a second assembly post. The first assembly post can extend into the connecting ring portion and the second assembly post. The connecting ring is provided with a receiving hole on the side near the second assembly post, and the second assembly post can be inserted into the receiving hole.
6. The vibration massage device as described in claim 3, characterized in that, The second connection structure includes a through hole, and the vibration bracket includes a top bracket and a bottom bracket. The top bracket and the bottom bracket have a first snap-fit member and a second snap-fit member disposed opposite to each other in a first direction of the housing. The first snap-fit member can pass through the through hole and snap-fit with the second snap-fit member.
7. The vibration massage device as described in claim 6, characterized in that, The soft rubber mesh has a positioning groove in the middle, and the through hole is formed in the groove wall of the positioning groove. The positioning groove can be fitted onto one of the top support and the bottom support. And / or, the first snap-fit member includes an extension rod and a snap-fit protrusion disposed on the extension rod near one end of the second snap-fit member, the second snap-fit member includes a snap-fit hole through which the extension rod can pass, and the snap-fit protrusion can snap into the snap-fit hole.
8. The vibration massage device as described in claim 2, characterized in that, The vibration massage device is also provided with a storage battery electrically connected to the vibrating element. The storage battery is located on the vibration bracket. A partition plate is sandwiched between the vibrating element and the storage battery. The sides of the storage battery and the vibrating element that are far apart from each other in the first direction abut against the top and bottom sides of the vibration bracket, respectively. The partition plate and the soft rubber mesh are configured with the same structure.
9. The vibration massage device as described in claim 2, characterized in that, The housing includes a main shell and a cover. The main shell abuts against the hollowed-out bracket. The cover and a portion of the main shell are formed to create the vibration massage surface. The cover is engaged with the top or bottom side of the vibration bracket via a fixed bracket. The cover and the fixed bracket are integrally formed.
10. The vibration massage device as described in claim 1, characterized in that, The shell is also provided with a hanging rope part; And / or, the housing is provided with two opposing vibrating massage surfaces in the first direction; And / or, the vibrating massage surface is provided with a plurality of comb-like structures; And / or, the vibrating massage surface is provided with a plurality of flexible massage pins; And / or, the vibration massage device further includes a control module, the control module including a main control board and a button group disposed on the main control board, the main control board being electrically connected to the vibrating element.