Spectacles and method of mounting spectacles
By arranging seals in the frame and temples to seal the electrical connectors and electronic components, the problem of poor waterproof effect of existing glasses is solved, and efficient waterproof protection and normal rotation function are achieved.
Patent Information
- Application Number
- CN202310209153.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-01-18
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2041-01-18
AI Technical Summary
Existing glasses lack an effective waterproof structure, which makes electronic components easily damaged or fail, especially at the rotating connection between the frame and the temples.
A first and second seal is set in the frame and the temple, which is sealed and connected to the electrical connector and the electronic component respectively. Soft waterproof materials such as silicone or rubber are used to improve the waterproof effect through interference fit and snap-on structure, while maintaining the rotation function of the frame and the temple.
It improves the overall waterproof performance of the glasses, protects electronic components from external liquid erosion, and does not affect the normal rotation of the frame and temples, thereby improving the waterproof level and durability of the glasses.
Smart Images

Figure CN116184688B_ABST
Abstract
Description
[0001] This application is a divisional application submitted to the China Patent Office on January 18, 2021, with application number 202110062287.0 and invention name “Glasses and Method for Installing Glasses”, all contents of which are incorporated by reference into this application. Technical Field
[0002] The present application relates to the field of electronic technology, and in particular to a pair of glasses and a method for installing the glasses. Background Art
[0003] With the development of electronic technology, wearable devices are becoming increasingly popular. Users frequently use wearable devices in daily life, work, and other situations. For example, glasses are equipped with electronic components to provide more functions. Conventional glasses without electronic components do not need to consider waterproofing. Many glasses with built-in electronic components do not have dedicated waterproof structures, resulting in poor waterproofing. Summary of the Invention
[0004] The embodiments of the present application provide a pair of glasses and a method for installing the glasses, which can improve the waterproof performance of the glasses.
[0005] The present invention provides a pair of glasses, comprising:
[0006] a mirror frame, wherein a first electronic component is provided in the mirror frame;
[0007] a temple, wherein a second electronic component is provided in the temple, the temple is connected to the frame via a rotating member, and the temple can rotate relative to the frame via the rotating member;
[0008] an electrical connector connected to the first electronic component and the second electronic component;
[0009] a first sealing member, disposed in the lens frame and sealing the first electronic component and a portion of the electrical connector together with the lens frame; and
[0010] The second sealing member is arranged in the temple and seals the second electronic component and part of the electrical connector together with the temple. The first sealing member and the second sealing member are located on both sides of the rotating member.
[0011] The present application also provides a method for installing glasses, wherein the glasses include a frame and temples, and the method includes:
[0012] placing one end of the electrical connector into the frame to electrically connect the electrical connector to a first electronic component in the frame;
[0013] Inserting a first sealing member into the mirror frame so as to seal the first sealing member with the electrical connector and the first inner wall of the mirror frame;
[0014] The temple is rotatably connected to the frame via a rotating member, and the other end of the electrical connector is inserted into the temple to electrically connect the electrical connector to a second electronic component in the temple; and
[0015] Put the second sealing member into the temple so as to be sealed with the electrical connector and the second inner wall of the temple.
[0016] In an embodiment of the present application, the frame is rotatably connected to the temple via a rotating member, a first electronic component in the frame and a second electronic component in the temple can be electrically connected via an electrical connector, a first sealing member is sealed to the frame to protect the first electronic component in the frame, and a second sealing member is sealed to the temple to protect the second electronic component in the temple. The first sealing member and the second sealing member can improve the waterproof effect of the glasses while not affecting the rotation effect of the frame and the temple. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] To more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present application. Those skilled in the art can also derive other drawings based on these drawings without inventive effort.
[0018] In order to more completely understand the present application and its beneficial effects, the following description will be given in conjunction with the accompanying drawings, wherein the same drawing numbers represent the same parts in the following description.
[0019] Figure 1 A schematic diagram of the structure of the glasses provided in an embodiment of the present application.
[0020] Figure 2 for Figure 1 The first structural schematic diagram of part of the structure of the glasses shown.
[0021] Figure 3 for Figure 2 A cross-sectional view of part of the structure of the glasses along the AA direction is shown.
[0022] Figure 4 for Figure 3 An enlarged schematic diagram of part B of a partial structure of the glasses shown.
[0023] Figure 5 for Figure 1 A second schematic diagram of the structure of part of the glasses shown.
[0024] Figure 6 for Figure 5 Schematic diagram of the exploded structure of some of the glasses shown.
[0025] Figure 7 for Figure 6 A schematic structural diagram of a first sealing member of a partial structure of the glasses is shown.
[0026] Figure 8 for Figure 5 A schematic cross-sectional view of some of the structures in the glasses shown.
[0027] Figure 9 for Figure 8 Schematic diagram of the structure of part C of the glasses shown.
[0028] Figure 10 for Figure 9 Schematic diagram of the structure of the first sub-seal of part of the glasses shown.
[0029] Figure 11 for Figure 9 Schematic diagram of the structure of the second sub-seal of part of the glasses shown.
[0030] Figure 12 for Figure 1 A schematic structural diagram of the temple body of a partial structure of the glasses shown.
[0031] Figure 13 for Figure 12 An enlarged schematic diagram of portion D in the temple body is shown.
[0032] Figure 14 for Figure 1 A third structural diagram of part of the structure of the glasses is shown.
[0033] Figure 15 for Figure 14 An enlarged schematic diagram of part E in the main body of the temple is shown.
[0034] Figure 16 A flowchart of a method for installing glasses provided in an embodiment of the present application.
[0035] Figures 17 to 24 Schematic diagram of various stages in the installation process of the glasses provided in an embodiment of the present application. DETAILED DESCRIPTION
[0036] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the embodiments described are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application.
[0037] The present application embodiment provides a pair of glasses. Figure 1 , Figure 1 Schematic diagram of the structure of glasses provided in an embodiment of the present application. The glasses 100 include a frame 120 and temples 140. The temples 140 are connected to the frame 120 via a rotating member 124, and the temples 140 can rotate relative to the frame 120 via the rotating member 124. A first electronic component 182 is provided in the frame 120, and a second electronic component 184 is provided in the temples 140. The first electronic component 182 in the frame 120 and the second electronic component 184 in the temples 140 are electrically connected via an electrical connector 186. The first electronic component 182 and the second electronic component 184 can cooperate to realize multiple functions, so that the glasses 100 can serve the user as smart glasses 100. For example, the cooperation of the first electronic component 182 and the second electronic component 184 can enable the glasses 100 to become augmented reality (AR) glasses, virtual reality (VR) glasses, or other smart glasses.
[0038] It is understood that the temples 140 and the frame 120 are capable of relative rotation, and the temples 140 and the frame 120 are rotatably connected via the rotating member 124. To balance the weight of the temples 140 and the frame 120, electronic components are disposed within the temples 140 and the frame 120, and the electronic components disposed within the temples 140 and the frame 120 need to be electrically connected via the electrical connector 186 for coordinated operation. For example, a battery is disposed within the temples 140, and a display circuit is disposed within the frame 120, and the display circuit requires battery power. The temples 140 and the frame 120 need to be capable of relative rotation, and the electrical connector 186 needs to be disposed through the temples 140 and the frame 120, making the electronic components within the temples 140 and the frame 120 susceptible to being affected by external liquids.
[0039] Please combine Figures 2 to 4 , Figure 2 for Figure 1 The first structural diagram of part of the structure of the glasses shown is as follows, Figure 3 for Figure 2 The cross-sectional view of part of the structure of the glasses along the AA direction is shown. Figure 4 for Figure 3 An enlarged schematic diagram of part B of a partial structure of the glasses shown.
[0040] In the related art, the pivoting connection between the frame and the temple lacks a good waterproof structure, resulting in a relatively low waterproof rating for the glasses as a whole. During use, water intrusion can easily damage or malfunction the electronic components within the glasses. The glasses 100 in this embodiment further include a first seal 162 and a second seal 164. The first seal 162 is disposed within the frame 120 and, together with the electrical connector 186 and the frame 120, seals the first electronic component. The second seal 164 is disposed within the temple 140 and, together with the electrical connector 186 and the temple 140, seals the second electronic component. The first seal 162 is sealed to the frame 120 to protect the first electronic component within the frame 120, while the second seal 164 is sealed to the temple 140 to protect the second electronic component within the temple 140. The first seal 162 and the second seal 164 enhance the overall waterproofness of the glasses 100 while maintaining the ability to rotate the frame 120 and the temple 140.
[0041] Please combine Figures 5 to 7 , Figure 5 for Figure 1 The second structural diagram of part of the structure of the glasses shown is as follows, Figure 6 for Figure 5 The exploded diagram of some structures in the glasses shown, Figure 7 for Figure 6 A schematic diagram of the structure of the first sealing member of a portion of the eyeglasses is shown. The frame 120 has a first receiving space 122 and a first inner wall 124 defining the first receiving space 122. A first electronic component is received in the first receiving space 122. An electrical connector 186 is disposed between the first sealing member 162 and the first inner wall 124. The first sealing member 162 and the first inner wall 124 are interference-fitted with each other.
[0042] The first sealing member 162 can be made of a soft waterproof material, such as silicone, rubber, or other soft waterproof material. Along the radial direction of the lens frame 120, the area of the first sealing member 162 is larger than the area formed by the first inner wall 124. That is, when the first sealing member 162 is disposed in the first accommodating space 122, the first sealing member 162 is squeezed by the first inner wall 124, thereby forming an interference fit between the first sealing member 162 and the first inner wall 124. This prevents external liquid from entering the first accommodating space 122 of the lens frame 120, thereby protecting the first electronic component 182 in the first accommodating space 122 from being corroded by external liquid.
[0043] The lens frame 120 may further include a protrusion 126 disposed on the first inner wall 124, which abuts the first sealing member 162. The protrusion 126 on the first inner wall 124 can limit the position of the first sealing member 162, thereby ensuring that the first sealing member 162 does not penetrate too deeply into the lens frame 120, thereby ensuring sufficient space for the first electronic component 182. Furthermore, the protrusion 126 on the first inner wall 124 abuts the first sealing member 162, providing support for the first sealing member 162 and preventing the first sealing member 162 from tilting and affecting its sealing effect.
[0044] The protrusion 126 and the first inner wall 124 may be integrally formed or fixedly connected to the first inner wall 124 by other means. For example, the protrusion 126 may be fixed to the first inner wall 124 by bonding, or fixed to the first inner wall 124 by hot melt, or fixed to the first inner wall 124 by snap fastening, or fixed to the first inner wall 124 by screwing.
[0045] The number and position of the protrusions 126 can be set as needed. For example, there can be one protrusion 126, and the protrusion 126 can be relatively high within the accommodation space, such as abutting from the edge of the first seal 162 to 1 / 3 or 1 / 2 of the height of the first seal 162. There can be multiple protrusions 126, with multiple protrusions 126 positioned at different locations on the first inner wall 124. Multiple protrusions 126 can abut different locations on the first seal 162, such as abutting opposite ends of the first seal 162. This allows the protrusion 126 to be relatively low, facilitating installation of the first electronic component 182 within the frame 120.
[0046] The side of the first sealing member 162 facing the first inner wall 124 may have a first raised structure 1622. The first sealing member 162 includes an outer peripheral edge facing the first inner wall 124. The first raised structure 1622 may be disposed on the outer peripheral edge. The first raised structure 1622 may be disposed all the way around the outer peripheral edge, or may be disposed only in a portion of the outer peripheral edge as needed. The first raised structure 1622 may comprise a single ring of small protrusions 126 surrounding the outer peripheral edge, or may comprise multiple rings of small protrusions 126 spaced apart around the outer peripheral edge. The small protrusions 126 may be located at either end of the outer peripheral edge, i.e., two rings of small protrusions 126 spaced apart in the direction toward the first electronic component 182. The first raised structure 1622 easily deforms under pressure, thereby enhancing the sealing effect between the first sealing member 162 and the first inner wall 124. It is understood that in other embodiments, the side of the first sealing member 162 facing the first inner wall 124 may not have the first raised structure.
[0047] First sealing member 162 further includes a first body. The first body and first protruding structure 1622 can be integrally formed. The first protruding structure 1622 and the first body can be made of the same material, such as by being molded together. The first body and first protruding structure 1622 of first sealing member 162 can also be fixedly connected by other means. The first protruding structure 1622 and the first body can be made of different materials, such as by being molded together using two-color injection molding.
[0048] The glasses may further include an adhesive layer covering the connection between the electrical connector and the first seal. Although the first seal and the first inner wall have an interference fit, the electrical connector is disposed between the first seal and the first inner wall. An adhesive layer may be further provided at the connection between the electrical connector and the first seal to enhance the waterproofing of the connection. It should be noted that the adhesive layer may extend beyond the connection between the electrical connector and the first seal to enhance waterproofing.
[0049] Optionally, the adhesive layer can also cover other locations. For example, the adhesive layer covers the connection between the electrical connector and the first inner wall. Although the first seal and the first inner wall have an interference fit, the electrical connector is disposed between the first seal and the first inner wall. An adhesive layer can also be provided at the connection between the electrical connector and the first inner wall to enhance the waterproofing of the connection between the electrical connector and the first inner wall. It should be noted that the adhesive layer can also extend beyond the connection between the electrical connector and the first inner wall to enhance the waterproofing effect.
[0050] It is understandable that the adhesive layer can not only cover the connection between the electrical connector and the first seal. It can also cover the connection between the electrical connector and the first inner wall. Although the first seal and the first inner wall are interference fit, the electrical connector is arranged between the first seal and the first inner wall, and an adhesive layer can also be provided at the connection between the electrical connector and the first seal, and at the connection between the connector and the first inner wall, to enhance the waterproof effect of the connection between the electrical connector and the first seal. It should be noted that the adhesive layer can also extend beyond the connection between the electrical connector and the first seal, and / or the adhesive layer can also extend beyond the connection between the electrical connector and the first inner wall to enhance the waterproof effect. During the installation process, after the first seal is inserted into the first inner wall, the connection strength between the first seal and the second inner wall can also be strengthened by applying glue or dispensing glue. During use of the glasses, the first seal is not easily separated from the first inner wall, thereby improving the waterproof stability of the first seal.
[0051] Please continue reading Figure 6 and combined Figure 8 and Figure 9 , Figure 8 for Figure 5 A schematic cross-sectional view of some structures in the glasses shown, Figure 9 for Figure 8 A schematic diagram of the structure of section C of a pair of glasses is shown. Temple 140 has a second accommodating space 144 and a second inner wall 146 defining second accommodating space 144. Second electronic component 184 is accommodated in second accommodating space 144. Second seal 164 includes a first subseal 166 and a second subseal 168. Electrical connector 186 is disposed between first subseal 166 and second subseal 168. First subseal 166 and second subseal 168 are interference-fitted with second inner wall 146.
[0052] The second seal 164 can include a first sub-seal 166 and a second sub-seal 168. Both the first sub-seal 166 and the second sub-seal 168 can be made of a soft waterproof material, such as silicone or rubber. Along the radial direction of the temple 140, the total area of the first sub-seal 166 and the second sub-seal 168 is greater than the area formed by the second inner wall 146. That is, when the first sub-seal 166 and the second sub-seal 168 are disposed in the second accommodating space 144, they are squeezed by the second inner wall 146, creating an interference fit between the first sub-seal 166 and the second sub-seal 168 and the second inner wall 146. This prevents external liquid from entering the second accommodating space 144 of the temple 140, protecting the second electronic component 184 within the second accommodating space 144 from corrosion. Both the first sub-seal 166 and the second sub-seal 168 directly abut the second inner wall 146, ensuring a good seal with the second inner wall 146.
[0053] Temple 140 includes a temple body 148 and an inner cover 149. The temple body 148 and the inner cover 149 form a second accommodating space 144. A first subseal 166 and a second subseal 168 are disposed between the temple body 148 and the inner cover 149. The temple body 148 has an opening, and the inner cover 149 can be closed over the opening to seal the second accommodating space 144. During installation, the second electronic component 184 is first installed into the second accommodating space 144 and electrically connected to the electrical connector 186. The inner cover 149 is then closed, sealing the second accommodating space 144 and, together with the temple body 148, compressing the first subseal 166 and the second subseal 168. The inner wall of the inner cover 149 facing the second accommodating space 144 and the inner wall of the temple body 148 together form a second inner wall 146 that encloses the second accommodating space 144.
[0054] The temple 140 also includes a protrusion 147 on which the rotating member 124 is mounted. The protrusion 147 includes a frame 1472 surrounding the rotating member 124. The frame 1472 is connected to the inner cover 149 via a third seal 169. The frame 1472, the second seal 164, the third seal 169, and the inner cover 149 form a sealed third accommodating space 145. The rotating member 124 is mounted on the protrusion 147 of the temple 140. Both ends of the rotating member 124 are also connected to the frame 120, thereby achieving a rotational connection between the temple 140 and the frame 120. The third accommodating space 145 for accommodating the rotating member 124 is formed by the frame 1472 surrounding the rotating member 124, the inner cover 149, and the second seal 164. The frame 1472 is connected to the inner cover 149 via the third seal 169 to seal the third accommodating space 145, thereby providing waterproof protection for the rotating member 124.
[0055] The electrical connector 186 may be disposed between the third sealing member 169 and the frame 1472 , or may be disposed between the third sealing member 169 and the inner cover 149 as needed.
[0056] The third sealing member 169 can be made of waterproof foam, silicone, or plastic. The third sealing member 169 can be bonded to the frame 1472. During installation, the third sealing member 169 and the frame 1472 will not shift after bonding, and it is not easy to cause the third sealing member 169 and the frame 1472 to be misaligned, thereby reducing the waterproof performance.
[0057] The third sealing member 169 can be bonded to the inner cover 149. During the installation process, the third sealing member 169 can be bonded to the inner cover 149 and then covered on the temple body 148. It is not easy to cause the third sealing member 169 and the inner cover 149 to be misaligned, resulting in a decrease in waterproof performance.
[0058] Optionally, the third sealing member 169 can be bonded to the frame 1472 on one side and to the inner cover 149 on the other side. During installation, the third sealing member 169 can be bonded to the frame 1472 first and then to the inner cover 149, or the third sealing member 169 can be bonded to the inner cover 149 first and then to the frame 1472. During installation, the third sealing member 169 will not shift after being bonded to the frame 1472 or the inner cover 149, and will not easily misalign with the frame 1472 or the inner cover 149, thereby reducing the waterproof performance. In addition, during use of the glasses 100, the third sealing member 169 is bonded to the frame 1472 and the inner cover 149 on both sides, preventing the third sealing member 169 from shifting, thereby ensuring the waterproof stability of the third sealing member 169.
[0059] It should be noted that the third sealing member has a sixth protruding structure on the side facing the frame, which is easily deformed when pressed, thereby enhancing the sealing effect between the third sealing member and the frame.
[0060] The side of the third sealing member facing the inner cover has a seventh protrusion structure, which is easily deformed when pressed, thereby enhancing the sealing effect between the third sealing member and the inner cover.
[0061] The third seal may also have a sixth protrusion structure on the side facing the frame, and a seventh protrusion structure on the side facing the inner cover. The sixth and seventh protrusion structures are easily deformed after being compressed, which can enhance the sealing effect of the third seal, the frame and the inner cover.
[0062] Optionally, an eighth protrusion structure is provided on the side of the inner cover facing the third sealing member. The eighth protrusion structure is easily deformed when under pressure, which can enhance the sealing effect between the inner cover and the third sealing member.
[0063] Please continue to combine Figures 10 to 13 , Figure 10 for Figure 9 The schematic diagram of the structure of the first sub-seal of the partial structure of the glasses shown, Figure 11 for Figure 9 The schematic diagram of the structure of the second sub-seal of the partial structure of the glasses shown, Figure 12 for Figure 5 The schematic diagram of the structure of the temple body of the glasses shown in FIG. Figure 13 for Figure 12 An enlarged schematic diagram of portion D of the temple body is shown. The first sub-seal 166 includes a sealing body 1662 and a first clamping portion 1664 provided on the sealing body 1662, and the second inner wall 146 includes a second clamping portion 1462 that cooperates with the first clamping portion 1664. The first clamping portion 1664 of the first sub-seal 166 can be clamped and matched with the second clamping portion 1462 of the second inner wall 146, thereby well restricting the first sub-seal 166 on the second inner wall 146. During the installation process, the first sub-seal 166 and the second inner wall 146 are clamped, which can well place the first sub-seal 166 and can well limit the first sub-seal 166 without the assistance of other structures. During use of the glasses 100, the first sub-seal 166 is not easily separated from the second inner wall 146, thereby improving the waterproof stability of the first sub-seal 166.
[0064] The first clamping portion 1664 may include a rib provided on the sealing body 1662, and the second clamping portion 1462 includes a groove located on the second inner wall 146 and cooperating with the rib. The cooperation between the rib and the groove can effectively restrain the first sub-seal 166, and the arrangement is simple, convenient, and easy to implement. Furthermore, the rib is inserted into the groove, and external liquid needs to enter the second accommodating space 144 through the path between the rib and the two groove sides of the groove. The path between the rib and the two groove sides is long and has multiple directions, which can further enhance the waterproof effect of the first clamping portion 1664 and the second clamping portion 1462.
[0065] Optionally, the first clamping portion may also include a groove provided in the sealing body, and the second clamping portion may include a rib located on the second inner wall and cooperating with the groove. The cooperation between the rib and the groove can effectively restrict the first sub-seal, and the arrangement is simple, convenient, and easy to implement. Furthermore, the rib is engaged with the groove, and external liquid needs to enter the second accommodation space through the path between the rib and the two groove sides of the groove. The path between the rib and the two groove sides of the groove is long and has multiple directions, which can further enhance the waterproof effect of the first clamping portion and the second clamping portion.
[0066] It is understandable that the second sub-seal may also include a second sealing body and a third clamping portion provided on the second sealing body, and the second inner wall includes a fourth clamping portion that cooperates with the third clamping portion. The third clamping portion of the second sub-seal can be clamped and matched with the fourth clamping portion of the second inner wall, thereby well confining the second sub-seal on the second inner wall. During the installation process, the second sub-seal is clamped with the second inner wall, which can well place the second sub-seal and can well limit the second sub-seal without the assistance of other structures. During use of the glasses, the second sub-seal is not easily separated from the second inner wall, thereby improving the waterproof stability of the second sub-seal.
[0067] The third clamping portion may include a second rib provided on the second sealing body, and the fourth clamping portion may include a second groove located on the second inner wall and cooperating with the second rib. The cooperation between the second rib and the second groove can effectively restrain the second sub-seal, and the arrangement is simple, convenient, and easy to implement. Furthermore, the second rib is inserted into the second groove, and external liquid needs to enter the second accommodating space through the path between the second rib and the two groove sides of the second groove. The path between the second rib and the two groove sides of the second groove is long and has multiple directions, which can further enhance the waterproof effect of the third and fourth clamping portions.
[0068] Optionally, the third clamping portion may also include a second groove provided in the second sealing body, and the fourth clamping portion may include a second rib located on the second inner wall and cooperating with the second groove. The cooperation between the second rib and the second groove can well restrict the second sub-seal, and the arrangement is simple, convenient, and easy to implement. Moreover, the second rib is clamped into the second groove, and external liquid needs to enter the second accommodating space through the path between the second rib and the two groove sides of the second groove. The path between the second rib and the two groove sides of the second groove is long and has multiple directions, which can further improve the waterproof effect of the third clamping portion and the fourth clamping portion.
[0069] Optionally, the side of the first subseal facing the second inner wall has a second protrusion. Except for the side facing the second subseal, all other sides of the first subseal may be provided with the second protrusion. The second protrusion easily deforms under pressure, thereby enhancing the sealing effect between the first subseal and the second inner wall. The main body of the first subseal and the second protrusion may be integrally formed or fixedly connected using different materials.
[0070] Optionally, the side of the second subseal facing the second inner wall includes a third protrusion. This third protrusion can be provided on all sides of the second subseal except the side facing the first subseal. This third protrusion easily deforms under pressure, enhancing the sealing effect between the second subseal and the second inner wall. The main body of the second subseal and the third protrusion can be integrally formed or fixedly connected using different materials.
[0071] Optionally, the side of the first sub-sealing member facing the second inner wall has a second protruding structure, and the side of the second sub-sealing member facing the second inner wall has a third protruding structure. The structures of the second and third protruding structures can be found in the above embodiments and will not be repeated here.
[0072] The side of the first sub-sealing member facing the electrical connector may also have a fourth protruding structure, which is easily deformed when pressed, thereby enhancing the sealing effect between the first sub-sealing member and the second sub-sealing member.
[0073] The side of the second sub-sealing member facing the second inner wall may also have a fifth protrusion structure. The fifth protrusion structure is easily deformed when under pressure, which can enhance the sealing effect between the second sub-sealing member and the first sub-sealing member.
[0074] The side of the first subseal facing the electrical connector may have a fourth protrusion, and the side of the second subseal facing the second inner wall may have a fifth protrusion. The fourth and fifth protrusions are easily deformed when compressed, thereby enhancing the sealing effect between the first and second subseals.
[0075] It will be appreciated that the portion of the frame 120 that accommodates the first seal 162 is a complete annular structure, and the first seal 162 can be directly snapped into the frame 120 to seal the first accommodating space 122. The portion of the temple 140 that accommodates the second seal 164 is formed by two joined structures, namely, the temple body 148 and the inner cover 149. During installation, before the inner cover 149 is closed, the temple body 148 has an opening on one side, which may result in poor retention of the first sub-seal 166 and second sub-seal 168 of the second seal 164 by the temple body 148. To this end, a first engaging portion 1664 can be provided on the temple body 148, and a second engaging portion 1462 can be provided on the first sub-seal 166. The cooperation between the first engaging portion 1664, 1462, can enhance retention of the first sub-seal 166. The structures of the first engaging portion 1664 and the second engaging portion 1462 can be found in the description of the above-mentioned embodiment and will not be further elaborated here.
[0076] Optionally, the glasses 100 can further enhance the position restriction of the second sub-seal 168 by engaging the third engaging portion on the temple body 148 with the fourth engaging portion of the second sub-seal 168. The structures of the third engaging portion and the fourth engaging portion can be found in the description of the above embodiment and will not be repeated here.
[0077] The first subseal fits tightly against the first clipping portion of the second inner wall of the temple. The small raised structures on the first subseal deform under pressure, further filling the gap and providing a waterproofing effect between the first subseal and the second inner wall of the temple. The small raised structures on the first and second subseals press against each other, filling the gap and providing a waterproofing effect between the first and second subseals. The raised first clipping portion on the second inner wall of the temple and the small raised structures on the second subseal interfere with each other, compressing and filling the gap and providing a waterproofing effect between the second inner wall of the temple and the second subseal. The third seal adheres to and interferes with the temple and inner cover, filling the gap and providing a waterproofing effect between the temple, the third seal, and the inner cover. The double ring of small raised structures around the first seal deforms under pressure from the first inner wall of the frame, filling the gap between the frame and the first seal and providing a waterproofing effect between the two. Glue is applied to the contact points between the first seal and the electrical connector to further enhance waterproofing.
[0078] The embodiments of this application incorporate flexible waterproof components to fill gaps between structures where water could enter, effectively blocking any path for water to enter. The integrated waterproof structure effectively waterproofs the temples and frames of the glasses, ensuring a high level of waterproofness for the entire pair, improving their quality and durability. The materials are low-cost, assembly is simple, and the design is suitable for mass production.
[0079] See also Figure 14 and Figure 15, Figure 14 for Figure 1 The third structural diagram of part of the structure of the glasses shown is as follows, Figure 15 for Figure 14 An enlarged schematic diagram of part E in the temple body is shown. Alternatively, the temple 140 has a second accommodating space 144 and a second inner wall 146 forming the second accommodating space 144, the second electronic component 184 is accommodated in the second accommodating space 144, the electrical connector 186 is arranged between the second sealing member 164 and the second inner wall 146, and the second sealing member 164 is interference fit with the first inner wall 124.
[0080] The second sealing member 164 can be made of a soft waterproof material, such as silicone, rubber, or the like. Along the radial direction of the lens frame 120, the area of the second sealing member 164 is larger than the area formed by the second inner wall 146. That is, when the second sealing member 164 is disposed in the second accommodating space 144, it is squeezed by the second inner wall 146, resulting in an interference fit between the second sealing member 164 and the second inner wall 146. This prevents external liquid from entering the second accommodating space 144 of the lens frame 120, thereby protecting the second electronic component 184 within the second accommodating space 144 from being corroded by external liquid.
[0081] The connection between the corresponding electrical connector 186 and the second inner wall 146 can be glued or coated to enhance waterproof performance. Similarly, the connection between the corresponding electrical connector 186 and the second sealant 164 can also be glued or coated to enhance waterproof performance. The second inner wall 146 can also be provided with a structure that limits the second sealant 164, such as one or more bumps.
[0082] It is understandable that the electrical connector in the glasses of any of the above embodiments may be a flexible printed circuit board cable or a plurality of wires.
[0083] The present application also provides a method for installing glasses. Figures 16 to 24 , Figure 16 This is a flow chart of a method for installing glasses provided in an embodiment of the present application. Figures 17 to 24 Schematic diagram of various stages of the installation process of glasses provided in an embodiment of the present application. The glasses include a frame 120 and temples 140. The installation method of the glasses may specifically include:
[0084] 201 , place one end of the electrical connector 184 into the lens frame 120 to electrically connect the electrical connector 184 to a first electronic component in the lens frame 120 .
[0085] 202 , snap the first sealing member 162 into the mirror frame 120 so as to be sealed to the electrical connector 184 and the first inner wall of the mirror frame 120 .
[0086] 203 , the temple 140 is rotatably connected to the frame 120 through the rotating member 124 , and the other end of the electrical connector 184 is inserted into the temple 140 to electrically connect the electrical connector 184 to the second electronic component in the temple 140 .
[0087] 204 , place the second sealing member 164 into the temple 140 so as to be sealed to the electrical connector 184 and the second inner wall of the temple 140 .
[0088] The second seal 164 includes a first sub-seal 166 and a second sub-seal 168, and the temple 140 includes a temple body 148 and an inner cover 149. The second seal 164 is placed in the temple 140 so as to be sealed with the electrical connector 184 and the second inner wall of the temple 140.
[0089] Place the first subseal 166 into the temple body 148;
[0090] Place the second sub-seal 168 into the temple body 148 and sandwich the electrical connector 184 with the first sub-seal 166 from both sides;
[0091] The inner cover 149 covers the temple body 148 and presses the first sub-seal 166 and the second sub-seal 168 against the temple body 148 .
[0092] The temple body 140 further includes a protrusion for providing the rotating member 124, and the protrusion includes a frame surrounding the rotating member 124; before the inner cover 149 covers the temple body 148 and squeezes the first sub-seal 166 and the second sub-seal 168 with the temple body 148, the method for assembling the glasses may further include:
[0093] The electrical connector 184 is arranged on one side of the frame, and the third sealing member 169 is bonded to the side of the electrical connector 184 facing away from the frame;
[0094] Covering the temple body 148 with the inner cover 149 may specifically include:
[0095] The inner cover 149 covers the temple body 148 and squeezes the third seal 169 with the frame.
[0096] It can be understood that the installation method of the glasses in the above-mentioned embodiment can form the glasses in any of the above-mentioned embodiments, and the installation method of the glasses can also include other steps to form the glasses in any of the above-mentioned embodiments. The structure of the glasses in the installation method of the glasses in the above-mentioned embodiment can refer to the structure of the glasses in the above-mentioned embodiment, and will not be repeated here.
[0097] The above is a detailed introduction to the glasses and the installation method of the glasses provided in the embodiments of the present application. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method of the present application and its core idea. At the same time, for those skilled in the art, based on the ideas of the present application, there will be changes in the specific implementation methods and application scope. In summary, the content of this specification should not be understood as limiting the present application.
Claims
1. A pair of glasses, characterized in that: include: a mirror frame, wherein a first electronic component is provided in the mirror frame; a temple, wherein a second electronic component is provided in the temple, the temple is connected to the frame via a rotating member, and the temple can rotate relative to the frame via the rotating member; an electrical connector connected to the first electronic component and the second electronic component; a first sealing member disposed in the mirror frame and sealing the first electronic component and a portion of the electrical connector together with the mirror frame; the electrical connector is disposed between the first sealing member and a first inner wall of the mirror frame; the first sealing member and the first inner wall are interference-fitted; as well as A second seal is arranged in the temple and seals the second electronic component and part of the electrical connector with the temple. The electrical connector is arranged between the second seal and the second inner wall of the temple. The second seal is interference fit with the second inner wall. The first seal and the second seal are separate and are located on both sides of the rotating part.
2. The glasses according to claim 1, wherein The mirror frame has a first accommodating space and a first inner wall forming the first accommodating space. The first electronic component is accommodated in the first accommodating space. The electrical connector is arranged between the first sealing component and the first inner wall.
3. The glasses according to claim 2, characterized in that The lens frame further includes a protrusion disposed on the first inner wall, wherein the protrusion abuts against the first sealing component.
4. The glasses according to claim 2, characterized in that The side of the first sealing component facing the first inner wall has a first protrusion structure.
5. The glasses according to claim 2, characterized in that The glasses further include an adhesive layer, the adhesive layer covering the connection between the electrical connector and the first sealing member, and / or The adhesive layer covers the connection between the electrical connector and the first inner wall.
6. The glasses according to claim 1, wherein The temple has a second accommodating space and a second inner wall forming the second accommodating space, the second electronic component is accommodated in the second accommodating space, the second seal includes a first sub-seal and a second sub-seal, and the electrical connector is arranged between the first sub-seal and the second sub-seal.
7. The glasses according to claim 6, characterized in that The first sub-sealing member includes a sealing body and a first clamping portion provided on the sealing body, and the second inner wall includes a second clamping portion matched with the first clamping portion.
8. The glasses according to claim 7, characterized in that The first clamping portion includes a convex rib provided on the sealing body, and the second clamping portion includes a groove located on the second inner wall and cooperating with the convex rib; or The first clamping portion includes a groove provided on the sealing body, and the second clamping portion includes a rib located on the second inner wall and matched with the groove.
9. The glasses according to claim 6, characterized in that The temple comprises a temple body and an inner cover, wherein the temple body and the inner cover form a second accommodating space, and the first sub-seal and the second sub-seal are arranged between the temple body and the inner cover.
10. The glasses according to claim 9, characterized in that The temple also includes a protrusion for setting the rotating part, and the protrusion includes a frame surrounding the rotating part. The frame is connected to the inner cover through a third seal. The frame, the second seal, the third seal and the inner cover form a closed third accommodating space.
11. The glasses according to claim 10, wherein: The electrical connector is provided between the third sealing member and the frame, or The electrical connector is disposed between the third sealing member and the inner cover.
12. The glasses according to claim 10, wherein: The third sealing member is bonded to the frame, and / or The third sealing member is bonded to the inner cover.
13. The glasses according to claim 1, wherein The temple has a second accommodating space and a second inner wall forming the second accommodating space. The second electronic component is accommodated in the second accommodating space. The electrical connector is arranged between the second sealing member and the second inner wall.
14. A method for installing glasses, characterized in that: Applied to the glasses according to any one of claims 1 to 13, the method comprises: placing one end of the electrical connector into the frame to electrically connect the electrical connector to a first electronic component in the frame; Inserting a first sealing member into the mirror frame so as to seal the first sealing member with the electrical connector and the first inner wall of the mirror frame; The temple is rotatably connected to the frame via a rotating member, and the other end of the electrical connector is inserted into the temple to electrically connect the electrical connector to a second electronic component in the temple; and Put the second sealing member into the temple so as to be sealed with the electrical connector and the second inner wall of the temple.
15. The method for installing glasses according to claim 14, wherein: The second seal comprises a first sub-seal and a second sub-seal, and the temple comprises a temple body and an inner cover; and placing the second seal into the temple so as to seal the second seal with the electrical connector and the second inner wall of the temple comprises: placing the first sub-seal into the temple body; Putting the second sub-sealing member into the temple body and sandwiching the electrical connector between the second sub-sealing member and the first sub-sealing member from both sides; The inner cover is placed over the temple body to squeeze the first sub-seal and the second sub-seal together with the temple body.
16. The method for installing glasses according to claim 15, wherein: The temple body further includes a protrusion for setting the rotating member, and the protrusion includes a frame surrounding the rotating member; before the inner cover is covered with the temple body and the first sub-seal and the second sub-seal are squeezed with the temple body, the method further includes: The electrical connector is provided on one side of the frame, and the third sealing member is bonded to the side of the electrical connector facing away from the frame; The step of covering the temple body with the inner cover comprises: The inner cover is placed over the temple body, and the third seal is squeezed together with the frame.
Citation Information
Patent Citations
Folding glasses
CN109324423A
Key module and electronic equipment
CN111668051A