Anti-slip glasses with ear push adjusting function

By combining the design of the ring and the rotating ring, along with the meshing of the magnet and the locking teeth, the problem of difficult and easily damaged silicone ear pushers during installation is solved, achieving stable installation and convenient replacement of ear pushers, and extending the service life of anti-slip glasses.

CN223977454UActive Publication Date: 2026-03-06WENZHOU SANMA GLASSES CO LTD
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Patent Information

Application Number
CN202520584495.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-03-06
Estimated Expiration
2035-03-31

AI Technical Summary

Technical Problem

Existing silicone ear pushers are difficult to install and adjust and are prone to damaging the temples. After repeated use, their toughness decreases, leading to reduced stability.

Method used

The design incorporates components such as a ring, rotating ring, sliding groove, magnet, and locking teeth. Through the bifurcated structure of the ring and the adjustment of the rotating ring, combined with the meshing of the magnet and locking teeth, stable installation and convenient replacement of the ear pads are achieved.

Benefits of technology

It improves the stability and ease of installation of the ear pushers, reduces the risk of damage to the temples, and extends their service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glasses, and discloses a pair of anti-slip glasses with an ear push adjusting function, which comprises a glasses frame, a mounting seat arranged outside the glasses frame, a connecting component arranged on the mounting seat and used for ear push mounting, the connecting component comprises a ring sleeve arranged at the top of the mounting seat, and a rotating ring arranged outside the ring sleeve, a sliding groove is formed in the bottom of the mounting base, a magnet and a plurality of cavities are arranged on the inner wall of the sliding groove, and springs and clamping teeth are arranged in the multiple cavities; a lug support is arranged below the mounting base, a sliding block is arranged at the top of the lug support, and a magnetic plate and a rack are arranged at the top of the sliding block. The hole diameter of the forked ring sleeve can be adjusted, the tightness can be adjusted during installation or movement, the operation efficiency is improved, the ring sleeve is shrunk through the rotating ring, the installation stability is guaranteed, meanwhile, the lug support and the installation base are installed through the sliding structure, and the lug support is convenient to assemble, disassemble and replace.
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Description

Technical Field

[0001] This utility model relates to the field of eyeglasses technology, specifically to a non-slip eyeglass with ear-push adjustment function. Background Technology

[0002] Eyeglass temple pushers are auxiliary accessories that are installed on the temples of eyeglasses. They are primarily used to enhance the stability and comfort of the glasses. During exercise or head movements, ordinary eyeglasses can easily slip off because the temples don't fit snugly enough against the ears. Ear pushers effectively prevent glasses from slipping by increasing the contact area and fit between the temples and the head, making them especially suitable for sports. Furthermore, ear pushers evenly distribute the weight of the glasses, reducing pressure on the ears and improving wearing comfort.

[0003] Since ear pushers are generally made of silicone and are fitted onto the end of the temple, the opening of the ear pusher is often smaller than the size of the temple to ensure a tight fit. This makes installation or adjustment more difficult and can easily damage the temple. Furthermore, the ear pusher's toughness gradually decreases after repeated adjustments, making it easy to lose elasticity and causing the installation to become loose. As a result, the ear pusher has a shorter lifespan. Utility Model Content

[0004] The purpose of this invention is to provide anti-slip glasses with ear push adjustment function to solve the problems mentioned in the background art, such as the silicone ear push being relatively tight after installation, making installation and movement difficult and easily damaging the temples, and the decrease in toughness after repeated movements leading to loosening and affecting the stability of the ear push.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a non-slip eyeglass with ear-push adjustment function, including an eyeglass frame, an external mounting base, a connecting component for ear-push installation on the mounting base, the connecting component including a ring sleeve on the top of the mounting base, a rotating ring on the outside of the ring sleeve, a sliding groove at the bottom of the mounting base, a magnet and multiple cavities on the inner wall of the sliding groove, and springs and locking teeth inside each of the multiple cavities;

[0006] An ear rest is provided below the mounting base, and a slider is provided on the top of the ear rest. A magnetic plate and a rack are provided on the top of the slider.

[0007] Preferably, the ring sleeve is integrally formed with the mounting base, and the ring sleeve is fitted outside the temple of the eyeglass frame and slidably connected to the temple. The rotating ring sleeve is fitted outside the ring sleeve and rotatably connected to the ring sleeve, and has a damping feel when rotating.

[0008] Preferably, one end of the ring is divided into multiple forks, and the inner wall of the ring is inclined. The outer side of the ring is provided with a threaded layer that corresponds to the texture of the inner wall of the rotating ring. When the rotating ring rotates, it can move outside the ring and squeeze one end of the ring by rotating the ring.

[0009] Preferably, the magnet is embedded in the inner wall of the slide groove, the array of cavities is distributed in the inner wall of the slide groove, one end of the locking tooth is located in the cavity and is slidably connected to the inner wall of the cavity, and both ends of the spring are respectively connected to the inner wall of the cavity and the locking tooth.

[0010] Preferably, the top of the ear rest is connected to the slider by bolts, the slider can extend into the groove and slide in contact with the inner wall of the groove, and the magnetic plate and the rack are both connected to the top of the slider by bolts.

[0011] Preferably, after the slider is embedded in the groove, the rack abuts and engages with the teeth extending from the cavity, while the magnet on the inner wall of the groove is magnetically connected to the magnetic plate on the top of the slider.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] 1. The ring above the mounting base can be fitted onto the outside of the temple of the eyeglass frame. One end of the ring has a forked structure, which allows it to expand outward when installed with the temple to accommodate temples of different sizes. By rotating the ring, the threaded grooves rotate with the ring, and the tilt angle of the inner wall of the ring compresses and contracts the forked area of ​​the ring, tightening the temple and improving the stability of the mounting base and temple installation. The tightness of the ring can also be adjusted, making it easy to operate during installation and movement.

[0014] 2. Furthermore, the earcups are slidably installed on the mounting base via a slider. The magnets and teeth in the groove engage with the slider of the earcup and magnetically attract it to connect the earcup to the mounting base. The sliding connection allows for quick installation and removal of the earcup from the mounting base, and facilitates individual replacement of the earcup if it is damaged, thus improving the convenience of installation and removal.

[0015] This utility model features a forked ring sleeve with adjustable aperture and adjustable tightness during installation or movement, improving operational efficiency. The rotating ring contracts the sleeve to ensure installation stability, while the sliding structure allows the earpiece to be installed on the mounting base, facilitating the installation and replacement of the earpiece. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model;

[0017] Figure 2 This is a structural diagram showing the separation of the mounting base and ear rest in this utility model;

[0018] Figure 3 This is an internal sectional view of the mounting base of this utility model;

[0019] Figure 4 This is an enlarged view of part A of this utility model.

[0020] In the diagram: 1. Eyeglass frame; 2. Mounting base; 3. Ring; 301. Rotating ring; 4. Slide groove; 5. Magnet; 6. Cavity; 601. Spring; 602. Clamping tooth; 7. Ear rest; 8. Slider; 801. Magnetic plate; 802. Rack. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Example 1: Please refer to Figures 1-4 An anti-slip eyeglass with ear-push adjustment function includes an eyeglass frame 1. A mounting base 2 is provided on the outside of the eyeglass frame 1, serving as a base for ear supports 7. The mounting base 2 is equipped with a connecting component for ear-push installation. The connecting component includes a ring 3 located on the top of the mounting base 2. One end of the ring 3 has a forked structure, and the ring 3 is tilted near the forked area. The forked structure allows it to expand outwards during installation, thereby adjusting the tightness with the temples and facilitating operation during installation and repositioning. A rotating ring 301 is provided on the outside of the ring 3. The rotating ring 301 is fitted onto the outside of the ring 3 and can move outside the ring 3 when rotated due to the threaded texture on the outside of the ring 3. The movement of the rotating ring 301 can compress the forked area at the other end of the ring 3. The ring 3 is contracted to reduce its diameter and compress the temple, ensuring the stability of the mounting base 2. The bifurcated structure of the ring 3 allows it to be used with temples of different sizes. The bottom of the mounting base 2 is provided with a groove 4 for positioning the ear rest 7 at the installation angle. The inner wall of the groove 4 is provided with a magnet 5 and multiple cavities 6. The magnet 5 can be magnetically attracted to the magnetic plate 801 on the top of the slider 8 after sliding and embedding the slider 8 into the groove 4, ensuring the stability of the installation angle of the ear rest 7. Each of the multiple cavities 6 is provided with a spring 601 and a locking tooth 602. The spring 601 can support the locking tooth 602 and push it to extend from the cavity 6 into the groove 4. The ear rest 7 is provided below the mounting base 2 to lock the ear after wearing, improving the stability of wearing glasses. The top of the ear rest 7 is provided with a slider 8, and the top of the slider 8 is provided with a magnetic plate 801 and a rack 802.

[0023] In this embodiment: the rotating ring 301 is rotated and moved to the end of the ring sleeve 3 away from the bifurcation area, causing the ring sleeve 3 to loosen. It is then fitted onto the temple and moved on the temple to pre-install the mounting base 2, pre-positioning the ear rest 7 in terms of installation position and angle. Then, the rotating ring 301 is rotated in the opposite direction towards the bifurcation area of ​​the ring sleeve 3 to clamp and contract the bifurcation area. The tilt angle of the inner wall of the ring sleeve 3 and the pressure from the temple ensure the stability of the mounting base 2 and the temple installation. Finally, the slider 8 is inserted into the groove 4 at the bottom of the mounting base 2 and slides into the groove 4. The slider 8 is positioned in a fixed position, and the magnet 5 in the groove 4 is magnetically attracted to the magnetic plate 801 on the top of the slider 8, thereby improving the stability of the slider 8 in the groove 4. The retaining tooth 602 is pushed out of the cavity 6 by the force of the spring 601 and engages with the rack 802 on the top of the slider 8, which helps to ensure the stability of the slider 8. The ear pad 7 is installed in a direction away from the ear area, so when the ear pad 7 comes into contact with the ear, the contact pressure will push the slider 8 to retract into the groove 4. Therefore, the greater the contact pressure of the ear pad 7, the more stable the slider 8 and the mounting base 2 are, preventing the ear pad 7 from loosening and falling off.

[0024] Example 2: This example is an improvement on Example 1. For details, please refer to [link / reference]. Figures 1-4 The ring 3 is integrally formed with the mounting base 2, and the ring 3 is fitted onto the outside of the temple of the eyeglass frame 1 and is slidably connected to the temple. The rotating ring 301 is fitted onto the outside of the ring 3 and is rotatably connected to the ring 3, and has a damping feel when rotating. One end of the ring 3 is divided into multiple branches, and the inner wall of the ring 3 is inclined. The outside of the ring 3 has a threaded layer, which corresponds to the texture of the inner wall of the rotating ring 301. When the rotating ring 301 rotates, it can move outside the ring 3. The rotation of the rotating ring 301 squeezes one end of the ring 3. The magnet 5 is embedded and connected to the inner wall of the groove 4. Multiple cavities 6 are arrayed. The teeth 602 are arranged in rows on the inner wall of the slide groove 4. One end of the tooth 602 is located in the cavity 6 and is slidably connected to the inner wall of the cavity 6. The two ends of the spring 601 are respectively connected to the inner wall of the cavity 6 and the tooth 602. The top of the ear bracket 7 is connected to the slider 8 by bolts. The slider 8 can be inserted into the slide groove 4 and is slidably connected to the inner wall of the slide groove 4. The magnetic plate 801 and the rack 802 are both connected to the top of the slider 8 by bolts. After the slider 8 is inserted into the slide groove 4, the rack 802 abuts and meshes with the tooth 602 protruding from the cavity 6. At the same time, the magnet 5 on the inner wall of the slide groove 4 is magnetically connected to the magnetic plate 801 on the top of the slider 8.

[0025] In this embodiment, by setting the ear pad 7 and the mounting base 2 as separate structures and installing them through a sliding structure, the ear pad 7 can be replaced without removing the mounting base 2, which improves the convenience of use and reduces the replacement and maintenance costs.

[0026] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0027] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. 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 non-slip glasses with ear pushing adjustment function, comprising a glasses frame (1), an installation seat (2) is arranged outside the glasses frame (1), and the installation seat (2) is provided with a connecting assembly for ear pushing installation, characterized in that: The connecting assembly comprises a ring sleeve (3) arranged on the top of the mounting base (2), a rotating ring (301) arranged outside the ring sleeve (3), a sliding groove (4) arranged on the bottom of the mounting base (2), a magnet (5) and a plurality of cavities (6) arranged on the inner wall of the sliding groove (4), and a spring (601) and a clamping tooth (602) arranged in each of the cavities (6). An ear support (7) is arranged below the mounting base (2), a sliding block (8) is arranged on the top of the ear support (7), and a magnetic plate (801) and a rack (802) are arranged on the top of the sliding block (8).

2. The anti-slip glasses with ear pushing adjustment function according to claim 1, characterized in that: The ring sleeve (3) is integrally formed with the mounting base (2), the ring sleeve (3) is sleeved outside the leg of the glasses frame (1) and is in sliding connection with the leg, the rotating ring (301) is sleeved outside the ring sleeve (3) and is in rotating connection with the ring sleeve (3), and the rotating ring (301) has a damping feeling when rotating.

3. The anti-slip glasses with ear pushing adjustment function according to claim 2, characterized in that: One end of the ring sleeve (3) is segmented into a plurality of branches, the inner wall of the ring sleeve (3) has an inclined angle, a threaded layer is arranged outside the ring sleeve (3) and corresponds to the inner wall thread of the rotating ring (301), the rotating ring (301) can move outside the ring sleeve (3) when rotating, and the one end of the ring sleeve (3) is extruded by rotating the rotating ring (301).

4. The anti-slip glasses with ear pushing adjustment function according to claim 1, characterized in that: The magnet (5) is inlayed and connected with the inner wall of the sliding groove (4), the plurality of cavities (6) are arrayed on the inner wall of the sliding groove (4), one end of the clamping tooth (602) is located in the cavity (6) and is in sliding connection with the inner wall of the cavity (6), and the spring (601) is connected with the inner wall of the cavity (6) and the clamping tooth (602) at two ends.

5. The anti-slip glasses with ear pushing adjustment function according to claim 1, characterized in that: The ear support (7) is connected with the sliding block (8) through bolts, the sliding block (8) can be inserted into the sliding groove (4) and is in sliding connection with the inner wall of the sliding groove (4), and the magnetic plate (801) and the rack (802) are connected with the top of the sliding block (8) through bolts.

6. The anti-slip glasses with ear pushing adjustment function according to claim 1, characterized in that: When the sliding block (8) is embedded into the sliding groove (4), the rack (802) is in abutting engagement with the clamping tooth (602) protruding from the cavity (6), and the magnet (5) on the inner wall of the sliding groove (4) is magnetically connected with the magnetic plate (801) on the top of the sliding block (8).