Neck massager

By separating and flexibly connecting the flexible inner shell and the vibration massage component, the problems of poor fit and vibration interference in hard material massagers are solved, resulting in a better massage effect and user experience.

CN112675019BActive Publication Date: 2026-01-13GUANGDONG SKG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202011568943.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-12-25
Publication Date
2026-01-13
Estimated Expiration
2040-12-25

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Abstract

The application relates to the technical field of massage, in particular to a neck massager, which comprises a wearing support and a plurality of vibration massaging components, the wearing support has a wearing space, the wearing support comprises a flexible inner shell and a wearing outer shell, the flexible inner shell comprises a main body part and a plurality of mounting surfaces, the plurality of mounting surfaces are located on the side of the flexible inner shell facing the wearing space, the plurality of mounting surfaces are arranged at intervals, the periphery of each mounting surface is connected with the main body part through a connecting part respectively, so that the corresponding mounting surface has a freedom degree of movement relative to the main body part, each vibration massaging component is arranged in one-to-one correspondence with the plurality of mounting surfaces, and each vibration massaging component is connected to the corresponding mounting surface. The neck massager provided by the application can make each vibration massaging component form relatively independent vibration during work, so as to reduce the interference of the vibration generated by each vibration massaging component on each other, ensure the massaging effect of each vibration massaging component, and be favorable to improving the use experience of users.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of massage instruments, and particularly relates to a neck massage instrument. BACKGROUND

[0002] In the related art, a massage instrument with a vibrating massage head, such as an eye massage instrument or a neck massage instrument, generally has multiple vibrating massage heads arranged on a support, and the vibrating massage heads generate vibrations to massage human body parts such as the eyes or the neck. However, if the material of the wearing support of such a massage instrument is a hard material, the vibrating massage heads are not easy to adjust the angle, which affects the fitting effect and brings an uncomfortable experience to the user. Moreover, the base plate and the vibrating massage heads of such a massage instrument are usually integrally formed, and when massaging, the vibrations generated by each vibrating massage head interfere with each other, the resonance is large, and it is difficult for each vibrating massage head to form independent vibration massage, which affects the massage effect. SUMMARY

[0003] The embodiment of the present application discloses a neck massage instrument, and the vibrating massage assemblies can better fit the human neck, and the vibrations generated by each vibrating massage assembly have less interference with each other, thereby ensuring the massage effect of each vibrating massage assembly.

[0004] In order to achieve the above-mentioned purpose, the embodiment of the present application provides a neck massage instrument, which comprises:

[0005] A wearing support, the wearing support has a wearing space, the wearing support comprises a flexible inner shell and a wearing outer shell, the wearing outer shell is arranged away from the wearing space, the flexible inner shell is arranged towards the wearing space, the flexible inner shell comprises a main body part and multiple mounting surfaces, the multiple mounting surfaces are located on the side of the flexible inner shell towards the wearing space, the multiple mounting surfaces are arranged at intervals, and the periphery of each mounting surface and the main body part are connected by a connecting part respectively, so that the corresponding mounting surface has a degree of freedom relative to the main body part; and

[0006] Multiple vibrating massage assemblies, each vibrating massage assembly is arranged one-to-one corresponding to the multiple mounting surfaces, and each vibrating massage assembly is connected to the corresponding mounting surface.

[0007] As an optional implementation, in the embodiment of the present application, the main body part, the multiple mounting surfaces and the multiple connecting parts of the flexible inner shell are integrally formed.

[0008] As an optional implementation, in the embodiment of the present application, the connecting part is an annular wrinkle.

[0009] As an optional implementation, in the embodiment of the present application, the annular fold comprises a first ring part and a second ring part arranged in the first ring part, the first ring part is protruded from the main body part, two ends of the first ring part are connected to the main body part and one end of the second ring part respectively, the other end of the second ring part is connected to the mounting surface, and the second ring part and the mounting surface form a groove.

[0010] As an optional implementation, in the embodiment of the present application, the connection part and the main body part are connected through an arc transition part, the thickness of the arc transition part is smaller than the thickness of the connection part and the thickness of the main body part.

[0011] As an optional implementation, in the embodiment of the present application, at least one of the mounting surfaces is located at the middle position of the flexible inner shell, and at least one of the mounting surfaces is perpendicular to the central surface of the wearing support at the middle position of the flexible inner shell.

[0012] As an optional implementation, in the embodiment of the present application, at least one pair of the mounting surfaces located on two opposite sides of the central surface of the wearing support are symmetrical about the central surface of the wearing support.

[0013] As an optional implementation, in the embodiment of the present application, each of the mounting surfaces forms a first included angle with the central surface of the wearing support, and the first included angles of at least two of the mounting surfaces are different.

[0014] As an optional implementation, in the embodiment of the present application, among two adjacent mounting surfaces, the first included angle of the mounting surface close to the central surface of the wearing support is greater than the first included angle of the mounting surface away from the central surface of the wearing support.

[0015] As an optional implementation, in the embodiment of the present application, the protruding heights of at least two of the mounting surfaces towards the wearing space are different, so that the protruding heights of at least two of the vibration massage assemblies connected to the at least two of the mounting surfaces relative to the main body part are different.

[0016] As an optional implementation, in the embodiment of the present application, at least two of the mounting surfaces are arranged in the width direction of the flexible inner shell, and among the two of the mounting surfaces, the protruding height of the mounting surface close to the lower side of the flexible inner shell relative to the main body part is greater than the protruding height of the mounting surface close to the upper side of the flexible inner shell relative to the main body part.

[0017] As an optional implementation, in the embodiment of the present application, the sizes of the plurality of vibration massage assemblies are consistent.

[0018] As an optional implementation, in the embodiment of the present application, the wearing support comprises a middle support and two clamping arms, two ends of the middle support are connected with the two clamping arms respectively and the two clamping arms surround the middle support to form the wearing space, and the flexible inner shell and the wearing outer shell are assembled to form the middle support.

[0019] As an optional implementation, in the embodiment of the present application, the wearing outer shell is an elastic shell.

[0020] As an optional implementation, in the embodiment of the present application, the vibration massage assembly comprises a connecting column and a massage head, the massage head is internally provided with a vibration component, the massage head is located at one end of the connecting column, and the other end of the connecting column is connected to the mounting surface.

[0021] As an optional implementation, in the embodiment of the present application, the axis of each connecting column is arranged perpendicularly to the corresponding mounting surface.

[0022] As an optional implementation, in the embodiment of the present application, the mounting surface is provided with a first positioning hole, and the end surface of the connecting column is provided with a positioning protrusion, the positioning protrusion is inserted into the first positioning hole.

[0023] As an optional implementation, in the embodiment of the present application, the number of the first positioning hole and the positioning protrusion is at least two and is arranged one-to-one, the size of the cross section of at least one positioning protrusion is different from the size of the cross section of the remaining positioning protrusions, and the size of the cross section of each first positioning hole is matched with the size of the cross section of the corresponding positioning protrusion respectively.

[0024] Wherein, the cross section of the positioning protrusion is a cross section of the positioning protrusion being cut by a plane parallel to the surface of the connecting column.

[0025] As an optional implementation, in the embodiment of the present application, the neck massage instrument further comprises a fixing member, the fixing member is located between the flexible inner shell and the wearing outer shell, the fixing member and the connecting column are located at two opposite sides of the mounting surface respectively, and the fixing member and the connecting column are fixedly connected with each other.

[0026] As an optional implementation, in the embodiment of the present application, the neck massage instrument further comprises a locking member, the locking member passes through the mounting surface and locks the fixing member and the connecting column.

[0027] As an optional implementation, in the embodiment of the present application, the mounting surface is provided with a first positioning hole, the end surface of the connecting column is provided with a positioning protrusion corresponding to the position of the first positioning hole, and the fixing member is provided with a second positioning hole corresponding to the position of the first positioning hole, and the positioning protrusion is inserted into the first positioning hole through the second positioning hole.

[0028] As an optional implementation, in the embodiment of the present application, the number of the first positioning hole, the second positioning hole and the positioning protrusion is at least two, each first positioning hole is provided in one-to-one correspondence with each positioning protrusion, and each second positioning hole is provided in one-to-one correspondence with each first positioning hole.

[0029] The cross-sectional dimension of at least one positioning protrusion is different from the cross-sectional dimension of the remaining positioning protrusions, the cross-sectional dimension of each first positioning hole is matched with the cross-sectional dimension of the corresponding positioning protrusion, and the cross-sectional dimension of each second positioning hole is matched with the cross-sectional dimension of the corresponding first positioning hole, wherein the cross section of the positioning protrusion is the cross section obtained by the positioning protrusion being cut by a plane parallel to the surface of the connecting column.

[0030] As an optional implementation, in the embodiment of the present application, the massage head comprises a mounting portion and a cover body, the cover body is connected with the mounting portion and forms a containing cavity with the mounting portion, the vibration component is arranged in the containing cavity, and the mounting portion and one end of the cover body are integrally formed, and the mounting portion is connected with the connecting column.

[0031] As an optional implementation, in the embodiment of the present application, the cover body is a metal piece.

[0032] Compared with the prior art, the present application has the following beneficial effects:

[0033] The neck massage instrument provided by the embodiment of the present application adopts a flexible inner shell, and the vibration massage assembly can adjust the angle with the help of the flexible inner shell, so as to better fit the human neck. Then, the flexible inner shell of the wearing support includes a main body and a plurality of mounting surfaces, the periphery of each mounting surface and the main body are connected through a connecting portion respectively, and each vibration massage assembly is connected with the corresponding mounting surface. Since the periphery of each mounting surface and the main body are connected through the connecting portion respectively, the corresponding mounting surface has the freedom of movement relative to the main body, so as to reduce or even block the vibration generated by each vibration massage assembly from being transmitted to the main body through the mounting surface, and then facilitate the vibration massage assembly to form relatively independent vibration when working, so as to reduce the interference of the vibration generated by each vibration massage assembly to each other, ensure the massage effect of each vibration massage assembly, and improve the user's experience.

[0034] In addition, the flexible inner shell and the vibration massage assembly are arranged in a split mode. On one hand, after being arranged in a split mode, the vibration generated by the vibration massage assembly can be hindered from being transmitted to the flexible inner shell to some extent, so that the resonance formed by each vibration massage assembly can be weakened, thereby facilitating the vibration massage formed by each vibration massage assembly to be relatively independent, so as to ensure the massage effect of each vibration massage component. On the other hand, the vibration massage assembly can be manufactured separately and then assembled with the flexible inner shell, so that the assembly difficulty can be reduced. BRIEF DESCRIPTION OF DRAWINGS

[0035] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0036] Figure 1 is a structural schematic view of the neck massage instrument in the first perspective view disclosed by the embodiments of the present application;

[0037] Figure 2 is a structural schematic view of the neck massage instrument in the second perspective view disclosed by the embodiments of the present application;

[0038] Figure 3 is a structural schematic view of the neck massage instrument in the third perspective view disclosed by the embodiments of the present application;

[0039] Figure 4 is a structural schematic view of the intermediate support disclosed by the embodiments of the present application;

[0040] Figure 5 is a sectional view of the c-c direction in Figure 4

[0041] Figure 6 is a structural schematic view of the flexible inner shell and the vibration massage assembly in the first perspective view disclosed by the embodiments of the present application;

[0042] Figure 7 is a structural schematic view of the flexible inner shell in the first perspective view disclosed by the embodiments of the present application;

[0043] Figure 8 is a sectional view of the a-a direction in Figure 7

[0044] Figure 9 is a local enlarged view of N in Figure 8

[0045] Figure 10 is a structural schematic view of the flexible inner shell in the second perspective view disclosed by the embodiments of the present application; ​​​

[0046] Figure 11 is Figure 10 is a sectional view of the b-b direction in

[0047] Figure 12 is a structural schematic view of the vibration massage assembly disclosed in the embodiment of the present application from a first perspective;

[0048] Figure 13 is an exploded structural schematic view of the vibration massage assembly disclosed in the embodiment of the present application from a first perspective;

[0049] Figure 14 is a structural schematic view of the vibration massage assembly disclosed in the embodiment of the present application from a second perspective;

[0050] Figure 15 is a structural schematic view of the flexible inner shell and the vibration massage assembly disclosed in the embodiment of the present application from a second perspective;

[0051] Figure 16 is Figure 15 is a partial enlarged view of P in

[0052] Figure 17 is a sectional view of the vibration massage assembly disclosed in the embodiment of the present application;

[0053] Figure 18 is a structural schematic view of the fixing member disclosed in the embodiment of the present application;

[0054] Figure 19 is an exploded structural schematic view of the vibration massage assembly disclosed in the embodiment of the present application from a second perspective.

[0055] Figure: 100-neck massage instrument; 1-wearing support; 10-wearing space; 11-flexible inner shell; 111-main body part; 112-mounting surface; 1121-first wire passing hole; 1122-first positioning hole; 113-connection part; 1131-first ring part; 1132-second ring part; 114-arc-shaped transition; 12-wearing outer shell; 13-intermediate support; 131-first inner shell; 132-first outer shell; 14-clamping arm; 141-second inner shell; 142-second outer shell; 2-vibration massage assembly; 21-connection column; 211-second wire passing hole; 212-positioning protrusion; 22-massage head; 221-mounting part; 222-cover; 23-vibration part; 24-heating part; 25-temperature sensor; 26-mounting seat; 261-first side surface; 262-second side surface; 263-first mounting groove; 264-second mounting groove; 3-fixing member; 31-second positioning hole; 4-locking member; θ-first clamping angle; a-inclination angle; M-middle position of the flexible inner shell; A-center surface of the wearing support; a-axis of the connection column. DETAILED DESCRIPTION

[0056] 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 a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the scope of protection of the present application.

[0057] In the present application, the terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "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 intended to limit the indicated devices, elements or components to have a specific orientation, or to be constructed and operated in a specific orientation.

[0058] In addition, in addition to being used to indicate the orientation or positional relationship, the above-mentioned partial terms can also be used to indicate other meanings, for example, the term "upper" can also be used to indicate a certain dependent relationship or connection relationship in some cases. For a person of ordinary skill in the art, the specific meaning of these terms in the present application can be understood according to the specific situation.

[0059] In addition, the terms "mount", "set", "provided with", "connected", "connected" should be broadly understood. For example, it can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection, or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or internal communication between two devices, elements or components. For a person of ordinary skill in the art, the specific meaning of the above-mentioned terms in the present application can be understood according to the specific situation.

[0060] 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.

[0061] The technical solutions of the present application will be further described below with reference to the embodiments and drawings.

[0062] Please refer to Figures 1 to 3 , Figure 1 The three-dimensional structure schematic diagram of the neck massager provided for an embodiment of the present application is shown in Figure 2 The top view of the neck massager in Figure 1 The neck massager in Figure 3 is viewed from bottom to topFigure 1 A three-dimensional structural schematic view of a neck massager in the middle. The neck massager 100 disclosed by the embodiments of the present application comprises a wearing support 1 and a plurality of vibration massage assemblies 2, the wearing support 1 can be used to be worn on the neck of a human body, has a wearing space 10 for accommodating the neck of a human body, and comprises a flexible inner shell 11 and a wearing outer shell 12, the wearing outer shell 12 is arranged away from the wearing space 10, and the flexible inner shell 11 is arranged towards the wearing space 10. The flexible inner shell 11 comprises a main body part 111 and a plurality of mounting surfaces 112, the plurality of mounting surfaces 112 are located on the side of the flexible inner shell 11 towards the wearing space 10, the plurality of mounting surfaces 112 are arranged at intervals, and the periphery of each mounting surface 112 is connected with the main body part 111 through a connecting part 113 respectively, so that the corresponding mounting surface 112 has a degree of freedom of movement relative to the main body part 111, and each vibration massage assembly 2 is arranged one by one corresponding to the plurality of mounting surfaces 112, and each vibration massage assembly 2 is connected to the corresponding mounting surface 112, so that the massage surface of each vibration massage assembly 2 is arranged towards the wearing space 10 of the wearing support 1.

[0063] Therefore, during massage, the vibration generated by each vibration massage assembly 2 can be transmitted to the corresponding mounting surface 112, but since each mounting surface 112 is connected with the main body part 111 through the connecting part 113, so that the corresponding mounting surface 112 has a degree of freedom of movement relative to the main body part 111, the vibration generated by each vibration massage assembly 2 can be reduced to be transmitted to the main body part 111 through the mounting surface 112, thereby facilitating the formation of relatively independent vibration of each vibration massage assembly 2 during work, so as to reduce the interference of the vibration generated by each vibration massage assembly 2 to each other. Further, the degree of freedom of movement of each mounting surface 112 relative to the main body part 111 can be that the mounting surface 112 moves along the circumferential direction of the mounting surface 112 relative to the main body part 111, and / or the mounting surface 112 moves along the axial direction of the mounting surface 112 relative to the main body part 111, and / or the mounting surface 112 swings relative to the main body part 111.

[0064] That is to say, since each connecting part 113 in the present application is configured to allow the corresponding mounting surface 112 to move relative to the main body part 111, therefore, during massage, the connecting part 113 can be deformed well under the action of the vibration massage assembly 2, and absorb the vibration generated by the vibration massage assembly 2, so as to reduce or even block the vibration generated by each vibration massage assembly 2 to be transmitted to the main body part 111 through the mounting surface 112, thereby facilitating the formation of relatively independent vibration of each vibration massage assembly 2 during massage, so as to reduce the interference of the vibration generated by each vibration massage assembly 2 to each other, ensure the massage effect of each vibration massage assembly 2, and facilitate to improve the use experience of the user.

[0065] In addition, since the inner shell of the neck massager 100 adopts a flexible inner shell, the angle of each vibration massaging assembly 2 can be adjusted by the flexible inner shell, so that the massage surface of each vibration massaging assembly 2 can be better fitted to the human neck, improving the user experience.

[0066] It can be understood that the vibration massaging assembly 2 described above is at least two, for example, two, three, four, five, six, seven, eight, nine or more, which is not limited here; correspondingly, the mounting surface 112 described above is also at least two, for example, two, three, four, five, six, seven, eight, nine or more, which is not limited here. For example, as shown in Figure 2 and Figure 3 The vibration massaging assembly 2 can be nine, and correspondingly, the mounting surface 112 can also be nine. The nine vibration massaging assemblies 2 are distributed along the side of the flexible inner shell 11 facing the wearing space 10, and arranging multiple vibration massaging assemblies 2 can increase the massage area of the neck massager 100, so that the massage surface of the neck massager 100 can cover the human neck as much as possible, more comprehensively massage the human neck, and improve the massage effect.

[0067] In addition, it is worth noting that during actual massage, the user can also start different numbers of vibration massaging assemblies 2 according to his own will to massage the human neck, for example, all vibration massaging assemblies 2 can be started to massage the human neck; for example, when the user wants to massage a certain part of the neck, the corresponding vibration massaging assembly 2 of the part can be started, and the remaining vibration massaging assemblies 2 are not started. At this time, since each vibration massaging assembly 2 can form relatively independent vibration during massage, the started vibration massaging assembly 2 will not drive the non-started vibration massaging assembly 2 nearby to vibrate together, so as to avoid the situation that the non-started vibration massaging assembly 2 is also massaging the neck due to the vibration of the started vibration massaging assembly 2, which drives the non-started vibration massaging assembly 2 nearby to vibrate together, so as to avoid bringing discomfort to people, that is, the vibration massaging assembly 2 of the present application can achieve the purpose of precise massage, and is more in line with humanized design.

[0068] As can be known from the above, the vibration massage assembly 2 is arranged separately from the flexible inner shell 11, compared with the vibration massage head and the substrate being integrally formed in the related art, on the one hand, after being arranged separately, the vibration generated by the vibration massage assembly 2 can be hindered from being transmitted to the flexible inner shell 11 to some extent, so that the resonance formed by each vibration massage assembly 2 can be weakened, thereby being beneficial to the vibration massage formed by each vibration massage assembly 2 being relatively independent, so as to ensure the massage effect of each vibration massage assembly 2; on the other hand, the manufacturing of the vibration massage assembly 2 and the flexible inner shell 11 can be facilitated, and the vibration massage assembly 2 can be assembled separately and then assembled with the flexible inner shell 11, so that the assembly difficulty can be reduced.

[0069] In some embodiments, the wearing support 1 can be substantially C-shaped. Further, the wearing support 1 can include a middle support 13 and two clamping arms 14, two ends of the middle support 13 are respectively connected with the two clamping arms 14 and surround the two clamping arms 14 to form the aforementioned wearing space 10, the flexible inner shell 11 and the wearing outer shell 12 are assembled to form the aforementioned middle support 13, that is, the middle support 13 can include a first inner shell 131 (the aforementioned flexible inner shell 11) and a first outer shell 132 (the aforementioned wearing outer shell 12) connected with each other, and each clamping arm 14 can include a second inner shell 141 and a second outer shell 142 connected with each other. Exemplarily, the two second inner shells 141 can be respectively connected with two ends of the first outer shell 132 to achieve that the two ends of the middle support 13 are respectively connected with the two clamping arms 14.

[0070] It can be understood that in other embodiments, the two clamping arms 14 can not be arranged separately, that is, the wearing support 1 can include an integrated flexible inner shell 11 and an integrated wearing outer shell 12, that is, the first inner shell 131 and the second inner shell 141 are integrally formed to form the aforementioned flexible inner shell 11, and the first outer shell 132 and the second outer shell 142 are integrally formed to form the aforementioned wearing outer shell 12, so that the integrated flexible inner shell 11 and the integrated wearing outer shell 12 form the substantially C-shaped wearing support 1, and surround the wearing space 10 together.

[0071] For example, the outer shell 12 can be an elastic shell, such as a silicone shell or a plastic shell. When the clamping arm 14 is pulled outwards for wearing, the outer shell 12 deforms under the influence of the clamping arm 14. Simultaneously, the flexible inner shell 11 also deforms under the influence of the outer shell 12, thereby increasing the wearing space 10 of the wearable support 1 for easier wearing. The flexible inner shell 11 can be a soft silicone shell or a soft plastic shell, which improves the skin-friendliness of the wearable support 1 while allowing for deformation. Furthermore, when the user pulls the clamping arm 14, the flexible inner shell 11 opens together under the influence of the outer shell 12, thereby increasing the distance between adjacent vibration massage components 2. During wear, the vibration massage components 2 will not collide, which not only improves the lifespan of the neck massager 100 but also enhances the user experience.

[0072] like Figure 5 As shown, Figure 5 The following is provided for one embodiment of this application: Figure 4 A cross-sectional view of the intermediate support in the cc direction. In some embodiments, at least two mounting surfaces 112 have different protrusion heights toward the wearing space, so that the at least two vibration massage components 2 connected to the at least two mounting surfaces 112 have different protrusion heights relative to the main body 111. In other words, along the direction toward the wearing space 10 (i.e., in the direction from the outer shell 12 toward the flexible inner shell 11), there is a height difference H1 between the protrusion heights of the at least two mounting surfaces 112 toward the wearing space 10, so that there is a height difference H2 between the protrusion heights of the at least two vibration massage components 2 connected to the corresponding mounting surfaces 112 relative to the main body 111. Thus, when manufacturing the flexible inner shell 11, the protrusion heights of the mounting surfaces 112 toward the wearing space 10 can be adjusted by designing the mold of the flexible inner shell 11, thereby adjusting the height of the massage surfaces of different vibration massage components 2, which can meet the requirement of the vibration massage components 2 fitting snugly against the human neck. Optionally, since the height of the massage surface of the vibration massage component 2 can be adjusted by designing a flexible inner shell 11, multiple vibration massage components 2 can be made into standard parts with uniform size, that is, multiple vibration massage components 2 have the same size, which facilitates the mold making of vibration massage components 2.

[0073] In other words, when multiple identical vibration massage components 2 are connected to mounting surfaces 112 of different heights, the massage surfaces of each vibration massage component 2 have different heights. This setting can meet the needs of each vibration massage component 2 to fit the human neck, improve the fit between each vibration massage component 2 and the human neck, and ensure that each vibration massage component 2 can fit well with the human neck.

[0074] Optionally, when the main body 111 protrudes to form a convex column towards the wearing space 10, the mounting surface 112 is an end surface of the convex column arranged towards the wearing space 10, and the protruding heights of the at least two mounting surfaces 112 towards the wearing space are different, which means that the end surfaces of the at least two convex columns towards the wearing space 10 have a height difference in the height direction of the convex column; or when the main body 111 protrudes to form a concave towards the wearing space 10, the mounting surface 112 is a bottom surface of the concave, and the protruding heights of the at least two mounting surfaces 112 towards the wearing space are different, which means that the bottom surfaces of the at least two concaves have a depth difference in the depth direction of the concave.

[0075] In some embodiments, the at least two mounting surfaces 112 are arranged at intervals in the width direction of the flexible inner shell 11, and among the two mounting surfaces 112, the mounting surface close to the lower side of the flexible inner shell 11 has a protruding height relative to the main body 111 greater than that of the mounting surface close to the upper side of the flexible inner shell 11. In this way, the requirement that each vibration massage assembly 2 is in close contact with the human neck can be met, the close contact of each vibration massage assembly 2 with the human neck is improved, and it is ensured that each vibration massage assembly 2 can be in good contact with the human neck.

[0076] Here, the width direction of the flexible inner shell 11 is shown along the direction from top to bottom in Figure 4 , and the upper side of the flexible inner shell 11 can be the side of the flexible inner shell 11 shown by the upward arrow in Figure 4 , and the flexible inner shell 11 can be the side of the flexible inner shell 11 shown by the downward arrow in Figure 4

[0077] Considering that the human neck is generally cylindrical, the surface of the human neck in contact with the vibration massage assembly 2 is usually a circular arc surface or a circular arc-like surface, and the wearing support 1 can be configured in a C shape.

[0078] As shown in Figure 6 , the wearing support 1 is provided with a plurality of vibration massage assemblies 2. Figure 6 is a structural schematic view of the flexible inner shell provided in an embodiment of the present application and provided with a vibration massage assembly. In some embodiments, at least one pair of mounting surfaces 112 located on the two opposite sides of the central plane A of the wearing support 1 are symmetrical about the central plane A of the wearing support 1, and correspondingly, at least one pair of vibration massage assemblies 2 symmetrical about the central plane A of the wearing support 1 can be installed. In wearing, the central plane A is approximately aligned with the position of the human cervical vertebrae, and the muscles on both sides of the human cervical vertebrae are usually more prone to soreness and more suitable for vibration massage and relaxation. Therefore, the vibration massage assemblies 2 symmetrically arranged on the two sides of the central plane A can better vibration massage the human neck. Of course, in other embodiments of the present application, the plurality of mounting surfaces 112 can also be arranged on the flexible inner shell 11 at will.

[0079] As shown in Figure 7 and​Figure 8 as shown, Figure 7 a structure diagram of a flexible inner shell provided for an embodiment of the present application, Figure 8 for Figure 7 is a sectional view along the a-a direction in FIG. 1. In some embodiments, in order to facilitate the massage surfaces of the plurality of vibration massage assemblies 2 to be generally directed towards the wearing space 10, i.e. when worn, the massage surfaces of the vibration massage assemblies 2 are generally directed towards the human neck, and the first included angle θ between each mounting surface 112 and the central plane A of the wearing support 1 is not the same, so that the mounting surface 112 is an inclined surface relative to the central plane A of the wearing support 1, so that the orientation angle of the vibration massage assembly 2 can be adjusted by the mounting surface 112, and the method is relatively simple, and the massage surfaces of the plurality of vibration massage assemblies 2 can be facilitated to be generally directed towards the human neck, and can be better fitted to the neck.

[0080] wherein the central plane A of the wearing support 1 is a plane passing through the central position of the wearing support 1 and having equal distances to the two clamping arms 14.

[0081] Optionally, the at least one mounting surface 112 is located at the middle position M of the flexible inner shell 11, and in the mounting surface 112 at the middle position M of the flexible inner shell 11, the at least one mounting surface 112 is generally perpendicular to the central plane A of the wearing support 1, i.e. in the mounting surface 112 at the middle position M of the flexible inner shell 11, the first included angle θ between the at least one mounting surface 112 and the central plane A of the wearing support 1 is approximately 90°. For example, the at least one mounting surface 112 is generally perpendicular to the central plane A of the wearing support 1 and is symmetrical about the central plane A, so that when the wearing support 1 is worn on the human neck, the massage surface of the vibration massage assembly 2 at the middle position M of the flexible inner shell 11 can be generally directed towards the human neck, and can be better fitted to the human neck. Wherein the middle position M of the flexible inner shell 11 refers to the position of the flexible inner shell 11 close to the central plane A of the wearing support 1.

[0082] Further, in the two adjacent mounting surfaces 112, the first included angle θ of the mounting surface 112 close to the central plane A of the wearing support 1 is greater than the first included angle θ of the mounting surface 112 away from the central plane A of the wearing support 1, i.e. the farther the mounting surface 112 is from the central plane A of the wearing support 1, the smaller the first included angle θ (the farther the vibration massage assembly 2 is from the central plane A of the wearing support 1, the greater the inclination angle α between the vibration massage assembly 2 and the wearing support 1), so that the massage surfaces of the vibration massage assemblies 2 can be facilitated to cooperate with the curve of the human neck, and can be better fitted to the human neck.

[0083] In some embodiments, the main body part 111, the plurality of mounting surfaces 112 and the plurality of connecting parts 113 of the flexible inner shell 11 are integrally formed. In this way, on the one hand, the assembly process of the connecting parts 113 and the main body part 111 and the mounting surfaces 112 can be reduced; on the other hand, when manufacturing the flexible inner shell 11, it is convenient to form the mounting surfaces 112 with different first included angles θ by designing the mold, which can facilitate the formation of the mounting surfaces 112. In this way, when assembling the vibration massage assembly 2, after connecting the vibration massage assembly 2 to the mounting surface 112, the massage surface of the vibration massage assembly 2 can be directed to the preset direction, that is, the inclination angle of the vibration massage assembly 2 can be determined by designing the first included angle θ between the mounting surface 112 and the central surface A of the wearing support 1, which is beneficial to improve the installation efficiency of the vibration massage assembly 2; and when manufacturing the integrally formed flexible inner shell 11, the protruding height of the mounting surface 112 towards the wearing space 10 can be adjusted by designing the mold of the flexible inner shell 11, so as to adjust the height of the massage surface of different vibration massage assemblies 2, so as to meet the demand of the vibration massage assembly 2 being attached to the human neck.

[0084] In combination Figure 9 as shown, Figure 9 for Figure 8 is a local enlarged view of N in FIG. 11. In some embodiments, the connecting part 113 and the main body part 111 are connected by an arc-shaped transition part 114, the thickness of the arc-shaped transition part 114 is smaller than the thickness of the connecting part 113 and the thickness of the main body part 111, that is, the thickness of the arc-shaped transition part 114 is relatively weak. When the vibration massage assembly 2 vibrates, the arc-shaped transition part 114 will deform preferentially to the connecting part 113, which can improve the swinging and floating ability of the vibration massage assembly relative to the main body part 111. It can be seen that the main function of the arc-shaped connecting part in the present application is to assist the vibration massage assembly 2 to realize radial movement and / or axial movement and / or left-right swinging, and can more effectively provide a buffering effect for the vibration of the vibration massage assembly 2, absorb vibration, so as to more effectively prevent the vibration generated by the vibration massage head 22 from being transmitted to the main body part 111, so that each vibration massage assembly 2 forms relatively independent vibration when massaging, so as to reduce the interference of the vibration generated by each vibration massage assembly 2 to each other.

[0085] As shown in Figure 10 and Figure 11 as shown, Figure 10 is a front view of the flexible inner shell provided by an embodiment of the present application, Figure 11 is Figure 10Figure 6 is a cross-sectional view of the b-b direction in Figure 5. In some embodiments, the connecting portion 113 can be an annular fold arranged around the outer periphery of the mounting surface 112. This simple structure has better vibration buffering effect, and can further improve the deformation ability of the vibration massage assembly 2 relative to the main body portion 111 and provide better buffering effect for the vibration of the vibration massage assembly 2. It can be understood that the annular fold in the present embodiment is a thin-walled structure with a certain elasticity and reciprocating bending. For details, see Figure 11 Figure 6 is a cross-sectional view of the b-b direction in Figure 5. In some embodiments, the connecting portion 113 can be an annular fold arranged around the outer periphery of the mounting surface 112. This simple structure has better vibration buffering effect, and can further improve the deformation ability of the vibration massage assembly 2 relative to the main body portion 111 and provide better buffering effect for the vibration of the vibration massage assembly 2. It can be understood that the annular fold in the present embodiment is a thin-walled structure with a certain elasticity and reciprocating bending. For details, see

[0086] It should be noted that the protruding of the first ring portion 1131 from the main body portion 111 means that the first ring portion 1131 is located in the wearing space 10 or in the cavity formed by the flexible inner shell 11 and the wearing shell 12. Preferably, the first ring portion 1131 is located in the wearing support 1. Compared with the case where the first ring portion 1131 is located in the cavity formed by the flexible inner shell 11 and the wearing shell 12, the first ring portion 1131 is arranged in the wearing support 1, which does not need to occupy the space of the cavity formed by the flexible inner shell 11 and the wearing shell 12, and facilitates the wearing support 1 to be relatively thin, which is conducive to the lightweight design of the wearing support 1. The thickness of the wearing support 1 is the thickness of the wearing support 1 in the direction from the flexible inner shell 11 to the wearing shell 12.

[0087] As shown in Figure 12 and Figure 13 As shown in Figure 12 Figure 7 is a perspective structural schematic view of a vibration massage assembly according to an embodiment of the present application, Figure 13 Figure 8 is a perspective exploded structural schematic view of a vibration massage assembly according to an embodiment of the present application. In some embodiments, the vibration massage assembly 2 can include a connecting column 21 and a massage head 22. The massage head 22 is internally provided with a vibration component 23, such as an eccentric motor. The massage head 22 is located at one end of the connecting column 21, and the other end of the connecting column 21 is connected to the mounting surface 112. The vibration component 23 is installed in a separate structure of the connecting column 21 and the massage head 22.

[0088] Exemplarily, the massage head 22 comprises a mounting portion 221 and a cover 222 connected with the mounting portion 221 and forming a containing cavity with the mounting portion 221, the vibration component 23 is arranged in the containing cavity, and the mounting portion 221 is integrally formed with one end of the cover 222, and the mounting portion 221 is connected with the connecting column 21, so that the assembly process of the mounting portion 221 and the cover 222 can be reduced, and the mounting and connection of the massage head 22 and the connecting column 21 are facilitated.

[0089] In combination with Figure 14 , Figure 15 and Figure 16 , Figure 14 a three-dimensional structure schematic view of a vibration massage assembly provided by an embodiment of the present application is shown, Figure 15 a three-dimensional structure schematic view of a flexible inner shell provided with a vibration massage assembly is shown, Figure 16 is a partial enlarged view of P in Figure 15 . In some embodiments, in order to facilitate wiring, the mounting surface 112 is provided with a first wire passing hole 1121 in communication with the inside of the wearing support 1, and the end surface of the connecting column 21 is provided with a second wire passing hole 211 corresponding to the position of the first wire passing hole 1121, the second wire passing hole 211 is in communication with the inside of the connecting column 21, so that the power connection member (such as a wire or a flexible circuit board) arranged in the wearing support 1 passes through the first wire passing hole 1121 and the second wire passing hole 211 in sequence to enter the inside of the connecting column 21 and be electrically connected with the vibration component 23, so that the vibration component 23 is connected with the current.

[0090] Exemplarily, the first wire passing hole 1121 and the second wire passing hole 211 can each be two and be arranged one by one, wherein the two first wire passing holes 1121 can be used for passing different wires, for example, one first wire passing hole 1121 and the corresponding second wire passing hole 211 can be used for passing a power supply wire, and the other first wire passing hole 1121 and the corresponding second wire passing hole 211 can be used for passing a control wire, so that the layout of the circuit is more neat and reasonable.

[0091] It can be understood that the wearing support 1 is provided with a circuit board, and the circuit board and the vibration component 23 are electrically connected through the power connection member, so that the vibration component 23 can control the operation of the vibration component 23 through the circuit board while being connected with the current.

[0092] In some embodiments, the mounting surface 112 may be provided with a first positioning hole 1122, and the end face of the connecting post 21 may be provided with a positioning protrusion 212, which is inserted into the first positioning hole 1122. This provides a positioning function when the connecting post 21 is installed onto the mounting surface 112, facilitating the installation of the connecting post 21. It is understood that in other embodiments, the mounting surface 112 may also be provided with a positioning protrusion, and the end face of the connecting post 21 may be provided with a first positioning hole.

[0093] For example, the number of the first positioning hole 1122 and the positioning protrusion 212 can be at least two and are set in a one-to-one correspondence. The cross-sectional dimensions of at least one positioning protrusion 212 are different from the cross-sectional dimensions of the other positioning protrusions 212. The cross-sectional dimensions of each first positioning hole 1122 are matched with the cross-sectional dimensions of the corresponding positioning protrusion 212. In this way, when the connecting post 21 is installed on the mounting surface 112, each position of the connecting post 21 can have a unique relative positional relationship with the mounting surface 112, preventing reverse installation and providing a good foolproof effect. At the same time, it can also prevent the first wire hole 1121 and the second wire hole 211 from being misaligned, which would increase the difficulty of wiring.

[0094] The number of first positioning holes 1122 and positioning protrusions 212 in this application can be two, three, four or more. For example, if there are two first positioning holes 1122 and two positioning protrusions 212, then the cross-sectional dimensions of the two positioning protrusions 212 are different, and the cross-sectional dimensions of the two first positioning holes 1122 are respectively matched with the cross-sectional dimensions of the corresponding positioning protrusions 212, that is, the cross-sectional dimensions of the two first positioning holes 1122 are also different.

[0095] The cross-section of the positioning protrusion 212 is the cross-section of the positioning protrusion 212 cut by the plane of the surface parallel to the connecting column 21.

[0096] like Figure 17 As shown, Figure 17 This is a cross-sectional view of a vibration massage assembly provided in one embodiment of this application. In some embodiments, the neck massager 100 further includes a fixing member 3, which is located between the flexible inner shell 11 and the wearing outer shell 12. The fixing member 3 and the connecting post 21 are located on opposite sides of the mounting surface 112, and the fixing member 3 and the connecting post 21 are fixedly connected to each other to realize the vibration massage assembly 2 mounted on the mounting surface 112. The fixing member 3 can be a fixing block, fixing plate, or other structure.

[0097] Further, the neck massage instrument 100 can further include a locking piece 4 (for example, a locking screw or a locking bolt, etc.) passing through the mounting surface 112 and locking the fixing piece 3 and the connecting column 21 to fix the vibration massage assembly 2 on the mounting surface 112. It can be understood that in other embodiments, the fixing piece 3 is provided with one of a clamping hook and a clamping groove, and the end surface of the connecting column 21 is provided with the other one of the clamping groove and the clamping hook, which are clamped through the mounting surface 112 to lock the fixing piece 3 and the connecting column 21, so as to realize the fixation of the vibration massage assembly 2 on the mounting surface 112.

[0098] It is worth noting that in actual installation, the vibration component 23 is installed in the accommodating cavity formed by the cover body 222 and the mounting portion 221, and the massage head 22 is arranged at one end of the connecting column 21, and the other end of the connecting column 21 is installed on the mounting surface 112. Specifically, the connecting column 21 and the fixing piece 3 are arranged at two opposite sides of the mounting surface 112 respectively, and the fixing piece 3 and the connecting column 21 are fixed and connected together through the locking piece 4. Compared with the mode of directly fixing (without the fixing piece 3) the vibration massage assembly 2 on the mounting surface 112, the vibration massage assembly 2 is positioned and installed by arranging the connecting column 21 and the fixing piece 3 at two opposite sides of the mounting surface 112 respectively, which has higher connection stability, and the vibration massage assembly 2 can be deformed more easily by means of the flexible inner shell 11, so as to swing and float as a whole. It can be understood that the swing of the vibration massage assembly 2 in the present application refers to the swing of the vibration massage assembly 2 in the radial direction of the connecting column 21, and the float of the vibration massage assembly 2 refers to the float of the vibration massage assembly 2 in the axial direction of the connecting column 21.

[0099] In some embodiments, the axis b of each connecting column 21 is arranged perpendicularly to the corresponding mounting surface 112, which can ensure that the end surface of each connecting column 21 almost abuts the mounting surface 112 when the vibration massage assembly 2 is assembled, so as to facilitate the installation of the connecting column 21 on the mounting surface 112 by means of the fixing piece 3, and at the same time, the contact area between the connecting column 21 and the mounting surface 112 is increased, and the installation stability of the vibration massage assembly 2 is improved.

[0100] As shown in FIG. 7, it is a perspective structural schematic view of the fixing piece provided in an embodiment of the present application. In some embodiments, the fixing piece 3 is provided with a second positioning hole 31 corresponding to the position of the first positioning hole 1122, and the positioning protrusion 212 is inserted into the first positioning hole 1122 through the second positioning hole 31. During installation, the positioning protrusion 212 can play a role of positioning, which facilitates the installation. At the same time, since the first positioning hole 1122 and the second positioning hole 31 share the same positioning protrusion 212, the structure of the flexible inner shell 11 can be made more simple. Figure 18 Figure 18 As shown in FIG. 7, it is a perspective structural schematic view of the fixing piece provided in an embodiment of the present application. In some embodiments, the fixing piece 3 is provided with a second positioning hole 31 corresponding to the position of the first positioning hole 1122, and the positioning protrusion 212 is inserted into the first positioning hole 1122 through the second positioning hole 31. During installation, the positioning protrusion 212 can play a role of positioning, which facilitates the installation. At the same time, since the first positioning hole 1122 and the second positioning hole 31 share the same positioning protrusion 212, the structure of the flexible inner shell 11 can be made more simple.​

[0101] Optionally, there are at least two second positioning holes 31, each second positioning hole 31 corresponding to each first positioning hole 1122. As mentioned above, the cross-sectional dimensions of at least one positioning protrusion 212 are different from the cross-sectional dimensions of the other positioning protrusions 212, and the cross-sectional dimensions of each first positioning hole 1122 match the cross-sectional dimensions of the corresponding positioning protrusion 212. Therefore, the cross-sectional dimensions of each second positioning hole 31 match the cross-sectional dimensions of the corresponding first positioning hole 1122. Thus, when the fastener 3 is installed onto the mounting surface 112, each position of the fastener 3 has a unique relative positional relationship with the mounting surface 112, preventing reverse installation and providing a better error-proof effect. For example, if there are two second positioning holes 31, the cross-sectional dimensions of the two second positioning holes 31 match the cross-sectional dimensions of the corresponding first positioning holes 1122, meaning the cross-sectional dimensions of the two second positioning holes 31 are also different.

[0102] like Figure 19 As shown, Figure 19 This is a three-dimensional exploded view of the vibration massage assembly provided in one embodiment of this application. In some embodiments, the cover 222 has a massage surface (the massage surface of the aforementioned vibration massage assembly 2), and the massage head 22 further includes a heating element 24, such as a graphene heating element or a resistance wire heating element. The heating element 24 is located in the accommodating cavity and is attached to the inner surface of the cover 222 corresponding to the massage surface. In this way, the massage head 22 can simultaneously have vibration and heating functions, making the massage head 22 of this application a multi-functional massage head 22. It can generate vibration to achieve vibration massage and also achieve heating function to relax muscles and improve blood circulation and enhance the massage effect. It has a higher degree of functional integration, different massage modes, and can meet the requirements of various massage effects.

[0103] Furthermore, the massage head 22 also includes a temperature sensor 25, such as a thermistor (NTC), which can be integrated on the heating element 24 and used to measure the temperature of the heating element 24 and / or the cover 222 to avoid the heating element 24 and the cover 222 from getting too hot. In this way, it can not only protect the heating element 24, but also avoid causing discomfort to the user due to high temperature.

[0104] Optionally, the cover 222 can be made of metal, such as stainless steel. This allows the good thermal conductivity of the metal to facilitate the transfer of heat generated by the heating element to the neck, thereby improving the heating and massage effect.

[0105] Please refer to it again. Figure 13 and Figure 19As shown, in some embodiments, the massage head 22 further comprises a mounting seat 26 fixed in the accommodating cavity, the mounting seat 26 has opposite first and second side surfaces 261 and 262, the first side surface 261 is arranged towards the heating component 24, the first side surface 261 is provided with a first mounting groove 263, the temperature sensor 25 is located in the first mounting groove 263, and the second side surface 262 is arranged towards the connecting column 21, the second side surface 262 is provided with a second mounting groove 264, and the vibration component 23 is mounted in the second mounting groove 264 to be spaced apart from the temperature sensor 25, so that the heat generated by the vibration component 23 can be avoided to be transmitted to the temperature sensor 25 to interfere with the detection sensitivity of the temperature sensor 25.

[0106] Optionally, the mounting seat 26 can be an elastic member, such as a silica gel mounting seat, a rubber mounting seat, etc., when the mounting seat 26 is mounted in the accommodating cavity, the mounting seat 26 can be adapted to expand to be in interference fit with the accommodating cavity, on the one hand, the mounting seat 26 is not easy to fall off, which is beneficial to improve the mounting stability of the vibration component 23, and the elastic mounting seat 26 wrapping the outer periphery of the vibration component 23 can play a better damping effect; on the other hand, the heating component 24 can be tightly attached to the inner surface of the cover 222 to conduct heat to the massage surface, thereby improving the heat conduction effect of the heating component 24.

[0107] In summary, the neck massage instrument provided by the embodiment of the present application has a flexible inner shell of the wearing support, which includes a main body part and a plurality of mounting surfaces, the periphery of each mounting surface and the main body part are connected by a connecting part respectively, and each vibration massage assembly is connected with a corresponding mounting surface, since the connecting part can be deformed well under the action of the vibration massage assembly during massage, the vibration generated by the vibration massage assembly can be absorbed, so that the vibration generated by each vibration massage assembly can be reduced or even blocked from being transmitted to the main body part through the mounting surface, thereby facilitating the vibration massage assemblies to form relatively independent vibration during massage, reducing the interference of the vibration generated by each vibration massage assembly to each other, ensuring the massage effect of each vibration massage assembly, and improving the user experience.

[0108] In addition, the mounting surface is designed as an inclined surface inclined relative to the central surface of the wearing support, and the orientation angle of the vibration massage assembly is adjusted by the mounting surface, which is a relatively simple way and can facilitate the massage surfaces of the plurality of vibration massage assemblies to be generally directed towards the neck of the user, thereby facilitating better adhesion to the neck.

[0109] In addition, the main body part, the plurality of mounting surfaces and the plurality of connecting parts of the flexible inner shell are integrally formed, which can reduce the assembly process of the connecting parts, the main body part and the mounting surfaces, and facilitate the formation of the mounting surfaces with different first included angles by designing the mold when the flexible inner shell is manufactured, and the mounting surfaces are conveniently formed. Thus, when the connecting column of the vibration massage assembly is attached to the mounting surface during the assembly of the vibration massage assembly, the massage surface of the vibration massage assembly can face the preset direction, that is, the inclination angle of the vibration massage assembly can be determined by designing the inclination angle of the mounting surface relative to the center surface of the wearing support, which is beneficial to improve the installation efficiency of the vibration massage assembly.

[0110] The neck massager disclosed in the above embodiment of the present application is described in detail, and the principle and implementation manner of the present application are described by applying specific examples. The above embodiment is only used to help understand the neck massager and its core idea; meanwhile, for those skilled in the art, the specific implementation manner and application range can be changed according to the idea of the present application. In conclusion, the content of the specification should not be understood as a limitation of the present application.

Claims

1. A neck massager, characterized in that, The application relates to a wearing support, which comprises a wearing space, a flexible inner shell and a wearing shell, wherein the wearing shell is arranged opposite to the wearing space, the flexible inner shell is arranged towards the wearing space, the flexible inner shell comprises a main body and a plurality of mounting surfaces, the plurality of mounting surfaces are arranged on the side of the flexible inner shell towards the wearing space, the plurality of mounting surfaces are arranged at intervals, and the periphery of each mounting surface is connected with the main body through a connecting part, so that the corresponding mounting surface has a freedom degree of movement relative to the main body; and a plurality of vibration massage assemblies, each of which is arranged corresponding to the mounting surfaces, and each of which is connected with the corresponding mounting surface. The connecting part is an annular fold. The connecting part and the main body are connected through an arc-shaped transition part, the thickness of the arc-shaped transition part is smaller than the thickness of the connecting part and the thickness of the main body. The main body, the plurality of mounting surfaces and the plurality of connecting parts of the flexible inner shell are integrally formed. The annular fold comprises a first ring part and a second ring part arranged in the first ring part, the first ring part is arranged on the main body, the two ends of the first ring part are connected with the main body and one end of the second ring part respectively, the other end of the second ring part is connected with the mounting surface, and the second ring part and the mounting surface form a groove, and the mounting surface forms the bottom surface of the groove.

2. The neck massager of claim 1, wherein, At least one of the mounting surfaces is arranged at the middle position of the flexible inner shell, and at least one of the mounting surfaces arranged at the middle position of the flexible inner shell is perpendicular to the central surface of the wearing support.

3. The neck massager of claim 1, wherein, At least one pair of the mounting surfaces arranged on the two opposite sides of the central surface of the wearing support is symmetrical about the central surface of the wearing support.

4. The neck massager of claim 1, wherein, Each of the mounting surfaces forms a first included angle with the central surface of the wearing support, and the first included angles of at least two of the mounting surfaces are different.

5. The neck massager of claim 1, wherein, In the adjacent two mounting surfaces, the first included angle of the mounting surface close to the central surface of the wearing support is greater than the first included angle of the mounting surface away from the central surface of the wearing support.

6. The neck massager of claim 1, wherein, The protruding heights of at least two of the mounting surfaces towards the wearing space are different, so that the protruding heights of at least two of the vibration massage assemblies connected with the at least two mounting surfaces relative to the main body are different.

7. The neck massager of claim 6, wherein the plurality of protrusions are arranged in a plurality of rows. At least two of the mounting surfaces are arranged at intervals in the width direction of the flexible inner shell, and in the two mounting surfaces, the protruding height of the mounting surface close to the lower side of the flexible inner shell relative to the main body is greater than the protruding height of the mounting surface close to the upper side of the flexible inner shell relative to the main body.

8. The neck massager of claim 1, wherein, The sizes of the plurality of vibration massage assemblies are consistent.

9. The neck massager of claim 1, wherein, The wearing support comprises a middle support and two clamping arms, the two ends of the middle support are connected with the two clamping arms respectively and form the wearing space together with the two clamping arms, and the flexible inner shell and the wearing shell are assembled to form the middle support.

10. The neck massager of claim 1, wherein, The wearing shell is an elastic shell.

11. The neck massager of claim 1, wherein, ​ 12. The neck massager according to claim 1 or 11, characterized by, ​ 13. The neck massager of claim 1, wherein, The vibration massage assembly comprises a connecting column and a massage head, the massage head is internally provided with a vibration component, the massage head is located at one end of the connecting column, and the other end of the connecting column is connected to the mounting surface.

14. The neck massager of claim 13, wherein the plurality of protrusions are arranged in a plurality of rows. The axis of each connecting column is vertically arranged with respect to the corresponding mounting surface.

15. The neck massager of claim 13, wherein the plurality of protrusions are arranged in a plurality of rows. The mounting surface is provided with first positioning holes, and the end surface of the connecting column is provided with positioning protrusions which are inserted into the first positioning holes.

16. The neck massager of claim 15, wherein the plurality of protrusions are arranged in a plurality of rows. The number of the first positioning holes and the positioning protrusions is at least two and is one-to-one correspondence, the cross-sectional size of at least one positioning protrusion is different from that of the remaining positioning protrusions, the cross-sectional size of each first positioning hole is matched with that of the corresponding positioning protrusion. The cross-sectional size of the positioning protrusion is the cross-sectional size obtained when the positioning protrusion is cut by a plane parallel to the surface of the connecting column.

17. The neck massager of claim 13, wherein the plurality of protrusions are arranged in a plurality of rows. The neck massage instrument further comprises a fixing member, the fixing member is located between the flexible inner shell and the wearing shell, and the fixing member and the connecting column are respectively located on two opposite sides of the mounting surface, and the fixing member and the connecting column are fixedly connected with each other.

18. The neck massager of claim 17, wherein, The neck massage instrument further comprises a locking member, the locking member passes through the mounting surface and locks the fixing member and the connecting column.

19. The neck massager of claim 17, wherein the plurality of protrusions are arranged in a plurality of rows. The mounting surface is provided with first positioning holes, the end surface of the connecting column is provided with positioning protrusions corresponding to the positions of the first positioning holes, the fixing member is provided with second positioning holes corresponding to the positions of the first positioning holes, and the positioning protrusions are inserted into the first positioning holes through the second positioning holes.

20. The neck massager of claim 19, wherein the plurality of protrusions are arranged in a plurality of rows. The number of the first positioning holes, the second positioning holes and the positioning protrusions is at least two, each first positioning hole and each positioning protrusion are one-to-one correspondence, and each second positioning hole and each first positioning hole are one-to-one correspondence. The cross-sectional size of at least one positioning protrusion is different from that of the remaining positioning protrusions, the cross-sectional size of each first positioning hole is matched with that of the corresponding positioning protrusion, and the cross-sectional size of each second positioning hole is matched with that of the corresponding first positioning hole, wherein the cross-sectional size of the positioning protrusion is the cross-sectional size obtained when the positioning protrusion is cut by a plane parallel to the surface of the connecting column.

21. The neck massager of claim 13, wherein, The massage head comprises a mounting portion and a cover, the cover is connected with the mounting portion and forms a containing cavity with the mounting portion, the vibration component is arranged in the containing cavity, one end of the mounting portion and the cover are integrally formed, and the mounting portion is connected with the connecting column.

22. The neck massager of claim 21, wherein the plurality of protrusions are arranged in a plurality of rows. The cover is a metal member.

Citation Information

Patent Citations

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    CN211273159U

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    CN215840359U