Neck massager

By designing a separate vibration massage component and connecting surface in the neck massager and adjusting its protruding height, the problem of poor fit between the massage head and the neck is solved, improving the user experience and massage effect, while reducing production difficulty and cost.

CN112675018BActive Publication Date: 2025-10-17GUANGDONG SKG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202011568935.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-12-25
Publication Date
2025-10-17
Estimated Expiration
2040-12-25

AI Technical Summary

Technical Problem

The massage head of the existing neck massager does not fit the user's neck well, resulting in a poor user experience.

Method used

A neck massager is designed, in which a vibration massage component and a connection surface are separately provided. By adjusting the height and shape of the connection surface, the vibration massage component can be protruded from the inner shell at different heights to ensure a good fit with the user's neck.

Benefits of technology

The invention improves the use comfort and massage effect of the neck massager, reduces the processing difficulty and manufacturing cost of the inner shell, increases the contact area between the massager and the human body, and simulates multiple massage actions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of massage device, and particularly discloses a neck massage instrument. The neck massage instrument comprises a wearing support and a plurality of vibration massage components. The wearing support comprises a middle support and two handles, the middle support comprises an outer shell and an inner shell, the inner shell is arranged on the side of the outer shell facing a wearing space, the inner shell comprises a main body and a plurality of connecting surfaces arranged on the main body; the vibration massage components are arranged separately from the connecting surfaces, the plurality of vibration massage components are connected to the plurality of connecting surfaces one by one, and the vibration massage components are all connected to the side of the inner shell close to the wearing space through the connecting surfaces; wherein, at least part of the connecting surfaces are at different heights so that at least part of the vibration massage components protrude from the main body at different heights. The neck massage instrument has low processing difficulty, high yield, and the vibration massage components can be well fitted to the neck of a user, thereby improving the use comfort of the neck massage instrument.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of massage devices, in particular to a neck massage instrument. BACKGROUND

[0002] The neck massage instrument is favored by more and more users due to its characteristics of better relieving and relaxing neck muscle tissue and eliminating neck fatigue.

[0003] In the related prior art, the massage head of the neck massage instrument does not fit the neck of the user well, and the user experience is poor. SUMMARY

[0004] The present application discloses a neck massage instrument to solve the problem of poor fit of the massage head of the neck massage instrument in the related art.

[0005] To achieve the above purpose, the present application discloses a neck massage instrument, comprising:

[0006] The wearing bracket comprises an intermediate bracket and two handles, the two handles are respectively arranged at both ends of the intermediate bracket, the handle and the intermediate bracket surround to form a wearing space, the intermediate bracket comprises an outer shell and an inner shell, the inner shell is arranged on the side of the outer shell facing the wearing space, the inner shell comprises a main body and a plurality of connecting surfaces arranged on the main body; and

[0007] A plurality of vibration massage assemblies are arranged separately from the connecting surfaces, a plurality of vibration massage assemblies are connected to a plurality of connecting surfaces one by one, and the vibration massage assemblies are connected to the side of the inner shell close to the wearing space through the connecting surfaces;

[0008] Among them, at least part of the connecting surfaces are at different heights so that at least part of the vibration massage assemblies protrude from the main body at different heights.

[0009] As an optional embodiment, in the embodiment of the present application, among a plurality of connecting surfaces, one connecting surface located at the lowermost part of the intermediate bracket is higher than the other connecting surfaces.

[0010] As an optional embodiment, in the embodiment of the present application, at least one pair of connecting surfaces are arranged symmetrically about the center plane of the intermediate bracket, wherein the center plane is the midpoint in the length direction of the intermediate bracket, and the plane obtained by cutting the intermediate bracket along the width direction of the intermediate bracket.

[0011] As an optional implementation, in the embodiment of the present application, at least part of the connecting surfaces are protruded to different heights relative to the main body towards the direction away from the shell, so that at least part of the vibration massage assemblies are protruded to different heights from the main body.

[0012] As an optional implementation, in the embodiment of the present application, at least part of the connecting surfaces are recessed to different depths relative to the main body towards the direction close to the shell, so that at least part of the vibration massage assemblies are protruded to different heights from the main body.

[0013] As an optional implementation, in the embodiment of the present application, at least part of the connecting surfaces are protruded to different heights relative to the main body towards the direction away from the shell, and at least part of the connecting surfaces are recessed to different depths relative to the main body towards the direction close to the shell, so that at least part of the vibration massage assemblies are protruded to different heights from the main body.

[0014] As an optional implementation, in the embodiment of the present application, at least part of the connecting surfaces are protruded to different heights relative to the main body towards the direction away from the shell, and at least part of the connecting surfaces are arranged coplanar with the main body, so that at least part of the vibration massage assemblies are protruded to different heights from the main body.

[0015] As an optional implementation, in the embodiment of the present application, at least part of the connecting surfaces are recessed to different depths relative to the main body towards the direction close to the shell, and at least part of the connecting surfaces are arranged coplanar with the main body, so that at least part of the vibration massage assemblies are protruded to different heights from the main body.

[0016] As an optional implementation, in the embodiment of the present application, at least part of the connecting surfaces are protruded to different heights relative to the main body towards the direction away from the shell, at least part of the connecting surfaces are recessed to different depths relative to the main body towards the direction close to the shell, and at least part of the connecting surfaces are arranged coplanar with the main body, so that at least part of the vibration massage assemblies are protruded to different heights from the main body.

[0017] As an optional implementation, in the embodiment of the present application, a deformation auxiliary part is arranged between the connecting surface and the main body.

[0018] As an optional implementation, in the embodiment of the present application, the deformation auxiliary part, the connecting surface and the main body are integrally formed.

[0019] As an optional implementation, in the embodiment of the present application, the deformation auxiliary part comprises an annular fold.

[0020] As an optional implementation, in the embodiment of the present application, the annular fold comprises a first ring portion and a second ring portion located inside the first ring portion, the first ring portion is protruded from the main body, two ends of the first ring portion are connected to the main body and one end of the second ring portion respectively, the other end of the second ring portion is connected to the connecting surface, and the second ring portion and the connecting surface form a groove.

[0021] As an optional implementation, in the embodiment of the present application, the height of at least part of the first ring portion is different from the main body so that the height of at least part of the connecting surface is different; and / or,

[0022] The depth of at least part of the groove is different so that the height of at least part of the connecting surface is different.

[0023] As an optional implementation, in the embodiment of the present application, the deformation auxiliary portion further comprises a thin-walled structure, the thin-walled structure is annular and connected to the outside of the annular fold, and the thickness of at least part of the thin-walled structure is smaller than the thickness of the main body and the annular fold.

[0024] As an optional implementation, in the embodiment of the present application, along the direction from the lower part to the upper part of the intermediate support, the height of the vibration massage assembly protruding from the main body gradually decreases.

[0025] As an optional implementation, in the embodiment of the present application, in the width direction of the intermediate support, a plurality of the vibration massage assemblies are arranged in at least two rows on the intermediate support, the height of the vibration massage assemblies in the same row protruding from the intermediate support is equal, and along the direction from the lower part to the upper part, the height of each row of the vibration massage assemblies protruding from the intermediate support gradually decreases.

[0026] As an optional implementation, in the embodiment of the present application, each row of the vibration massage assemblies is arranged in intervals along the direction from one end to the other end of the intermediate support.

[0027] As an optional implementation, in the embodiment of the present application, along the direction from the lower part to the upper part of the intermediate support, the number of each row of the vibration massage assemblies is at least two rows arranged in an increasing manner.

[0028] As an optional implementation, in the embodiment of the present application, along the direction from the upper part to the lower part of the wearing support, the number of the vibration massage assemblies in the uppermost row is the most, and the number of the vibration massage assemblies in the lowermost row is the least.

[0029] As an optional implementation, in the embodiment of the present application, the vibration massage assembly comprises:

[0030] a connecting column comprising a first end and a second end, the first end being connected to the connecting surface;

[0031] a cover body covering the second end of the connecting column and forming a mounting cavity together with the connecting column; and

[0032] a vibrating component mounted in the mounting cavity.

[0033] As an optional embodiment, in the embodiment of the present application, the vibrating massage assembly further comprises a fixing member, the fixing member and the connecting column are respectively arranged on two sides of the inner shell, and the fixing member and the connecting column are connected through a locking member.

[0034] As an optional embodiment, in the embodiment of the present application, an end of the connecting column close to the fixing member is provided with a first positioning part, the fixing member is provided with a second positioning part matched with the first positioning part, and the connecting surface is provided with a through hole for the first positioning part and / or the second positioning part to pass through.

[0035] As an optional embodiment, in the embodiment of the present application, one of the first positioning part and the second positioning part is a positioning block, and the other is a positioning hole.

[0036] As an optional embodiment, in the embodiment of the present application, the positioning block is at least two, and cross-sectional areas of the at least two positioning blocks are different.

[0037] As an optional embodiment, in the embodiment of the present application, the wearing support is provided with a circuit board, the connecting column is provided with a first wire passing hole, the connecting surface is provided with a second wire passing hole, the fixing member is provided with a third wire passing hole, the first wire passing hole, the second wire passing hole and the third wire passing hole are communicated, and the vibrating component is connected with the circuit board through a wire passing through the first wire passing hole, the second wire passing hole and the third wire passing hole.

[0038] As an optional embodiment, in the embodiment of the present application, the first wire passing hole, the second wire passing hole and the third wire passing hole are at least one.

[0039] As an optional embodiment, in the embodiment of the present application, the fixing member is provided with a notch, and the notch is communicated with the third wire passing hole.

[0040] As an optional embodiment, in the embodiment of the present application, the vibrating massage assembly further comprises a flexible sleeve, the flexible sleeve covers an outer surface of the vibrating component, and the flexible sleeve abuts against an inner wall surface of the mounting cavity.

[0041] As an optional implementation, in the embodiment of the present application, the vibration massage assembly further comprises a heating element, which is arranged against the inner wall of the cover and is separated from the vibration component by the flexible sleeve.

[0042] As an optional implementation, in the embodiment of the present application, the inner shell is a flexible inner shell, and the outer shell is an elastic outer shell.

[0043] As an optional implementation, in the embodiment of the present application, the height of the vibration massage assembly protruding from the main body gradually decreases in the direction from the center plane of the intermediate support to the two ends of the intermediate support, wherein the center plane is the plane obtained by cutting the intermediate support along the width direction of the intermediate support.

[0044] Compared with the prior art, the neck massage instrument of the present application has at least the following beneficial effects:

[0045] Since the vibration massage assembly and the connecting surface of the neck massage instrument of the present application are separately arranged, the vibration massage assembly and the inner shell with the connecting surface can be machined separately when the neck massage instrument is actually produced. When the inner shell is machined by injection molding, the inner shell can be better demolded, which can reduce the machining difficulty of the inner shell and improve the production yield of the inner shell. In addition, in the present application, the height of the connecting surface is adjusted by designing the shape of the mold, which can adjust the height of the vibration massage assembly protruding from the main body of the inner shell, thereby ensuring the fit of the vibration massage assembly with the user's neck and improving the use comfort of the neck massage instrument. BRIEF DESCRIPTION OF DRAWINGS

[0046] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0047] Figure 1 is a perspective structural schematic diagram of the neck massage instrument disclosed in the embodiment of the present application in a first visual angle state;

[0048] Figure 2 is a perspective structural schematic diagram of the neck massage instrument disclosed in the embodiment of the present application in a second visual angle state;

[0049] Figure 3 is a front view of the intermediate support of the neck massage instrument disclosed in the embodiment of the present application;

[0050] Figure 4 is Figure 3B-O-B rotating section view in

[0051] Figure 5 is a perspective structural schematic view of the middle support of the neck massager disclosed in the embodiments of the present application;

[0052] Figure 6 is a front view of the inner shell of the neck massager disclosed in the embodiments of the present application;

[0053] Figure 7 is Figure 6 A-A section view in

[0054] Figure 8 is a perspective structural schematic view of the vibration massage assembly of the neck massager disclosed in the embodiments of the present application;

[0055] Figure 9 is a section view of the vibration massage assembly of the neck massager disclosed in the embodiments of the present application;

[0056] Figure 10 is a section view of the connecting column and the cover assembled together disclosed in the embodiments of the present application;

[0057] Figure 11 is an exploded view of the vibration massage assembly of the neck massager disclosed in the embodiments of the present application;

[0058] Figure 12 is a perspective structural schematic view of the connecting column of the neck massager disclosed in the embodiments of the present application;

[0059] Figure 13 is a side view of the connecting column of the neck massager disclosed in the embodiments of the present application;

[0060] Figure 14 is a perspective structural schematic view of the fixing member of the neck massager disclosed in the embodiments of the present application;

[0061] Figure 15 is Figure 6 the enlarged view of M area in

[0062] Figure 16 is a perspective structural schematic view of the neck massager in the third visual angle state disclosed in the embodiments of the present application;

[0063] Figure 17 is Figure 16 C-C section view in

[0064] Icon: 10, wearing support; 11, middle support; 111, outer shell; 112, inner shell; 1121, connecting surface; 11211, let go of the through-hole; 11212, second wire hole; 1122, deformation auxiliary part; 11221, first ring part; 11222, second ring part; 11223, thin-walled structure; 1123, main body; 1101, center surface; 12, handle; 12a, first handle; 12b, second handle; 101, wearing space; 20, vibration massage assembly; 21, connecting column; 211, first end; 212, second end; 213, first positioning part; 2131, first positioning block; 2132, second positioning block; 214, first wire hole; 22, cover body; 23, vibration part; 231, terminal; 24, fixing piece; 241, second positioning part; 242, third wire hole; 243, notch; 25, locking piece; 26, flexible sleeve; 261, avoiding notch; 27, heating element; 201, mounting cavity; 30, circuit board. DETAILED DESCRIPTION

[0065] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0066] In the present application, the terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "transverse", "longitudinal" and the like indicate the orientation or positional relationship shown in the drawings. These terms are mainly used to better describe the present application and its embodiments, and are not used to limit the indicated devices, elements or components to have a specific orientation, or to be constructed and operated in a specific orientation.

[0067] In addition, in addition to indicating the orientation or positional relationship, the above-mentioned part of the terms may also be used to indicate other meanings, for example, the term "upper" may also be used to indicate a certain dependent relationship or connection relationship in some cases. For those of ordinary skill in the art, the specific meaning of these terms in the present application can be understood according to the specific situation.

[0068] In addition, the terms "mounting", "arrangement", "provided with", "connected", "linked" should be interpreted broadly. For example, it can be fixed connection, detachable connection, or integral structure; it can be mechanical connection, or electrical connection; it can be direct connection, or indirect connection through intermediate medium, or internal communication between two devices, elements or components. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0069] In addition, the terms "first", "second" and the like are mainly used to distinguish different devices, elements or components (the specific types and structures can be the same or different, and are not intended to indicate or imply the relative importance and quantity of the indicated devices, elements or components). Unless otherwise stated, the meaning of "multiple" is two or more.

[0070] The following will be described in detail with reference to the accompanying drawings.

[0071] Referring to Figure 1 and Figure 2 As shown in the drawings, according to the embodiment of the present application, a neck massager is provided. The neck massager comprises a wearing support 10 and a plurality of vibration massage assemblies 20.

[0072] Specifically, the wearing support 10 is arranged in a C shape and is suitable for wearing on the neck. The wearing support 10 comprises a middle support 11 and two handles 12. In order to distinguish, the two handles 12 are respectively identified as a first handle 12a and a second handle 12b. In actual installation, the first handle 12a is arranged at a first end of the middle support 11, and the second handle 12b is arranged at a second end of the middle support 11 opposite to the first end. After assembly, the first handle 12a, the second handle 12b and the middle support 11 jointly enclose to form a wearing space 101. The vibration massage assembly 20 is installed on the side of the middle support 11 close to the wearing space 101, and can massage the neck of the user directly.

[0073] In use, the user holds the first handle 12a and the second handle 12b with both hands, and moves the first handle 12a and the second handle 12b towards the outside of the wearing space 101. At this time, the ends of the first handle 12a and the second handle 12b away from the middle support 11 are separated from each other, so that the neck of the user can enter the wearing space 101. After wearing, the vibration massage assembly 20 can be aligned with the neck of the user, so as to relax and massage the neck of the user. The operation is simple and convenient to use.

[0074] Optionally, the first handle 12a and the second handle 12b can be connected to the middle support 11 by at least one of a snap-fit assembly, welding, hinging, a fastening screw, and a fastening pin. When the first handle 12a and the second handle 12b are connected by hinging, the first handle 12a and the second handle 12b can have an unfolded state (as shown in FIG. 1) and a folded state (not shown in the drawings). When the first handle 12a and the second handle 12b are folded towards the inside of the wearing space 101 relative to the middle support 11, the peripheral volume of the whole massage device is reduced, facilitating the user to carry and store the massage device. When the first handle 12a and the second handle 12b are unfolded, the massage device can be worn on the user's neck to massage and relax the user's neck. Figures 1 to 2 When the first handle 12a and the second handle 12b are connected by hinging, the first handle 12a and the second handle 12b can have an unfolded state (as shown in FIG. 1) and a folded state (not shown in the drawings). When the first handle 12a and the second handle 12b are folded towards the inside of the wearing space 101 relative to the middle support 11, the peripheral volume of the whole massage device is reduced, facilitating the user to carry and store the massage device. When the first handle 12a and the second handle 12b are unfolded, the massage device can be worn on the user's neck to massage and relax the user's neck.

[0075] In some embodiments of the present application, the middle support 11 includes an outer shell 111 and an inner shell 112, the inner shell 112 is arranged on the side of the outer shell 111 facing the wearing space 101, the inner shell 112 includes a main body 1123 and a plurality of connecting surfaces 1121 arranged on the main body 1123; and the vibration massage assemblies 20 are arranged separately from the connecting surfaces 1121. The plurality of vibration massage assemblies 20 are connected to the plurality of connecting surfaces 1121 one by one, and the vibration massage assemblies 20 are all connected to the side of the inner shell 112 close to the wearing space 101 through the connecting surfaces 1121. At least part of the connecting surfaces 1121 are at different heights so that at least part of the vibration massage assemblies 20 protrude from the main body 1123 at different heights. It can be understood that at least part of the connecting surfaces 1121 at different heights means that part or all of the plurality of connecting surfaces 1121 are at different heights relative to the same reference, for example, the heights relative to the main body 1123 or the outer shell 111 can be different.

[0076] Since the vibration massage assemblies 20 and the connecting surfaces 1121 in the present embodiment are arranged separately, the vibration massage assemblies 20 and the inner shell 112 with the connecting surfaces 1121 can be machined separately when producing the neck massage device. When the inner shell 112 is machined by injection molding, the inner shell 112 can be better demolded, which can reduce the machining difficulty of the inner shell 112 and improve the production yield of the inner shell 112. In addition, in the present embodiment, the height of the connecting surface 1121 is adjusted by designing the shape of the mold, which can adjust the height of the vibration massage assembly 20 protruding from the main body 1123 of the inner shell 112, and thus can ensure the fit of the vibration massage assembly 20 with the user's neck, which can improve the use comfort of the neck massage device.

[0077] Meanwhile, in the embodiment, the height of at least part of the vibration massage assembly 20 is ensured to be different from the height of the main body 1123 by making at least part of the connecting surface 1121 have different heights. Therefore, in the actual processing of the vibration massage assembly 20, the vibration massage assembly 20 can be made into a standard part with uniform size, which is convenient for manufacturing and can ensure the fit requirement of the vibration massage assembly 20 and the neck and reduce the manufacturing cost of the neck massager in the embodiment.

[0078] Further, in the embodiment, the inner shell 112 is provided with a plurality of vibration massage assemblies 20. During operation, the plurality of vibration massage assemblies 20 can vibrate cooperatively, which can not only increase the contact area between the massager and the human body and improve the massage effect of the massager, but also simulate a plurality of massage effects. For example, when the plurality of vibration massage assemblies 20 swing relative to the inner shell 112, the action of finger massage can be simulated. When the plurality of vibration massage assemblies 20 float relative to the inner shell 112, the action of hand beating can be simulated.

[0079] In some embodiments of the present application, the outer shell 111 is an elastic outer shell and the inner shell 112 is a flexible inner shell. That is, the intermediate support 11 in the embodiment has a certain elasticity. When the user moves the handle 12, the support 10 can be opened outward by the elastic force of the elastic outer shell, and the flexible inner shell is also opened, which can increase the distance between the adjacent two vibration massage assemblies 20. During wearing, the vibration massage assemblies 20 will not collide, which can not only improve the service life of the massager, but also improve the user experience.

[0080] Optionally, the elastic outer shell can be a plastic outer shell. The plastic outer shell is made of a hard material with a certain elasticity, which is convenient for supporting and positioning the flexible inner shell, can ensure the appearance shape of the massager, has low production cost and can be mass-produced by using a mold. In other embodiments of the present application, the elastic outer shell can also be a metal outer shell, such as a thin steel plate. The thin steel plate has good elasticity and strength, which can not only support and position the flexible inner shell, but also improve the service life of the massager. Optionally, the elastic outer shell can also be an outer shell structure made of other hard organic materials and having a certain elasticity. As long as it is other deformation modes under the concept of the present application, it is within the protection scope of the present application.

[0081] Optionally, the inner shell 112 can be a flexible inner shell such as a silica gel inner shell or a rubber inner shell. The inner shell 112 is provided as a flexible inner shell, which can not only buffer the vibration of the vibration massage assembly 20, but also provide a certain auxiliary action for the swing and float of the vibration massage assembly 20.

[0082] In some embodiments of the present application, in order to make the height of at least part of the connecting surface 1121 different, at least part of the connecting surface 1121 can be raised relative to the main body 1123 towards the direction away from the shell 111, and / or at least part of the connecting surface 1121 can be recessed relative to the main body 1123 towards the direction close to the shell 111 to different depths, and / or at least part of the connecting surface 1121 can be arranged coplanar with the main body 1123. It can be understood that the connecting surface 1121 arranged coplanar with the main body 1123 in the present embodiment means that the connecting surface 1121 continuously extends along the surface of the main body 1123, and there is no obvious concave-convex step between the connecting surface 1121 and the surface of the main body 1123.

[0083] Specifically, in one embodiment of the present application, the height of at least part of the vibrating massage assembly 20 protruding from the main body 1123 is made different by making at least part of the connecting surface 1121 raised relative to the main body 1123 to different heights towards the direction away from the shell 111. That is to say, the height of at least part of the vibrating massage assembly 20 protruding from the outer surface of the main body 1123 in the present embodiment is different, and after the vibrating massage assembly 20 is connected to the connecting surface 1121, the height of at least part of the vibrating massage assembly 20 protruding from the main body 1123 is made different, which can ensure the fit of the vibrating massage assembly 20 with the user's neck.

[0084] In another embodiment of the present application, the height of at least part of the vibrating massage assembly 20 protruding from the main body 1123 is made different by making at least part of the connecting surface 1121 recessed relative to the main body 1123 to different depths towards the direction close to the shell 111. That is to say, the depth of the recess of at least part of the connecting surface 1121 relative to the outer surface of the main body 1123 in the present embodiment is different, and after the vibrating massage assembly 20 is connected to the connecting surface 1121, the height of at least part of the vibrating massage assembly 20 protruding from the main body 1123 is made different, which can ensure the fit of the vibrating massage assembly 20 with the user's neck.

[0085] In another embodiment of the present application, the height of at least part of the vibrating massage assembly 20 protruding from the main body 1123 is made different by making at least part of the connecting surface 1121 raised relative to the main body 1123 to different heights towards the direction away from the shell 111, and making at least part of the connecting surface 1121 recessed relative to the main body 1123 to different depths towards the direction close to the shell 111. That is to say, the height of part of the connecting surface 1121 protruding from the outer surface of the main body 1123 in the present embodiment is different, and the depth of part of the connecting surface 1121 recessed relative to the outer surface of the main body 1123 is different, and after the vibrating massage assembly 20 is connected to the connecting surface 1121, the height of at least part of the vibrating massage assembly 20 protruding from the main body 1123 is made different, which can ensure the fit of the vibrating massage assembly 20 with the user's neck.

[0086] In another embodiment of the present application, by making at least part of the connecting surface 1121 recessed to different depths relative to the main body 1123 towards the direction of approaching the shell 111, and making at least part of the connecting surface 1121 coplanar with the main body 1123, the height of at least part of the vibration massage assembly 20 protruding from the main body 1123 is different. That is to say, in this embodiment, part of the connecting surface 1121 protrudes from the outer surface of the main body 1123 to different depths, and part of the connecting surface 1121 is located on the surface of the main body 1123. After connecting the vibration massage assembly 20 on the connecting surface 1121, the height of at least part of the vibration massage assembly 20 protruding from the main body 1123 is different, which can ensure the fit of the vibration massage assembly 20 with the user's neck.

[0087] In another embodiment of the present application, by making at least part of the connecting surface 1121 protrude to different heights relative to the main body 1123 towards the direction of away from the shell 111, and making at least part of the connecting surface 1121 coplanar with the main body 1123, the height of at least part of the vibration massage assembly 20 protruding from the main body 1123 is different. That is to say, part of the connecting surface 1121 protrudes from the outer surface of the main body 1123 to different heights, and part of the connecting surface 1121 is located on the surface of the main body 1123. After connecting the vibration massage assembly 20 on the connecting surface 1121, the height of at least part of the vibration massage assembly 20 protruding from the main body 1123 is different, which can ensure the fit of the vibration massage assembly 20 with the user's neck.

[0088] In another embodiment of the present application, by making at least part of the connecting surface 1121 protrude to different heights relative to the main body 1123 towards the direction of away from the shell 111, and making at least part of the connecting surface 1121 coplanar with the main body 1123, the height of at least part of the vibration massage assembly 20 protruding from the main body 1123 is different. That is to say, part of the connecting surface 1121 protrudes from the outer surface of the main body 1123 to different heights, and part of the connecting surface 1121 is located on the surface of the main body 1123. After connecting the vibration massage assembly 20 on the connecting surface 1121, the height of at least part of the vibration massage assembly 20 protruding from the main body 1123 is different, which can ensure the fit of the vibration massage assembly 20 with the user's neck.

[0089] Optionally, among the plurality of connecting surfaces 1121, one of the connecting surfaces 1121 at the lowermost part of the intermediate support 11 is higher than the other connecting surfaces 1121. That is, the connecting surface 1121 at the lowermost part of the intermediate support 11 is farthest from the outer shell 111, and after the vibration massage assembly 20 is installed on the connecting surface 1121, the vibration massage assembly 20 protrudes from the main body 1123 to the highest extent, can adapt to the external shape of the human neck, and can ensure that the plurality of vibration massage assemblies 20 can be in good contact with the skin of the neck as much as possible, further improving the massage efficiency and use comfort of the neck massager.

[0090] As shown in FIGS. 1, 2, and 3, the intermediate support 11 comprises at least one pair of connecting surfaces 1121, and the vibration massage assembly 20 is installed on the connecting surface 1121. Figure 3 and Figure 4 As shown in FIGS. 1, 2, and 3, the intermediate support 11 comprises at least one pair of connecting surfaces 1121, and the vibration massage assembly 20 is installed on the connecting surface 1121.

[0091] Further, along the direction from the lower part to the upper part of the intermediate support 11, the height of the vibration massage assembly 20 protruding from the main body 1123 gradually decreases. In the specific design, the height of the vibration massage assembly 20 protruding from the main body 1123 gradually decreases by adjusting the height of the connecting surface 1121. As shown in FIGS. 1, 2, and 3, the height of the vibration massage assembly 20 protruding from the main body 1123 gradually decreases along the direction from the lower part to the upper part of the intermediate support 11. Figure 4As shown, the connecting surface 1121 below the middle support 11 is protruded relative to the main body 1123 in a direction away from the shell 111 with a height of h3, and the connecting surface 1121 above the middle support 11 is recessed relative to the main body 1123 in a direction close to the shell 111 with a recess depth of h1. In this way, the vibration massage assembly 20 below the middle support 11 is protruded above the height h4 of the vibration massage assembly 20 above the middle support 11 by the height h2 of the vibration massage assembly 20 above the middle support 11. It can be understood that the up and down directions herein refer to the up and down directions when the neck massager is worn on the neck, specifically, when worn, the side of the middle support 11 close to the top of the user's head is up, and the side of the middle support 11 close to the bottom of the user's foot is down. That is, the vibration massage assembly 20 below the middle support 11 is higher, and the vibration massage assembly 20 above the middle support 11 is lower, so that the vibration massage assemblies 20 on the middle support 11 surround a space that is adapted to the external shape of the human neck, ensuring that the vibration massage assemblies 20 can well fit the user's neck and facilitate sufficient massage of the user's neck.

[0092] Further, in the width direction of the middle support 11, the plurality of vibration massage assemblies 20 are arranged in at least two rows on the middle support 11, the vibration massage assemblies 20 in the same row are protruded from the middle support 11 by equal heights, and along the direction from bottom to top, the heights of the vibration massage assemblies 20 in each row protruding from the middle support 11 gradually decrease. Figures 3 to 5 As shown, the vibration massage assemblies 20 are arranged in four rows, and the heights of the vibration massage assemblies 20 in each row protruding from the middle support 11 are different, wherein H1, H2, H3 and H4 respectively represent the heights of the four rows of vibration massage assemblies 20 from bottom to top. Figure 5 As can be seen, H1>H2>H3>H4. It can be understood that the meaning of the vibration massage assemblies 20 in the same row protruding from the middle support 11 by equal heights in the embodiment is that the heights of the vibration massage assemblies 20 in the same row protruding from the middle support 11 are substantially equal, rather than absolutely equal, and there is a processing error between the vibration massage assemblies 20, for example, the processing error can be within the range of -5mm to 5mm. In this way, the vibration massage assemblies 20 on the middle support 11 surround a space that is adapted to the external shape of the human neck, so that the vibration massage assemblies 20 can well fit the user's neck and facilitate sufficient massage of the user's neck. In addition, the height of the vibration massage assembly 20 protruding from the middle support 11 in the embodiment refers to the height of the vibration massage assembly 20 protruding from the surface of the main body 1123 of the inner shell 112.

[0093] As Figure 3As shown in FIG, in a specific embodiment of the present invention, multiple vibration massage assemblies 20 are arranged in four rows. From bottom to top, the rows of vibration massage assemblies 20 are sequentially arranged as the first row, the second row, the third row, and the fourth row. The first row has one vibration massage assembly 20, the second row has two vibration massage assemblies 20, the third row has two vibration massage assemblies 20, and the fourth row has four vibration massage assemblies 20. Specifically, the vibration massage assemblies 20 in each row are spaced apart from one end to the other end of the middle bracket 11. It should be understood that in this embodiment, the arrangement of the vibration massage assemblies 20 in each row along the length of the middle bracket 11 refers to the arrangement of the multiple vibration massage assemblies 20 in each row. Specifically, when arranged, the multiple vibration massage assemblies 20 in the same row are approximately located on a straight line or an arc. When the multiple vibration massage assemblies 20 are approximately located on the same arc, the arc is parallel to the upper or lower contour of the middle bracket 11.

[0094] Furthermore, along the direction from the bottom to the top of the intermediate support 11, the number of vibration massage components 20 in each row is arranged in an increasing manner for at least two rows. It can be understood that, in this embodiment, the number of vibration massage components 20 in each row is arranged in an increasing manner for at least two rows, along the direction from the bottom to the top, the number of vibration massage components 20 in the upper row is greater than the number of vibration massage components 20 in the lower row. For example, see Figure 3 As shown, the number of vibration massage assemblies 20 in the second row is 2, and the number of vibration massage assemblies 20 in the first row is 1. In this case, the number of vibration massage assemblies 20 in the second row is greater than the number of vibration massage assemblies 20 in the first row. This arrangement allows the arrangement of multiple vibration massage assemblies 20 to adapt to changes in the overall shape of the intermediate bracket 11, allowing more vibration massage assemblies 20 to be installed, thereby facilitating effective massage and soothing of the user's neck.

[0095] Optionally, the width of the middle portion of the middle bracket 11 in this embodiment is greater than the width of the end portions of the middle bracket 11, and the lower contour of the middle bracket 11 extends downward from the ends to the middle of the middle bracket 11. When the vibration massage components 20 are actually arranged, the number of vibration massage components 20 in the uppermost row can be the largest, while the number of vibration massage components 20 in the lowermost row can be the smallest. For example, Figure 3 As shown, the fourth row has the largest number of vibration massage components 20, and the first row has the least number of vibration massage components 20. This arrangement allows the arrangement of multiple vibration massage components 20 to adapt to changes in the overall shape of the intermediate bracket 11, and more vibration massage components 20 can be installed, thereby facilitating effective massage and relief of the user's neck.

[0096] In other embodiments of the present application, the height of the vibration massage assembly 20 protruding from the main body 1123 can gradually decrease in the direction from the center plane 1101 of the intermediate support 11 to the two ends of the intermediate support 11, where the center plane 1101 is the center plane 1101 described above, i.e. the center plane 1101 is the midpoint in the length direction of the intermediate support 11, and the plane obtained by cutting the intermediate support 11 in the width direction of the intermediate support 11. By gradually decreasing the height of the vibration massage assembly 20 protruding from the main body 1123 in the direction from the center plane 1101 of the intermediate support 11 to the two ends of the intermediate support 11, it can be suitable for users with different neck circumferences.

[0097] Referring to Figure 6 and Figure 7 As shown, a deformation auxiliary part 1122 is arranged between the connecting surface 1121 and the main body 1123. When the vibration massage assembly 20 is installed on the connecting surface 1121, and the vibration massage assembly 20 vibrates, the deformation auxiliary part 1122 can play a buffering role for the vibration of the vibration massage assembly 20, can play a damping role, can reduce the vibration of the vibration massage assembly 20 from being transmitted to the shell 111 and the handle 12, and can improve the use comfort of the neck massager.

[0098] Exemplarily, the deformation auxiliary part 1122 can be arranged as an annular fold, which is arranged around the outer periphery of the connecting surface 1121, has a simple structure, has a better vibration buffering effect, and can further improve the deformation ability and damping effect of the vibration massage assembly 20 relative to the inner shell 112. It can be understood that the annular fold described in the present embodiment is a thin-walled structure with a certain elasticity and reciprocating bending, which can be specifically referred to as Figure 7 As shown, the annular fold includes a first ring part 11221 and a second ring part 11222 arranged inside the first ring part 11221, the first ring part 11221 is protruded from the inner shell 112, the two ends of the first ring part 11221 are respectively connected to the inner shell 112 and one end of the second ring part 11222, the other end of the second ring part 11222 is connected to the connecting surface 1121, and the second ring part 11222 and the connecting surface 1121 form a groove, the connecting surface 1121 forms the bottom surface of the groove, facilitates the installation of the vibration massage assembly 20, and the contact part of the vibration massage assembly 20 with the connecting surface 1121 is immersed in the bottom of the groove, which can improve the integrity of the appearance of the massager. The deformation auxiliary part 1122, the connecting surface 1121 and the main body 1123 are integrally formed, have high structural strength, and are convenient for production and processing. Of course, in other embodiments of the present application, the deformation auxiliary part 1122 and the connecting surface 1121 can also be separately arranged and then assembled into one body.

[0099] Further, the deformation auxiliary part 1122 further comprises a thin-walled structure 11223 which is annular and connected to the outer side of the annular fold, and the thickness of at least part of the thin-walled structure 11223 is smaller than the thickness of the inner shell 112 and the annular fold. That is to say, the thickness of the position where the annular fold is connected to the inner shell 112 is relatively weak. When the vibration massage assembly 20 is in vibration work, the thin-walled structure 11223 will deform preferentially to the annular fold, which can improve the swinging and floating ability of the vibration massage assembly 20 relative to the inner shell 112. The main role of the thin-walled structure 11223 in the embodiment is to assist the vibration massage assembly 20 to realize the circumferential swinging and axial movement, and can buffer the vibration ability of the vibration massage assembly 20, which can further prevent the vibration of the vibration massage assembly 20 from being transmitted to the outer shell 111 and the handle 12.

[0100] In some embodiments of the present application, the height of at least part of the first ring part 11221 protruding from the main body 1123 is different, so that the height of at least part of the connecting surface 1121 is different; and / or, the depth H of at least part of the groove is different, so that the height of at least part of the connecting surface 1121 is different. In actual design, if the groove is too deep or too shallow, the part of the vibration massage assembly 20 protruding from the groove is too little or too much, which may, for example, cause the vibration massage assembly 20 to interfere with the groove when vibrating, the vibration massage assembly 20 cannot protrude out of the groove, and the vibration massage assembly 20 protrudes too much to expose the bottom components. In order to make the height of at least part of the connecting surface 1121 different, the height of at least part of the first ring part 11221 protruding from the main body 1123 can be made different, or the depth of at least part of the groove can be made different, or the height of part of the first ring part 11221 protruding from the main body 1123 can be made different and the depth of part of the groove can be made different, and the specific setting mode is various, and the specific selection and design can be made according to the demolding requirement, assembly requirement, etc. of the inner shell 112 during processing, which is not specifically limited in the embodiment.

[0101] Referring to Figures 8 to 10 As shown in the drawings, in some embodiments of the present application, the vibration massage assembly 20 comprises a connecting column 21, a cover 22 and a vibration part 23.

[0102] The connecting column 21 comprises a first end 211 and a second end 212, the first end 211 is connected to the middle support 11; the cover body 22 is covered on the second end 212 of the connecting column 21 and surrounds the connecting column 21 to form the mounting cavity 201; the vibration component 23 is installed in the mounting cavity 201 to drive the cover body 22 to move along the radial direction and / or the axial direction of the connecting column 21. In this way, when the vibration component 23 vibrates, the cover body 22 can be driven to move along the radial direction and / or the axial direction of the connecting column 21, which is convenient for massaging and relieving the muscles of the user. Illustratively, the vibration component 23 described above is a vibration motor, which is a flat motor having multiple vibration directions, which can vibrate up and down and also can vibrate left and right. Through the control of the main control program of the wearing support 10, multiple massage methods can be simulated, and the massage experience of the neck massager can be further enriched. In addition, since the flexible inner shell and the vibration massage assembly 20 are separately arranged, the overall demolding of the inner shell 112 can be better realized, the connecting surface with different heights of the installation position can be conveniently made, and the vibration massage assembly 20 can be assembled with the flexible inner shell after assembly, which is convenient for assembly.

[0103] Further, the vibration massage assembly 20 further comprises a fixing member 24, the fixing member 24 and the connecting column 21 are arranged on two sides of the inner shell 112 respectively, and the fixing member 24 and the connecting column 21 are connected through a locking member 25. Compared with the mode of directly fixing (not through the fixing member 24) the vibration massage assembly 20 on the flexible inner shell, the vibration massage assembly 20 and the fixing member 24 are arranged on two sides of the inner shell 112 respectively, which is convenient for positioning and installing the vibration massage assembly 20, the connection stability is higher, and further, the inner shell 112 can be clamped by the fixing member 24 and the connecting column 21, so that the whole vibration massage assembly 20 can be more easily swung by the deformation of the flexible inner shell. Optionally, the fixing member 24 in the embodiment can be a hard block structure, a hard plate structure, etc., and the locking member 25 can be a fastening screw, a pin, a rivet or a buckle structure, etc.

[0104] Further, the vibration massage assembly 20 further comprises a flexible sleeve 26, the flexible sleeve 26 is wrapped on the outer surface of the vibration component 23, and the flexible sleeve 26 abuts against the inner wall surface of the mounting cavity 201. Through the action of the flexible sleeve 26, the gap between the vibration component 23 and the mounting cavity 201 can be filled, so that the vibration component 23 can be prevented from moving in the mounting cavity 201 when vibrating, and the flexible sleeve 26 can also play a role in buffering and shock absorption when the vibration component 23 vibrates, so that the noise of the vibration component 23 can be reduced, and the machining precision between the vibration component 23 and the mounting cavity 201 can also be compensated, that is, when the machining precision of the connecting column 21 and the cover body 22 is low, the flexible sleeve 26 deforms to absorb the machining error. Optionally, the flexible sleeve 26 in the embodiment can be a silica gel sleeve, and can also be a plastic sleeve, etc.

[0105] Optionally, the vibration component 23 in the embodiment is provided with a wiring terminal 231, and the flexible sleeve 26 is provided with a relief gap 261 for avoiding the wiring terminal 231. The wiring terminal 231 of the vibration component 23 can be exposed from the relief gap 261, and the wiring is simple and convenient.

[0106] Further, the vibration massage assembly 20 further comprises a heating element 27 which is arranged against the inner wall of the cover body 22 and is separated from the vibration component 23 by the flexible sleeve 26. In operation, the heating element 27 generates heat to facilitate heating of the user and improve the use comfort of the neck massager. In addition, the heating element 27 is separated from the vibration component 23 by the flexible sleeve 26, which can prevent the heat generated by the heating element 27 from being transmitted to the vibration component 23 to affect the operation of the vibration component 23. Optionally, the heating element 27 is a heating film, which is light and thin and can meet the miniaturization design requirement of the neck massager.

[0107] Please see FIG. 6, Figures 11 to 15 As shown in FIG. 6, the connecting column 21 is provided with a first positioning part 213 at one end close to the fixing part 24, the fixing part 24 is provided with a second positioning part 241 matched with the first positioning part 213, and the connecting surface 1121 is provided with a relief through hole 11211 for the first positioning part 213 and / or the second positioning part 241. Through the mutual cooperation of the first positioning part 213 and the second positioning part 241, the fixing part 24 and the connecting column 21 can be quickly connected together, and then the locking part 25 is used to lock the connecting column 21 and the fixing part 24 on the inner shell 112, so that the whole assembly process is simple and fast.

[0108] Optionally, one of the first positioning part 213 and the second positioning part 241 is a positioning block, and the other is a positioning hole. Figure 11 and Figure 12 The first positioning part 213 is a positioning block, and the second positioning part 241 is a positioning hole, as shown in FIG. 6. In actual assembly, the positioning block on the connecting column 21 is sequentially inserted into the relief through hole 11211 on the connecting surface 1121 and the positioning hole on the fixing part 24, and then the fixing part 24 and the connecting column 21 are locked by the locking part 25, so that the connecting column 21 is stably fixed on the inner shell 112. Of course, in other embodiments of the present application, the first positioning part 213 can be arranged as a positioning hole, and the second positioning part 241 can be arranged as a positioning block.

[0109] Further, the positioning block in the embodiment is at least two blocks, and the cross-sectional areas of the at least two positioning blocks are different. Figure 11 and Figure 12The present invention shows a case where there are two positioning blocks. For the sake of distinction, the positioning blocks are respectively identified as a first positioning block 2131 and a second positioning block 2132 in this embodiment, and the cross-sectional areas of the first positioning block 2131 and the second positioning block 2132 are different. Figure 11 and Figure 12 As shown, the cross-sectional area of ​​the first positioning block 2131 is smaller than the cross-sectional area of ​​the second positioning block 2132. In this embodiment, by making the cross-sectional areas of the first positioning block 2131 and the second positioning block 2132 different and providing positioning holes that match the first positioning block 2131 and the second positioning block 2132, the connection column 21 can be prevented from being installed upside down, achieving a good foolproof effect.

[0110] Combine Figures 11 to 17 As shown, the wearing bracket 10 in this embodiment is provided with a circuit board 30, a first wire hole 214 is provided on the connecting column 21, a second wire hole 11212 is provided on the connecting surface 1121, and a third wire hole 242 is provided on the fixing member 24. The first wire hole 214, the second wire hole 11212 and the third wire hole 242 are connected, and the vibration component 23 is connected to the circuit board 30 by passing the wires through the first wire hole 214, the second wire hole 11212 and the third wire hole 242. That is to say, in this embodiment, by providing the first wire hole 214, the second wire hole 11212 and the third wire hole 242 that are connected to each other, and allowing the wires to pass through the first wire hole 214, the second wire hole 11212 and the third wire hole 242, the circuit board 30 and the vibration component 23 located on the inner and outer sides of the wearing bracket 10 can be connected. After the connection is completed, the wires are routed along the inside of the connecting column 21, the inside of the connecting surface 1121, and the inside of the fixing part 24, which can provide a certain degree of protection for the wires and prevent the wires from being exposed on the outside of the neck massager and easily affected by the external environment.

[0111] Optionally, there is at least one first wire passing hole 214 , second wire passing hole 11212 , and third wire passing hole 242 , so as to facilitate wiring according to actual needs. Figures 13 to 14 The figure shows a case where there are two first wire passing holes 214 , two second wire passing holes 11212 and two third wire passing holes 242 .

[0112] Optionally, a notch 243 is provided on the fixing member 24, and the notch 243 is connected to the third wire hole 242. The fixing member 24 is a sheet-shaped, relatively small component, and a relatively high degree of alignment is required for the wire to pass through the third wire hole 242 of the fixing member 24. In this embodiment, by allowing the wire to enter the third wire hole 242 through the notch 243 on one side, the difficulty of wire assembly can be reduced.

[0113] In summary, the vibration massage assembly and the connecting surface of the neck massager of the present application are separately arranged, and the vibration massage assembly and the inner shell with the connecting surface can be machined separately when the neck massager is actually produced. When the inner shell is machined by injection molding, the inner shell can be better demolded, the machining difficulty of the inner shell can be reduced, and the production yield of the inner shell can be improved. In addition, in the present application, the height of the connecting surface is adjusted by designing the shape of the mold, the height of the vibration massage assembly protruding from the main body of the inner shell can be adjusted, and then the fit of the vibration massage assembly and the neck of the user can be ensured, and the use comfort of the neck massager can be improved.

[0114] At the same time, in the actual process of machining the vibration massage assembly, the vibration massage assembly can be made into a standard part with uniform size, which not only facilitates the manufacturing, but also ensures the fit requirement of the vibration massage assembly and the neck, and can reduce the manufacturing cost of the neck massager in the present embodiment.

[0115] The equipment of the neck massager disclosed in the embodiment of the present application is described in detail above, and the principles and implementation modes of the present application are described by applying specific examples in this paper. The above embodiment is only used to help understand the neck massager and the core idea of the present application; at the same time, for those skilled in the art, according to the idea of the present application, the specific implementation mode and application range will be changed, and in summary, the content of the specification should not be understood as a limitation of the present application.

Claims

1. A neck massager, characterized in that: include: A wearing bracket, comprising an intermediate bracket and two handles, the two handles being respectively provided at both ends of the intermediate bracket, the handles and the intermediate bracket forming a wearing space, the intermediate bracket comprising an outer shell and an inner shell, the inner shell being provided on a side of the outer shell facing the wearing space, the inner shell comprising a main body and a plurality of connection surfaces provided on the main body; as well as a plurality of vibration massage components, the vibration massage components and the connection surface being separately provided, the plurality of vibration massage components being connected to the plurality of connection surfaces in a one-to-one correspondence, and the vibration massage components being connected to a side of the inner shell close to the wearing space through the connection surface; In which, at least part of the connecting surfaces are at different heights so that at least part of the vibration massage components protrude from the main body at different heights; at least part of the connecting surfaces are convex relative to the main body in a direction away from the shell, and at least part of the connecting surfaces are concave relative to the main body in a direction close to the shell; among the multiple connecting surfaces, the connecting surface located at the bottom of the intermediate bracket is higher than the other connecting surfaces.

2. The neck massager according to claim 1, characterized in that At least one pair of the connecting surfaces are symmetrically arranged about the center plane of the intermediate bracket, wherein the center plane is a plane passing through the midpoint of the intermediate bracket in the length direction and obtained by cutting the intermediate bracket along the width direction of the intermediate bracket.

3. The neck massager according to claim 1, characterized in that: At least part of the connecting surface protrudes from the main body in a direction away from the housing at different heights, so that at least part of the vibration massage component protrudes from the main body at different heights.

4. The neck massager according to claim 1, characterized in that At least part of the connecting surface is recessed to different depths relative to the main body in a direction close to the housing, so that at least part of the vibration massage component protrudes from the main body at different heights.

5. The neck massager according to claim 1, characterized in that: At least part of the connecting surface has different protruding heights relative to the main body in the direction away from the shell, and at least part of the connecting surface has different recessed depths relative to the main body in the direction close to the shell, so that at least part of the vibration massage component protrudes from the main body at different heights.

6. The neck massager according to claim 1, characterized in that: At least part of the connecting surface has different protrusion heights relative to the main body in a direction away from the housing, and at least part of the connecting surface is coplanar with the main body, so that at least part of the vibration massage component protrudes from the main body at different heights.

7. The neck massager according to claim 1, characterized in that: At least part of the connecting surface is recessed to different depths relative to the main body toward the shell, and at least part of the connecting surface is coplanar with the main body, so that at least part of the vibration massage component protrudes from the main body at different heights.

8. The neck massager according to claim 1, characterized in that: At least part of the connecting surface has different protruding heights relative to the main body in the direction away from the shell, at least part of the connecting surface has different recessed depths relative to the main body in the direction close to the shell, and at least part of the connecting surface is arranged coplanar with the main body, so that at least part of the vibration massage component protrudes from the main body at different heights.

9. The neck massager according to claim 1, characterized in that: A deformation auxiliary portion is provided between the connecting surface and the main body.

10. The neck massager according to claim 9, characterized in that: The deformation auxiliary portion, the connecting surface and the main body are integrally formed.

11. The neck massager according to claim 9, characterized in that: The deformation assisting portion includes annular corrugations.

12. The neck massager according to claim 11, characterized in that: The annular fold includes a first ring portion and a second ring portion located inside the first ring portion, the first ring portion is protruded from the main body, the two ends of the first ring portion are respectively connected to the main body and one end of the second ring portion, the other end of the second ring portion is connected to the connecting surface, and the second ring portion and the connecting surface form a groove, and the connecting surface forms the bottom surface of the groove.

13. The neck massager according to claim 12, characterized in that: At least part of the first ring portion protrudes from the main body at different heights so that at least part of the connecting surface has different heights; and / or, At least some of the grooves have different depths so that at least some of the connecting surfaces have different heights.

14. The neck massager according to claim 11, characterized in that The deformation assisting portion further includes a thin-walled structure, which is annular and connected to the outer side of the annular fold. The thickness of at least a portion of the thin-walled structure is smaller than the thickness of the main body and the annular fold.

15. The neck massager according to claim 1, characterized in that Along the direction from the bottom to the top of the intermediate bracket, the height of the vibration massage component protruding from the main body gradually decreases.

16. The neck massager according to claim 1, characterized in that In the width direction of the intermediate bracket, multiple vibration massage components are arranged on the intermediate bracket in at least two rows, and the vibration massage components in the same row protrude from the intermediate bracket at the same height, and along the direction from bottom to top, the height of each row of vibration massage components protruding from the intermediate bracket gradually decreases.

17. The neck massager according to claim 16, characterized in that: The rows of vibration massage components are arranged at intervals along a direction from one end to the other end of the middle bracket.

18. The neck massager according to claim 16, wherein: Along the direction from the bottom to the top of the middle bracket, the number of the vibration massage components in each row is arranged in an increasing manner, with at least two rows.

19. The neck massager according to claim 18, characterized in that Along the direction from the top to the bottom of the wearing bracket, the number of the vibration massage components in the uppermost row is the largest, and the number of the vibration massage components in the lowermost row is the smallest.

20. The neck massager according to any one of claims 1 to 19, characterized in that The vibration massage component comprises: a connecting post, the connecting post comprising a first end and a second end, the first end being connected to the connecting surface; A cover body, the cover body is covered on the second end of the connecting post and surrounds the connecting post to form a mounting cavity; and A vibration component is installed in the installation cavity.

21. The neck massager according to claim 20, characterized in that The vibration massage component further includes a fixing piece, wherein the fixing piece and the connecting column are respectively arranged on both sides of the inner shell, and the fixing piece and the connecting column are connected by a locking piece.

22. The neck massager according to claim 21, characterized in that A first positioning portion is provided at one end of the connecting column close to the fixing member, a second positioning portion adapted to the first positioning portion is provided on the fixing member, and a clearance through hole for the first positioning portion and / or the second positioning portion to pass through is provided on the connecting surface.

23. The neck massager according to claim 22, characterized in that One of the first positioning portion and the second positioning portion is a positioning block, and the other is a positioning hole.

24. The neck massager according to claim 23, wherein: There are at least two positioning blocks, and at least two positioning blocks have different cross-sectional areas.

25. The neck massager according to claim 21, wherein A circuit board is provided in the wearing bracket, a first wire passing hole is provided on the connecting column, a second wire passing hole is provided on the connecting surface, and a third wire passing hole is provided on the fixing part. The first wire passing hole, the second wire passing hole and the third wire passing hole are connected, and the vibration component is connected to the circuit board through a wire passing through the first wire passing hole, the second wire passing hole and the third wire passing hole.

26. The neck massager according to claim 25, characterized in that There is at least one of the first wire passing hole, the second wire passing hole, and the third wire passing hole.

27. The neck massager according to claim 25, characterized in that The fixing member is provided with a notch, and the notch is communicated with the third wire passing hole.

28. The neck massager according to claim 20, wherein: The vibration massage component further includes a flexible sleeve, which covers the outer surface of the vibration component and abuts against the inner wall surface of the installation cavity.

29. The neck massager according to claim 28, characterized in that The vibration massage assembly further comprises a heating element, which is disposed against the inner wall of the cover and is separated from the vibration component by the flexible sleeve.

30. The neck massager according to any one of claims 1 to 19, characterized in that The inner shell is a flexible inner shell, and the outer shell is an elastic outer shell.

31. The neck massager according to any one of claims 1 to 15, characterized in that Along the direction from the center plane of the intermediate bracket to the two ends of the intermediate bracket, the height of the vibration massage component protruding from the main body gradually decreases, wherein the center plane is the midpoint of the intermediate bracket in the length direction and is the plane obtained by cutting the intermediate bracket along the width direction of the intermediate bracket.

Citation Information

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