Glasses leg assembly and intelligent glasses

The hinged design of the temple assembly solves the problem of increased size of the temple when connected to the frame, makes the temple assembly small, compact and diverse, and improves the adaptability of the temple and user experience.

CN223333236UActive Publication Date: 2025-09-12OPTOFIDELITY TECH (ZHUHAI) CO LTD
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Patent Information

Application Number
CN202422881383.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-09-12
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

In the prior art, when the temples are connected to the frame, the shaft increases the width of the connection part, resulting in a thicker temple design, which limits the diversity and adaptability of the temple styles and restricts the selection of temples of different materials.

Method used

The mounting parts are clamped together with the connecting parts, and the temple structure is provided with a hinge part and a reaming hole. The temple and the frame are detachably hinged through a rotating shaft connection, which reduces the size of the mounting parts. The temple structure is rotatable, avoiding the problem of increased size of the connection part caused by the rotating shaft.

Benefits of technology

The small and compact design of the temple assembly is achieved, the universality is improved, other materials besides plastic are allowed to be used, the diversity of the temples and user selectivity are increased, and the difficulty of replacement is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glasses leg component and intelligent glasses, relates to wearable equipment technical field, wherein the glasses leg component is applied to a glasses frame structure, the glasses frame structure comprises a connecting part, the glasses leg component comprises a mounting piece, a glasses leg structure and a rotating shaft, one end of the mounting piece is clamped with the connecting part, and the other end of the mounting piece is provided with two first hinge parts which are arranged at intervals; the first hinging part is provided with a first reaming hole; the glasses leg structure is provided with a second hinge part, the second hinge part is inserted between the two first hinge parts, and the second hinge part is provided with a second hinge hole communicated with the first hinge hole; the rotating shaft penetrates through the first reaming hole and the second reaming hole, so that the glasses leg structure can rotate relative to the mounting piece. Compared with the mode that the rotating shaft structure is arranged on the glasses frame, the first hinging part and the second hinging part are arranged on the glasses leg assembly, so that the problem that the size of the connecting part is increased due to the rotating shaft structure is avoided, the size of the mounting piece is reduced, and the width of the glasses leg structure is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of wearable devices, and in particular to a temple assembly and smart glasses. Background Art

[0002] In the related art, split-piece glasses and frames typically utilize a snap-fit ​​connection for quick assembly and disassembly. To facilitate folding and storage, the frames are typically equipped with hinges that allow the temples to pivot and connect to the frame. However, because the hinges increase the width of the connection between the frame and the temples, the temples must be designed to be relatively thick at the end where they connect to the frame. This results in a very limited range of temples that can be compatible with split-piece glasses, and those that can be compatible are often wider. Utility Model Content

[0003] The present invention aims to solve at least one of the technical problems in the prior art. To this end, the present invention provides a temple assembly that can reduce the installation size of the temple assembly, thereby improving the universality of the temple assembly.

[0004] The utility model also provides a pair of smart glasses with the temple assembly.

[0005] According to an embodiment of the first aspect of the present invention, a temple assembly is applied to a frame structure, the frame structure includes a connecting part, and the temple assembly includes: a mounting piece, a temple structure and a rotating shaft, one end of the mounting piece is clamped with the connecting part, and the other end is provided with two first hinged parts set at intervals, the first hinged parts are provided with a first hinged hole; the temple structure is provided with a second hinged part, the second hinged part is inserted between the two first hinged parts, and the second hinged part is provided with a second hinged hole connected to the first hinged hole; the rotating shaft is passed through the first hinged hole and the second hinged hole, so that the temple structure can rotate relative to the mounting piece.

[0006] The temple assembly according to the embodiment of the utility model has at least the following beneficial effects:

[0007] 14. The eyeglass frame assembly of the present invention can be connected to the eyeglass frame structure by arranging a mounting piece at one end thereof, wherein the mounting piece is provided with two first hinge parts arranged at intervals, each first hinge part is provided with a first hinge hole, and the eyeglass frame structure is provided with a second hinge part corresponding to the first hinge part, and the second hinge part is provided with a second hinge hole, wherein the second hinge part is inserted between the two first hinge parts so that the second hinge hole is connected to the two first hinge holes, and the rotating shaft is provided at the first hinge hole and the second hinge hole, thereby realizing the hinge connection between the mounting piece and the eyeglass frame structure, and when the eyeglass frame assembly is connected to the frame structure, the eyeglass frame structure can rotate relative to the frame structure; compared with setting the rotating shaft structure on the frame, setting the first hinge part and the second hinge part on the eyeglass frame assembly not only avoids the problem of increased size of the connection part caused by the rotating shaft structure, but also can reduce the size of the mounting piece, making its structure more small and compact, helping to reduce the width of the eyeglass frame structure, relaxing the restriction on the width of the mounting piece, and thereby improving the universality of the eyeglass frame assembly.

[0008] According to some embodiments of the present invention, the temple structure includes a main body and a connecting piece, the second hinged portion is formed at an end of the connecting piece facing away from the main body, the main body is provided with a connecting groove, the connecting piece is passed through the connecting groove and is detachably connected to the main body.

[0009] According to some embodiments of the present invention, a positioning rib is protruded from the bottom wall of the connecting groove, and the connecting piece is provided with a positioning groove corresponding to the positioning rib, and the positioning rib passes through the positioning groove.

[0010] According to some embodiments of the present invention, the connecting member is provided with a first connecting hole, the main body is provided with a second connecting hole connected to the connecting groove, and the temple assembly further includes a fastener, which is sequentially passed through the second connecting hole and the first connecting hole.

[0011] According to some embodiments of the present invention, the mounting member is provided with a mounting groove, the connecting portion is passed through the mounting groove, the mounting member and the connecting portion are connected through a snap-fit ​​structure, the snap-fit ​​structure includes a buckle and a buckle position, one of the buckle and the buckle position is provided on the groove wall of the mounting groove, the other of the buckle and the buckle position is provided on the connecting portion, and the buckle and the buckle position are buckled.

[0012] According to some embodiments of the present invention, the surface of the connecting portion is provided with two said buckles arranged at intervals, and the groove wall of the installation groove is provided with two said buckle positions corresponding one to one with the two said buckles.

[0013] According to some embodiments of the present invention, along the height direction of the temple structure, the maximum height of the mounting member is less than or equal to 4 mm.

[0014] According to the second aspect of the present invention, a pair of smart glasses includes a frame structure and two temple assemblies disclosed in the first aspect of the present invention. The connecting parts are respectively provided on both sides of the frame structure, and the two temple assemblies are connected to the two connecting parts in a one-to-one correspondence.

[0015] The smart glasses according to the embodiments of the present invention have at least the following beneficial effects:

[0016] The smart glasses of this embodiment adopt the temple assembly of the first embodiment of the present invention, and are equipped with a mounting piece so that one end thereof is snap-connected with the connecting part, thereby realizing a detachable connection between the temple assembly and the frame structure; the other end of the mounting piece is provided with two first hinged parts set at intervals, each first hinged part is provided with a first hinged hole, and the temple structure is provided with a second hinged part corresponding to the first hinged part, and the second hinged part is provided with a second hinged hole, wherein the second hinged part is inserted between the two first hinged parts so that the second hinged hole is connected to the two first hinged holes, and the rotating shaft is provided at the first hinged hole and the second hinged hole, thereby realizing the hinge connection between the mounting piece and the temple structure, and when the temple assembly is connected to the frame structure, the temple structure It can rotate relative to the frame structure; compared with setting the rotating shaft structure on the frame, replacing the first hinge part with the second hinge part to set the temple assembly not only avoids the problem of increased size of the connection part caused by the rotating shaft structure, but also can reduce the size of the mounting part, making its structure more slender and compact, helping to reduce the width of the temple structure, and relaxing the restriction on the width of the mounting part, thereby improving the universality of the temple assembly. Connection parts are respectively provided on both sides of the frame structure, and the two temple assemblies are connected to the two connection parts one by one, thereby realizing the detachability of the two temple assemblies, facilitating the replacement of the temple assemblies, reducing the difficulty of users in selecting the temple assemblies, and increasing the diversity of smart glasses.

[0017] According to some embodiments of the present invention, the mounting member is provided with a mounting groove, the connecting portion is passed through the mounting groove, the groove wall of the mounting groove is provided with two buckling positions set at intervals, the connecting portion includes a shell and a spring, the shell is provided with two openings set at intervals, the spring is arranged inside the shell, the spring includes two bent sections corresponding to the two openings one by one, and the bent sections protrude from the openings to buckle with the buckling positions.

[0018] According to some embodiments of the present invention, a slot is formed inside the housing, an opening of the slot is formed on a side wall of the housing, and the opening is suitable for the reed to pass through.

[0019] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments, wherein:

[0021] Figure 1 This is a schematic structural diagram of an embodiment of the smart glasses of the present invention;

[0022] Figure 2 An exploded view of an embodiment of the smart glasses of the present invention;

[0023] Figure 3 This is a structural schematic diagram of an embodiment of a temple assembly of the present utility model;

[0024] Figure 4 It is a partial exploded view of an embodiment of a temple assembly of the present invention;

[0025] Figure 5 for Figure 3 Partial cross-sectional view in the AA direction;

[0026] Figure 6 This is a structural diagram of the main body in an embodiment of a temple assembly of the present utility model;

[0027] Figure 7 This is a partial assembly diagram of a temple assembly embodiment of the present utility model;

[0028] Figure 8 This is a schematic diagram of the connecting portion of an embodiment of a temple assembly of the present invention.

[0029] Figure Number:

[0030] Temple assembly 1000; frame structure 2000; smart glasses 3000;

[0031] Connecting portion 100; housing 110; slot 111; opening 112; hole 113; reed 120; bent section 121;

[0032] Mounting member 200; first hinge portion 210; first reaming hole 211; mounting slot 220;

[0033] Temple structure 300; second hinge portion 310; second hinge hole 311; main body 320; connecting groove 321; positioning rib 322; second connecting hole 323; connecting member 330; first connecting hole 331; positioning groove 332; hinge groove 340;

[0034] Rotating shaft 400;

[0035] Snap-fit ​​structure 500 ; snap 510 ; snap position 520 . DETAILED DESCRIPTION

[0036] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.

[0037] In the description of the present invention, it should be understood that descriptions involving orientation, such as the orientation or positional relationship indicated by up, down, etc., are based on the orientation or positional relationship shown in the accompanying drawings, and are 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 cannot be understood as a limitation on the present invention.

[0038] In the description of this utility model, "a plurality" means more than two. The use of "first" or "second" is solely for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the number of technical features indicated, or implicitly indicating the order of the technical features indicated.

[0039] In the description of the present invention, unless otherwise clearly defined, terms such as setting, installing, and connecting should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in the present invention based on the specific content of the technical solution.

[0040] In the related art, split-piece glasses and frames typically utilize a snap-fit ​​connection for quick assembly and disassembly. To facilitate folding and storage, the frames are typically equipped with hinges that allow the temples to pivot and connect to the frame. However, because the hinges increase the width of the connection between the frame and the temples, the temples must be designed to be relatively thicker at the end where they connect to the frame. Consequently, the range of temple styles compatible with split-piece glasses is often limited, and these temples typically require a greater width to accommodate the wider design of the frame connection.

[0041] Thick temples are generally made of plastic, while slim temples are typically made of metal. This is because using metal for thick temples not only increases weight, affecting wearer comfort, but also increases production costs. Conversely, using plastic for slim temples is not strong enough to effectively support the frame structure, making them susceptible to damage. Therefore, a wide connection between the frame and temple not only reduces the adaptability of the temple assembly but also limits the design diversity and options for smart glasses.

[0042] To this end, some embodiments of the present invention provide a temple assembly 1000 suitable for smart glasses 3000, wherein, with reference to Figure 1 and Figure 2As shown, the smart glasses 3000 include a frame structure 2000 and a temple assembly 1000. The frame structure 2000 is provided with a connecting portion 100. The connecting portion 100 is located at the end of the frame structure 2000 and protrudes toward the rear side. Figures 1 to 8 The temple assembly 1000 is shown for illustration.

[0043] Reference Figure 2 and Figure 4 As shown, in an embodiment of the present invention, the temple assembly 1000 includes a mounting member 200, a temple structure 300, and a rotating shaft 400. The mounting member 200 is disposed between the connecting portion 100 and the temple structure 300. Specifically, the end of the mounting member 200 facing the connecting portion 100 is engaged with the connecting portion 100. The end of the mounting member 200 facing away from the connecting portion 100 is provided with two first hinged portions 210. The two first hinged portions 210 are spaced apart in the vertical direction and surround a hinge groove 340. The first hinged portion 210 is provided with a first hinge hole 211. The first hinge hole 211 passes through the first hinged portion 210 in the vertical direction. The two first hinge holes 211 are coaxially arranged and are circular holes. It is understood that in one example, the two first hinged portions 210 are integrally formed with the mounting member 200, and the two first hinged portions 210 protrude inward.

[0044] Reference Figure 3 and Figure 4 As shown, in this embodiment of the present invention, a second hinge portion 310 is provided on the end of the temple structure 300 facing the mounting member 200. The second hinge portion 310 is inserted between the two first hinge portions 210. It is understood that the second hinge portion 310 is inserted into the hinge slot 340. The second hinge portion 310 is provided with a second hinge hole 311, which extends vertically through the second hinge portion 310. The second hinge hole 311 is also a circular hole, and its size matches that of the first hinge hole 211. When the second hinge portion 310 is inserted into the hinge slot 340, the second hinge hole 311 communicates with the two first hinge holes 211.

[0045] Reference Figure 4 and Figure 5 As shown, in the embodiment of the present invention, the rotating shaft 400 is provided through the first hinge hole 211 and the second hinge hole 311, thereby realizing the hinge connection between the first hinge portion 210 and the second hinge portion 310, so that the temple structure 300 can rotate relative to the mounting member 200. It can be understood that the inner wall surface of the hinge groove 340 is a circular arc surface, and the outer contour of the second hinge portion 310 is a matching circular arc surface. Through the cooperation between the circular arc surfaces, it can be ensured that the two maintain smooth and continuous movement during the rotation process, thereby avoiding the occurrence of interference.

[0046] During assembly, the second hinge part 310 can be inserted into the hinge groove 340, so that the second hinge hole 311 is connected to the two first hinge holes 211 respectively, and then the rotating shaft 400 is inserted into the two first hinge holes 211 and the second hinge hole 311, and then the mounting part 200 is snap-connected with the connecting part 100 to complete the assembly of the smart glasses 3000.

[0047] It can be understood that the spacing between the outer surfaces of the two first reamed holes 211 determines the maximum width of the mounting piece 200. In one example, the width of the end of the mounting piece 200 facing the connecting portion 100 is the same as the maximum width of the mounting piece 200; in another example, the width of the end of the mounting piece 200 facing the connecting portion 100 is less than the maximum width of the mounting piece 200, thereby partially reducing the size of the mounting piece 200 and further reducing the width of the connecting portion 100 and the mounting piece 200.

[0048] It can be understood that the temple assembly 1000 of the present invention is equipped with a mounting piece 200 so that one end of the temple assembly 1000 is engaged with the connecting part 100, thereby realizing a detachable connection between the temple assembly 1000 and the frame structure 2000; the other end of the mounting piece 200 is provided with two first hinged parts 210 set at intervals, each first hinged part 210 is provided with a first hinge hole 211, and the temple structure 300 is provided with a second hinged part 310 corresponding to the first hinged part 210, and the second hinged part 310 is provided with a second hinge hole 311, wherein the second hinged part 310 is inserted between the two first hinged parts 210 so that the second hinge hole 311 is connected to the two first hinge holes 211, and the rotating shaft 400 is provided at the first hinge hole 211 and the second hinge hole 311, thereby realizing the hinge connection between the mounting piece 200 and the temple structure 300. When the temple assembly 1000 is connected to the frame structure 2000, the temple structure 300 can rotate relative to the frame structure 2000.

[0049] Based on this, compared to placing the hinge structure in the frame, placing the first hinge portion 210 and the second hinge portion 310 in the temple assembly 1000 not only avoids the problem of increased size of the connection portion caused by the hinge structure, but also reduces the size of the mounting member 200, making it more compact and slender. This helps reduce the width of the temple structure 300, relaxes the width restrictions of the mounting member 200, and thus improves the universality of the temple assembly 1000. Furthermore, because the temple assembly 1000 can adapt to smaller temples, other materials besides plastic can be selected to manufacture the temples, increasing the diversity of the temple assembly 1000 and improving the user experience.

[0050] Reference Figure 4 and Figure 5As shown, in this embodiment of the present invention, the temple structure 300 is a split structure, which specifically includes a main body 320 and a connector 330. The main body 320 is shaped to be worn by a user. When worn by a user, the lower side of the main body 320 contacts the user's ear, thereby supporting the smart glasses 3000. In this embodiment, the connector 330 and the main body 320 are arranged in sequence along the front-to-back direction. The second hinge portion 310 is integrally formed at one end of the connector 330 facing away from the main body 320. The second hinge portion 310 protrudes from the connector 330 toward the mounting member 200.

[0051] Reference Figure 4 and Figure 5 As shown, the end of the main body 320 facing the mounting member 200 is provided with a connection groove 321. Specifically, the surface of the end of the main body 320 facing the mounting member 200 is recessed away from the mounting member 200, thereby forming the connection groove 321. In this embodiment, the end of the connecting member 330 facing the main body 320 is inserted into the connection groove 321 and is detachably connected to the main body 320. Specifically, the connecting member 330 and the main body 320 can be connected by an interference fit, a snap connection, or other forms of detachable connection.

[0052] It can be understood that the connecting piece 330 is detachably connected to the main body 320. When the main body 320 is damaged or the user wishes to replace the main body 320 with another material or size, the user does not need to replace the entire temple assembly 1000. The user only needs to remove the main body 320 from the connecting piece 330 and reinstall another main body 320 to complete the replacement. This is not only simple to operate and convenient for users to replace, but also saves users' usage costs.

[0053] Reference Figure 6 As shown, in the embodiment of the present invention, the bottom wall of the connecting groove 321 is protruding to form a positioning rib 322, and the connecting groove 321 is concave along the connecting line direction of the connecting member 330 and the main body 320. The connecting groove 321 is a square groove, and the bottom wall of the connecting groove 321 refers to the inner wall thereof facing the mounting member 200. Correspondingly, referring to Figure 4 As shown, the connecting member 330 is provided with a positioning groove 332 corresponding to the positioning rib 322 , and the positioning rib 322 is passed through the positioning groove 332 .

[0054] Specifically, the end of the connector 330 facing the main body 320 is recessed inward to form a positioning groove 332. The shape and position of the positioning groove 332 match the shape and position of the positioning rib 322. During assembly, the end of the connector 330 facing the main body 320 is inserted into the connecting groove 321. The positioning rib 322 serves to position the connector 330 and accurately inserts into the positioning groove 332, thereby facilitating alignment of the connector 330 and the main body 320 and facilitating assembly of the main body 320 and the connector 330. After assembly, the coupling between the connector 330 and the main body 320 ensures a stable connection between the main body 320 and the connector 330, reducing the risk of separation between the main body 320 and the connector 330.

[0055] Reference Figure 4 and Figure 6 As shown, in one example, a positioning rib 322 is provided in the connection groove 321 and is located in the middle of the bottom wall of the connection groove 321. Correspondingly, a corresponding positioning groove 332 is provided in the middle of the end of the connection member 330 facing the main body 320. In another example, at least two positioning ribs 322 are provided in the connection groove 321, which can be two, three, etc., and the at least two positioning ribs 322 are spaced apart. Correspondingly, at least two positioning grooves 332 are spaced apart at the end of the connection member 330 facing the main body 320.

[0056] Reference Figure 4 、 Figure 5 and Figure 6 As shown, in this embodiment of the present invention, a connector 330 is provided with a first connecting hole 331, and a second connecting hole 323 is provided on one end of the main body 320 facing the connector 330, communicating with the connecting groove 321. Specifically, the first connecting hole 331 is provided on the sidewall of the connector 330, while the second connecting hole 323 is provided on the sidewall of the main body 320. The second connecting hole 323 extends from the outer surface of the sidewall to the connecting groove 321. In one example, the first connecting hole 331 is provided on the inward-facing sidewall of the connector 330, while the second connecting hole 323 is provided on the inward-facing sidewall of the main body 320. When the connector 330 is inserted into the connecting groove 321, the first connecting hole 331 and the second connecting hole 323 are communicated. Based on this, a fastener can be inserted through the first connecting hole 331 and the second connecting hole 323, thereby achieving a secure connection between the connector 330 and the main body 320.

[0057] In one example, the fastener is a screw, and the first connection hole 331 is a screw hole that can be threadedly engaged with the screw. Based on this, the screw can be inserted into the second connection hole 323 and engaged with the first connection hole 331 to achieve a fastened connection in a threaded connection. It should be noted that the fastener is not limited to screws and can also be a rivet, etc. The fastener and the connecting member 330 can be selected and configured according to actual circumstances, and this embodiment does not limit this.

[0058] Reference Figure 4 、 Figure 5 and Figure 7 As shown, in the embodiment of the present invention, a mounting groove 220 is formed inside the mounting member 200, and the opening of the mounting groove 220 faces away from the temple structure 300. The mounting groove 220 is suitable for accommodating the connecting portion 100, so that the connecting portion 100 can be inserted into the mounting groove 220. During assembly, the connecting portion 100 can be inserted into the mounting groove 220 and then connected via the clamping structure 500. Specifically, the mounting member 200 and the connecting portion 100 are connected via the clamping structure 500. The clamping structure 500 includes a buckle 510 and a buckle position 520, wherein one of the buckle 510 and the buckle position 520 is located on the groove wall of the mounting groove 220, and correspondingly, the other of the buckle 510 and the buckle position 520 is located at the end of the connecting portion 100 facing the mounting member 200. The position of the buckle 510 corresponds to the position of the buckle position 520. The buckle 510 and the buckle position 520 are buckled together, thereby achieving a fastened connection between the mounting member 200 and the connecting portion 100. The design of the snap-fit ​​structure 500 makes the assembly and disassembly process simple and quick, thereby realizing the rapid assembly and disassembly of the frame structure 2000 and the temple assembly 1000 .

[0059] In one example, the buckle 510 is provided on the groove wall of the mounting groove 220, and the groove wall of the mounting groove 220 protrudes inward to form the buckle 510. Correspondingly, the buckle position 520 is provided on the side wall of the connecting portion 100; Figure 4 and Figure 5 As shown, in another example, the buckle 510 is provided on the side wall of the connecting portion 100 , and the connecting portion 100 protrudes outward to form the buckle 510 . Correspondingly, the buckle position 520 is provided on the groove wall of the installation groove 220 .

[0060] Reference Figure 7 and Figure 8 As shown, in this embodiment of the present invention, the surface of the connecting portion 100 is provided with two spaced-apart snap fasteners 510, and the wall of the mounting groove 220 is provided with two snap positions 520 corresponding one-to-one with the two snap fasteners 510. Specifically, the connecting portion 100 is generally square-cylindrical in shape, the mounting groove 220 is a square groove corresponding to the connecting portion 100, the two snap fasteners 510 are provided on the inward-facing surface of the connecting portion 100, and the inward-facing surface of the mounting member 200 is provided with two snap positions 520 spaced apart at positions corresponding to the snap fasteners 510.

[0061] It is understood that when the connecting portion 100 is inserted into the mounting groove 220, the side surface of the connecting portion 100 facing the mounting member 200 can abut against the bottom wall of the mounting groove 220, and the two buckles 510 can be respectively buckled into the two buckle positions 520, thereby achieving a fast connection between the connecting portion 100 and the mounting member 200. The connection of the two buckles 510 can enhance the connection stability between the connecting portion 100 and the mounting member 200. In addition, when disassembling the temple assembly 1000, it is only necessary to press the buckle 510 to disengage the buckle 510 from the buckle position 520 to detach the connecting portion 100 from the mounting member 200, eliminating the need for a complicated disassembly process and making it convenient for the user to replace other temples.

[0062] It is understandable that if the size of the mounting member 200 is too wide, the size of the temple structure 300 adapted to the mounting member 200 will also be increased accordingly. Figure 7 As shown, in an embodiment of the present invention, along the height direction of the temple structure 300, the maximum height of the mounting member 200 is W, satisfying: W≤4mm (millimeter), thereby limiting the maximum height of the connection between the mounting member 200 and the temple structure 300 in the height direction, making its structure more slender and compact, further widening the selection range of the temple structure 300, and improving the universality of the temple assembly 1000.

[0063] Reference Figure 1 and Figure 2 As shown, an embodiment of the present invention further proposes a pair of smart glasses 3000, comprising a frame structure 2000 and two temple assemblies 1000 of the above-mentioned embodiments, wherein connecting parts 100 are respectively provided on both sides of the frame structure 2000, and the two temple assemblies 1000 are connected to the two connecting parts 100 in a one-to-one correspondence, thereby realizing the wearing function of the smart glasses 3000.

[0064] Reference Figure 4As shown, in this embodiment, the temple assembly 1000 is equipped with a mounting member 200, so that one end of the temple assembly 1000 is snap-fitted to the connecting portion 100, thereby realizing a detachable connection between the temple assembly 1000 and the frame structure 2000; the other end of the mounting member 200 is provided with two first hinged portions 210 spaced apart, each first hinged portion 210 is provided with a first hinge hole 211, and the temple structure 300 is provided with a second hinged portion 310 corresponding to the first hinged portion 210, and the second hinged portion 310 is provided with a second hinge hole 311, wherein the second hinged portion 310 is inserted between the two first hinged portions 210 so that the second hinge hole 311 is connected to the two first hinge holes 211, and the rotating shaft 400 is provided at the first hinge hole 211 and the second hinge hole 311, thereby realizing the hinge connection between the mounting member 200 and the temple structure 300. When the temple assembly 1000 is connected to the frame structure 2000, the temple structure 300 can rotate relative to the frame structure 2000. Based on this, compared to setting the pivot structure on the frame, setting the first hinge part 210 and the second hinge part 310 on the temple assembly 1000 not only avoids the problem of increased size of the connection part caused by the pivot structure, but also can reduce the size of the mounting part 200, making its structure more small and compact, which helps to reduce the width of the temple structure 300, relaxes the restriction on the width of the mounting part 200, and thereby improves the universality of the temple assembly 1000.

[0065] It can be understood that each temple assembly 1000 is connected to the connecting portion 100 of the frame structure 2000 by snapping, thereby realizing a detachable connection between the temple assembly 1000 and the frame structure 2000, facilitating the maintenance and replacement of the temple assembly 1000; in addition, due to the structural optimization of the temple assembly 1000, the restriction on the width of the mounting member 200 is relaxed, so that the smart glasses 3000 can adapt to more types of temple assemblies 1000, allowing users to choose personalized temple assemblies 1000 according to their needs and preferences, thereby improving the diversity of the smart glasses 3000.

[0066] Since the smart glasses 3000 adopt all the technical solutions of the temple assembly 1000 of the above embodiment, they at least have all the beneficial effects brought by the technical solutions of the above embodiment, which will not be repeated here.

[0067] Reference Figure 5 and Figure 8 As shown, in the embodiment of the present invention, the connecting portion 100 is a split structure, specifically including a shell 110 and a spring 120. The shell 110 is fastened to the frame structure 2000. In the present embodiment, the shell 110 and the frame structure 2000 can be integrally formed, or connected by welding or fasteners, etc., which is not limited in the present embodiment.

[0068] Reference Figure 4 and Figure 8As shown, in this embodiment of the present invention, the interior of the housing 110 is a hollow structure, with two spaced-apart openings 113 defined on its surface. The two openings 113 communicate with the interior of the housing 110. A spring 120 is disposed within the housing 110 and includes two bent sections 121 corresponding to the two openings 113. The bent sections 121 protrude from the openings 113. In this embodiment, the bent sections 121 of the spring 120 can be formed in a variety of ways, including by bending a long metal sheet or directly using a mold, or other methods.

[0069] Reference Figure 8 As shown, in the embodiment of the present invention, a slot 111 is formed within the housing 110. An opening 112 of the slot 111 is formed in the sidewall of the housing 110. The opening 112 is suitable for a spring 120 to pass through. In this embodiment, the spring 120 can pass through the opening 112 and be fixed within the slot 111, thereby achieving assembly of the spring 120. It will be understood that the spring 120 has high elasticity. During assembly, the two bent sections 121 of the spring 120 can be compressed to allow the spring 120 to pass through the opening 112 and be fixed to the slot 111, with the bent sections 121 protruding from the opening 113. Based on this, the spring 120 can be detachably mounted to the connecting portion 100. When the spring 120 is damaged and needs to be replaced, the user can easily remove it from the connecting portion 100 and install another spring 120.

[0070] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by ordinary technicians in the relevant technical field without departing from the purpose of the present invention.

Claims

1. A temple assembly, characterized in that: Applied to a spectacles frame structure, the spectacles frame structure includes a connecting portion, and the spectacles leg assembly includes: A mounting member, one end of which is engaged with the connecting portion, and the other end of which is provided with two first hinged portions spaced apart, wherein the first hinged portions are provided with first reamed holes; The temple structure is provided with a second hinge portion, the second hinge portion is inserted between the two first hinge portions, and the second hinge portion is provided with a second hinge hole communicating with the first hinge hole; A rotating shaft is provided through the first reaming hole and the second reaming hole, so that the temple structure can rotate relative to the mounting member.

2. The temple assembly according to claim 1, wherein: The temple structure includes a main body and a connecting piece. The second hinged portion is formed at one end of the connecting piece facing away from the main body. The main body is provided with a connecting groove. The connecting piece is passed through the connecting groove and is detachably connected to the main body.

3. The temple assembly according to claim 2, wherein: A positioning rib is protruded from the bottom wall of the connecting groove, and the connecting piece is provided with a positioning groove corresponding to the positioning rib, and the positioning rib passes through the positioning groove.

4. The temple assembly according to claim 2, wherein: The connecting piece is provided with a first connecting hole, the main body is provided with a second connecting hole connected to the connecting groove, and the temple assembly further includes a fastener, which is sequentially passed through the second connecting hole and the first connecting hole.

5. The temple assembly according to claim 1, wherein: The mounting member is provided with a mounting groove, the connecting portion is passed through the mounting groove, the mounting member and the connecting portion are connected via a snap-fit ​​structure, the snap-fit ​​structure includes a buckle and a buckle position, one of the buckle and the buckle position is provided on the groove wall of the mounting groove, the other of the buckle and the buckle position is provided on the connecting portion, and the buckle and the buckle position are buckled.

6. The temple assembly according to claim 5, wherein: The surface of the connecting portion is provided with two clips spaced apart from each other, and the groove wall of the mounting groove is provided with two clip positions corresponding to the two clips one by one.

7. The temple assembly according to claim 1, wherein: Along the height direction of the temple structure, the maximum height of the mounting piece is less than or equal to 4 mm.

8. Smart glasses, characterized in that It comprises a frame structure and two temple assemblies according to any one of claims 1 to 7, wherein the connecting parts are respectively provided on both sides of the frame structure, and the two temple assemblies are connected to the two connecting parts in a one-to-one correspondence.

9. The smart glasses according to claim 8, characterized in that The mounting piece is provided with a mounting groove, the connecting portion is passed through the mounting groove, the groove wall of the mounting groove is provided with two buckle positions arranged at intervals, the connecting portion includes a shell and a spring, the shell is provided with two openings arranged at intervals, the spring is arranged inside the shell, the spring includes two bent sections corresponding to the two openings one by one, the bent sections protrude from the openings to buckle with the buckle positions.

10. The smart glasses according to claim 9, wherein: A slot is formed inside the housing, an opening of the slot is formed on a side wall of the housing, and the opening is suitable for the reed to pass through.