An eyeglass
Patent Information
- Application Number
- CN202621145075.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-27
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2036-07-27
AI Technical Summary
[0003]现有全框眼镜的镜片固定方式通常采用镜框配合螺丝锁紧的结构,镜框在桩头位置设有安装孔,通过螺丝穿过安装孔将镜框收紧以夹持固定镜片,该方式需要在镜框上开设安装孔,孔位处产生应力集中,为保证结构强度,镜框壁厚无法进一步减小,制约了镜框的薄型化设计,同时螺丝及安装孔外露于镜框表面,破坏了镜框外观的整体性和简洁感,且安装孔在长期使用过程中受反复应力作用容易产生裂纹甚至导致镜框断裂,影响使用寿命和佩戴安全
[0014] By adopting the above technical solution, the locking component is formed by the base plate, two vertical plates on both sides, and the pressure plate to form a receiving cavity with a side opening. During operation, the pin head slides into the space between the base plate and the pressure plate through the side opening, the fixing block passes through the opening on the pressure plate, the pressure plate limits the position from above, and the base plate supports it from below. All components work together to securely lock the locking component to the pin head. The locking component has a compact and small structure, which ensures the reliability of the fixation without affecting the thinness and aesthetics of the glasses.
Smart Images

Figure CN224696177U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a pair of eyeglasses, specifically an aesthetically pleasing pair of eyeglasses. Background Technology
[0002] Eyeglasses are aesthetically pleasing and commonly used vision correction and protection tools, typically consisting of frames, lenses, bridges, and temples. The frames are used to enclose and support the lenses, and their structure directly affects the appearance, weight, and wearing comfort of the glasses. As consumers' demands for aesthetics and lightweight glasses continue to increase, how to reduce frame thickness and simplify assembly processes while ensuring reliable lens fixation has become an important issue in the field of eyeglass structural design.
[0003] Current full-rimmed eyeglasses typically use a frame and screws to secure the lenses. The frame has mounting holes at the screw head, and the screws are passed through these holes to tighten the frame and hold the lenses in place. This method requires mounting holes in the frame, which creates stress concentration at the holes. To ensure structural strength, the frame wall thickness cannot be further reduced, limiting the design of thinner frames. At the same time, the screws and mounting holes are exposed on the frame surface, which disrupts the overall integrity and simplicity of the frame's appearance. Furthermore, the mounting holes are prone to cracking or even frame breakage under repeated stress during long-term use, affecting the lifespan and wearing safety. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an aesthetically pleasing pair of glasses.
[0005] To achieve the above objectives, this utility model provides the following technical solution: It includes a frame, lenses, and temples. The frame includes a first post, a second post, and an elastic deformation portion connecting the first post and the second post. The first post and the second post can separate or close together through the elastic deformation of the elastic deformation portion. The frame has an open state for inserting lenses and a closed state for fixing the lenses. It also includes a locking member with a sliding groove for the closed first post and the second post to slide into. The first post and the second post are fixed in the closed state. The first post and the second post are provided with fixing blocks that are fixed to the temples. The temples abut against the locking member and restrict the sliding of the locking member.
[0006] By adopting the above technical solution, the first and second posts of the frame are connected by an elastic deformation part and have an elastically separable or foldable structure. The locking member is provided with a sliding groove for the closed posts to slide into. During operation, the frame is elastically opened to separate the first and second posts into an open state. The lens is placed in the frame, and the frame is released to allow it to elastically rebound. The first and second posts close and clamp the edge of the lens. Then, the closed first and second posts are slid from the side into the sliding groove of the locking member. The locking member covers the posts to prevent them from opening. The temples are fixed to the first and second posts by fixing blocks, and at the same time, the temples abut against the locking member to prevent them from sliding. There is no need to open screw mounting holes, the frame can be further thinned, the appearance is more concise and integrated, and the assembly operation is more convenient.
[0007] The present invention is further configured such that: the fixing block has a hook, the temple has an elastic part, the elastic part has a groove that engages with the hook, and the groove and the hook constitute the fixing of the temple to the first post and the second post.
[0008] By adopting the above technical solution, the fixing block is provided with a hook, and the elastic part of the temple is provided with a slot. During operation, the temple is pushed in towards the first and second stakes. The elastic part deforms elastically, causing the slot to fit into the hook. After the elastic part rebounds, the slot and the hook are tightly engaged, thus fixing the temple to the stake. The temple and the stake are connected by a snap-fit quick-release connection. Assembly does not require tools. When the snap-fit is in place, a locking feedback can be felt, ensuring reliable fixation and preventing loosening.
[0009] The present invention is further configured such that: the first and second stakes have extension portions extending to both sides and abutting against the locking member, and the temple has a pressing portion extending to the opposite side of the elastic arm, the extension portions and the pressing portions clamping the locking member from both sides.
[0010] By adopting the above technical solution, the first and second posts have extensions extending to both sides and abutting against the locking member, and the temples have pressing parts extending to the opposite side of the elastic part. During operation, one side of the extension abuts against the locking member, and the pressing part abuts against the locking member from the other side. The two sides form opposing clamping forces to firmly lock the locking member to the posts. The locking member is constrained and limited in multiple directions, making the fixation more stable and effectively preventing the locking member from loosening due to daily wear and shaking.
[0011] The present invention is further configured such that: a pressing piece is provided on the elastic part, and pressing the pressing piece causes the elastic part to deform, so that the hook part disengages from the slot.
[0012] By adopting the above technical solution, a pressing piece is provided on the elastic part. When working, pressing the pressing piece causes the elastic part to deform, the hook part disengages from the slot, and the temple separates from the post. The temple can be quickly disassembled without the need for special tools, which is convenient for daily maintenance and replacement.
[0013] The present invention is further configured such that: the locking member includes a base plate, two vertical plates on both sides and a pressure plate. The vertical plates are respectively disposed on both sides of the base plate. The pressure plate is parallel to the base plate and connected to the two vertical plates on both sides. The base plate, the two vertical plates on both sides and the pressure plate together form a receiving cavity with a lateral opening, which constitutes a sliding groove. The first pile head and the second pile head slide into the space between the base plate and the pressure plate from the lateral opening. The pressure plate is provided with an opening for the fixing block to pass through.
[0014] By adopting the above technical solution, the locking component is formed by the base plate, two vertical plates on both sides, and the pressure plate to form a receiving cavity with a side opening. During operation, the pin head slides into the space between the base plate and the pressure plate through the side opening, the fixing block passes through the opening on the pressure plate, the pressure plate limits the position from above, and the base plate supports it from below. All components work together to securely lock the locking component to the pin head. The locking component has a compact and small structure, which ensures the reliability of the fixation without affecting the thinness and aesthetics of the glasses. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This utility model Figure 1 A magnified view of part A in the image; Figure 3 This is an exploded view of the entire utility model; Figure 4 This utility model Figure 3 A magnified view of part B in the image; Figure 5 This is a structural schematic diagram of the locking component of this utility model.
[0016] In the diagram: 1. Frame; 11. First post; 12. Second post; 13. Elastic deformation part; 14. Extension part; 2. Lens; 3. Temple; 31. Fixing block; 311. Hook; 32. Elastic part; 321. Slot; 322. Pressing piece; 33. Pressing part; 4. Locking element; 41. Sliding groove; 42. Film; 43. Vertical piece; 44. Pressing piece; 441. Sliding channel; 442. Opening. Detailed Implementation
[0017] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0018] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model 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, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0019] like Figure 1-5 As shown, this utility model discloses an aesthetically pleasing pair of glasses, including a frame 1, lenses 2, and temples 3. The frame 1 includes a first post 11, a second post 12, and an elastic deformation portion 13 connecting the first post 11 and the second post 12. The first post 11 and the second post 12 can be separated or closed by the elastic deformation of the elastic deformation portion 13. The frame 1 has an open state for inserting the lenses 2 and a closed state for fixing the lenses 2. It also includes a locking member 4, which is provided with a sliding groove 41 for the first post 11 and the second post 12 to slide into after being closed. After the first post 11 and the second post 12 slide into the sliding groove 41, the frame 1 is fixed in the closed state. The first post 11 and the second post 12 are provided with fixing blocks 31 that are fixed to the temples 3. The temples 3 abut against the locking member 4 and restrict the sliding of the locking member 4. The first post 11 and the second post 12 are connected by an elastic deformation part 13 and have an elastically separable or closable structure. The locking member 4 is provided with a sliding groove 41 for the closed post to slide into. During operation, the frame 1 is elastically opened to separate the first post 11 and the second post 12 into an open state. The lens 2 is placed in the frame 1. The frame 1 is released to allow it to elastically rebound. The first post 11 and the second post 12 close and clamp the edge of the lens 2. Then, the closed first post 11 and the second post 12 are slid into the sliding groove 41 of the locking member 4 from the side. The locking member 4 covers the post and restricts its opening. The temple 3 is fixed to the first post 11 and the second post 12 by the fixing block 31. At the same time, the temple 3 abuts against the locking member 4 to restrict its sliding. There is no need to open screw mounting holes. The frame 1 can be further thinned, the appearance is more concise and integrated, and the assembly operation is more convenient.
[0020] The fixing block 31 has a hook 311, and the temple 3 has an elastic part 32. The elastic part 32 has a groove 321 that engages with the hook 311. The groove 321 and the hook 311 constitute the fixation of the temple 3 to the first post 11 and the second post 12. The fixing block 31 has a hook 311, and the elastic part 32 of the temple 3 has a groove 321. When working, the temple 3 is pushed into the direction of the first post 11 and the second post 12. The elastic part 32 deforms elastically, causing the groove 321 to fit into the hook 311. After the elastic part 32 rebounds, the groove 321 and the hook 311 are tightly engaged, completing the fixation of the temple 3 to the post. The temple 3 and the post achieve a quick-connect connection. Assembly does not require tools. When the connection is in place, a locking feedback can be felt. The fixation is reliable and not easy to loosen.
[0021] The first post 11 and the second post 12 have extension portions 14 extending to both sides and abutting against the locking member 4. The temple 3 has a pressing portion 33 extending to the opposite side of the elastic portion 32. The extension portions 14 and the pressing portions 33 clamp the locking member 4 from both sides. When working, one side of the extension portion 14 abuts against the locking member 4, and the pressing portion 33 abuts against the locking member 4 from the other side. The opposing clamping forces formed on both sides firmly lock the locking member 4 to the post. The locking member 4 is constrained and limited in multiple directions, making the fixation more stable and effectively preventing the locking member 4 from loosening due to daily wear.
[0022] A pressing piece 322 is provided on the elastic part 32. Pressing the pressing piece 322 causes the elastic part 32 to deform, causing the hook 311 to disengage from the slot 321. The pressing piece 322 is provided on the elastic part 32. During operation, pressing the pressing piece 322 causes the elastic part 32 to deform, and the hook 311 disengages from the slot 321, separating the temple 3 from the post. The temple 3 can be quickly disassembled without the need for special tools, which is convenient for daily maintenance and replacement.
[0023] The locking component 4 includes a base plate 42, two vertical plates 43 on both sides, and a pressure plate 44. The vertical plates 43 are respectively disposed on both sides of the base plate 42. The pressure plate 44 is parallel to the base plate 42 and connected to the two vertical plates 43 on both sides. The base plate 42, the two vertical plates 43 on both sides, and the pressure plate 44 together form a receiving cavity with a lateral opening, constituting a sliding groove 41. The first pile head 11 and the second pile head 12 slide into the space between the base plate 42 and the pressure plate 44 through the lateral opening. The pressure plate 44 is provided with an opening 44 for the fixing block 31 to pass through. 2. The locking component 4 is formed by the base plate 42, the two vertical plates 43 on both sides and the pressure plate 44 to form a receiving cavity with a side opening. During operation, the stake head slides into the space between the base plate 42 and the pressure plate 44 through the side opening. The fixing block 31 passes through the opening 442 on the pressure plate 44. The pressure plate 44 limits the position from above, and the base plate 42 supports it from below. All components work together to securely lock the locking component 4 to the stake head. The locking component 4 has a compact and small structure, which ensures the reliability of the fixation without affecting the thinness and beauty of the glasses.
[0024] Working process: During assembly, first, the frame 1 is elastically opened, separating the first pin 11 and the second pin 12 into an open state, and the lens 2 is placed inside the frame 1; the frame 1 is then released to allow it to elastically rebound, and the first pin 11 and the second pin 12 close together to clamp the edge of the lens 2; then, the closed first pin 11 and the second pin 12 are slid into the sliding groove 41 from the side opening of the locking member 4, the fixing block 31 passes through the opening 442 of the pressure plate 44, and the locking member 4 covers the first pin 11 and the second pin 12. Head 12 and restrict its opening; then push temple 3 towards the first post 11 and the second post 12, the slot 321 of elastic part 32 engages and locks with the hook 311 of fixing block 31, at the same time temple 3 abuts against locking member 4 to form a limit, extension part 14 and pressing part 33 clamp locking member 4 from both sides to complete assembly; when disassembling, press the pressing piece 322 on elastic part 32 to make hook 311 disengage from slot 321, and temple 3 can be removed, and the lens 2 can be removed by reversing the operation.
Claims
1. A pair of eyeglasses, comprising a frame (1), lenses (2), and temples (3), characterized in that: The frame (1) includes a first post (11), a second post (12), and an elastic deformation part (13) connecting the first post (11) and the second post (12). The first post (11) and the second post (12) can be separated or closed by the elastic deformation of the elastic deformation part (13). The frame (1) has an open state for inserting the lens (2) and a closed state for fixing the lens (2). It also includes a locking member (4), which is provided with a sliding groove (41) for the closed first post (11) and the second post (12) to slide into. After sliding into the sliding groove (41), the frame (1) is fixed in the folded state; the first post (11) and the second post (12) are provided with fixing blocks (31) that are fixed to the temple (3), the temple (3) abuts against the locking member (4) and restricts the sliding of the locking member (4), the fixing block (31) has a hook (311), the temple (3) is provided with an elastic part (32), the elastic part (32) is provided with a slot (321) that engages with the hook (311), the slot (321) and the hook (311) constitute the fixation of the temple (3) to the first post (11) and the second post (12).
2. The eyeglasses according to claim 1, characterized in that: The first post (11) and the second post (12) have extensions (14) extending to both sides and abutting against the locking member (4). The temple (3) has a pressing part (33) extending to the opposite side of the elastic part (32). The extensions (14) and the pressing parts (33) clamp the locking member (4) from both sides.
3. The eyeglasses according to claim 1, characterized in that: The elastic part (32) is provided with a pressing piece (322). Pressing the pressing piece (322) causes the elastic part (32) to deform, so that the hook (311) disengages from the slot (321).
4. The eyeglasses according to claim 1, characterized in that: The locking member (4) includes a base plate (42), two vertical plates (43) on both sides and a pressure plate (44). The vertical plates (43) are respectively disposed on both sides of the base plate (42). The pressure plate (44) is parallel to the base plate (42) and connected to the two vertical plates (43). The base plate (42), the two vertical plates (43) on both sides and the pressure plate (44) enclose a receiving cavity with a lateral opening to form a sliding groove (41). The first pile head (11) and the second pile head (12) slide into the space between the base plate (42) and the pressure plate (44) from the lateral opening. The pressure plate (44) is provided with an opening (442) for the fixing block (31) to pass through.