Intelligent glasses frame with reflective structure
By extending the mounting plate on the left and right sides of the frame and embedding reflectors, the problems of insufficient installation space and monotonous appearance of smart glasses are solved, achieving stable installation of the smart module and reflective effect, thus improving the user experience.
Patent Information
- Application Number
- CN202512021662.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-30
- Publication Date
- 2026-02-13
AI Technical Summary
Existing smart glasses have a compact frame structure with limited internal and external installation space, making it difficult to install smart modules properly. Furthermore, their appearance lacks reflective effects and visual appeal, making it difficult to meet the personalized needs of young users.
The mounting plate is extended on both sides of the frame body, and a reflector is embedded between the lens and the mounting plate to increase the installation space. At the same time, the intelligent module is integrated through the one-piece molded mounting plate and V-shaped fixing part to achieve the reflective effect.
It enhances the installation space and reflective appeal of smart glasses, solving the problems of insufficient installation space and monotonous appearance, while maintaining structural stability and wearing comfort.
Smart Images

Figure CN121522908A_ABST
Abstract
Description
[0001] The present application relates to the technical field of glasses, in particular to a smart glasses frame with a light reflection structure. BACKGROUND
[0002] Smart glasses usually add smart modules such as sensors, processors, wireless communication modules, micro display screens, cameras, illuminating lamps, etc. on the basis of conventional glasses to realize smart interaction, health monitoring, information display, shooting, lighting and other extended functions, greatly enriching the use scenarios of glasses and meeting the needs of users for smart wearing experience.
[0003] However, the frame structure design of conventional glasses is compact, and the available installation space inside and outside is very limited. Smart modules often need to have a certain volume to realize their functions. How to reasonably plan the installation position of smart modules without damaging the original structural strength of the frame and affecting the wearing comfort has become a problem to be solved.
[0004] At the same time, the appearance design of existing glasses (including conventional glasses and part of smart glasses) mainly focuses on practicality and simplicity, and there is a lack of visual interest and individuality. In daily use scenarios, when glasses are exposed to natural light, light and other external light, the existing frame can only present its inherent color or texture and cannot produce a light reflection effect, which is difficult to meet the pursuit of young user groups for individualization and trend of glasses appearance, and also lacks the visual attraction and interactive interest brought by the light reflection effect. SUMMARY
[0005] In view of the problems pointed out in the background art, the present application provides a smart glasses frame with a light reflection structure to solve the above technical problems.
[0006] The technical scheme of the present application is as follows: A smart glasses frame with a light reflection structure, comprising a ring-shaped frame body, The frame body is lengthened in the left-right direction, and a lens is fitted and installed in the frame body; The inner side of the outer end of the frame body in the left-right direction is provided with a mounting plate, the lens is located in front of the mounting plate, and a light reflection sheet is provided between the lens and the mounting plate; The rear side of the mounting plate is provided with a mounting box.
[0007] The present application is further provided that the mounting box comprises a V-shaped fixing part, the fixing part is provided with an opening facing forward, the front end of the fixing part is fixedly connected with the mounting plate, the inner and outer sides of the fixing part are respectively connected with a detachable inner cover and an outer cover, and the upper and lower sides of the fixing part are respectively provided with shaft holes connected with the temples.
[0008] The present application is further provided that the light reflection sheet is attached to the rear side of the lens.
[0009] The present invention is further configured such that there are two frame bodies, and the two frame bodies are connected integrally by a bridge of the nose.
[0010] The present invention is further configured such that the fixing part and the frame body are integrally formed.
[0011] The present invention is further configured such that the outer contour of the reflector corresponds to the outer contour of the mounting plate.
[0012] The present invention is further configured such that the inner side of the fixing part is provided with an assembly plate fixedly connected to its inner sidewall.
[0013] The present invention is further configured such that the inner cover and the outer cover are both fixedly connected to the fixing part by screws, and the two sides of the assembly plate are respectively provided with fixing posts, the fixing posts are provided with threaded holes, the inner cover and the outer cover are respectively provided with connecting holes corresponding to the threaded holes, and the screws pass through the connecting holes and are fixedly connected to the threaded holes.
[0014] The present invention is further configured such that the assembly plate is provided with a hollow groove extending through both sides thereon.
[0015] The invention is further configured to include a temple, the front end of which is Y-shaped, and the two ends of the front side of the temple are respectively provided with a rotating shaft that is rotatably connected to the shaft hole.
[0016] By adopting the above technical solution, the beneficial effects of the present invention are as follows: The smart eyeglass frame with a reflective structure provided by this invention has a frame body that extends in the left and right direction and is provided with a mounting plate to increase the installation space of the eyeglass frame, thus facilitating the installation of the smart module.
[0017] In addition, a reflector is placed between the lens and the mounting plate so that when the glasses are exposed to light, the glasses can also reflect light through the reflector, enhancing the reflective appeal of the glasses. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the structure of the glasses of the present invention.
[0020] Figure 2 This is a schematic diagram of the structure of the frame body and mounting box of the present invention. Figure One .
[0021] Figure 3 This is an exploded view of the frame body and mounting box of the present invention. Figure One .
[0022] Figure 4 This is a schematic diagram of the structure of the frame body and mounting box of the present invention. Figure Two .
[0023] Figure 5 This is an exploded view of the frame body and mounting box of the present invention. Figure Two .
[0024] Figure 6 This is a schematic diagram of the structure of the frame body of the present invention.
[0025] The following are the labels in the attached diagram: 1. Frame body; 2. Lens; 3. Mounting plate; 4. Reflector; 5. Fixing part; 6. Inner cover; 7. Outer cover; 8. Temple; 9. Axis hole; 10. Bridge; 11. Assembly plate; 12. Fixing post; 13. Connecting hole; 14. Hollowed-out groove; 15. Rotating shaft. Detailed Implementation
[0026] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0027] For reference as follows Figures 1-6 The present invention will be described as follows: Example: A smart eyeglass frame with a reflective structure, comprising a ring-shaped frame body 1.
[0028] The frame body 1 is elongated in the left and right directions, and a transparent lens 2 is fitted inside the frame body 1 (the lens 2 is made of light-transmitting material to meet the basic vision requirements of glasses). There are two frame bodies 1, arranged symmetrically on the left and right, and the two frame bodies 1 are connected by a nose bridge 10 using a one-piece molding process to ensure the structural strength of the overall structure and avoid loosening problems caused by assembly gaps.
[0029] The frame body 1 is extended in the left and right directions. Compared with conventional eyeglass frames, its extension length in the left and right directions is designed according to the installation requirements, providing a foundation for the installation space of the subsequent mounting plate 3 and smart module mounting components.
[0030] Mounting plate 3 is provided on the inner side of the outer end of the left and right sides of the frame body 1. Mounting plate 3 and frame body 1 are integrally set and are made of the same material as frame body 1, without splicing gaps, which improves structural stability.
[0031] The lens 2 is located on the front side of the mounting plate 3. The rear side of the lens 2 is fitted to the front side of the mounting plate 3. An assembly gap is reserved between the lens 2 and the mounting plate 3, and a reflector 4 is installed in the gap.
[0032] The reflector 4 is made of a sheet material with reflective properties. Its material meets the light reflection requirements under illumination conditions and can achieve light reflection effect in the visible light range.
[0033] The reflector 4 is fixed to the rear side of the lens 2 using a bonding method. This bonding method ensures that there is no relative displacement between the reflector 4 and the lens 2, avoiding any deviation in the reflection angle. The outer contour dimensions of the reflector 4 are precisely matched with the outer contour dimensions of the mounting plate 3, meaning that the edge of the reflector 4 corresponds and is flush with the edge of the mounting plate 3. This ensures that the reflector 4 can perfectly fit the assembly gap between the lens 2 and the mounting plate 3, without affecting the mounting fit of the lens 2 or causing structural interference due to dimensional deviations.
[0034] A reflector 4 is placed between the lens 2 and the mounting plate 3, so that when the glasses are exposed to light, the glasses can also reflect light through the reflector 4, enhancing the reflective interest of the glasses.
[0035] When external light shines on the glasses, the light passes through the lens 2 and acts on the reflector 4. The reflector 4 reflects the light, creating a noticeable reflective effect, which solves the problem of existing glasses lacking reflective function and having insufficient fun. At the same time, the mounting plate 3 provides a stable mounting reference for the reflector 4 and the lens 2. Compared with mounting the reflector directly on the frame body, this structure can effectively avoid the problem of uneven installation of the reflector caused by the curvature of the frame body.
[0036] The intelligent module installation component is the core structure for realizing intelligent functions. It mainly consists of components such as the installation box, the assembly plate 11, and the fixing column 12. The installation box is integrated on the rear side of the installation plate 3 and is used to accommodate and fix the intelligent module.
[0037] In the above technical solution, the frame body 1 is extended in the left and right direction and a mounting plate 3 is provided, which increases the installation space of the eyeglass frame, thus facilitating the installation of the smart module. At the same time, the mounting plate 3 also facilitates the installation of the reflector 4 and the lens 2.
[0038] The mounting box includes a V-shaped fixing part 5, which has a forward-facing opening that corresponds to the rear side of the mounting plate 3. The front end of the fixing part 5 is fixedly connected to the mounting plate 3, and the fixing part 5 and the frame body 1 are integrally formed. The fixing part 5 and the frame body 1 are made of the same material and are integrally machined to ensure the connection strength between the fixing part 5, the frame body 1, and the mounting plate 3, providing a stable mounting carrier for the smart module.
[0039] The inner and outer sides of the fixing part 5 are respectively connected to a detachable inner cover 6 and an outer cover 7, which enables the installation, maintenance and replacement of the intelligent module through the detachable design.
[0040] The upper and lower sides of the fixing part 5 are respectively provided with shaft holes 9 for connecting with the temples 8. The diameter and position of the shaft holes 9 are adapted to the rotating shaft 15 of the temples 8 to realize the rotational connection of the temples 8. This meets the folding requirements when wearing and storing the glasses.
[0041] The front end of the temple 8 is designed with a Y-shaped structure. Two branches at the front end of the Y-shape are respectively equipped with pivots 15. The pivots 15 and temple 8 are manufactured using an integral molding process. The axis of the pivot 15 is perpendicular to the length direction of the temple 8. The shaft holes 9 on the upper and lower sides of the fixing part 5 have diameters that precisely match the diameter of the pivot 15, ensuring a reasonable rotational fit clearance between the pivot 15 and the shaft holes 9. This allows for flexible rotation of the temple 8 while preventing loosening or wobbling during rotation.
[0042] During installation, the pivot 15 on the Y-shaped branch at the front end of the temple 8 is inserted into the shaft holes 9 on the upper and lower sides of the fixing part 5, respectively. The pivot 15 can rotate around its own axis within the shaft hole 9, thereby realizing the rotation of the temple 8 relative to the fixing part 5. That is, the temple 8 is unfolded when the glasses are worn and folded towards the frame body 1 when stored, improving the portability of the glasses. The structural design of the V-shaped fixing part 5 not only provides installation space for the shaft hole 9, but its V-shaped structure can also be adapted to the Y-shaped structure at the front end of the temple 8, avoiding structural interference between the temple and the fixing part 5, inner cover 6, or outer cover 7 when the temple rotates.
[0043] To further improve the ease of installation of the smart module, an assembly plate 11 is fixedly connected to the inner wall of the fixing part 5. The assembly plate 11 is fixed to the inner wall of the fixing part 5 by an integral molding method. The assembly plate 11 is a flat structure, providing a flat mounting surface for the smart module. The smart module can be fixed to the assembly plate 11 by screws, clips, etc.
[0044] The inner cover 6 and outer cover 7 are fixed to the fixing part 5 using screws. Specifically, fixing posts 12 are symmetrically arranged on both sides of the assembly plate 11, integrally formed with the assembly plate 11. Threaded holes are formed axially on the fixing posts 12, with the specifications matching the fixing screws. Connecting holes 13 are formed on the inner cover 6 and outer cover 7 at positions corresponding to the fixing posts 12. These connecting holes 13 are through holes, with a diameter slightly larger than the screw shank diameter but smaller than the screw head diameter. During installation, the screw passes through the connecting hole 13 of the inner cover 6 or outer cover 7 and is threaded into the threaded hole on the fixing post 12, achieving detachable fixing of the inner cover 6, outer cover 7, and fixing part 5. This connection method is reliable and facilitates disassembly and maintenance.
[0045] The assembly plate 11 has a through slot 14 that runs through both sides. The shape and size of the through slot 14 are designed according to the wiring requirements of the smart module and the installation space planning. Its core function is to connect the spaces on both sides of the assembly plate 11. On the one hand, it can be used for the wiring of the smart module and facilitate the wiring connection between modules. On the other hand, it can reduce the overall weight of the assembly plate 11 and improve the ventilation performance inside the installation box, so as to avoid the accumulation of heat generated by the smart module when it is working.
[0046] The frame body 1 is extended in the left and right directions, and with the structural design of the mounting plate 3 and V-shaped fixing part 5, the available installation space of the eyeglass frame is greatly increased, which solves the problems of limited installation space and inconvenient installation of smart modules in existing smart glasses. At the same time, the integrated structural design of the mounting plate 3 and the fixing part 5 realizes the integrated layout of the reflective component and the smart module installation component, eliminating the need for additional installation structure and simplifying the overall assembly process.
[0047] By extending the frame body 1 in the left and right directions, integrating the mounting plate 3, and using the V-shaped fixing part 5, the available installation space of the eyeglass frame is effectively increased, providing ample space for the installation of the smart module and solving the technical problem of limited installation space in existing smart glasses. At the same time, each installation structure adopts an integrated molding or detachable fixing method, ensuring structural stability while simplifying the assembly process.
[0048] By setting a reflector 4 between the lens 2 and the mounting plate 3, the light reflection characteristics of the reflector 4 are used to achieve the reflective effect of the glasses under lighting conditions, solving the problems of existing glasses lacking reflective function and lacking fun; the matching design and fitting and fixing method of the outer contour of the reflector 4 and the mounting plate 3 ensure the stability of the reflective function and do not affect the normal installation and use of the lens 2.
[0049] Mounting plate 3 simultaneously supports the mounting of reflector 4 and lens 2 and connects to fixing part 5. V-shaped fixing part 5 integrates intelligent module installation and temple connection functions. All structural components cooperate with each other and are integrated in layout, eliminating the need for additional redundant structures, effectively controlling the overall volume and weight of the eyeglass frame, and ensuring wearing comfort.
[0050] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A smart eyeglass frame with a reflective structure, comprising a ring-shaped frame body, characterized in that: The frame body is elongated in the left and right direction, and a lens is fitted inside the frame body; A mounting plate is provided on the inner side of the outer end of the frame body in the left and right directions. The lens is located on the front side of the mounting plate, and a reflector is provided between the lens and the mounting plate. A mounting box is provided on the rear side of the mounting plate.
2. The smart eyeglass frame with a reflective structure according to claim 1, characterized in that: The mounting box includes a V-shaped fixing part with a forward opening. The front end of the fixing part is fixedly connected to the mounting plate. The inner and outer sides of the fixing part are respectively connected to a detachable inner cover and an outer cover. The upper and lower sides of the fixing part are respectively provided with shaft holes for connecting to the temples.
3. The smart eyeglass frame with a reflective structure according to claim 1, characterized in that: The reflector is attached to the rear side of the lens.
4. The smart eyeglass frame with a reflective structure according to claim 1, characterized in that: The frame consists of two parts, which are connected as one piece via a bridge of the nose.
5. A smart eyeglass frame with a reflective structure according to claim 1, characterized in that: The fixing part and the frame body are integrated into one piece.
6. A smart eyeglass frame with a reflective structure according to claim 1, characterized in that: The outer contour of the reflector corresponds to the outer contour of the mounting plate.
7. A smart eyeglass frame with a reflective structure according to claim 1, characterized in that: The inner side of the fixing part is provided with an assembly plate that is fixedly connected to its inner sidewall.
8. A smart eyeglass frame with a reflective structure according to claim 7, characterized in that: Both the inner and outer covers are fixedly connected to the fixing part by screws. The two sides of the assembly plate are respectively provided with fixing posts, and the fixing posts are provided with threaded holes. The inner and outer covers are respectively provided with connecting holes corresponding to the threaded holes. The screws pass through the connecting holes and are fixedly connected to the threaded holes.
9. A smart eyeglass frame with a reflective structure according to claim 7, characterized in that: The assembly plate is provided with a hollowed-out groove running through both sides.
10. A smart eyeglass frame with a reflective structure according to claim 2, characterized in that: It also includes temples, the front end of which is Y-shaped, and the two ends of the front side of the temples are respectively provided with pivots that are rotatably connected to the shaft holes.