Intelligent glasses

By simplifying the design by setting insertion slots and connectors on the temples of smart glasses, the problem of complicated temple replacement operations is solved, enabling a fast and reliable disassembly and assembly process and improving the user experience.

CN224216954UActive Publication Date: 2026-05-08HUIZHOU ZHONGCHENGWEI TECHNOLOGY DEVELOPMENT CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOU ZHONGCHENGWEI TECHNOLOGY DEVELOPMENT CO LTD
Filing Date
2025-06-12
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The replacement process for existing smart glasses requires specific tools or complex operations, making it difficult and time-consuming for ordinary users, thus affecting ease of use and user experience.

Method used

Design a smart glasses with a socket and a connector on the temple. The connector has a first groove and a second groove on each side. There is a spring in the socket, and the spring has a first protrusion and a second protrusion. When the connector and the spring are engaged, the first protrusion and the first groove, the second protrusion and the second groove are engaged to achieve quick assembly and disassembly.

Benefits of technology

With its simplified plug-in structure, users can easily and quickly detach and assemble the temples and the main body of the glasses, improving ease of operation and reliability, and enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224216954U_ABST
    Figure CN224216954U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of wearable equipment, and particularly relates to intelligent glasses. The intelligent glasses comprise a glasses main body and glasses legs. The glasses main body is provided with a plug-in head, and the glasses legs are provided with plug-in grooves. The connecting plug comprises a first groove and a second groove which are respectively arranged on two sides of the connecting plug. An elastic piece is arranged in the inserting groove, the elastic piece comprises a first edge, a second edge and a third edge, a first protrusion is arranged on the side, facing the second edge, of the first edge, and a second protrusion is arranged on the side, facing the first edge, of the second edge. When the connecting plug and the elastic sheet are in an assembled state, the first bulge is matched with the first groove, and the second bulge is matched with the second groove, so that the quick disassembly and assembly of the glasses legs and the glasses main body are realized, the disassembly and assembly hand feeling is good, and the reliability is high.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application belongs to the field of wearable device technology, specifically relating to a smart pair of glasses. Background Technology

[0002] As the smart glasses market rapidly evolves towards multifunctionality and personalization, new smart glasses products with features such as AR display and audio playback are emerging in large numbers. Under this trend, the replacement and installation of the temples often requires specific tools or complex procedures, leading to difficulties and time-consuming processes for ordinary users when attempting to replace them themselves. This structural design flaw severely impacts product usability and user experience, urgently requiring solutions through technological innovation.

[0003] It should be noted that the information disclosed in the background section above is only used to enhance the understanding of the background of this application, and therefore may include information that does not constitute prior art known to those skilled in the art. Summary of the Invention

[0004] The purpose of this application is to provide a smart glasses that, to at least some extent, overcomes the technical problem in the related art where the replacement and disassembly of the temples of glasses often requires specific tools or complex operating procedures, resulting in difficulties and time-consuming operations for ordinary users when replacing them themselves.

[0005] Other features and advantages of this application will become apparent from the following detailed description, or may be learned in part from practice of this application.

[0006] According to one aspect of the embodiments of this application, smart glasses are provided, the smart glasses comprising:

[0007] The glasses body has lenses mounted on it, and connectors are provided at both ends of the glasses body;

[0008] The temples include smart temples, on which smart components are installed, and a slot is provided at the end of the smart temples facing the main body of the glasses;

[0009] The connector includes a first groove and a second groove respectively disposed on both sides of the connector; a spring piece is disposed in the plug groove, the spring piece includes a first side, a second side and a third side, the first end of the first side and the second side are connected, the third side is connected to the second end of the second side, the first side, the second side and the third side form a partially enclosed structure and form an open opening on the side opposite to the second side, the connector is detached and assembled with the spring piece through the open opening, a first protrusion is disposed on the side of the first side facing the second side, and a second protrusion is disposed on the side of the second side facing the first side;

[0010] When the connector and the spring are assembled, the first protrusion and the first groove engage, and the second protrusion and the second groove engage.

[0011] In some embodiments of this application, based on the above technical solutions, at least a portion of the structure of the first side is a plate-like plane, at least a portion of the structure of the second side is a plate-like plane, at least a portion of the structure of the third side is a plate-like plane, and the normal vector of the plate-like plane of the first side points to the enclosing space of the partially enclosing structure, the normal vector of the plate-like plane of the second side points to the enclosing space of the partially enclosing structure, and the normal vector of the plate-like plane of the third side points to the enclosing space of the partially enclosing structure.

[0012] In some embodiments of this application, based on the above technical solutions, the width of the first side is a first plate width, the width of the second side is a second plate width, the width of the third side is a third plate width, the second plate width is wider than the first plate width, and the second plate width is wider than the third plate width, wherein:

[0013] The width of the first plate is the width of the plate-shaped plane of the first side perpendicular to the second direction. The first side includes a first end and a second end. The first end of the second side is connected to the first end of the first side. The second direction is the extension direction extending from the first end of the first side to the second end of the first side.

[0014] The width of the second plate is the width of the plate-shaped plane of the second side perpendicular to a third direction, where the third direction is the extension direction extending from the first end of the second side to the second end of the second side;

[0015] The width of the third plate is the width of the plate-shaped plane of the third side perpendicular to the fourth direction. The third side includes a first end and a second end. The second end of the second side is connected to the first end of the third side. The fourth direction is the extension direction extending from the first end of the third side to the second end of the third side.

[0016] In some embodiments of this application, based on the above technical solutions, the first side includes a first plate-like structure and a first arc-shaped structure. The first end of the first plate-like structure is connected to the first end of the second side, and the first end of the first arc-shaped structure is connected to the second end of the first plate-like structure. The first protrusion is disposed between the first end of the first arc-shaped structure and the second end of the first arc-shaped structure, and the first protrusion is an arc-shaped protrusion.

[0017] The width of the first plate-shaped structure is a first width, and the width of the first arc-shaped structure is a second width; the first width is the width of the plate-shaped plane of the first plate-shaped structure perpendicular to a fifth direction, the fifth direction being an extension direction extending from the first end of the first plate-shaped structure to the second end of the first plate-shaped structure; the second width is the width of the first arc-shaped structure perpendicular to a sixth direction, the sixth direction being an extension direction extending from the first end of the first arc-shaped structure to the second end of the first arc-shaped structure; the second width is narrower than the first width.

[0018] The third side includes a third plate-shaped structure and a third arc-shaped structure. The first end of the third plate-shaped structure is connected to the first end of the second side, and the first end of the third arc-shaped structure is connected to the second end of the third plate-shaped structure. The second protrusion is disposed between the first end of the third arc-shaped structure and the second end of the third arc-shaped structure, and the second protrusion is an arc-shaped protrusion.

[0019] The width of the third plate-shaped structure is a third width, and the width of the third arc-shaped structure is a fourth width; the third width is the width of the plate-shaped plane of the third plate-shaped structure perpendicular to the seventh direction, the seventh direction being the extension direction extending from the first end of the third plate-shaped structure to the second end of the third plate-shaped structure; the fourth width is the width of the third arc-shaped structure perpendicular to the eighth direction, the eighth direction being the extension direction extending from the first end of the third arc-shaped structure to the second end of the third arc-shaped structure; the fourth width is narrower than the third width.

[0020] In some embodiments of this application, based on the above technical solutions, the spring sheet conforms to one or more of the following descriptions:

[0021] In at least a portion of the first plate-like structure, the first width gradually narrows along the fifth direction;

[0022] In at least a portion of the first arcuate structure, the second width gradually narrows along the sixth direction;

[0023] In at least a portion of the third plate-like structure, the third width gradually narrows along the seventh direction;

[0024] In at least a portion of the third arcuate structure, the fourth width gradually narrows along the eighth direction.

[0025] In some embodiments of this application, based on the above technical solutions, the second side includes a second plate-like structure, a second arc-shaped structure, and a fourth arc-shaped structure; the first end of the second plate-like structure is connected to the first end of the second arc-shaped structure, and the second end of the second arc-shaped structure is the first end of the second side; the second end of the second plate-like structure is connected to the first end of the fourth arc-shaped structure, and the second end of the fourth arc-shaped structure is the second end of the second side; the second arc-shaped structure is an arc-shaped structure, the fourth arc-shaped structure is an arc-shaped structure, and the second arc-shaped structure and the fourth arc-shaped structure are symmetrically arranged about the second plate-like structure;

[0026] The first plate-like structure includes a first part and a second part. The first width of the first part gradually narrows along the fifth direction, and the first width of the second part remains unchanged along the fifth direction. The first part is connected to the second arc-shaped structure, and the second part is connected to the first arc-shaped structure.

[0027] The third plate-like structure includes a third part and a fourth part. The third width of the third part gradually narrows along the seventh direction, while the third width of the third part remains unchanged along the seventh direction. The third part is connected to the fourth arc-shaped structure, and the fourth part is connected to the third arc-shaped structure.

[0028] In some embodiments of this application, based on the above technical solutions, the first side includes a first end and a second end, the first end of the first side is connected to the first end of the second side, the third side includes a first end and a second end, the first end of the third side is connected to the first end of the second side, and the spring sheet conforms to one or more of the following descriptions:

[0029] When the spring is in its natural state, the first gap is greater than the second gap. The first gap is the distance between the first end of the first side and the first end of the third side of the spring, and the second gap is the distance between the second end of the first side and the second end of the third side of the spring.

[0030] When the connector and the spring are assembled, the distance between the first protrusion and the second protrusion is the first distance. When the connector and the spring are disassembled and the spring is in its natural state, the distance between the first protrusion and the second protrusion is the second distance. The first distance is greater than the second distance.

[0031] When the connector and the spring are assembled, the connector and the second side are spaced apart;

[0032] The first groove and the second groove are symmetrically arranged, and the first protrusion and the second protrusion are symmetrically arranged; or the first groove is positioned forward of the second groove in a first direction, and the first protrusion is positioned forward of the second protrusion in the first direction. The setting interval between the setting starting point of the first groove and the setting starting point of the second groove in the first direction is a first interval, and the setting interval between the setting starting point of the first protrusion and the setting starting point of the second protrusion in the first direction is a second interval. The first interval matches the second interval, and the first direction is the extension direction of the connector toward the spring piece.

[0033] In some embodiments of this application, based on the above technical solutions, at least a portion of the concave surface of the first groove is an arc-shaped concave surface, at least a portion of the concave surface of the second groove is an arc-shaped concave surface, at least a portion of the first protrusion is an arc-shaped convex surface, and at least a portion of the second protrusion is an arc-shaped convex surface.

[0034] In some embodiments of this application, based on the above technical solutions, the connector includes a main body and a front end. The main body is connected to the eyeglass body via a hinge structure. The front end is disposed in a ninth direction of the main body, the ninth direction being the extension direction of the main body toward the second side. A first groove is disposed at the connection between the main body and the front end, and a second groove is disposed at the connection between the main body and the front end. The cross-sectional area of ​​at least a portion of the structure of the front end gradually decreases along a tenth direction, the tenth direction being the extension direction of the front end toward the second side.

[0035] The insertion slot also includes a limiting sleeve, which restricts the movement of the main body part along the direction perpendicular to the ninth direction when the insertion connector and the spring are assembled.

[0036] In some embodiments of this application, based on the above technical solutions, the temple includes a housing, the insertion groove is disposed on the side of the housing facing the main body of the eyeglasses, the insertion groove is further provided with a fastening component and / or at least one blocking member, the fastening component includes a first sub-base and a second sub-base, the first sub-base and the second sub-base are spaced apart to form a gap space, a protrusion is disposed on the side of the second side facing the insertion joint, the protrusion is sandwiched between the first sub-base and the second sub-base, the spring is bonded to the insertion groove with adhesive, the blocking member is disposed on the third side facing the open opening, and the blocking member has a preset distance from the third side;

[0037] The connector is arrow-shaped, the front end of the connector is triangular, at least a portion of the connector has a surface electroplating layer, the spring is a metal spring, at least a portion of the main body has a hollow structure, and the first side, the second side and the third side are integrally formed.

[0038] In the technical solution provided in this application embodiment, the smart glasses include a glasses body and temples. The glasses body has connectors at both ends, and the smart temples have a connector groove at the end facing the glasses body. The connectors include a first groove and a second groove respectively disposed on both sides of the connector. A spring is disposed in the connector groove, and the spring has a first protrusion and a second protrusion. When the connector and the spring are assembled, the first protrusion and the first groove cooperate, and the second protrusion and the second groove cooperate. Thus, users can easily and conveniently assemble and disassemble the temples and the glasses body. The first protrusion and the second protrusion installed on opposite sides, along with the matching first groove and second groove, provide a good assembly and disassembly feel and high reliability.

[0039] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and do not limit this application. Attached Figure Description

[0040] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application. It is obvious that the drawings described below are merely some embodiments of this application, and those skilled in the art can obtain other drawings based on these drawings without any inventive effort.

[0041] Figure 1 A schematic diagram illustrating a portion of the structure of a smart glasses application according to an embodiment of this application in a disassembled state is shown.

[0042] Figure 2 This application is illustrated schematically. Figure 1 Enlarged schematic diagram of region A in the middle.

[0043] Figure 3 A schematic diagram illustrating a portion of the structure of smart glasses applying an embodiment of this application in an assembled state is shown.

[0044] Figure 4 This application is illustrated schematically. Figure 3 A magnified view of region B in the middle.

[0045] Figure 5 This application is illustrated schematically. Figure 1 A schematic diagram of the spring sheet in the embodiment shown.

[0046] Figure 6 This application is illustrated schematically. Figure 5 A side view of the spring sheet in the illustrated embodiment.

[0047] Explanation of reference numerals in the attached drawings: Smart glasses 1000, glasses body 1001, lens 100, hinge structure 200, connector 300, main body part 330, hollow structure 331, front end part 340, first groove 310, starting point of the first groove 311, second groove 320, starting point of the second groove 321, temple 1002, shell 400, connector slot 500, spring piece 510, first side 511, first plate structure 5113, first end of the first side 5111, first part 5117, second end of the first side 5112, second part 51 18. First arc-shaped structure 5114, first protrusion 5115, second side 512, second plate-shaped structure 5123, first end of second side 5121, second arc-shaped structure 5124, second end of second side 5122, fourth arc-shaped structure 5125, protrusion 5126, third side 513, third plate-shaped structure 5133, first end of third side 5131, second end of third side 5132, third arc-shaped structure 5134, second protrusion 5135, fastening assembly 520, first sub-base 521, second sub-base 522, blocking member 530, limiting sleeve 540. Detailed Implementation

[0048] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application. Furthermore, the described features, structures, or characteristics can be combined in any suitable manner in one or more embodiments.

[0049] In the description of this application, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0050] The terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first," "second," or "third" may explicitly or implicitly include one or more of that feature. In the description of this application, unless otherwise stated, "a plurality of" means two or more.

[0051] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "connection," "installation," "connection," and "linkage" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0052] Please see Figures 1-6 This application provides a smart glasses 1000, which includes a glasses body 1001 and temples 1002. Lenses 100 are mounted on the glasses body 1001, and connectors 300 are provided at both ends of the glasses body 1001. The temples 1002 include smart temples 1002, on which smart components are mounted, and a connector groove 500 is provided at the end of the smart temples 1002 facing the glasses body 1001. The connector 300 includes a first groove 310 and a second groove 320 respectively disposed on both sides of the connector 300; a spring piece 510 is disposed in the connector groove 500, the spring piece 510 includes a first side 511, a second side 512 and a third side 513, the first side 511 and the first end 5121 of the second side 512 are connected, the third side 513 is connected to the second end 5122 of the second side 512, the first side 511, the second side 512 and the third side 513 form a partially enclosed structure and form an open opening on the side opposite to the second side 512, the connector 300 is disassembled and assembled with the spring piece 510 through the open opening, the first side 511 is provided with a first protrusion 5115 on the side facing the second side 512, and the second side 512 is provided with a second protrusion 5135 on the side facing the first side 511. When the connector 300 and the spring 510 are assembled, the first protrusion 5115 and the first groove 310 cooperate, and the second protrusion 5135 and the second groove 320 cooperate.

[0053] Thus, the smart glasses 1000 includes a glasses body 1001 and temples 1002. The glasses body 1001 has connectors 300 at both ends. The smart temples 1002 have a connector groove 500 at the end facing the glasses body 1001. The connectors 300 include a first groove 310 and a second groove 320 respectively located on both sides of the connector 300. A spring piece 510 is provided in the connector groove 500, and the spring piece 510 has a first protrusion 5115 and a second protrusion 5135. When the connector 300 and the spring 510 are assembled, the first protrusion 5115 and the first groove 310 cooperate, and the second protrusion 5135 and the second groove 320 cooperate. In this way, the user can quickly assemble and disassemble the temple 1002 and the eyeglass body 1001 in a convenient and easy manner. The first protrusion 5115 and the second protrusion 5135 installed on opposite sides, as well as the matching first groove 310 and the second groove 320, make the assembly and disassembly feel good and the reliability strong.

[0054] In some specific embodiments, the smart glasses 1000 includes a detachably connected glasses body 1001 and temples 1002. The glasses body 1001 includes a lens 100, a lens 100 frame, a hinge structure 200, and a connector 300. The temples 1002 include a housing 400, a connector groove 500, and a smart component mounted in the housing 400. The connector 300 includes a main body portion 330, a front end portion 340, and a first groove 310 and a second groove 320 disposed at the connection between the main body portion 330 and the front end portion 340. The connector groove 500 includes a spring piece 510, a fastener, a blocking member 530, and a limiting sleeve. Specifically, the spring piece 510 can be fixedly disposed in the connector groove 500. The partially enclosed structure is one type of non-fully enclosed structure, such as a semi-enclosed structure.

[0055] In one example scenario, when the smart glasses need to have their temples attached, the connector can be aligned with the slot. No buttons need to be pressed; simply insert the connector directly into the slot. Once inserted, the spring clip clamps the connector securely. When the smart glasses need to have their temples removed, either by applying a force in opposite directions to the glasses body and the temples, or by fixing the glasses body and applying a force away from the glasses body, or by fixing the temples and applying a force away from the glasses body, the temples can be easily removed.

[0056] In some embodiments, at least a portion of the structure of the first side 511 is a plate-like plane, at least a portion of the structure of the second side 512 is a plate-like plane, at least a portion of the structure of the third side 513 is a plate-like plane, and the normal vector of the plate-like plane of the first side 511 points to the enclosed space of the partially enclosed structure, the normal vector of the plate-like plane of the second side 512 points to the enclosed space of the partially enclosed structure, and the normal vector of the plate-like plane of the third side 513 points to the enclosed space of the partially enclosed structure.

[0057] Please see Figures 5-6 In some embodiments, the width of the first side 511 is the first plate width, the width of the second side 512 is the second plate width, and the width of the third side 513 is the third plate width. The second plate width is wider than the first plate width, and the second plate width is wider than the third plate width, wherein:

[0058] The width of the first plate is the width of the plate-shaped plane of the first side 511 perpendicular to the second direction. The first side 511 includes a first end 5111 and a second end 5112. The first end 5121 of the second side 512 is connected to the first end 5111 of the first side 511. The second direction is the extension direction extending from the first end 5111 of the first side 511 to the second end 5112 of the first side 511.

[0059] The width of the second plate is the width of the plate-shaped plane of the second side 512 perpendicular to the third direction, and the third direction is the extension direction extending from the first end 5121 of the second side 512 to the second end 5122 of the second side 512.

[0060] The width of the third plate is the width of the plate-shaped plane of the third side 513 perpendicular to the fourth direction. The third side 513 includes a first end 5131 and a second end 5132. The second end 5121 of the second side 512 is connected to the first end 5131 of the third side 513. The fourth direction is the extension direction extending from the first end 5131 of the third side 513 to the second end 5132 of the third side 513.

[0061] In some embodiments, the first side 511 includes a first plate-like structure 5113 and a first arc-shaped structure 5114. The first end of the first plate-like structure 5113 is connected to the first end of the second side 512, and the first end of the first arc-shaped structure 5114 is connected to the second end of the first plate-like structure 5113. A first protrusion 5115 is disposed between the first end of the first arc-shaped structure 5114 and the second end of the first arc-shaped structure 5114. The first protrusion 5115 is an arc-shaped protrusion.

[0062] The width of the first plate-shaped structure 5113 is a first width, and the width of the first arc-shaped structure 5114 is a second width; the first width is the width of the plate-shaped plane of the first plate-shaped structure 5113 perpendicular to the fifth direction, and the fifth direction is the extension direction extending from the first end of the first plate-shaped structure 5113 to the second end of the first plate-shaped structure 5113; the second width is the width of the first arc-shaped structure 5114 perpendicular to the sixth direction, and the sixth direction is the extension direction extending from the first end of the first arc-shaped structure 5114 to the second end of the first arc-shaped structure 5114; the second width is narrower than the first width;

[0063] The third side 513 includes a third plate-shaped structure 5133 and a third arc-shaped structure 5134. The first end of the third plate-shaped structure 5133 is connected to the first end 5121 of the second side 512. The first end of the third arc-shaped structure 5134 is connected to the second end of the third plate-shaped structure 5133. The second protrusion 5135 is disposed between the first end of the third arc-shaped structure 5134 and the second end of the third arc-shaped structure 5134. The second protrusion 5135 is an arc-shaped protrusion.

[0064] The width of the third plate-shaped structure 5133 is the third width, and the width of the third arc-shaped structure 5134 is the fourth width; the third width is the width of the plate-shaped plane of the third plate-shaped structure 5133 perpendicular to the seventh direction, the seventh direction being the extension direction extending from the first end of the third plate-shaped structure 5133 to the second end of the third plate-shaped structure 5133; the fourth width is the width of the third arc-shaped structure 5134 perpendicular to the eighth direction, the eighth direction being the extension direction extending from the first end of the third arc-shaped structure 5134 to the second end of the third arc-shaped structure 5134; the fourth width is narrower than the third width.

[0065] In some embodiments, the spring 510 conforms to one or more of the following descriptions: in at least a portion of the first plate-like structure 5113, the first width gradually narrows along a fifth direction; in at least a portion of the first arcuate structure 5114, the second width gradually narrows along a sixth direction; in at least a portion of the third plate-like structure 5133, the third width gradually narrows along a seventh direction; and in at least a portion of the third arcuate structure 5134, the fourth width gradually narrows along an eighth direction. This reduces the scraping of the spring against the housing due to shaking during insertion and removal, improves the stability of the mechanical structure, and to some extent avoids adhesive scraping and jamming.

[0066] In some embodiments, the second side 512 includes a second plate-like structure 5123, a second arc-shaped structure 5124, and a fourth arc-shaped structure 5125; the first end of the second plate-like structure 5123 is connected to the first end of the second arc-shaped structure 5124, and the second end of the second arc-shaped structure 5124 is the first end of the second side 512; the second end of the second plate-like structure 5123 is connected to the first end of the fourth arc-shaped structure 5125, and the second end of the fourth arc-shaped structure 5125 is the second end 5122 of the second side 512; the second arc-shaped structure 5124 is an arc-shaped structure, the fourth arc-shaped structure 5125 is an arc-shaped structure, and the second arc-shaped structure 5124 and the fourth arc-shaped structure 5125 are symmetrically arranged about the second plate-like structure 5123;

[0067] The first plate-shaped structure 5113 includes a first part 5117 and a second part 5118. The first width of the first part 5117 gradually narrows along the fifth direction, and the first width of the second part 5118 remains unchanged along the fifth direction. The first part 5117 is connected to the second arc-shaped structure 5124, and the second part 5118 is connected to the first arc-shaped structure 5114.

[0068] The third plate-shaped structure 5133 includes a third part and a fourth part. The third width of the third part gradually narrows along the seventh direction, while the third width of the third part remains unchanged along the seventh direction. The third part is connected to the fourth arc-shaped structure 5125, and the fourth part is connected to the third arc-shaped structure 5134.

[0069] In some embodiments, the first side 511 includes a first end 5111 and a second end 5112, the first end 5111 of the first side 511 is connected to the first end 5121 of the second side 512, the third side 513 includes a first end 5131 and a second end 5132, the first end 5131 of the third side 513 is connected to the first end 5121 of the second side 512, and the spring piece 510 conforms to one or more of the following descriptions:

[0070] When the spring 510 is in its natural state, the first gap is greater than the second gap. The first gap is the distance between the first end 5111 of the first side 511 and the first end 5131 of the third side 513 of the spring 510, and the second gap is the distance between the second end 5112 of the first side 511 and the second end 5132 of the third side 513 of the spring 510. In this way, the spring can have a better clamping force on the connector.

[0071] When the connector 300 and the spring 510 are assembled, the distance between the first protrusion 5115 and the second protrusion 5135 is the first distance. When the connector 300 and the spring 510 are disassembled, and the spring 510 is in its natural state, the distance between the first protrusion 5115 and the second protrusion 5135 is the second distance, and the first distance is greater than the second distance. This ensures that even with certain manufacturing tolerances in components such as the spring or connector, there is still good clamping force between the spring and the connector, and to a certain extent, it avoids the situation where the spring cannot effectively clamp the connector due to fatigue deformation after long-term insertion and removal.

[0072] When the connector 300 and the spring 510 are assembled, the connector 300 and the second side 512 are spaced apart; in this way, wear from repeated insertion and removal of the front end of the connector 300 can be avoided to a certain extent.

[0073] The first groove 310 and the second groove 320 are symmetrically arranged, and the first protrusion 5115 and the second protrusion 5135 are symmetrically arranged; or the first groove 310 is positioned forward of the second groove 320 in the first direction, and the first protrusion 5115 is positioned forward of the second protrusion 5135 in the first direction, the setting starting point 311 of the first groove 310 and the setting starting point 321 of the second groove 320 are spaced apart in the first direction by a first interval, and the setting starting point of the first protrusion 5115 ( Figure 5 The setting starting point of the embodiment shown is the second end 5112 of the first side and the setting starting point of the second protrusion 5135. Figure 5 In the illustrated embodiment, the starting point is the second end 5132 of the third side 513, and the setting interval in the first direction is the second interval. The first interval matches the second interval, specifically, the first interval and the second interval can be equal or the difference is within a preset threshold range. In the first direction, when the glasses body and temples are assembled, the connector 300 faces the extension direction of the spring piece 510. This ensures reliable assembly and prevents incorrect insertion direction of the temples, thereby improving the user experience. Unless otherwise specified, the directions described in this application refer to the relative positional directions between the components in the assembled state of the glasses body and temples. If there is a specific description, such as a component in its natural state, then that specific description shall be followed.

[0074] In some embodiments, at least a portion of the concave surface of the first groove 310 is an arc-shaped concave surface, at least a portion of the concave surface of the second groove 320 is an arc-shaped concave surface, at least a portion of the first protrusion 5115 is an arc-shaped convex surface, and at least a portion of the second protrusion 5135 is an arc-shaped convex surface. This provides a better insertion and removal feel during the insertion and removal processes of the first groove and the second protrusion, and can, to a certain extent, prevent jamming during insertion and removal.

[0075] Please see Figures 1-6 In some embodiments, the connector 300 includes a main body portion 330 and a front end portion 340. The main body portion 330 is connected to the eyeglass body 1001 via a hinge structure 200. The front end portion 340 is disposed in a ninth direction of the main body portion 330, which is the direction in which the main body portion 330 extends toward the second side 512. A first groove 310 is disposed at the connection between the main body portion 330 and the front end portion 340, and a second groove 320 is disposed at the connection between the main body portion 330 and the front end portion 340. The cross-sectional area of ​​at least a portion of the structure of the front end portion 340 gradually decreases along a tenth direction, which is the direction in which the front end portion 340 extends toward the second side 512.

[0076] In some embodiments, the insertion slot 500 further includes a limiting sleeve 540, which restricts the movement of the main body 330 along a direction perpendicular to the ninth direction when the insertion connector 300 and the spring piece 510 are assembled. This prevents slight wobbling of the insertion connector along a direction perpendicular to the insertion / removal direction when the insertion connector is inserted into the spring piece and locked in place, improving the connection stability between the temple and the eyeglass body and enhancing the user experience. Furthermore, the spring piece is positioned deeper in the insertion slot than the limiting sleeve, making it more invisible, improving the cleanliness of the temple appearance, and delaying the onset of corrosion and aging.

[0077] In some embodiments, the temple 1002 includes a housing 400, and a insertion groove 500 is disposed on the side of the housing 400 facing the eyeglass body 1001. The insertion groove 500 also includes a fastening assembly 520 and / or at least one blocking member 530. The fastening assembly 520 includes a first sub-base 521 and a second sub-base 522, which are spaced apart to form a gap. A protrusion 5126 is disposed on the side of the second side 512 facing the insertion connector 300, and the protrusion 5126 is sandwiched between the first sub-base 521 and the second sub-base 522. A spring clip 510 is bonded to the insertion groove 500 with adhesive to strengthen the fastening of the spring clip. The blocking member 530 is disposed on the third side 513 facing the open opening, and the blocking member 530 and the third side 513 have a predetermined distance between them. The fastening assembly clamps the protrusion, ensuring that the third side 513 of the spring is not excessively thick, thus maintaining the overall tensile elasticity of the spring. This allows the spring to be effectively clamped and stably assembled, preventing overall movement during the pulling process of the connector and improving structural stability. The blocking component can block and restrain the spring, preventing significant deformation when the connector is pulled out, thereby preventing failure or fatigue of the spring due to excessive deformation during insertion and removal.

[0078] In some embodiments, the connector 300 is arrow-shaped, the front end portion 340 of the connector 300 is triangular, and at least a portion of the connector 300 has a surface electroplating layer, which can reduce scratch wear and improve the assembly life between the connector and the socket. Furthermore, the surface of the front end portion of the connector can be polished and electroplated, for example, with nickel or chromium plating.

[0079] In some embodiments, the spring 510 is a metal spring 510, and at least a portion of the main body 330 has a hollow structure 331, with the first side 511, the second side 512, and the third side 513 integrally formed. The hollow structure can be, for example, a groove structure, a perforated structure, etc. For example, the spring can be made of SUS301 stainless steel, which has both high strength and corrosion resistance, and can to some extent avoid performance degradation caused by spring fatigue or corrosion.

[0080] In some implementation methods, please refer to Figures 1-6 The smart glasses 1000 also includes replacement temples, which are used to replace the smart temples 1002 and are mounted on the glasses body 1001. The replacement temples include a connector slot 500 identical to the smart temples 1002 and an internal structure of the connector slot 500. The replacement temples achieve a detachable connection with the connector on the glasses body 1001 via the connector slot. The smart temples 1002 include a housing, which is made of one or more materials including metal, plastic, cellulose acetate, and cellulose propionate. The replacement temples 1002 are also made of one or more materials including metal, plastic, cellulose acetate, and cellulose propionate. The smart components include an audio component and a power supply component.

[0081] In summary, the smart glasses include a main body and temples. The main body has connectors at both ends, and the temples have a connector groove on the end facing the main body. Each connector includes a first groove and a second groove on each side. A spring is provided in the connector groove, with a first protrusion and a second protrusion. When the connector and spring are assembled, the first protrusion and the first groove engage, and the second protrusion and the second groove also engage. This allows users to easily and quickly assemble and disassemble the temples and the main body. The first and second protrusions, along with the matching first and second grooves, installed on opposite sides, provide a smooth and reliable assembly / disassembly process.

[0082] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein.

[0083] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.

Claims

1. A type of smart glasses, characterized in that, The smart glasses include: The glasses body has lenses mounted on it, and connectors are provided at both ends of the glasses body; The temples include smart temples, on which smart components are installed, and a slot is provided at the end of the smart temples facing the main body of the glasses; The connector includes a first groove and a second groove respectively disposed on both sides of the connector; a spring piece is disposed in the plug groove, the spring piece includes a first side, a second side and a third side, the first end of the first side and the second side are connected, the third side is connected to the second end of the second side, the first side, the second side and the third side form a partially enclosed structure and form an open opening on the side opposite to the second side, the connector is detached and assembled with the spring piece through the open opening, a first protrusion is disposed on the side of the first side facing the second side, and a second protrusion is disposed on the side of the second side facing the first side; When the connector and the spring are assembled, the first protrusion and the first groove engage, and the second protrusion and the second groove engage.

2. The smart glasses according to claim 1, characterized in that, At least a portion of the structure of the first side is a plate-like plane, at least a portion of the structure of the second side is a plate-like plane, at least a portion of the structure of the third side is a plate-like plane, and the normal vector of the plate-like plane of the first side points to the enclosed space of the partially enclosed structure, the normal vector of the plate-like plane of the second side points to the enclosed space of the partially enclosed structure, and the normal vector of the plate-like plane of the third side points to the enclosed space of the partially enclosed structure.

3. The smart glasses according to claim 2, characterized in that, The width of the first side is the first plate width, the width of the second side is the second plate width, and the width of the third side is the third plate width. The second plate width is wider than the first plate width, and the second plate width is wider than the third plate width, wherein: The width of the first plate is the width of the plate-shaped plane of the first side perpendicular to the second direction. The first side includes a first end and a second end. The first end of the second side is connected to the first end of the first side. The second direction is the extension direction extending from the first end of the first side to the second end of the first side. The width of the second plate is the width of the plate-shaped plane of the second side perpendicular to a third direction, where the third direction is the extension direction extending from the first end of the second side to the second end of the second side; The width of the third plate is the width of the plate-shaped plane of the third side perpendicular to the fourth direction. The third side includes a first end and a second end. The second end of the second side is connected to the first end of the third side. The fourth direction is the extension direction extending from the first end of the third side to the second end of the third side.

4. The smart glasses according to claim 2, characterized in that, The first side includes a first plate-shaped structure and a first arc-shaped structure. The first end of the first plate-shaped structure is connected to the first end of the second side, and the first end of the first arc-shaped structure is connected to the second end of the first plate-shaped structure. The first protrusion is disposed between the first end of the first arc-shaped structure and the second end of the first arc-shaped structure. The first protrusion is an arc-shaped protrusion. The width of the first plate-shaped structure is a first width, and the width of the first arc-shaped structure is a second width; the first width is the width of the plate-shaped plane of the first plate-shaped structure perpendicular to a fifth direction, the fifth direction being an extension direction extending from the first end of the first plate-shaped structure to the second end of the first plate-shaped structure; the second width is the width of the first arc-shaped structure perpendicular to a sixth direction, the sixth direction being an extension direction extending from the first end of the first arc-shaped structure to the second end of the first arc-shaped structure; the second width is narrower than the first width. The third side includes a third plate-shaped structure and a third arc-shaped structure. The first end of the third plate-shaped structure is connected to the first end of the second side, and the first end of the third arc-shaped structure is connected to the second end of the third plate-shaped structure. The second protrusion is disposed between the first end of the third arc-shaped structure and the second end of the third arc-shaped structure, and the second protrusion is an arc-shaped protrusion. The width of the third plate-shaped structure is a third width, and the width of the third arc-shaped structure is a fourth width; the third width is the width of the plate-shaped plane of the third plate-shaped structure perpendicular to the seventh direction, the seventh direction being the extension direction extending from the first end of the third plate-shaped structure to the second end of the third plate-shaped structure; the fourth width is the width of the third arc-shaped structure perpendicular to the eighth direction, the eighth direction being the extension direction extending from the first end of the third arc-shaped structure to the second end of the third arc-shaped structure; the fourth width is narrower than the third width.

5. The smart glasses according to claim 4, characterized in that, The shrapnel conforms to one or more of the following descriptions: In at least a portion of the first plate-like structure, the first width gradually narrows along the fifth direction; In at least a portion of the first arcuate structure, the second width gradually narrows along the sixth direction; In at least a portion of the third plate-like structure, the third width gradually narrows along the seventh direction; In at least a portion of the third arcuate structure, the fourth width gradually narrows along the eighth direction.

6. The smart glasses according to claim 5, characterized in that, The second side includes a second plate-shaped structure, a second arc-shaped structure, and a fourth arc-shaped structure; the first end of the second plate-shaped structure is connected to the first end of the second arc-shaped structure, and the second end of the second arc-shaped structure is the first end of the second side; the second end of the second plate-shaped structure is connected to the first end of the fourth arc-shaped structure, and the second end of the fourth arc-shaped structure is the second end of the second side. The second arc-shaped structure is a circular arc structure, the fourth arc-shaped structure is a circular arc structure, and the second arc-shaped structure and the fourth arc-shaped structure are symmetrically arranged about the second plate-shaped structure; The first plate-like structure includes a first part and a second part. The first width of the first part gradually narrows along the fifth direction, and the first width of the second part remains unchanged along the fifth direction. The first part is connected to the second arc-shaped structure, and the second part is connected to the first arc-shaped structure. The third plate-like structure includes a third part and a fourth part. The third width of the third part gradually narrows along the seventh direction, while the third width of the third part remains unchanged along the seventh direction. The third part is connected to the fourth arc-shaped structure, and the fourth part is connected to the third arc-shaped structure.

7. The smart glasses according to claim 1, characterized in that, The first side includes a first end and a second end, the first end of the first side being connected to the first end of the second side; the third side includes a first end and a second end, the first end of the third side being connected to the first end of the second side; the spring sheet conforms to one or more of the following descriptions: When the spring is in its natural state, the first gap is greater than the second gap. The first gap is the distance between the first end of the first side and the first end of the third side of the spring, and the second gap is the distance between the second end of the first side and the second end of the third side of the spring. When the connector and the spring are assembled, the distance between the first protrusion and the second protrusion is the first distance. When the connector and the spring are disassembled and the spring is in its natural state, the distance between the first protrusion and the second protrusion is the second distance. The first distance is greater than the second distance. When the connector and the spring are assembled, the connector and the second side are spaced apart; The first groove and the second groove are symmetrically arranged, and the first protrusion and the second protrusion are symmetrically arranged; or the first groove is positioned forward of the second groove in a first direction, and the first protrusion is positioned forward of the second protrusion in the first direction. The setting interval between the setting starting point of the first groove and the setting starting point of the second groove in the first direction is a first interval, and the setting interval between the setting starting point of the first protrusion and the setting starting point of the second protrusion in the first direction is a second interval. The first interval matches the second interval, and the first direction is the extension direction of the connector toward the spring piece.

8. The smart glasses according to claim 1, characterized in that, At least a portion of the concave surface of the first groove is an arc-shaped concave surface, at least a portion of the concave surface of the second groove is an arc-shaped concave surface, at least a portion of the first protrusion is an arc-shaped convex surface, and at least a portion of the second protrusion is an arc-shaped convex surface.

9. The smart glasses according to claim 1, characterized in that, The connector includes a main body and a front end. The main body is connected to the eyeglasses body via a hinge structure. The front end is located in a ninth direction of the main body, which is the direction in which the main body extends toward the second side. A first groove is located at the connection between the main body and the front end, and a second groove is located at the connection between the main body and the front end. The cross-sectional area of ​​at least a portion of the structure of the front end gradually decreases along a tenth direction, which is the direction in which the front end extends toward the second side. The insertion slot also includes a limiting sleeve, which restricts the movement of the main body part along the direction perpendicular to the ninth direction when the insertion connector and the spring are assembled.

10. The smart glasses according to claim 1, characterized in that, The temple includes a housing, and the insertion slot is disposed on the side of the housing facing the main body of the eyeglasses. The insertion slot is also provided with a fastening component and / or at least one blocking component. The fastening component includes a first sub-base and a second sub-base, which are spaced apart to form a gap space. A protrusion is disposed on the side of the second side facing the insertion connector. The protrusion is sandwiched between the first sub-base and the second sub-base. The spring is bonded to the insertion slot with adhesive. The blocking component is disposed on the third side facing the open opening, and the blocking component has a preset distance from the third side. The connector is arrow-shaped, the front end of the connector is triangular, at least a portion of the connector has a surface electroplating layer, the spring is a metal spring, at least a portion of the main body has a hollow structure, and the first side, the second side and the third side are integrally formed.