Glasses with adjustable anti-falling rope body
By setting up grooves, limiters and adsorption structures on the temples of glasses, and utilizing the magnetic attraction of adsorption magnets and limit magnets, the problems of inconvenient adjustment and storage of traditional anti-falling ropes are solved, and flexible adjustment and stable fixation of the rope are achieved, thereby improving the user experience.
Patent Information
- Application Number
- CN202521682497.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-08
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2035-08-08
AI Technical Summary
Traditional anti-fall ropes cannot be quickly and accurately adjusted to the appropriate tightness, causing strong discomfort to users and making storage inconvenient, affecting ease of use and stability.
It adopts an adjustable anti-fall rope design. By setting a groove, limiter and adsorption structure on the temple, and utilizing the magnetic attraction of adsorption magnets and limit magnets, the rope can be flexibly adjusted and stably fixed. Combined with the use of flexible materials and hollow silicone tubes, the comfort and stability of the rope are ensured.
It realizes flexible adjustment of the rope, improves wearing adaptability and comfort, enhances structural stability and storage convenience, reduces rope shaking and wear, and improves reliability and convenience of use.
Smart Images

Figure CN223347145U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glasses structures, in particular to a pair of glasses with an adjustable anti-falling rope body. Background Art
[0002] With the popularity of sports, fitness and outdoor activities, glasses are used more and more frequently as a tool for vision correction or protection in scenarios such as running, mountain climbing, and ball sports. In order to prevent the glasses from accidentally falling off due to limb shaking, bumps or collisions during exercise, the existing technology usually installs an anti-falling rope at the end of the temple of the glasses, and the rope is hung around the head or neck to achieve auxiliary fixation.
[0003] However, traditional anti-drop ropes have many defects in actual use: first, the length adjustment of the anti-drop rope mostly depends on the elastic expansion and contraction of its own material, and can only adapt to the user's head size within a limited range. When the user's head circumference is large, the rope is in a tight state for a long time, which can easily cause a sense of pressure on the head and cause discomfort; second, for different users with large differences in head circumference, traditional anti-drop ropes are difficult to adjust to the appropriate tightness quickly and accurately, and the operation process is cumbersome, affecting the convenience of use; third, when the anti-drop rope is not in use, the rope is usually hung directly at the end of the temple, which not only affects the overall neatness of the glasses, but also easily gets hooked on other items, making storage inconvenient and increasing the trouble during carrying.
[0004] In addition, the connection structure between the traditional anti-fall rope and the temple is not stable enough, and the rope is prone to falling off the temple after long-term use. The rope itself lacks effective limiting and storage structure, and may interfere with vision due to shaking during exercise, further reducing the user experience. Utility Model Content
[0005] In response to the shortcomings of the existing technology, the utility model provides a pair of glasses with an adjustable anti-fall rope, which solves the problems that the anti-fall rope of traditional anti-fall glasses only relies on the elasticity of its own material to adapt to the user's head, and the tight anti-fall rope easily causes discomfort to users with larger head circumferences, is cumbersome to operate, and is inconvenient to store.
[0006] To achieve the above-mentioned purpose, the utility model provides a pair of glasses with an adjustable anti-falling rope, comprising a frame and two temples movably arranged on the frame, and also comprising two ropes, wherein the two ropes are movably arranged on the two temples respectively and a positioning piece is connected between the ropes and the ends of the temples for preventing the ropes from falling off the temples, a groove for accommodating the rope is provided on the outer wall of the temple along the length direction of the temple, a limiting piece is provided on the temple for adsorbing and limiting the rope when the rope is placed in the groove, the rope is made of a flexible material and is provided with an adsorption structure for adsorbing and connecting the two ropes when the two ropes are in contact with each other.
[0007] The benefits of adopting the above technical solution are: in the above technology, the rope body is movably arranged on the temple, which can be flexibly adjusted according to the user's head circumference, thereby improving the wearing adaptability and avoiding the discomfort caused by tightness, and the positioning piece is used to prevent the rope body from falling off the temple to enhance the stability of the structure, and the groove provides storage space for the rope body, reducing the problem of hooking when carrying and improving the convenience of storage. The limiting piece is used to achieve adsorption and limitation when the rope body is placed in the groove, ensuring a stable storage state and preventing the rope body from falling off at will; the setting of the above-mentioned adsorption structure enables the two rope bodies to adsorb each other when they are fitted together, thereby enhancing the overall fixing effect when worn and improving the reliability of use.
[0008] The utility model is further provided with: the adsorption structure includes a plurality of adsorption magnets, and the plurality of adsorption magnets are separately arranged and embedded in two rope bodies. The arrangement direction of the plurality of adsorption magnets in the rope body is arranged in accordance with the length direction of the rope body, and every two adjacent adsorption magnets in each rope body are arranged with a gap.
[0009] The benefits of adopting the above technical solution are: in the above technology, the adsorption magnets are separately embedded in the rope body, ensuring that the two rope bodies are firmly adsorbed when they are fitted together, thereby enhancing the connection reliability; the arrangement direction of the adsorption magnets is consistent with the length of the rope body, adapting to the fitting requirements of different positions of the rope body, and improving the adsorption flexibility; at the same time, the gaps between adjacent adsorption magnets are coordinated, so that the rope body maintains good flexibility, avoiding the bending performance of the rope body being affected by the magnet arrangement, and ensuring wearing comfort.
[0010] The utility model is further configured as follows: a hollow silicone tube is embedded in the rope body, the length of the hollow silicone tube is set to be consistent with the length of the rope body, and a plurality of the adsorption magnets are built into the hollow silicone tube.
[0011] The benefits of adopting the above technical solution are: in the above technology, the hollow silicone tube is embedded in the rope body and has the same length as the rope body, providing a stable accommodation space for the adsorption magnet, preventing the magnet from shifting and affecting the adsorption effect; and the silicone tube is flexible and does not affect the overall softness of the rope body, ensuring comfort when wearing. At the same time, the silicone tube effectively protects the magnet, reducing damage to the magnet caused by collision during movement and extending its service life.
[0012] The utility model is further provided with: the limiting part includes a plurality of limiting magnets, and the plurality of limiting magnets are separately arranged and embedded in the two temples. The arrangement direction of the plurality of limiting magnets in the temples is arranged in accordance with the length direction of the temples. When the rope body is placed in the corresponding receiving groove, the adsorption magnet inside the rope body is magnetically matched with the adjacent limiting magnets.
[0013] The benefits of adopting the above technical solution are: in the above technology, the limiting magnet is embedded in the temple and cooperates with the adsorption magnet in the rope body to enhance the limiting effect when the rope body is placed in the slot, ensuring the stability of the storage state. At the same time, the arrangement direction of the limiting magnet is consistent with the length of the temple, adapting to the storage requirements of the rope body at different positions in the slot, and improving the limiting flexibility; the above technology improves the portability of operation through magnetic attraction, facilitates the rapid placement or removal of the rope body into the slot, and improves the convenience of use.
[0014] The utility model is further provided with: a positioning hole is opened on the outer wall of the end of the temple, and the positioning piece includes a positioning ball rotatably set in the positioning hole, the diameter of the positioning ball opening is smaller than the diameter of the positioning ball, and the opening of the positioning hole is connected to a positioning groove formed on the outer wall of the temple, and the positioning ball is connected to the end of the rope body.
[0015] The benefits of adopting the above technical solution are: the positioning hole and the positioning ball in the above technology cooperate to realize the rotational connection between the rope body and the end of the temple, so that the rope body can flexibly adjust the angle to adapt to different wearing postures. At the same time, the diameter of the positioning ball opening is smaller than the diameter of the positioning ball, which effectively prevents the positioning ball from falling out of the positioning hole and ensures the stability of the connection between the rope body and the temple. The above technology provides space for the rope body to move through the positioning groove, avoids obstruction when the rope body rotates, and improves the flexibility of use.
[0016] The utility model is further provided with: the containing groove is communicated with the positioning groove.
[0017] The benefits of adopting the above technical solution are: in the above technology, the receiving groove is connected to the positioning groove, which makes the transition of the rope body from the positioning groove to the receiving groove smoother, facilitates the rope body to be quickly placed in the receiving groove to complete storage, improves the convenience of the storage operation, reduces the obstruction of the rope body when switching between the active and storage states, ensures the continuity of the rope body movement, and enhances the user experience.
[0018] The utility model is further provided with: the bottom wall of the end of the containing groove and the outer wall of the opening of the positioning groove are connected with each other in a smooth arc surface and form a guiding surface.
[0019] The benefits of adopting the above technical solution are: the guide surface formed by the smooth arc surface in the above technology plays a guiding role when the rope body is placed in the groove, making it easier for the rope body to slide into the groove, reducing the difficulty of the storage operation. At the same time, the guide surface reduces the friction between the rope body and the groove and positioning groove, avoiding wear of the rope body due to frequent operation and extending the service life.
[0020] The utility model is further provided with a groove between the end wall of the temple and the outer wall of the temple for the rope to swing to the rear side of the temple so that the rope and the temple are in the same horizontal line, and the groove is connected to the positioning groove.
[0021] The benefits of adopting the above technical solution are: the slots in the above technology are connected to the positioning slots, providing space for the rope body to swing toward the back of the temple, so that the rope body can be on the same horizontal line as the temple, adapting to different wearing needs and improving flexibility of use. The slot design does not affect the normal storage and movement of the rope body, ensuring the versatility of the structure and enhancing the applicability of the product.
[0022] The utility model is further configured that: the rope body is configured in a flat or cylindrical shape.
[0023] The benefits of adopting the above technical solution are: the shape of the rope body can be adjusted according to actual production and usage requirements, that is, when the rope body is produced and designed to be flat, the contact area between the rope body and the head can be increased, thereby improving wearing stability and reducing local pressure; or the rope body can be produced and designed to be cylindrical to reduce the chance of the rope body getting entangled with the hair and improve wearing comfort; the above two shape designs can adapt to different usage scenarios and user preferences, thereby enhancing the diversity and applicability of the product.
[0024] The present invention is further provided with: the shape of the receiving groove is adapted to the shape of the rope body.
[0025] The benefits of adopting the above technical solution are: the shape of the groove in the above technology is adapted to the shape of the rope body, so that the rope body fits tightly when placed in the groove, improving the stability of the storage state, preventing the rope body from shaking in the groove, and reducing the storage space occupied by the adapted shape, making the glasses more concise as a whole and improving the convenience of carrying. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 A three-dimensional view of the rope body of the present invention in the stored state;
[0027] Figure 2 A three-dimensional view of the rope body of the utility model in use;
[0028] Figure 3 This is a three-dimensional view of the rope body of the utility model in the backward flip state;
[0029] Figure 4 A three-dimensional view of the rope of the present invention in an externally turned state;
[0030] Figure 5 This is a side sectional view of a portion of the rope body in the utility model;
[0031] Figure 6 It is a radial cross-sectional view of the rope body in the utility model. DETAILED DESCRIPTION
[0032] The utility model provides a pair of glasses with an adjustable anti-falling rope 2, comprising a frame 1 and two temples 11 movably arranged on the frame 1, and also comprising two ropes 2, the two ropes 2 being movably arranged on the two temples 11, and a positioning member for preventing the rope 2 from falling off the temple 11 is connected between the ropes 2 and the ends of the temples 11, a groove 12 for accommodating the rope 2 is opened on the outer wall of the temple 11 along the length direction of the temple 11, and a limiting member for adsorbing and limiting the rope 2 when the rope 2 is placed in the groove 12 is provided on the temple 11, and the rope 2 is made of a flexible material and has a plurality of ropes 2 on the ends of the temples 11. An adsorption structure is provided for making the two rope bodies 2 adsorb and connect to each other when the two rope bodies 2 are attached to each other. The adsorption structure includes a plurality of adsorption magnets 21. The plurality of adsorption magnets 21 are separately provided and embedded in the two rope bodies 2. The arrangement direction of the plurality of adsorption magnets 21 in the rope body 2 is consistent with the length direction of the rope body 2. Every two adjacent adsorption magnets 21 in each rope body 2 are provided with clearance fit. A hollow silicone tube 22 is embedded in the rope body 2. The length of the hollow silicone tube 22 is consistent with the length of the rope body 2. The plurality of adsorption magnets 21 are built into the hollow silicone tube 22. The limiting The positioning member includes a plurality of limiting magnets 13, and the plurality of limiting magnets 13 are separately provided and embedded in the two temples 11. The arrangement direction of the plurality of limiting magnets 13 in the temples 11 is consistent with the length direction of the temples 11. When the rope body 2 is placed in the corresponding receiving groove 12, the adsorption magnet 21 inside the rope body 2 is magnetically matched with the adjacent limiting magnets 13. A positioning hole 14 is provided on the outer wall of the end of the temple 11. The positioning member includes a positioning ball 23 rotatably set in the positioning hole 14. The diameter of the opening of the positioning ball 23 is smaller than the diameter of the positioning ball 23 and the opening of the positioning hole 14 is connected to the temple 11. A positioning groove 15 is formed on the outer wall, the positioning ball 23 is connected to the end of the rope body 2, the receiving groove 12 is communicated with the positioning groove 15, the bottom wall of the end of the receiving groove 12 and the outer wall of the opening of the positioning groove 15 are connected in a smooth arc surface and a guide surface 16 is formed, and a groove 17 is provided between the end wall of the temple 11 and the outer wall of the end of the temple 11 for the rope body 2 to swing to the rear side of the temple 11 so that the rope body 2 and the temple 11 are in the same horizontal line. The groove 17 is communicated with the positioning groove 15, the shape of the rope body 2 is flat or cylindrical, and the shape of the receiving groove 12 is adapted to the shape of the rope body 2.
[0033] In order to improve the applicability and production adaptability of the above technology, the location of the groove can be independently selected according to actual usage requirements and production requirements. That is, the location of the groove in the above content is on the outer wall of the temple. In fact, the groove can be designed and produced to the inner wall of the temple, the top wall of the temple, or the bottom wall of the temple according to needs, so that the rope body can be correspondingly adsorbed on the inner wall of the temple, the bottom wall of the temple, or the bottom wall of the temple, thereby improving the applicability and adaptability of this technology.
[0034] In order to improve the applicability and production adaptability of the above technology, the material of the hollow silicone tube can be replaced according to actual needs, that is, the hollow silicone tube can be replaced with a hollow PE tube or a hollow tube made of other materials, so as to adapt to different production scenarios and different application scenarios, thereby improving adaptability; the hollow silicone tube described in the above technology is the optimal preparation solution, and the material can be replaced according to needs.
[0035] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which shall fall within the scope of the present invention to be protected. The scope of protection claimed by the present invention is defined by the attached claims and their equivalents.
Claims
1. A pair of glasses with an adjustable anti-drop cord, comprising a frame and two temples movably mounted on the frame, characterized in that: The invention also includes two ropes, which are movably arranged on the two temples respectively, and a positioning piece is connected between the ropes and the ends of the temples to prevent the ropes from falling off the temples. A groove for accommodating the ropes is opened on the outer wall of the temple along the length direction of the temple, and a limiting piece is provided on the temple for adsorbing and limiting the ropes when the ropes are placed in the grooves. The ropes are made of flexible material and are provided with an adsorption structure for adsorbing and connecting the two ropes when the two ropes are in contact with each other.
2. The glasses with an adjustable anti-falling cord according to claim 1, characterized in that: The adsorption structure includes a plurality of adsorption magnets, which are separately arranged and embedded in two rope bodies. The arrangement direction of the plurality of adsorption magnets in the rope body is consistent with the length direction of the rope body, and every two adjacent adsorption magnets in each rope body are arranged with a gap.
3. The glasses with an adjustable anti-fall cord according to claim 2, characterized in that: A hollow silicone tube is embedded in the rope body, the length of the hollow silicone tube is set to be consistent with the length of the rope body, and a plurality of the adsorption magnets are built into the hollow silicone tube.
4. The glasses with an adjustable anti-fall cord according to claim 2, characterized in that: The limiting part includes a plurality of limiting magnets, and the plurality of limiting magnets are separately arranged and embedded in the two temples. The arrangement direction of the plurality of limiting magnets in the temples is consistent with the length direction of the temples. When the rope body is placed in the corresponding receiving groove, the adsorption magnet inside the rope body is magnetically matched with the adjacent limiting magnets.
5. The glasses with an adjustable anti-falling cord according to claim 1, characterized in that: A positioning hole is provided on the outer wall of the end of the temple, and the positioning piece includes a positioning ball rotatably set in the positioning hole. The diameter of the positioning ball opening is smaller than the diameter of the positioning ball, and the opening of the positioning hole is connected to a positioning groove formed on the outer wall of the temple. The positioning ball is connected to the end of the rope body.
6. The glasses with an adjustable anti-falling cord according to claim 5, characterized in that: The containing groove is communicated with the positioning groove.
7. The glasses with an adjustable anti-falling cord according to claim 6, characterized in that: The bottom wall of the end of the containing groove and the outer wall of the opening of the positioning groove are connected in a smooth arc surface and form a guiding surface.
8. The glasses with an adjustable anti-falling cord according to claim 7, characterized in that: A slot is provided between the end wall of the temple and the outer wall of the temple for the rope to swing to the rear side of the temple so that the rope and the temple are in the same horizontal line. The slot is connected to the positioning slot.
9. The glasses with an adjustable anti-falling cord according to claim 1, characterized in that: The rope body is in a flat or cylindrical shape.
10. The glasses with an adjustable anti-falling cord according to claim 9, characterized in that: The shape of the receiving groove is adapted to the shape of the rope body.