Wearing bracket and neck massager with the same
By designing a slidingly connected middle bracket and a neck massager wearing bracket for the cover, the problem of insufficient adaptability and sealing in the prior art is solved, and a wider range of applicability and higher wear comfort are achieved.
Patent Information
- Application Number
- CN202011628099.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-12-30
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2040-12-30
AI Technical Summary
When the wearing brackets of existing neck massagers are adapted to different neck sizes, there is a problem of excessive elastic deformation leading to a sense of compression and gap exposure, which affects the user experience and increases the risk of damage.
A wearable bracket is designed, including an intermediate bracket, an adjustment assembly and a shading portion, which is slidably connected by the adjustment assembly, and the shading portion is used to block the gap, adapting to a larger range of neck sizes and maintaining closure.
It improves wear comfort, reduces the feeling of pressure on the neck, prevents internal structure exposure and dust accumulation, and extends service life.
Smart Images

Figure CN114681295B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of massage instruments, in particular to a wearing bracket and a neck massager having the same. Background Art
[0002] In the related art, a neck massager is usually provided with a wearing bracket, which is worn on the neck through the elastic deformation of the middle bracket. However, the neck size range that can be adapted only by the elastic deformation of the wearing bracket still has certain limitations. When users with larger necks wear a neck massager, the wearing bracket will produce a larger elastic deformation, thereby creating a greater sense of pressure on the neck and reducing the user experience.
[0003] For this reason, the wearing brackets of some neck massagers can be extended and adjusted, and the adaptability range of neck sizes is large. However, due to the gaps generated during the extension and retraction of the middle bracket, the internal structure of the neck massager is exposed, which increases the chance of damage to the neck massager, and the neck massager is easy to get caught in the hair and skin when worn. In addition, the gaps of the neck massager are easy to accumulate dust. Summary of the invention
[0004] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, one purpose of the present invention is to provide a wearing bracket, which can not only adapt to a wider range of neck sizes by telescoping the intermediate bracket, but also can cover the gap caused by the telescoping of the intermediate bracket, and has the advantages of high wearing comfort and easy cleaning.
[0005] The present invention also provides a neck massager having the wearing bracket.
[0006] In order to achieve the above-mentioned purpose, a wearing bracket is proposed according to an embodiment of the first aspect of the present invention, and the wearing bracket includes: an intermediate bracket, the intermediate bracket includes a first bracket, a second bracket and an adjustment assembly connected between the first bracket and the second bracket, at least one of the first bracket and the second bracket is slidably connected to the adjustment assembly so that the intermediate bracket can be extended and retracted along its length direction; a shielding portion, the shielding portion is arranged on at least one of the first bracket, the second bracket and the adjustment assembly, and the shielding portion is used to shield the gap between the first bracket and the second bracket.
[0007] The wearing bracket according to the embodiment of the present invention can not only adapt to a wider range of neck sizes by telescoping the middle bracket, but also cover the gap caused by the telescoping of the middle bracket, and has the advantages of high wearing comfort and easy cleaning.
[0008] According to some embodiments of the present invention, the first bracket includes a first outer shell and a first inner shell, and the first inner shell is installed on the side of the first outer shell facing the human neck; the second bracket includes a second outer shell and a second inner shell, and the second inner shell is installed on the side of the second outer shell facing the human neck; wherein the shielding portion is used to shield the gap between the first outer shell and the second outer shell and the gap between the first inner shell and the second inner shell.
[0009] According to some embodiments of the present invention, the shielding portion includes a first shielding portion, which is disposed on the adjusting assembly; at least one of the first outer shell and the second outer shell is slidably connected to the adjusting assembly, the first shielding portion is located on the side of the adjusting assembly facing away from the human body, and the first shielding portion is used to shield the gap between the first outer shell and the second outer shell; or, at least one of the first inner shell and the second inner shell is slidably connected to the adjusting assembly, the first shielding portion is located on the side of the adjusting assembly close to the human body, and the first shielding portion is used to shield the gap between the first inner shell and the second inner shell.
[0010] According to some embodiments of the present invention, the shielding portion includes a second shielding portion, which can be stretched and deformed; the second shielding portion is connected to the first inner shell and the second inner shell to shield the gap between the first inner shell and the second inner shell; and / or the second shielding portion is connected to the first outer shell and the second outer shell to shield the gap between the first outer shell and the second outer shell.
[0011] According to some embodiments of the present invention, the second shielding portion is a flexible member and / or has a pleated structure.
[0012] According to some embodiments of the present invention, the adjustment assembly includes an adjustment rail and a first sliding member, the adjustment rail includes a first section and a second section connected to each other; a first slide rail is formed on one of the first section and the first bracket, a first sliding member is installed on the other of the first section and the first bracket, and the second section is connected to the second bracket; the first sliding member can slide along the extension direction of the first slide rail so that the first bracket is movable relative to the second bracket; wherein the extension direction of the first slide rail is consistent with the length direction of the intermediate bracket.
[0013] According to some embodiments of the present invention, the adjustment assembly also includes a second sliding member; a second sliding rail is formed on one of the second section and the second bracket, and a second sliding member is installed on the other of the second section and the second bracket; the second sliding member can slide along the extension direction of the second sliding rail so that the second bracket is movable relative to the first bracket; wherein the extension direction of the second sliding rail is consistent with the length direction of the intermediate bracket.
[0014] According to some embodiments of the present invention, the first section and the second section are symmetrically arranged; the first sliding member and the second sliding member have the same structure.
[0015] According to some embodiments of the present invention, a first slide rail is formed on the first section, and the first sliding member is a rotating shaft; a boss is provided inside the first bracket, the boss is configured with a pressing shaft groove, and the end of the rotating shaft is located in the pressing shaft groove.
[0016] According to some embodiments of the present invention, a pressing shaft cover is installed on the boss, and the pressing shaft cover presses the end of the rotating shaft against the pressing shaft groove.
[0017] According to some embodiments of the present invention, the number of bosses is two, and the two ends of the rotating shaft are respectively located in the two pressing shaft grooves; the first slide rail penetrates the adjustment guide along the width direction of the adjustment guide, and the rotating shaft penetrates the first slide rail, so that the first section is located between the two bosses; the distance between the first section and each boss is 0.05 mm to 0.15 mm.
[0018] According to some embodiments of the present invention, the first bracket is provided with a first fastening member, and the second bracket is provided with a second fastening member; the first fastening member and the second fastening member can cooperate with each other so that the first bracket and the second bracket are in contact, and the first fastening member and the second fastening member can be separated from each other to allow at least one of the first bracket and the second bracket to slide along the adjustment assembly.
[0019] According to some embodiments of the present invention, the first bracket includes a first outer shell and a first inner shell, the first inner shell is installed on the side of the first outer shell facing the human neck, the second bracket includes a second outer shell and a second inner shell, the second inner shell is installed on the side of the second outer shell facing the human neck; the first outer shell is provided with a first magnetic member, the second outer shell is provided with a second magnetic member, and the first magnetic member and the second magnetic member can attract each other so that the first outer shell and the second outer shell are in contact, and / or the first outer shell is provided with a first engaging member, the second outer shell is provided with a second engaging member, and the first engaging member and the second engaging member can engage with each other so that the first outer shell and the second outer shell are in contact.
[0020] According to some embodiments of the present invention, the second shielding portion is respectively connected to the first inner shell and the second inner shell, the first inner shell and the second inner shell are flexible members, and the first inner shell, the second inner shell and the second shielding portion are integrally formed.
[0021] According to some embodiments of the present invention, the ratio of the breaking elongation rate of the second shielding portion to its maximum tensile deformation amount is greater than 2; and / or the breaking elongation rate of the second shielding portion is 800%.
[0022] According to some embodiments of the present invention, the thickness of the second shielding portion is less than the thickness of the first inner shell and the thickness of the second inner shell; the distance between the first bracket and the second bracket is not greater than 15 mm.
[0023] According to some embodiments of the present invention, the shielding part is respectively connected to the first bracket and the second bracket; at the connection between the first bracket and the shielding part, and at the connection between the second bracket and the shielding part, shaping members are respectively provided. The shaping members extend along the width direction of the middle bracket, and the middle part of the shaping member protrudes towards the human neck.
[0024] According to some embodiments of the present invention, the shielding part is provided with a positioning groove, and the first bracket and the second bracket are provided with positioning blocks, and the positioning blocks are slidably fitted in the positioning groove.
[0025] According to some embodiments of the present invention, the shielding part includes a first shielding part, and the first shielding part is arranged on the adjusting assembly; the first shielding part is located on the side of the adjusting assembly away from the human body. When the middle bracket contracts to the minimum length, the first outer shell and the second outer shell are in contact, and the first shielding part is located inside the wearing bracket. When the middle bracket extends to the maximum length, the first shielding part is respectively in contact with the first outer shell and the second outer shell to shield the gap between the first outer shell and the second outer shell; or, the first shielding part is located on the side of the adjusting assembly close to the human body. When the middle bracket contracts to the minimum length, the first inner shell and the second inner shell are in contact, and the first shielding part is located inside the wearing bracket. When the middle bracket extends to the maximum length, the first shielding part is respectively in contact with the first inner shell and the second inner shell to shield the gap between the first inner shell and the second inner shell.
[0026] According to some embodiments of the present invention, the adjusting assembly includes an adjusting guide rail and a first sliding member. The adjusting guide rail includes a first section and a second section connected to each other. A first sliding rail is formed on the first section. The first sliding member is installed on the first bracket, and the second section is connected to the second bracket; the first shielding part is located between the first outer shell and the first sliding rail, and the first sliding rail gradually extends towards the direction close to the human neck in the direction away from the first shielding part; or, the first shielding part is located between the first inner shell and the first sliding rail, and the first sliding rail gradually extends towards the direction away from the human neck in the direction away from the first shielding part; the first sliding member can slide along the extending direction of the first sliding rail so that the first bracket can move relative to the second bracket.
[0027] According to some embodiments of the present invention, the first shielding part is located on the side of the adjusting assembly away from the human body; a first sunken platform is provided on the side of the first shielding part facing the first outer shell, and a second sunken platform is provided on the side of the first shielding part facing the second outer shell. A first support rib is provided on the side of the first outer shell facing the first inner shell, and a second support rib is provided on the side of the second outer shell facing the second inner shell; wherein, when the middle bracket contracts to the minimum length, the first support rib supports on the first sunken platform, and the second support rib supports on the second sunken platform; when the middle bracket extends to the maximum length, the end of the first outer shell facing the second outer shell supports on the first sunken platform, and the end of the second outer shell facing the first outer shell supports on the second sunken platform.
[0028] According to some embodiments of the present invention, a first inclined surface is configured on an end surface of the first outer shell facing the second outer shell, and a second inclined surface is configured on an end surface of the second outer shell facing the first outer shell; a third inclined surface is configured on the first sinking platform, and a fourth inclined surface is configured on the second sinking platform; wherein, when the intermediate bracket extends to the maximum length, the first inclined surface and the third inclined surface are in contact, and the second inclined surface and the fourth inclined surface are in contact.
[0029] According to some embodiments of the present invention, the first inclined surface and the second inclined surface gradually move away from each other in the direction towards the human neck; the third inclined surface and the fourth inclined surface gradually move away from each other in the direction towards the human neck.
[0030] According to some embodiments of the present invention, the first section is configured with an initial limiting rib and an extended limiting rib; when the intermediate bracket extends to the maximum length, the first sliding member is blocked by the extended limiting rib at one end of the first section; when the intermediate bracket contracts to the minimum length, the first sliding member is blocked by the initial limiting rib at the other end of the first section.
[0031] According to some embodiments of the present invention, the first section includes two sub-adjustable guide rails arranged discontinuously, and the openings of the two sub-adjustable guide rails are arranged opposite to each other.
[0032] According to some embodiments of the present invention, the width of the openings of the two sub-adjustable guide rails gradually increases in the direction away from each other, and the minimum width of the openings of the sub-adjustable guide rails is smaller than the diameter of the first sliding member; and / or the first section further includes a connecting plate, and the connecting plate is connected to one end of the two sub-adjustable guide rails away from each other.
[0033] According to some embodiments of the present invention, the wearing bracket further includes: a circuit board, and the circuit board is fixed to the first shielding portion by a fastener and is located on the side of the first shielding portion facing the human neck.
[0034] According to some embodiments of the present invention, the cross-section of the shielding portion is annular, and the shielding portion includes a first connecting section, a wrinkled section, and a second connecting section along its length direction. The wrinkled section is connected between the first connecting section and the second connecting section, and the wrinkled section can be stretched and deformed. The first connecting section is sleeved on the first bracket, and the second connecting section is sleeved on the second bracket.
[0035] According to some embodiments of the present invention, the first section is configured with an adjustment cavity, one end of the first sliding member is connected to the first bracket, the other end of the first sliding member extends into the adjustment cavity and is in sliding fit with the inner side wall of the first section, and the second section is connected to the second bracket.
[0036] According to some embodiments of the present invention, a plurality of gear grooves are provided on the inner side wall of the first section, and the first sliding member is provided with a gear protrusion, which cooperates with different gear grooves as the first sliding member slides; the first sliding member is provided with an installation cavity and a clamping hole connected to the installation cavity, an elastic member is provided in the installation cavity, the gear protrusion is provided in the installation cavity, and the two ends of the elastic member respectively stop at the side wall of the installation cavity and the gear protrusion, and the gear protrusion extends from the clamping hole under the elastic force of the elastic member and cooperates with the gear groove.
[0037] According to some embodiments of the present invention, the gear protrusion includes an anti-slip plate and a gear ball, the anti-slip plate is arranged in the installation cavity and stopped at the side wall where the locking hole of the first sliding member is located, the elastic member stops at the anti-slip plate, and the gear ball is connected to the anti-slip plate and extends out of the locking hole; a positioning column is also provided on the gear protrusion, the elastic member is a spring and is sleeved on the positioning column; the first sliding member includes a connecting seat and an installing cover, the installing cavity is arranged on the end face of the connecting seat facing the second section, the installing cover is installed at one end of the connecting seat facing the second section, the installing cover covers the installing cavity and defines the locking hole together with the connecting seat.
[0038] According to some embodiments of the present invention, bending arms are constructed on the opposite sides of the mounting cover, buckles are constructed on the ends of the bending arms, and slots are provided on the opposite side walls of the connecting seat, and the buckles are engaged with the slots; the first section includes a seat body and an upper cover, the upper cover is connected to the seat body and together with the seat body defines an adjustment cavity, the inner side wall of the upper cover is provided with a sliding groove, and the bending arm can be slidably located in the sliding groove.
[0039] According to some embodiments of the present invention, a retaining ring is constructed on the outer circumference of the first sliding member, the first bracket includes a first outer shell and a first inner shell, the first outer shell and the first inner shell jointly construct a ring groove, the first outer shell and the first inner shell clamp the first sliding member, and the retaining ring is matched with the ring groove; the first sliding member is provided with wire holes passing through its two end surfaces; the outer circumference of the first sliding member is provided with an anti-slip ring edge, and the adjustment cavity is provided with a baffle at its opening, and the baffle prevents the first sliding member from slipping out of the adjustment cavity by stopping the anti-slip ring edge.
[0040] According to some embodiments of the present invention, the inner circumferential surface of the first connecting section is provided with a plurality of first assembly protrusions arranged at intervals along its circumference, the outer circumferential surface of the first bracket is provided with a plurality of first assembly grooves, and the first assembly protrusions are matched with the first assembly grooves one-to-one; the inner circumferential surface of the second connecting section is provided with a plurality of second assembly protrusions arranged at intervals along its circumference, the outer circumferential surface of the second bracket is provided with a plurality of second assembly grooves, and the second assembly protrusions are matched with the second assembly grooves one-to-one.
[0041] According to some embodiments of the present invention, on one side of the first inner shell facing the first outer shell, there is a first convex edge extending along the length direction of the first inner shell. On one side of the first outer shell facing the first inner shell, there is a first edge groove extending along the length direction of the first outer shell, and the first convex edge is inserted into the first edge groove. On one side of the second inner shell facing the second outer shell, there is a second convex edge extending along the length direction of the second inner shell. On one side of the second outer shell facing the second inner shell, there is a second edge groove extending along the length direction of the second outer shell, and the second convex edge is inserted into the second edge groove.
[0042] According to some embodiments of the present invention, the wearing bracket further includes: a first handle and a second handle. The first handle is connected to one end of the first bracket away from the second bracket, and the second handle is connected to one end of the second bracket away from the first bracket.
[0043] According to a second aspect embodiment of the present invention, a neck massager is provided. The neck massager includes: a massage component; a wearing bracket according to the first aspect embodiment of the present invention, the wearing bracket including an intermediate bracket and handles connected to both ends of the intermediate bracket; the intermediate bracket is provided with a massage component, or each handle is provided with a massage component; the massage component is adjustable in position relative to the human neck through the telescoping of the intermediate bracket.
[0044] For the neck massager according to the second aspect embodiment of the present invention, by using the wearing bracket according to the first aspect embodiment of the present invention, not only can the intermediate bracket be telescoped to adapt to a larger range of neck sizes, but also the gap generated by the telescoping of the intermediate bracket can be blocked, having the advantages of high wearing comfort and easy cleaning.
[0045] According to some embodiments of the present invention, the massage component includes: a first massage head and a second massage head. The first massage head is installed on one side of the first bracket facing the human neck, and the second massage head is installed on one side of the second bracket facing the human neck.
[0046] The additional aspects and advantages of the present invention will be partly given in the following description, partly will become obvious from the following description, or be understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0047] The above and / or additional aspects and advantages of the present invention will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, wherein:
[0048] Figure 1 is a schematic structural diagram of a neck massager according to an embodiment of the present invention;
[0049] Figure 2 is another schematic structural diagram of a neck massager according to an embodiment of the present invention;
[0050] Figure 3Explosion diagram of the neck massager according to an embodiment of the present invention;
[0051] Figure 4 Cross-sectional view of the middle bracket of the neck massager according to an embodiment of the present invention;
[0052] Figure 5 Another cross-sectional view of the middle bracket of the neck massager according to an embodiment of the present invention;
[0053] Figure 6 Installation schematic diagram of the first sliding member of the neck massager according to an embodiment of the present invention;
[0054] Figure 7 Installation schematic diagram of the positioning groove and positioning block of the neck massager according to an embodiment of the present invention;
[0055] Figure 8 Structural schematic diagram of the first inner shell, second inner shell and second shielding part of the neck massager according to an embodiment of the present invention;
[0056] Figure 9 Structural schematic diagram of the shielding part and adjustment assembly of the neck massager according to an embodiment of the present invention;
[0057] Figure 10 Structural schematic diagram of the neck massager according to another embodiment of the present invention;
[0058] Figure 11 Explosion diagram of the neck massager according to another embodiment of the present invention;
[0059] Figure 12 Cross-sectional view of the neck massager according to another embodiment of the present invention;
[0060] Figure 13 Another cross-sectional view of the neck massager according to another embodiment of the present invention;
[0061] Figure 14 Explosion diagram of the first bracket and shielding part of the neck massager according to another embodiment of the present invention;
[0062] Figure 15 Structural schematic diagram of the first sliding member of the neck massager according to another embodiment of the present invention;
[0063] Figure 16 Explosion diagram of the first sliding member of the neck massager according to another embodiment of the present invention;
[0064] Figure 17 Structural schematic diagram of the seat body of the neck massager according to another embodiment of the present invention;
[0065] Figure 18It is a schematic structural diagram of the upper cover of a neck massager according to another embodiment of the present invention.
[0066] Reference numerals:
[0067] Neck massager 1,
[0068] Wearing bracket 100, middle bracket 110, first handle 120, second handle 130,
[0069] First bracket 200, first outer shell 210, first support rib 211, first inclined surface 212, first side groove 213, first inner shell 220, first convex edge 221, boss 230, press shaft groove 231, press shaft cover 232, first mounting post 240, first magnetic part 241, first mounting groove 242, ring groove 250, first concave ring surface 260, first assembly groove 261, positioning block 270,
[0070] Second bracket 300, second outer shell 310, second support rib 311, second inclined surface 312, second side groove 313, second inner shell 320, second convex edge 321, second mounting post 340, second magnetic part 341, second concave ring surface 360, second assembly groove 361,
[0071] Adjusting component 400, first section 410, sub-adjusting guide rail 411, initial limiting rib 412, extending limiting rib 413, second section 420, first sliding part 430, second sliding part 440, connecting plate 450, adjusting guide rail 460, first sliding rail 461, second sliding rail 462,
[0072] Massaging component 500, first massage head 510, second massage head 520,
[0073] Blocking part 600, first blocking part 610, first sunk platform 611, second sunk platform 612, third inclined surface 613, fourth inclined surface 614, second blocking part 620, shaping part 621, positioning groove 622, first connecting section 630, first assembly protrusion 631, second connecting section 640, second assembly protrusion 641, wrinkled section 650,
[0074] Circuit board 700,
[0075] Seat body 810, baffle 811, adjusting cavity 813, gear position groove 815, gear position protrusion 821, elastic part 822, anti-disengagement plate 823, gear position ball 824, positioning post 825, snap ring 826, connecting seat 830, mounting cover 831, card hole 832, mounting cavity 833, wire passing hole 834, bending arm 835, buckle 836, card slot 837, anti-disengagement ring edge 838, upper cover 860, sliding groove 861. Detailed implementation manners
[0076] Embodiments of the present invention will be described in detail below. The embodiments described with reference to the accompanying drawings are exemplary. Embodiments of the present invention will be described in detail below.
[0077] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "length", "width", "thickness", "", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.
[0078] In the description of the present invention, the "first feature" and "second feature" may include one or more of such features.
[0079] In the description of the present invention, the meaning of "a plurality" is two or more.
[0080] The wearing bracket 100 according to an embodiment of the present invention will be described below with reference to the accompanying drawings.
[0081] As Figures 1 - 18 shown, the wearing bracket 100 according to an embodiment of the present invention includes an intermediate bracket 110 and a shielding portion 600.
[0082] The intermediate bracket 110 includes a first bracket 200, a second bracket 300, and an adjustment assembly 400 connected between the first bracket 200 and the second bracket 300. At least one of the first bracket 200 and the second bracket 300 is slidably connected to the adjustment assembly 400 so that the intermediate bracket 110 can be telescoped along its length direction. The shielding portion 600 is provided on at least one of the first bracket 200, the second bracket 300, and the adjustment assembly 400, and the shielding portion 600 is used to shield the gap between the first bracket 200 and the second bracket 300.
[0083] Among them, the shielding part 600 is used to shield the gap between the first bracket 200 and the second bracket 300. In one case, the shielding part 600 can move relative to the first bracket 200 and the second bracket 300. When there is a gap due to the mutual separation of the first bracket 200 and the second bracket 300, the shielding part 600 can move between the first bracket 200 and the second bracket 300 to shield the gap. In another case, the shielding part 600 is always connected between the first bracket 200 and the second bracket 300, and the shielding part 600 itself can be stretched or telescopic to shield the gap between the first bracket 200 and the second bracket 300 when they approach or separate from each other (the second shielding part 620 of the first embodiment). It can also be a combination of the above two cases, that is, part of the shielding part 600 is movable relative to the first bracket 200 and the second bracket 300, and part is fixedly connected between the first bracket 200 and the second bracket 300.
[0084] According to the wearing bracket 100 of the embodiment of the present invention, by setting the middle bracket 110 as the first bracket 200, the second bracket 300 and the adjusting component 400 connected between the first bracket 200 and the second bracket 300, and at least one of the first bracket 200 and the second bracket 300 is slidably connected to the adjusting component 400, so that the middle bracket 110 can be telescopic along its length direction. By telescoping the middle bracket 110 along its length direction, the overall size of the wearing bracket 100 can be adjusted, so that the wearing bracket 100 can be applicable to a larger range of neck sizes, expanding the range of applicable people of the wearing bracket 100. And when the wearing bracket 100 is worn on a neck with a larger size, compared with the wearing method of elastic deformation of the wearing bracket in the related art, the wearing bracket 100 in the embodiment of the present invention can adjust its own size to adapt to a larger size neck, can reduce the deformation degree of the wearing bracket 100, and further reduce the reaction force when the wearing bracket 100 deforms, so that the pressure of the wearing bracket 100 on the neck is smaller.
[0085] In addition, a shielding part 600 is further provided. The shielding part 600 is provided on at least one of the first bracket 200, the second bracket 300 and the adjusting component 400. The shielding part 600 is used to shield the gap between the first bracket 200 and the second bracket 300. Compared with the wearing bracket with a telescopic middle bracket in the related art, when the middle bracket 110 of the wearing bracket 100 of the embodiment of the present invention extends to the maximum length or contracts to the minimum length, the outer surface of the middle bracket 110 remains relatively closed, which can prevent the internal structure of the wearing bracket 100 from being exposed, thereby reducing the risk of damage to the internal structure, and can also reduce the probability of dust and the like entering the inside of the wearing bracket 100, ensuring the reliability and appearance neatness of the wearing bracket 100, and further being able to avoid pinching the hair and skin of the human body when the middle bracket 110 contracts, and is not easy to accumulate dust.
[0086] Thus, the wearing bracket 100 according to the embodiments of the present invention can not only adapt to a larger range of neck sizes by telescoping the middle bracket 110, but also block the gap generated by the telescoping of the middle bracket 110, and has the advantages of high wearing comfort and easy cleaning.
[0087] According to some embodiments of the present invention, as Figure 3 and Figure 11 shown, the first bracket 200 may include a first outer shell 210 and a first inner shell 220, and the first inner shell 220 is installed on the side of the first outer shell 210 facing the human neck. The second bracket 300 may include a second outer shell 310 and a second inner shell 320, and the second inner shell 320 is installed on the side of the second outer shell 310 facing the human neck.
[0088] Wherein, the shielding portion 600 is used to shield the gap between the first outer shell 210 and the second outer shell 310 and the gap between the first inner shell 220 and the second inner shell 320.
[0089] For example, the first inner shell 220 and the second inner shell 320 may be flexible members with a skin-friendly effect, such as silicone members. Since the first inner shell 220 and the second inner shell 320 are used to contact the human neck, by setting the first inner shell 220 and the second inner shell 320 as flexible members, the first inner shell 220 and the second inner shell 320 are easy to deform with the human neck, increasing the wearing comfort of the wearing bracket 100, and the flexible first inner shell 220 and the flexible second inner shell 320 can adapt to the telescoping of the middle bracket 110, so that the middle bracket 110 can always have a good sealing effect and prevent the internal structure of the middle bracket 110 from being exposed. The first outer shell 210 and the second outer shell 310 may be rigid members. By means of the first outer shell 210 and the second outer shell 310, the shape of the wearing bracket 100 can be maintained. When the wearing bracket 100 is worn on the human neck, the first outer shell 210 and the second outer shell 310 can ensure the stability of the wearing of the wearing bracket 100, and since the wearing bracket 100 can undergo elastic deformation, the wearing bracket 100 can adapt to a larger range of neck sizes. And the wearing bracket 100 may be provided with a massage component 500, and the massage component 500 can be better adjusted to the position where the user needs massage, and under the action of the elastic restoring force, the massage component 500 fits more closely with the human neck.
[0090] According to some embodiments of the present invention, as Figure 2 and Figure 3As shown, the shielding part 600 includes a first shielding part 610, and the first shielding part 610 is provided on the adjusting component 400. For example, the first shielding part 610 and the adjusting component 400 are integrally formed to save installation space and installation parts, reduce disassembly and assembly steps, and improve production efficiency. At least one of the first outer shell 210 and the second outer shell 310 is slidably connected to the adjusting component 400. The first shielding part 610 is located on the side of the adjusting component 400 away from the human body, and the first shielding part 610 is used to shield the gap between the first outer shell 210 and the second outer shell 310.
[0091] In other embodiments, it may also be that at least one of the first inner shell 220 and the second inner shell 320 is slidably connected to the adjusting component 400. The first shielding part 610 is located on the side of the adjusting component 400 close to the human body, and the first shielding part 610 is used to shield the gap between the first inner shell 220 and the second inner shell 320.
[0092] By slidably connecting at least one of the first outer shell 210 and the second outer shell 310 to the adjusting component 400, the telescopic adjustment of the middle bracket 110 can be achieved by pushing and pulling the first bracket 200, the second bracket 300, or both of them relative to the adjusting component 400. The operation is simple and convenient for users to use.
[0093] In one embodiment, as Figure 3 shown, both the first outer shell 210 and the second outer shell 310 can be slidably connected to the adjusting component 400. Compared with only one of the first outer shell 210 and the second outer shell 310 being slidably connected to the adjusting component 400, when the wearing bracket 100 is worn on the human neck, the side of the first outer shell 210 facing the human neck (for example, the left side) and the side of the second outer shell 310 facing the other side of the human neck (for example, the right side) can slide the same distance. Therefore, whether the middle bracket 110 is in the unfolded state or the contracted state, the first bracket 200 and the second bracket 300 can be symmetric with respect to the human cervical vertebra, so that the weight of the wearing bracket 100 is evenly distributed on both sides of the human neck, improving the wearing stability and comfort.
[0094] According to some embodiments of the present invention, as Figure 3 shown, the shielding part 600 may include a second shielding part 620, and the second shielding part 620 can be stretched and deformed. The second shielding part 620 is respectively connected to the first inner shell 220 and the second inner shell 320, and the second shielding part 620 is used to shield the gap between the first inner shell 220 and the second inner shell 320. Or, the second shielding part 620 is respectively connected to the first outer shell 210 and the second outer shell 310, and the second shielding part 620 is used to shield the gap between the first outer shell 210 and the second outer shell 310. In some embodiments of the present invention, as Figure 3As shown, the second shielding portion 620 can be used in cooperation with the first shielding portion 610. For example, the first shielding portion 610 is used to cover the gap between the first outer shell 210 and the second outer shell 310, and the second shielding portion 620 is used to shield the gap between the first inner shell 220 and the second inner shell 320. Since the intermediate bracket 110 can slide with the first shielding portion 610 in this way, the intermediate bracket 110 is simple to expand and contract, and with the cooperation of the second shielding portion 620 and the first shielding portion 610, the shielding effect on dust is better.
[0095] In some other embodiments of the present invention, such as Figure 10 and Figure 11 As shown, the second shielding portion 620 is respectively connected to the first inner shell 220 and the second inner shell 320. The second shielding portion 620 is used to shield the gap between the first inner shell 220 and the second inner shell 320, and the second shielding portion 620 is respectively connected to the first outer shell 210 and the second outer shell 310. The second shielding portion 620 is used to shield the gap between the first outer shell 210 and the second outer shell 310. Since the second shielding portion 620 is an integral component in this way, it can provide a better shielding effect on the intermediate bracket 110, and further prevent dust and the like from entering the intermediate bracket 110.
[0096] Furthermore, the second shielding portion 620 is a flexible member and / or has a pleated structure. In this way, it is easy to realize the stretching deformation of the second shielding portion 620. Among them, the second shielding portion 620 can be a rubber member.
[0097] According to some embodiments of the present invention, such as Figure 3 、 Figure 9 、 Figure 11 、 Figure 12 and Figures 15 - 18 As shown, the adjusting assembly 400 includes an adjusting guide rail 460 and a first sliding member 430. The adjusting guide rail 460 includes a first section 410 and a second section 420. A first sliding rail 461 is formed on one of the first section 410 and the first bracket 200, and a first sliding member 430 is installed on the other of the first section 410 and the first bracket 200. The second section 420 is connected to the second bracket 300. The first sliding member 430 can slide along the extending direction of the first sliding rail 461, so that the first bracket 200 is movable relative to the second bracket 300.
[0098] Optionally, the extending direction of the first sliding rail 461 is the same as the length direction of the intermediate bracket 110. In this way, the distance that the first bracket 200 moves relative to the second bracket 300 is all used to increase or decrease the length of the intermediate bracket 110, and the space utilization rate of the wearing bracket 100 is high.
[0099] By providing the first sliding rail 461, the moving direction of the first sliding member 430 can be restricted and guided, so that the telescopic direction of the intermediate bracket 110 is controllable, facilitating the adaptation between the wearing bracket 100 and the human neck. And the adjustment guide rail includes a first section 410 and a second section 420, and the first section 410 and the second section 420 are respectively engaged with the first bracket 200 and the second bracket 300, which is beneficial to the adjustment of the length of the intermediate bracket 110.
[0100] Optionally, the adjustment assembly 400 further includes a second sliding member 440. A second sliding rail 462 is formed on one of the second section 300 and the second bracket 300, and the second sliding member 440 is mounted on the other of the second section 300 and the second bracket 300. The second sliding member 440 can slide along the extending direction of the second sliding rail 462, so that the second bracket 300 is movable relative to the first bracket 100. For example, the second sliding rail 462 can be formed on the second section 300, and the second sliding member 440 can be mounted on the second bracket 300.
[0101] Optionally, the extending direction of the second sliding rail 462 is consistent with the length direction of the intermediate bracket 110. In this way, the distance that the second bracket 300 moves relative to the first bracket 200 is all used to increase or decrease the length of the intermediate bracket 110, and the space utilization rate of the wearing bracket 100 is high.
[0102] By providing the second sliding rail 462, the moving direction of the second sliding member 440 can be restricted and guided, so that the telescopic direction of the intermediate bracket 110 is controllable, facilitating the adaptation between the wearing bracket 100 and the human neck. And both the first bracket and the second bracket 300 can move. Not only can it ensure that when the wearing bracket 100 is worn on the human neck, the wearing bracket 100 is in the extended state and the contracted state, and the weights on both sides of the human cervical vertebra are more balanced, but also the adjustable range of the length of the intermediate bracket 110 is larger, so it can be applied to a larger range of neck sizes.
[0103] Optionally, the first section 410 and the second section 420 are symmetrically arranged. It should be noted that the symmetric arrangement of the first section 410 and the second section 420 means that the first section 410 and the second section 420 have the same structure and are symmetrically arranged along the central axis of the wearing bracket 100.
[0104] Due to the symmetric arrangement of the first section 410 and the second section 420, when the wearing bracket 100 is worn on the human neck, the distance that the first bracket 200 moves toward one side (such as the left side) of the human neck and the distance that the second bracket 300 moves toward the other side (such as the right side) of the human neck can be the same, thus ensuring that the wearing bracket 100 is in the extended state and the contracted state, and the weights on both sides of the human cervical vertebra are more balanced.
[0105] Optionally, the first slider 430 and the second slider 440 have the same structure. In this way, the first slider 430 and the second slider 440 can be replaced with each other, simplifying the production process and facilitating production and processing.
[0106] In the following content, if only the structures of the first section 410 and the first slider 430 are specifically described, the structure of the second section 420 can be obtained by referring to the structures of the first section 410 and the second slider 440.
[0107] According to some embodiments of the present invention, as Figure 3 and Figure 6 shown, a first slide rail 461 is formed on the first section 410, and the first slider 430 is a rotating shaft. A boss 230 may be provided in the first bracket 200, and the boss 230 may be configured with a pressing shaft groove 231, and the end of the rotating shaft is located in the pressing shaft groove 231.
[0108] For example, a boss 230 is provided on one side of the first outer shell 210 facing the first inner shell 220, and the boss 230 is integrally formed with the first outer shell 210. The central angle of the cross-section of the pressing shaft groove 231 is greater than 180°, and the rotating shaft can be in interference fit with the pressing shaft groove 231. In this way, the relative position of the rotating shaft and the first bracket 200 is fixed. Therefore, the movement trajectory of the rotating shaft relative to the first section 410 is the movement trajectory of the first bracket 200 relative to the first section 410.
[0109] Furthermore, a pressing shaft cover 232 is installed on the boss 230, and the pressing shaft cover 232 presses the end of the rotating shaft against the pressing shaft groove 231. Among them, the pressing shaft cover 232 and the boss 230 can be fixedly connected by a threaded fastener. At this time, the central angle of the cross-section of the pressing shaft groove 231 can be not greater than 180°. The rotating shaft 430 can be fixed by the pressing shaft cover 232, and the installation stability is high and it is convenient for disassembly and assembly.
[0110] Optionally, the number of the bosses 230 is two, and the two ends of the rotating shaft are respectively located in the pressing shaft grooves 231 of the two bosses 230. The first slide rail 461 penetrates through the adjusting guide rail 460 along the width direction of the adjusting guide rail 460, and the rotating shaft penetrates through the first slide rail 461, so that the first section 410 is located between the two bosses 230.
[0111] Among them, the two bosses 230 can be arranged at intervals along the width direction of the first bracket 200. In this way, the installation stability of the rotating shaft is higher, and further it can be ensured that the first bracket 200 moves along the extending direction of the first section 410 during the telescopic process of the wearing bracket 100, avoiding the non-coincidence of the movement direction of the first bracket 200 and the extending direction of the first section 410, and ensuring the smoothness of the movement of the first bracket 200 during the telescopic process.
[0112] Moreover, the distance between the first section 410 and each boss 230 is 0.05 mm to 0.15 mm, for example, 0.1 mm. In this way, during the movement of the first bracket 200, friction and collision with the two bosses 230 can be avoided, damage to the two bosses 230 and the first bracket 20 can be prevented, the service life of the wearing bracket 100 is ensured, and the smoothness of the movement of the first bracket 200 is also ensured.
[0113] Among them, the installation and cooperation of the second section 420, the second sliding member 440, and the second sliding rail 462 can refer to the installation and cooperation of the first section 410, the first sliding member 430, and the first sliding rail 461 described above. For example, a second sliding rail 462 is formed on the second section 420, the second sliding member 440 is a rotating shaft, and the second sliding member 440 is located in the pressing shaft groove 231 of the boss 230.
[0114] According to some embodiments of the present invention, as Figure 3 shown, the first bracket 200 is provided with a first fastening member, and the second bracket 300 is provided with a second fastening member. The first fastening member and the second fastening member can cooperate with each other so that the first bracket 200 and the second bracket 300 are in contact, and the first fastening member and the second fastening member can be separated from each other to allow at least one of the first bracket 200 and the second bracket 300 to slide along the adjustment assembly 400.
[0115] In this way, when the first bracket 200 and the second bracket 300 are in contact, that is, when the intermediate bracket 110 shrinks to the minimum length, under the action of the first fastening member and the second fastening member, the contact between the first bracket 200 and the second bracket 300 is closer, there is no gap or the gap is extremely small between the first bracket 200 and the second bracket 300, dust can be better prevented from entering the intermediate bracket 110, the sealing performance of the intermediate bracket 110 is better, and the contact stability between the first bracket 200 and the second bracket 300 is higher.
[0116] Optionally, when the first shielding portion 610 is used to shield the gap between the first outer shell 210 and the second outer shell 310, the first fastening member may be disposed on the first outer shell 210, and the second fastening member may be disposed on the second outer shell 310. When the first shielding portion 610 is used to shield the gap between the first inner shell 220 and the second inner shell 320, the first fastening member may be disposed on the first inner shell 220, and the second fastening member may be disposed on the second inner shell 320. By cooperatively disposing the first shielding portion 610, the first fastening member, and the second fastening member, when the intermediate bracket 110 is contracted to the minimum length, the first fastening member and the second fastening member can abut against each other through their interaction to make the gap between the first bracket 200 and the second bracket 300 non-existent or extremely small. When the first bracket 200 and the second bracket 300 are extended, the first shielding portion 610 can shield the gap between the first bracket 200 and the second bracket 300. Optionally, the first fastening member may be a first magnetic member 241, and the second fastening member may be a second magnetic member 341.
[0117] In one embodiment, the first outer shell 210 may be provided with a first magnetic member 241, and the second outer shell 310 may be provided with a second magnetic member 341. The first magnetic member 241 and the second magnetic member 341 can attract each other so that the first outer shell 210 and the second outer shell 310 abut against each other.
[0118] Optionally, the first fastening member may be a first engaging member, and the second fastening member may be a second engaging member. The first engaging member and the second engaging member can engage with each other so that the first bracket 200 and the second bracket 300 abut against each other.
[0119] In another embodiment, the first outer shell 210 may be provided with a first engaging member, and the second outer shell 310 may be provided with a second engaging member. The first engaging member and the second engaging member can engage with each other so that the first outer shell 210 and the second outer shell 310 abut against each other. In this way, the structure of the wearing bracket 100 is more diverse, and different structures can be selected according to the usage requirements, thereby improving the applicability.
[0120] For example, both the first magnetic member 241 and the second magnetic member 341 may carry magnetic force and the polarities of the first magnetic member 241 and the second magnetic member 341 are opposite; or one of the first magnetic member 241 and the second magnetic member 341 carries magnetic force and the other can be magnetically attracted, for example, the other can be made of a metal iron material.
[0121] Optionally, on one side of the first outer shell 210 facing the first inner shell 220, a first mounting post 240 may be provided. The first mounting post 240 is bent in the direction towards the second bracket 300, and a first magnetic member 241 is provided on the end face of one end of the first mounting post 240 facing the second bracket 300. On one side of the second outer shell 310 facing the second inner shell 320, a second mounting post 340 is provided. The second mounting post 340 is bent in the direction towards the first bracket 200, and a second magnetic member 341 is provided on the end face of one end of the second mounting post 340 facing the first bracket 200.
[0122] Wherein, both the first mounting post 240 and the second mounting post 340 may be L-shaped. The first mounting post 240 is formed integrally with the first outer shell 210, and the second mounting post 340 is formed integrally with the second outer shell 310. One end of the first mounting post 240 is mounted on the first outer shell 210, and one end of the second mounting post 340 is mounted on the second outer shell 310, and the other ends of the first mounting post 240 and the second mounting post 340 face each other. This further increases the convenience of mutual attraction between the first magnetic member 241 and the second magnetic member 341.
[0123] Moreover, a first mounting groove 242 is provided on the end face of one end of the first mounting post 240 facing the second bracket 300, and the first magnetic member 241 is provided in the first mounting groove 242. A second mounting groove (not shown in the figure, reference can be made to the structure of the first mounting groove 242) is provided on the end face of one end of the second mounting post 340 facing the first bracket 200, and the second magnetic member 341 is provided in the second mounting groove. Wherein, the first magnetic member 241 may be bonded to the first mounting groove 242, and the second magnetic member 341 may be bonded to the second mounting groove. In this way, the relative positional relationship between the first magnetic member 241 and the first mounting post 240 is more stable, and the relative positional relationship between the second magnetic member 341 and the second mounting post 340 is more stable.
[0124] According to some embodiments of the present invention, as Figure 3 and Figure 8 shown, the first shielding portion 610 can be respectively connected to the first outer shell 210 and the second outer shell 310, and the second shielding portion 620 is respectively connected to the first inner shell 220 and the second inner shell 320. The first inner shell 220 and the second inner shell 320 are flexible members, and the first inner shell 220, the second inner shell 320 and the second shielding portion 620 are formed integrally. Wherein, the first inner shell 220, the second inner shell 320 and the second shielding portion 620 can all be made of silica gel material. In this way, the structure is simple, the disassembly and assembly are convenient, and the connection strength is high. There is no need to separately provide positioning parts for the second shielding portion 620, the first inner shell 220 and the second inner shell 320, which saves the number of parts of the neck massager 1 and improves the assembly efficiency. It can be understood that the positions of the first shielding portion 610 and the second shielding portion 620 can also be interchanged.
[0125] Specifically, the fracture elongation rate of the second shielding portion 620 is 800%. The fracture elongation rate of the second shielding portion 620 is the ratio of the ultimate length of the second shielding portion 620 (i.e., the length when the second shielding portion 620 fractures) to the original length of the second shielding portion 620 (i.e., the length when the second shielding portion 620 is not pulled by an external force).
[0126] Optionally, during the telescoping process of the intermediate bracket 110, the fracture elongation rate of the second shielding portion 620 can always be greater than twice the maximum tensile deformation amount of the second shielding portion 620, for example, 2 times, 3 times, or 4 times. The maximum tensile deformation amount of the second shielding portion 620 is the ratio of the length of the second shielding portion 620 when the intermediate bracket 110 extends to its maximum length to the original length of the second shielding portion 620. For example, when the intermediate bracket 110 extends to its maximum length, the tensile deformation amount of the second shielding portion 620 is approximately 200%, that is, the maximum tensile deformation amount is 200%.
[0127] For example, when the intermediate bracket 110 contracts to its minimum length, the second shielding portion 620 can be in a smooth state (i.e., the second shielding portion 620 has no wrinkles or very few wrinkles). When the intermediate bracket 110 is in the extended state, the second shielding portion 620 is also always in a smooth state (i.e., the second shielding portion 620 always has no wrinkles or very few wrinkles). And because the elongation rate of the second shielding portion 620 is relatively high, the second shielding portion 620 is not easily damaged.
[0128] Furthermore, the thickness of the second shielding portion 620 is less than the thickness of the first inner shell 220 and the thickness of the second inner shell 320. For example, the thickness of the second shielding portion 620 can be 0.8 mm, and the thicknesses of both the first inner shell 220 and the second inner shell 320 can be 1.5 mm. This can improve the tensile deformation ability of the second shielding portion 620. When the first bracket 200 and the second bracket 300 are subjected to a force that makes them move away from each other, the second shielding portion 620 is more easily deformed, reducing the telescoping resistance of the intermediate bracket 110.
[0129] In addition, the distance between the first outer shell 210 and the second outer shell 310 is not greater than 15 mm, that is, the distance between the first outer shell 210 and the second outer shell 310 along the length direction of the intermediate bracket is not greater than 15 mm. The original length of the second shielding portion 620 along the extending direction of the intermediate bracket 110 is 7 mm. Since the fracture elongation rate of the second shielding portion 620 is 800%, the structural integrity of the second shielding portion 620 can be ensured.
[0130] Furthermore, as Figure 8As shown, the shielding portion 600 is connected to the first bracket 200 and the second bracket 300 respectively. At the connection between the first bracket 200 and the second shielding portion 620, and at the connection between the second bracket 300 and the second shielding portion 620, shaping members 621 are respectively provided. The shaping members 621 extend along the width direction of the middle bracket 110. Among them, the shaping members 621 can be formed by overmolding. By providing the shaping members 621, while not affecting the deformation ability of the second shielding portion 620 along the extending direction of the middle bracket 110, the shape stability of the shielding portion 600 in the width direction of the middle bracket 110 is ensured.
[0131] Moreover, the middle part of the shaping member 621 protrudes towards the human neck direction, that is, the second shielding portion 620 is configured as an arc in its width direction. This can better ensure the fit between the wearing bracket 100 and the human neck, avoid gaps between the wearing bracket 100 and the human neck, and improve the wearing comfort of the wearing bracket 100.
[0132] According to some embodiments of the present invention, as Figures 6 - 8 shown, the shielding portion is provided with positioning grooves 622, and the first bracket 200 and the second bracket 300 are provided with positioning blocks 270. The positioning blocks 270 are slidably engaged with the positioning grooves 622. Among them, the positioning blocks 270 can be integrally formed with the first housing 210 and the second housing 310 respectively, and the two brackets can be provided with positioning blocks 270 on both sides in the width direction of the wearing bracket 100, and the shielding portion 600 can be configured with positioning grooves 622 on both sides in its width direction. When the middle bracket 110 expands and contracts, the positioning blocks 270 can slide in the positioning grooves 622, and the positioning grooves 622 can be in interference fit with the positioning blocks 270.
[0133] For example, the width of the end of the positioning block 270 away from the middle bracket 110 is greater than the width of the end of the positioning block 270 close to the middle bracket 110. Among them, the positioning block 270 can be T-shaped to ensure that in the width direction of the middle bracket 110, the shielding portion 600 is stably connected and closely fitted with the middle bracket 110, reducing the probability of gaps appearing on the surface of the middle bracket 110.
[0134] According to some embodiments of the present invention, as Figure 4 and Figure 6As shown, the shielding part 600 includes a first shielding part 610, and the first shielding part 610 is arranged on the adjusting component 400. The first shielding part 610 is located on the side of the adjusting component 400 away from the human body. When the intermediate bracket 110 shrinks to the minimum length, the first outer shell 210 and the second outer shell 310 are in contact, and the first shielding part 610 is located inside the intermediate bracket 110; when the intermediate bracket 110 extends to the maximum length, the first shielding part 610 is in contact with the first outer shell 210 and the second outer shell 310 respectively to shield the gap between the first outer shell 210 and the second outer shell 310. For example, the surface of the first shielding part 610 facing away from the human neck, the surface of the first outer shell 210 facing away from the human neck, and the surface of the second outer shell 310 facing away from the human neck are approximately on the same curved surface.
[0135] Alternatively, the first shielding part 610 is located on the side of the adjusting component 400 close to the human body. When the intermediate bracket 110 shrinks to the minimum length, the first inner shell 220 and the second inner shell 320 are in contact, and the first shielding part 610 is located inside the intermediate bracket 110; when the intermediate bracket 110 extends to the maximum length, the first shielding part 610 is in contact with the first inner shell 220 and the second inner shell 320 respectively to shield the gap between the first inner shell 220 and the second inner shell 320. For example, the surface of the first shielding part 610 facing the human neck, the surface of the first inner shell 220 facing the human neck, and the surface of the second inner shell 320 facing the human neck are on the same curved surface.
[0136] In this way, not only can the first shielding part 610 shield the gap between the first bracket 200 and the second bracket 300, but also the first shielding part 610 can be received inside the intermediate bracket 110 when the intermediate bracket 110 shrinks, improving the space utilization rate of the wearing bracket 100.
[0137] Specifically, as Figure 9 shown, the adjusting component 400 includes an adjusting guide rail 460 and a first sliding member 430. The adjusting guide rail 460 includes a first section 410 and a second section 420 that are connected to each other. A first sliding rail 461 is formed on the first section 410. The first sliding member 430 is installed on the first bracket 200, and the second section 420 is connected to the second bracket 300.
[0138] The first shielding part 610 is located between the first outer shell 210 and the first sliding rail 461, and the first sliding rail 461 extends gradually in the direction close to the human neck away from the first shielding part 610. Or, the first shielding part 610 is located between the first inner shell 220 and the first sliding rail 461, and the first sliding rail 461 extends gradually in the direction away from the human neck away from the first shielding part 610.
[0139] The first sliding member 430 can slide along the extending direction of the first sliding rail 461 so that the first bracket 200 is movable relative to the second bracket 300.
[0140] The telescoping process of the intermediate bracket 110 when the first shielding portion 610 is located between the first outer shell 210 and the first slide rail 461 will be described below with reference to the accompanying drawings:
[0141] During the movement of the intermediate bracket 110 from the contracted minimum length to the extended maximum length, the first bracket 200 moves towards the human neck relative to the first shielding portion 610, that is, the first shielding portion 610 moves away from the human neck relative to the first bracket 200. At this time, the first bracket 200 moves away from the second bracket 300, and a gap appears between the first outer shell 210 and the second outer shell 310. The first shielding portion 610 moves between the first outer shell 210 and the second outer shell 310 to fill the gap between the first outer shell 210 and the second outer shell 310, maintaining the closure of the outer surface of the intermediate bracket 110, as Figure 5 shown;
[0142] During the movement of the intermediate bracket 110 from the extended maximum length to the contracted minimum length, the first bracket 200 moves away from the human neck relative to the first shielding portion 610, that is, the first shielding portion 610 moves towards the human neck relative to the first bracket 200. At this time, the first bracket 200 approaches the second bracket 300, the first shielding portion 610 moves inside the intermediate bracket 110, the first outer shell 210 and the second outer shell 310 are closed, and the outer surface of the intermediate bracket 110 is closed, as Figure 4 shown.
[0143] In this way, the first shielding portion 610 can not only make the appearance of the outer surface of the intermediate bracket 110 neat, so as to prevent particulate matters such as dust from entering the intermediate bracket 110, but also ensure the reliability of the operation of the wearing bracket 100.
[0144] Among them, the structure of the second slide rail 462 can refer to the structure of the first slide rail 461. For example, the first shielding portion 610 is located between the second outer shell 310 and the second slide rail 462, and the second slide rail 462 gradually extends in the direction closer to the human neck away from the first shielding portion 610. Or, the first shielding portion 610 is located between the second inner shell 320 and the second slide rail 462, and the second slide rail 462 gradually extends in the direction away from the human neck away from the first shielding portion 610.
[0145] According to some embodiments of the present invention, as Figures 4 - 5 and Figure 9As shown in the figure, the first shielding part 610 is located on the side of the adjusting component 400 away from the human body. A first sinking platform 611 is provided on the side of the first shielding part 610 facing the first outer shell 210, and a second sinking platform 612 is provided on the side of the first shielding part 610 facing the second outer shell 310. A first support rib 211 is provided on the side of the first outer shell 210 facing the first inner shell 220, and a second support rib 311 is provided on the side of the second outer shell 310 facing the second inner shell 320. Among them, when the intermediate bracket 110 shrinks to the minimum length, the first support rib 211 supports on the first sinking platform 611, and the second support rib 311 supports on the second sinking platform 612; when the intermediate bracket 110 extends to the maximum length, one end of the first outer shell 210 facing the second outer shell 310 supports on the first sinking platform 611, and one end of the second outer shell 310 facing the first outer shell 210 supports on the second sinking platform 612.
[0146] In this way, whether the intermediate bracket 110 shrinks to the minimum length or extends to the maximum length, the first sinking platform 611 and the second sinking platform 612 can support the first outer shell 210 and the second outer shell 310, so as to ensure that the outer surface of the intermediate bracket 110 is still relatively closed when the intermediate bracket 110 is subjected to an external force, prevent gaps from appearing when the intermediate bracket 110 is subjected to an external force, or the situation of the first outer shell 210 and the second outer shell 310 sinking, and further ensure that the wearing bracket 100 is not easily dusty.
[0147] Among them, the first sinking platform 611 and the second sinking platform 612 can be located at both ends of the first shielding part 610, and the first sinking platform 611 and the second sinking platform 612 are recessed towards the inner shell relative to the remaining positions of the first shielding part 610. When the intermediate bracket 110 extends to the maximum length, the outer surfaces of the first outer shell 210, the second outer shell 310 and the first shielding part 610 can be kept on the same curved surface, and the first support rib 211 is located on the first outer shell 210 and extends towards the first inner shell 220, and the second support rib 311 is located on the second outer shell 310 and extends towards the second inner shell 320. Therefore, when the intermediate bracket 110 shrinks to the minimum length, the outer surfaces of the first outer shell 210 and the second outer shell 310 can be kept on the same curved surface. In this way, whether the intermediate bracket 110 extends to the maximum length or shrinks to the minimum length, it can ensure that the outer surface of the intermediate bracket 110 is closed.
[0148] Furthermore, a first inclined surface 212 is formed on the end surface of the first outer shell 210 facing the second outer shell 310, a second inclined surface 312 is formed on the end surface of the second outer shell 310 facing the first outer shell 210, a third inclined surface 613 is formed on the first sinking platform 611, and a fourth inclined surface 614 is formed on the second sinking platform 612. Among them, when the intermediate bracket 110 extends to the maximum length, the first inclined surface 212 and the third inclined surface 613 are in contact, and the second inclined surface 312 and the fourth inclined surface 614 are in contact.
[0149] In this way, during the movement of the intermediate bracket 110 (from the process of the intermediate bracket 110 extending to the maximum length to the process of the intermediate bracket 110 contracting to the minimum length or from the process of the intermediate bracket 110 contracting to the minimum length to the process of the intermediate bracket 110 extending to the maximum length), the mutual fitting between the inclined surfaces can play a guiding role, facilitating the pushing and ensuring the stability of the movement direction of the intermediate bracket 110.
[0150] As Figure 9 shown, the first inclined surface 212 and the second inclined surface 312 gradually move away from each other in the direction towards the human neck, and the third inclined surface 613 and the fourth inclined surface 614 gradually move away from each other in the direction towards the human neck. Among them, the first inclined surface 212, the second inclined surface 312, the third inclined surface 613 and the fourth inclined surface 614 can be smooth planes, that is, the first inclined surface 212, the second inclined surface 312, the third inclined surface 613 and the fourth inclined surface 614 are non-curved surfaces or non-bent surfaces. In this way, the movement of the first housing 210 and the second housing 310 is more smooth and stable, ensuring the reliability of the use of the wearing bracket 100.
[0151] According to some embodiments of the present invention, as Figures 4 - 5 and Figure 9 shown, the first section 410 is configured with an initial limiting rib 412 and an extended limiting rib 413. When the intermediate bracket 110 extends to the maximum length, the first sliding member 430 is blocked by the extended limiting rib 413 at one end of the first section 410; when the intermediate bracket 110 contracts to the minimum length, the first sliding member 430 is blocked by the initial limiting rib 412 at the other end of the first section 410. By setting the initial limiting rib 412 and the extended limiting rib 413, the movement position of the first bracket 200 can be positioned, the telescopic length of the intermediate bracket 110 can be positioned, and the excessive extension and closing of the intermediate bracket 110 can be avoided, so as to facilitate the multiple use of the wearing bracket 100.
[0152] In this way, when the intermediate bracket 110 is in the closed state (that is, when the intermediate bracket 110 contracts to the minimum length) and the unfolded state (that is, when the intermediate bracket 110 extends to the maximum length), the degree of freedom of movement of the first sliding member 430 is restricted, and the relative position between the first sliding member 430 and the first section 410 is fixed. Therefore, in the absence of external force, the relative position between the first sliding member 430 and the first section 410 remains fixed, which can ensure the stability of the wearing of the wearing bracket 100.
[0153] According to some embodiments of the present invention, as Figure 9As shown, the first section 410 includes two sub-adjustable guide rails 411 arranged in a disconnected manner, and the openings of the two sub-adjustable guide rails 411 are arranged opposite to each other. Since one end of each sub-adjustable guide rail 411 is not fixed, each sub-adjustable guide rail 411 has higher elasticity, the range of selectable sizes of the diameter of the first sliding member 430 is wider, and the movement of the first sliding member 430 in the first section 410 is smoother.
[0154] Furthermore, the widths of the openings of the two sub-adjustable guide rails 411 gradually increase in the direction away from each other, and the minimum width of the opening of the sub-adjustable guide rail 411 is smaller than the diameter of the first sliding member 430. Therefore, each sub-adjustable guide rail 411 has a good guiding effect on the first sliding member 430, the sliding of the first sliding member 430 is smoother, and the convenience of the telescoping of the intermediate bracket 110 can be effectively improved.
[0155] Specifically, the first section 410 further includes a connecting plate 450, and the connecting plate 450 is connected to the ends of the two sub-adjustable guide rails 411 away from each other. While maintaining the relative position stability between the two sub-adjustable guide rails 411 through the connecting plate 450, the first sliding member 430 can slide smoothly, so the structure of the wearing bracket 100 is stable and the telescoping is smooth.
[0156] Among them, the structure of the second section 420 can refer to the above-mentioned first section 410, that is, the second section 420 can also be provided with structures such as sub-adjustable guide rails 411, initial limiting ribs 412, extending limiting ribs 413, and connecting plates 450 to limit the movement range of the second sliding member 440.
[0157] In some embodiments of the present invention, as Figure 9 shown, the first shielding portion 610, the first section 410, and the second section 420 are integrally formed. In this way, the structure is simple, the disassembly and assembly are convenient, and the connection strength is high. There is no need to separately provide positioning parts for the first shielding portion 610, the first section 410, and the second section respectively, saving the number of parts and improving the assembly efficiency.
[0158] According to some embodiments of the present invention, as Figure 3 shown, the wearing bracket further includes a circuit board 700, and the circuit board 700 is fixed to the first shielding portion 610 by a fastener and is located on the side of the first shielding portion 610 facing the human neck. Among them, the circuit board 700 can be a flexible circuit board. In this way, the relative position between the circuit board 700 and the shielding portion 600 is fixed. When the intermediate bracket 110 telescopes, the circuit board 700 is always located at the fixed position of the intermediate bracket 110, which is convenient for connecting the circuit board 700 to other electrical components of the wearing bracket 100, and the electrical connection stability is high.
[0159] In some embodiments of the present invention, the circuit board 700 may be provided with a light-emitting element, and the shielding portion 600 may be a light-transmitting member. For example, the first shielding portion 610 is a light-transmitting member. Therefore, when the intermediate bracket 110 is in the deployed state, the light-emitting element is turned on to start emitting light, and the light of the light-emitting element can be emitted from the shielding portion 600 out of the intermediate bracket 110, thereby playing a role in prompting the deployed state of the intermediate bracket 110.
[0160] According to some embodiments of the present invention, as Figures 10 - 14 shown, the cross-section of the shielding portion 600 is annular. The shielding portion 600 includes a first connecting section 630, a wrinkled section 650, and a second connecting section 640 along its length direction. The wrinkled section 650 is connected between the first connecting section 630 and the second connecting section 640. The first connecting section 630 is sleeved on the first bracket 200 (the first outer shell 210 and the first inner shell 220), and the second connecting section 640 is sleeved on the second bracket 300 (the second outer shell 310 and the second inner shell 320). It can be understood that when the above-mentioned second shielding portion 620 is respectively connected to the first inner shell 220 and the second inner shell 320 and is respectively connected to the first outer shell 210 and the second outer shell 310, it can become the annular shielding portion 600 in this embodiment. That is to say, this embodiment can be combined with the embodiment having the second shielding portion 620.
[0161] Among them, the wrinkled section 650 may be provided with a plurality of depressions spaced along its axial direction. Each depression extends along the circumferential direction of the wrinkled section 650. In this way, the wrinkled section 650 can be deformed to a greater extent. The shielding portion 600 may be made of a flexible material, such as a silicone material. The shielding portion 600 can be continuously deformed as the intermediate bracket 110 expands and contracts, so as to ensure that the shielding portion 600 can continuously shield the internal structure of the intermediate bracket 110, prevent dust and the like from entering the inside of the intermediate bracket 110, and thus can improve the cleanliness of the wearing bracket 100.
[0162] According to some embodiments of the present invention, as Figures 11 - 13 and Figure 17 shown, the first section 410 is configured with an adjustment cavity 813. One end of the first sliding member 430 is connected to the first bracket 200 (the first outer shell 210 and / or the first inner shell 220), and the other end of the first sliding member 430 extends into the adjustment cavity 813 and is slidably engaged with the inner side wall of the first section 410. The second section 420 is connected to the second bracket 300.
[0163] By adjusting the settings of the adjustment cavity 813, it is possible to provide a guiding effect for the movement of the first sliding member 430, ensuring that the first sliding member 430 moves along the track of the adjustment cavity 813. Moreover, both the adjustment cavity 813 and the first sliding member 430 can be non-circular to prevent circumferential relative rotation between the first sliding member 430 and the first section 410. Additionally, both ends of the first sliding member 430 are respectively connected to the first bracket 200 and the first section 410, which can ensure the structural stability of the wearing bracket 100.
[0164] Further, a plurality of gear slots 815 are provided on the inner side wall of the first section 200, and the first sliding member 430 is provided with a gear protrusion 821. The gear protrusion 821 cooperates with different gear slots 815 as the first sliding member 430 slides. Through the cooperation of the gear protrusion 821 and the gear slots 815, the middle bracket 110 can achieve a telescopic function, thereby ensuring that the massage component 500 in the middle bracket 110 is located at the massage position required by the user, and the wearing bracket 100 can adapt to the neck sizes of different users.
[0165] For example, the plurality of gear slots 815 can be arranged at intervals along the moving direction of the first sliding member 430, and the gear protrusion 821 cooperates with different gear slots 815 under the action of an external force, that is, the gear protrusion 821 always cooperates with the same gear slot 815 when there is no external force. This can increase the sense of gear during the movement of the first sliding member 430, enabling the user to clearly understand the gear adjustment of the wearing bracket 100, and can fix the position of the first sliding member 430 after adjustment, avoiding non-artificial telescoping of the first sliding member 430 and improving the wearing stability of the wearing bracket 100.
[0166] Specifically, the first sliding member 430 is provided with an installation cavity 833 and a card hole 832 communicating with the installation cavity 833. An elastic member 822 is provided in the installation cavity 833. The gear protrusion 821 is arranged in the installation cavity 833. Both ends of the elastic member 822 respectively abut against the side wall of the installation cavity 833 and the gear protrusion 821. The gear protrusion 821 protrudes from the card hole 832 under the elastic force of the elastic member 822 to cooperate with the gear slot 815. In this way, the assembly of the first sliding member 430 is simple, the cooperation between the gear protrusion 821 and the gear slot 815 is stable, and it is easy to adjust.
[0167] The following takes the movement process of the first sliding member 430 as an example:
[0168] The gear projection 821 extends out of the locking hole 832 under the elastic force of the elastic member 822, and the gear projection 821 is engaged with one of the plurality of gear grooves 815. Under the elastic force of the elastic member 822, the relative position of the first section is fixed. When a user applies a force to the first sliding member, the gear projection 821 moves axially along the first section. The gear projection 821 is stopped by the groove wall of the gear groove 815 to compress the elastic member 822. Thus, the first sliding member continuously moves relative to the first section. After the first sliding member is adjusted to a proper position, the user stops applying the force. The gear projection 821 is engaged with another one of the plurality of gear grooves 815 under the elastic force of the elastic member 822 (wherein, another one of the plurality of gear grooves 815 may be the one of the plurality of gear grooves 815 or the remaining one of the plurality of gear grooves 815).
[0169] According to some embodiments of the present invention, as Figures 11 - 13 and Figures 15 - 16 shown, the gear projection 821 includes an anti - detachment plate 823 and a gear ball 824. The anti - detachment plate 823 is disposed in the installation cavity 833 and abuts against the side wall where the locking hole 832 of the first sliding member is located. The elastic member 822 abuts against the anti - detachment plate 823. The gear ball 824 is connected to the anti - detachment plate 823 and extends out of the locking hole 832. Wherein, one end of the gear ball 824 extending out of the locking hole 832 may be spherical. This can improve the smoothness of the movement of the first sliding member 430.
[0170] For example, the cross - section of the anti - detachment plate 823 may be square. The cross - sectional area of the anti - detachment plate 823 is larger than the area of the locking hole 832. The anti - detachment plate 823 is connected to the gear ball 824. Since the anti - detachment plate 823 is retained within the first sliding member 430 and the gear ball 824 extends out of the locking hole 832, the gear ball 824 is prevented from detaching from the installation cavity 833. Thus, the cooperation between the elastic member 822 and the anti - detachment plate 823 is stable. By providing the anti - detachment plate 823, the gear projection 821 can be prevented from disengaging from the locking hole 832.
[0171] According to some embodiments of the present invention, as Figures 11 - 13 and Figures 15 - 16 shown, the gear projection 821 is provided with a positioning post 825. The elastic member 822 is a spring and is sleeved on the positioning post 825 to ensure that the acting force of the elastic member can stably act on the gear projection 821.
[0172] Wherein, the positioning post 825 may be a cylinder, and the installation cavity 833 is provided with limiting ribs. One end of the elastic member 822 abuts against the limiting ribs and the other end abuts against the anti - detachment plate 823 for easy connection. And the positioning post 825 may be connected to the side of the anti - detachment plate 823 facing away from the locking hole 832 to improve the structural stability. The positioning post 825 can provide a directional telescoping function for the elastic member 822.
[0173] According to some embodiments of the present invention, as Figures 11 - 13 and Figures 15 - 16 shown, the first sliding member 430 includes a connecting seat 830 and a mounting cover 831. A mounting cavity 833 is provided on the end face of the connecting seat 830 facing the second section 420. The mounting cover 831 is mounted at one end of the connecting seat 830 facing the second section 420. The mounting cover 831 seals the mounting cavity 833 and jointly defines a clamping hole 832 with the connecting seat 830.
[0174] Specifically, the mounting cover 831 seals the end of the connecting seat 830 away from the first bracket 200. The gear position protrusion 821 and the elastic member 822 can be inserted into the mounting cavity 833 from the said end of the connecting seat 830. This can improve the convenience of disassembly and assembly of the first sliding member 430, and the gear position protrusion 821 can be protected and fixed by the mounting cover 831. Moreover, the mounting cover 831 and the connecting seat 830 jointly define the clamping hole 832, that is, when the mounting cover 831 is not mounted on the connecting seat 830, the clamping hole 832 is partially open, which further facilitates the installation of the gear position protrusion 821 and the elastic member 822, thereby simplifying the assembly and improving the structural stability.
[0175] According to some embodiments of the present invention, as Figures 11 - 13 and Figures 15 - 16 shown, bending arms 835 are constructed along opposite sides of the mounting cover 831, and clamping buckles 836 are constructed at the ends of the bending arms 835. Claw slots 837 are provided on opposite side walls of the connecting seat 830, and the clamping buckles 836 are fitted into the claw slots 837. In this way, the connection strength between the mounting cover 831 and the connecting seat 830 is high and it is easy to disassemble and assemble. Among them, the bending arms 835 can be elastic members, and the claw slots 837 can be square slots.
[0176] For example, the claw slots 837 are provided on the side of each of the said two side walls of the connecting seat 830 facing away from the mounting cavity 833, and notches are provided on the end faces of the said two side walls of the connecting seat 830 away from the first bracket 200, and the bending arms 835 are located in the notches. This can ensure that the surface of the mounting cover 831 away from the first bracket 200 and the end face of the connecting seat 830 away from the first bracket 200 are in the same plane.
[0177] According to some embodiments of the present invention, as Figure 17 and Figure 18As shown, the first section 410 includes a base 810 and an upper cover 860. The upper cover 860 is connected to the base 810 and together with the base 810 defines an adjustment cavity 813. Wherein, the base 810 and the upper cover 860 can be connected by threaded fasteners. By separately setting the first section 410 into the base 810 and the upper cover 860, it is convenient to disassemble and assemble the first sliding member 430 and the first section 410, improving the convenience of assembly and also facilitating the production and processing of the first section 410. And the upper cover 860 is provided with a chute 861, and the bent arm 835 is slidably located in the chute 861, which further provides guidance for the movement of the first sliding member 430 relative to the first section 410.
[0178] According to some embodiments of the present invention, as Figures 11 - 13 and Figures 15 - 18 shown, there are two gear protrusions 821 which are respectively arranged on the opposite outer side walls of the first sliding member 430, and there are two rows of gear grooves 815 which are respectively arranged on the opposite inner side walls of the adjustment cavity 813. Wherein, the gear protrusions 821 protrude outward from the opposite two sides in the radial direction of the first sliding member 430, the gear grooves 815 are recessed outward from the opposite two sides in the radial direction of the adjustment cavity 813, and the gear protrusions 821 can extend into the gear grooves 815 and cooperate stably. In this way, the opposite two sides in the radial direction of the gear protrusions 821 are stressed, and the gear protrusions 821 move smoothly without shaking, which can increase the stability of the movement of the gear protrusions 821, and further increase the stability of the movement of the first sliding member 430.
[0179] According to some embodiments of the present invention, as Figures 11 - 12 and Figures 15 - 16 shown, a snap ring 826 is constructed on the outer peripheral surface of the first sliding member 430. The first bracket 200 includes a first outer shell 210 and a first inner shell 220. The first outer shell 210 and the first inner shell 220 together construct an annular groove 250, and the snap ring 826 is fitted in the annular groove 250. In other words, the annular groove 250 is provided on the first bracket 200. Wherein, the first inner shell 220 can be a flexible member, such as a silicone member, and the annular groove 250 can be formed by overmolding, that is, the strength of the annular groove 250 is greater than the strength of the rest of the first inner shell 220, which can prevent the first sliding member 430 from disengaging from the annular groove 250. In this way, the connection and fixation between the first sliding member 430 and the first bracket 200 can be realized.
[0180] Wherein, the connection structure between the second sliding member 440 and the second bracket 300 can refer to the connection structure between the first bracket 200 and the first sliding member 430. For example, the second bracket 300 is provided with an annular groove 250, and the second sliding member 420 is constructed with a snap ring 826.
[0181] According to some embodiments of the present invention, as Figure 12 and Figure 13As shown, the first sliding member 430 is provided with first wire passing holes 834 passing through both end surfaces thereof to facilitate the passing of the wires.
[0182] According to some embodiments of the present invention, Figures 11 - 13 as well as Figures 15 - 16 As shown, the outer peripheral surface of the first sliding member 820 is provided with an anti-slip ring edge 838, wherein the anti-slip ring edge 838 can protrude radially outwardly along the first sliding member and can extend along the axial direction of the first sliding member, and the extension length of the anti-slip edge is less than the axial length of the adjustment cavity 813, thereby ensuring that the first sliding member can move axially along the adjustment cavity 813.
[0183] In addition, the adjustment cavity 813 is provided with a baffle 811 at its opening. When the first sliding member 430 is extended to the maximum distance relative to the adjustment cavity 813, the anti-slip ring edge 838 is stopped by the baffle 811 toward the end face of the first bracket 200. The baffle 811 prevents the first sliding member 430 from escaping from the adjustment cavity 813 by stopping the anti-slip ring edge 838, thereby ensuring that the first sliding member 430 is continuously connected to the first section 410.
[0184] The structures of the second section 420 and the second sliding member 440 may refer to the structures of the first section 410 and the first sliding member 430. For example, the second sliding member 440 is provided with an adjustment cavity 813, and the second section 420 is provided with a gear protrusion 821. At this time, a partition plate may be provided between the adjustment cavity 813 of the second sliding member 440 and the adjustment cavity 813 of the first sliding member 430 to separate them.
[0185] For example, a partition plate is provided in the adjustment rail 800 to separate the first adjustment chamber (i.e., the adjustment chamber 813) and the second adjustment chamber (located in the second section 420), and the second sliding member 440 is provided with a second wire-passing hole that passes through both end faces thereof. The partition plate is provided on the bottom wall of the adjustment rail 800, and the side of the partition plate is configured with a third wire-passing hole, and the position of the third wire-passing hole, the position of the first wire-passing hole 834, and the position of the second wire-passing hole correspond, and the third wire-passing hole can be an incomplete hole. The first sliding member 430 has two limiting ribs, and the first wire-passing hole 834 is provided between the two limiting ribs of the first sliding member 430. The second sliding member 440 is also provided with two limiting ribs, and the second wire-passing hole is provided between the two limiting ribs of the second sliding member 440. By setting the first wire passing hole 834 and the second wire passing hole, the electrical components in the first bracket 200 and the electrical components in the second bracket 300 can be electrically connected. For example, the electrical components in the first bracket 200 and the electrical components in the second bracket 300 are connected by wires, thereby improving the convenience and stability of the electrical connection of the wearing bracket 100.
[0186] According to some embodiments of the present invention, Figure 11 and Figure 14As shown, on the inner circumferential surface of the first connecting section 630, a plurality of first fitting protrusions 631 are provided at circumferential intervals therealong. On the outer circumferential surface of the first bracket 200 (which can be the outer circumferential surfaces of the first outer shell 210 and the first inner shell 220), a plurality of first fitting grooves 261 are provided, and the first fitting protrusions 631 are correspondingly fitted into the first fitting grooves 261 one by one. On the inner circumferential surface of the second connecting section 640, a plurality of second fitting protrusions 641 are provided at circumferential intervals therealong. On the outer circumferential surface of the second bracket 300 (i.e., the second outer shell 310 and the second inner shell 320), a plurality of second fitting grooves 361 are provided, and the second fitting protrusions 641 are correspondingly fitted into the second fitting grooves 361 one by one.
[0187] Specifically, each first fitting protrusion 631 is inserted into its corresponding first fitting groove 261. A part of the first fitting groove 261 is located in the first outer shell 210 and the remaining part is located in the first inner shell 220. Each second fitting protrusion 641 is inserted into its corresponding second fitting groove 361. A part of the second fitting groove 361 is located in the second outer shell 310 and the remaining part is located in the second inner shell 320.
[0188] By providing the first fitting grooves 261 and the first fitting protrusions 631, as well as the second fitting grooves 361 and the second fitting protrusions 641, the connection stability between the shielding portion 600 and the first bracket 200 and the second bracket 300 is ensured, preventing the shielding portion 600 from detaching from the first bracket 200 or the shielding portion 600 from detaching from the second bracket 300 when the intermediate bracket 110 expands and contracts, improving the overall structural stability of the neck massager 1, and facilitating the disassembly and assembly between the shielding portion 600 and the first bracket 200 and the second bracket 300 respectively, which is beneficial to the maintenance of the wearing bracket 100 and the replacement of parts.
[0189] According to some embodiments of the present invention, as Figure 11 and Figure 14 shown, the first outer shell 210 and the first inner shell 220 are provided with a first concave annular surface 260. The first concave annular surface 260 is provided on the outer circumferential surface of the first bracket 200 and is recessed radially inward along the first bracket 200. The first concave annular surface 260 is provided at one end of the first bracket 200 facing the second bracket 300. By sleeving the first connecting section 630 on the first concave annular surface 260, the distance between the outer circumferential surface of the first connecting section 630 and the outer circumferential surface of the first bracket 200 is greatly reduced in the radial direction of the intermediate bracket 110, improving the smoothness of the surface of the wearing bracket 100, reducing the probability of the end face of the first connecting section 630 touching other objects, and improving the connection stability between the first connecting section 630 and the first bracket 200, preventing the wearing bracket 100 from accumulating dust. Among them, a plurality of first fitting grooves 261 can be provided on the first concave annular surface 260.
[0190] The second outer shell 310 and the second inner shell 320 are provided with a second concave toroidal surface 360. The second concave toroidal surface 360 is arranged on the outer peripheral surface of the second bracket 300 and recessed inward along the radial direction of the second bracket 300. The second concave toroidal surface 360 is arranged at one end of the second bracket 300 facing the first bracket 200. By sleeving the second connecting section 640 on the second concave toroidal surface 360, the distance between the outer peripheral surface of the second connecting section 640 and the outer peripheral surface of the second bracket 300 is greatly reduced in the radial direction of the intermediate bracket 110, the smoothness of the surface of the wearing bracket 100 is improved, and the probability that the end face of the second connecting section 640 touches other objects can be reduced. The connection stability between the second connecting section 640 and the second bracket 300 is improved, and dust accumulation on the wearing bracket 100 is prevented. Wherein, a plurality of second assembly grooves 361 can be arranged on the second concave toroidal surface 360.
[0191] According to some embodiments of the present invention, as Figure 3 and Figure 8 shown, on one side of the first inner shell 220 facing the first outer shell 210, there is a first convex edge 221 extending along the length direction of the first inner shell 220. On one side of the first outer shell 210 facing the first inner shell 220, there is a first edge groove 213 extending along the length direction of the first outer shell 210, and the first convex edge 221 is inserted into the first edge groove 213. On one side of the second inner shell 320 facing the second outer shell 310, there is a second convex edge 321 extending along the length direction of the second inner shell 320. On one side of the second outer shell 310 facing the second inner shell 320, there is a second edge groove 313 extending along the length direction of the second outer shell 310, and the second convex edge 321 is inserted into the second edge groove 313.
[0192] In this way, the connection strength between the first inner shell 220 and the first outer shell 210 and the connection strength between the second inner shell 320 and the second outer shell 310 are both increased, the overall structural stability of the first bracket 200 and the overall structural stability of the second bracket 300 are both improved, ensuring that the first inner shell 220 moves with the movement of the first outer shell 210 and the second inner shell 320 moves with the movement of the second outer shell 310.
[0193] For example, the first convex edge 221 is arranged on the first outer shell 210 and protrudes inward along the radial direction of the first bracket 200. The first convex edge 221 can be arranged on the two radially opposite sides of the first bracket 200. The first edge groove 213 is arranged on the first outer shell 210 and recessed inward along the radial direction of the first bracket 200. The position of the first edge groove 213 corresponds to and cooperates with the position of the first convex edge 221. The second convex edge 321 is arranged on the second outer shell 310 and protrudes inward along the radial direction of the second bracket 300. The second convex edge 321 can be arranged on the two radially opposite sides of the second bracket 300. The second edge groove 313 is arranged on the second outer shell 310 and recessed inward along the radial direction of the second bracket 300. The position of the second edge groove 313 corresponds to and cooperates with the position of the second convex edge 321.
[0194] According to some embodiments of the present invention, as Figures 1 - 3 and Figures 10 - 13 shown, the wearing bracket 100 further includes a first handle 120 and a second handle 130. The first handle 120 is connected to one end of the first bracket 200 far from the second bracket 300, and the second handle 130 is connected to one end of the second bracket 300 far from the first bracket 200. This increases the stability of the relative position between the neck massager 1 and the human neck and also facilitates the user to hold the wearing bracket 1.
[0195] The following describes the neck massager 1 according to an embodiment of the present invention with reference to the drawings, as Figures 1 - 3 and Figures 10 - 13 shown, the wearing bracket 100 includes a massage component 500 and the wearing bracket 100. The wearing bracket 100 includes an intermediate bracket 110 and handles (i.e., the first handle 120 and the second handle 130) connected to both ends of the intermediate bracket 110. The intermediate bracket 110 may be provided with the massage component 500. At this time, when the neck massager 1 is worn, the intermediate bracket 110 may be located behind the neck; or, each handle is provided with the massage component 500. At this time, when the neck massager 1 is worn, the intermediate bracket 110 may be located in front of the neck. The massage component 500 is adjustable in position relative to the human neck through the telescoping of the intermediate bracket 110. In this way, the user can adjust the massage position according to his own will, expanding the massage range of the massage component 500 on the neck, with better massage effect, good user experience and high product applicability.
[0196] According to some embodiments of the present invention, as Figures 1 - 3 and Figures 10 - 13 shown, the massage component 500 includes a first massage head 510 and a second massage head 520. The first massage head 510 is installed on one side of the first bracket 200 facing the human neck, and the second massage head 520 is installed on one side of the second bracket 300 facing the human neck. Among them, the first massage head 510 and the second massage head 520 can be current massage or vibration massage, and the first massage head 510 can be installed in the first inner shell 220 and the second massage head 520 can be installed in the second inner shell 320. By providing the first massage head 510 and the second massage head 520 in this way, the massage heads are closer to the human neck relative to the wearing bracket 100, and the fit between the massage component 500 of the neck massager 1 and the human neck is closer, which can improve the massage effect and user experience.
[0197] The other configurations and operations of the wearing bracket 100 and the neck massager 1 according to the embodiments of the present invention are known to those of ordinary skill in the art and will not be described in detail here.
[0198] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example.
[0199] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the claims and their equivalents.
Claims
1. A wearing bracket, characterized in that, include: An intermediate bracket, the intermediate bracket comprising a first bracket, a second bracket and an adjustment assembly connected between the first bracket and the second bracket, at least one of the first bracket and the second bracket being slidably connected to the adjustment assembly so that the intermediate bracket can be extended and retracted along its length direction, the first bracket comprising a first outer shell and a first inner shell, the first inner shell being mounted on a side of the first outer shell facing the human neck, the second bracket comprising a second outer shell and a second inner shell, the second inner shell being mounted on a side of the second outer shell facing the human neck; A shielding portion, the shielding portion comprising a first shielding portion and a second shielding portion, the first shielding portion is provided on the adjustment component, and the second shielding portion can be stretched and deformed; At least one of the first outer shell and the second outer shell is slidably connected to the adjustment component, the first shielding portion is located at a side of the adjustment component away from the human body, the first shielding portion is used to shield the gap between the first outer shell and the second outer shell, the second shielding portion is respectively connected to the first inner shell and the second inner shell to shield the gap between the first inner shell and the second inner shell, the second shielding portion is provided with a positioning groove, the first bracket and the second bracket are provided with a positioning block, and the positioning block can be slidably matched with the positioning groove; Wherein, a first sunken platform is provided on a side of the first shielding portion facing the first outer shell, a second sunken platform is provided on a side of the first shielding portion facing the second outer shell, a first supporting rib is provided on a side of the first outer shell facing the first inner shell, and a second supporting rib is provided on a side of the second outer shell facing the second inner shell; When the intermediate bracket is retracted to a minimum length, the first supporting rib is supported on the first sinking platform, and the second supporting rib is supported on the second sinking platform; When the intermediate bracket is extended to the maximum length, one end of the first shell facing the second shell is supported on the first sinking platform, and one end of the second shell facing the first shell is supported on the second sinking platform.
2. The wearing bracket according to claim 1, wherein The second shielding portion is a flexible member and / or has a corrugated structure.
3. The wearing bracket according to claim 1, wherein, The adjustment assembly includes an adjustment rail and a first sliding member, and the adjustment rail includes a first section and a second section connected to each other; A first slide rail is formed on one of the first section and the first bracket, the first sliding member is installed on the other of the first section and the first bracket, and the second section is connected to the second bracket; The first sliding member can slide along the extension direction of the first sliding rail, so that the first bracket can move relative to the second bracket; Wherein, the extension direction of the first slide rail is consistent with the length direction of the intermediate bracket.
4. The wearing bracket according to claim 3, characterized in that, The adjustment assembly also includes a second sliding member; A second slide rail is formed on one of the second section and the second bracket, and the second sliding member is installed on the other of the second section and the second bracket; The second sliding member can slide along the extension direction of the second sliding rail, so that the second bracket can move relative to the first bracket; Wherein, the extension direction of the second slide rail is consistent with the length direction of the intermediate bracket.
5. The wearing bracket according to claim 4, wherein The first section is symmetrically arranged with the second section; The first sliding member and the second sliding member have the same structure.
6. The wearing bracket according to claim 3, characterized in that, A first sliding rail is formed on the first section, and the first sliding member is a rotating shaft; A boss is provided inside the first bracket, the boss is configured with a pressing shaft groove, and the end of the rotating shaft is located in the pressing shaft groove.
7. The wearing bracket according to claim 6, wherein A pressing shaft cover is installed on the boss, and the pressing shaft cover presses the end of the rotating shaft against the pressing shaft groove.
8. The wearing bracket according to claim 6, wherein The number of the bosses is two, and the two ends of the rotating shaft are respectively located in the pressing shaft grooves of the two bosses; The first sliding rail penetrates the adjusting guide rail along the width direction of the adjusting guide rail, and the rotating shaft penetrates the first sliding rail, so that the first section is located between the two bosses; The distance between the first section and each boss is 0.05 mm to 0.15 mm.
9. The wearing bracket according to claim 1, wherein The first bracket is provided with a first fastening member, and the second bracket is provided with a second fastening member; The first fastening member and the second fastening member can cooperate with each other so that the first bracket and the second bracket are in contact, and the first fastening member and the second fastening member can be separated from each other to allow at least one of the first bracket and the second bracket to slide along the adjusting assembly.
10. The wearing bracket according to claim 9, characterized in that, The first outer shell is provided with a first magnetic member, and the second outer shell is provided with a second magnetic member. The first magnetic member and the second magnetic member can attract each other so that the first outer shell and the second outer shell are in contact, and / or the first outer shell is provided with a first engaging member, and the second outer shell is provided with a second engaging member. The first engaging member and the second engaging member can engage with each other so that the first outer shell and the second outer shell are in contact.
11. The wearing bracket according to claim 1, characterized in that, The second shielding portion is respectively connected to the first inner shell and the second inner shell. The first inner shell and the second inner shell are flexible members, and the first inner shell, the second inner shell and the second shielding portion are integrally formed.
12. The wearing bracket according to claim 1, wherein The ratio of the fracture elongation rate of the second shielding portion to its maximum tensile deformation amount is greater than 2; and / or The fracture elongation rate of the second shielding portion is 800%.
13. The wearing bracket according to claim 1, wherein The thickness of the second shielding portion is less than the thickness of the first inner shell and the thickness of the second inner shell; The distance between the first bracket and the second bracket is not greater than 15 mm.
14. The wearing bracket according to claim 1, characterized in that, The shielding portion is respectively connected to the first bracket and the second bracket; At the connection between the first bracket and the shielding portion, and at the connection between the second bracket and the shielding portion, shaping members are respectively provided. The shaping members extend along the width direction of the middle bracket, and the middle part of the shaping members protrudes towards the human neck.
15. The wearing bracket according to claim 1, characterized in that, When the middle bracket shrinks to the minimum length, the first outer shell and the second outer shell are in contact, and the first shielding portion is located inside the middle bracket. When the middle bracket extends to the maximum length, the first shielding portion is respectively in contact with the first outer shell and the second outer shell to shield the gap between the first outer shell and the second outer shell.
16. The wearing bracket according to claim 15, characterized in that, The adjustment assembly includes an adjustment guide rail and a first slider. The adjustment guide rail includes a first section and a second section connected to each other. A first slide rail is formed on the first section. The first slider is mounted on the first bracket, and the second section is connected to the second bracket; The first shielding portion is located between the first outer shell and the first slide rail, and the first slide rail extends gradually in a direction away from the first shielding portion and toward the direction close to the human neck; The first slider can slide along the extending direction of the first slide rail, so that the first bracket is movable relative to the second bracket.
17. The wearing bracket according to claim 1, characterized in that, The end face of the first outer shell facing the second outer shell is configured with a first inclined surface, and the end face of the second outer shell facing the first outer shell is configured with a second inclined surface; The first sunk platform is configured with a third inclined surface, and the second sunk platform is configured with a fourth inclined surface; Wherein, when the intermediate bracket extends to the maximum length, the first inclined surface and the third inclined surface are in contact, and the second inclined surface and the fourth inclined surface are in contact.
18. The wearing bracket according to claim 17, wherein, The first inclined surface and the second inclined surface gradually move away from each other in the direction toward the human neck; The third inclined surface and the fourth inclined surface gradually move away from each other in the direction toward the human neck.
19. The wearing bracket according to claim 3, wherein, The first section is configured with an initial limit rib and an extension limit rib; When the intermediate bracket extends to the maximum length, the first slider is blocked by the extension limit rib at one end of the first section; When the intermediate bracket contracts to the minimum length, the first slider is blocked by the initial limit rib at the other end of the first section.
20. The wearing bracket according to claim 3, wherein The first section includes two sub-adjustment guide rails arranged discontinuously, and the openings of the two sub-adjustment guide rails are arranged opposite to each other.
21. The wearing bracket according to claim 20, characterized in that, The widths of the openings of the two sub-adjustment guide rails gradually increase in a direction away from each other, and the minimum width of the opening of the sub-adjustment guide rail is smaller than the diameter of the first slider; and / or The first section further includes a connecting plate, and the connecting plate is connected to one ends of the two sub-adjustment guide rails away from each other.
22. The wearing bracket according to claim 1, wherein Further included are: A circuit board, which is fixed to the first shielding portion by a fastener and is located on the side of the first shielding portion facing the human neck.
23. The wearing bracket according to claim 1, wherein A first convex edge extending along the length direction of the first inner shell is provided on the side of the first inner shell facing the first outer shell, and a first edge groove extending along the length direction of the first outer shell is provided on the side of the first outer shell facing the first inner shell, and the first convex edge is inserted into the first edge groove; A second convex edge extending along the length direction of the second inner shell is provided on the side of the second inner shell facing the second outer shell, and a second edge groove extending along the length direction of the second outer shell is provided on the side of the second outer shell facing the second inner shell, and the second convex edge is inserted into the second edge groove.
24. The wearing bracket according to any one of claims 1-23, characterized in that, Further included are: A first handle and a second handle, the first handle is connected to one end of the first bracket away from the second bracket, and the second handle is connected to one end of the second bracket away from the first bracket.
25. A neck massager, characterized in that, Included are: A massage assembly; The wearing bracket according to any one of claims 1-24, the wearing bracket includes an intermediate bracket and handles connected to both ends of the intermediate bracket; The intermediate bracket is provided with the massage component, or each of the handles is provided with the massage component; The massage component is adjustable relative to the position of the human neck through the telescoping of the intermediate bracket.
26. The neck massager according to claim 25, wherein The massage component includes: A first massage head and a second massage head, the first massage head is installed on one side of the first bracket facing the human neck, and the second massage head is installed on one side of the second bracket facing the human neck.
Citation Information
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