Glasses leg structure of glasses

By designing the connection method of anti-rotating columns, glue particles and rotatable pile heads in the temple structure of the glasses, the problem of changing the frame in the existing technology of single glue damage is solved, and the convenient disassembly and cost reduction of the temple structure is achieved.

CN222896317UActive Publication Date: 2025-05-23SHENZHEN SANZHONG GONGCHENG DESIGN CO LTD
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Patent Information

Application Number
CN202422042092.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-05-23
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

In the existing glasses temple structure, single glue is injection molded into the frame, resulting in the need to replace the entire frame when the single glue is damaged, which is costly and inconvenient to disassemble.

Method used

A temple structure with glasses is designed, by setting anti-rotation columns and rubber particles between the counterpart body and the counterpart head, and connecting them with the rubber particles with rotatable pile heads, a temple structure without screw connection and easy disassembly is achieved.

Benefits of technology

The temple structure enables the pile head to rotate and the rubber particles to ensure that the rubber particles do not fall off, and there is no need for screw connection between the body, head, rubber particles and the pile head, which is easy to disassemble and reduces the cost of replacing temple parts.

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Abstract

The utility model discloses a glasses leg structure of glasses, which comprises a body, and one end of the body is split to form a fork opening end; the glasses leg structure further comprises a pin, two colloidal particles and a pin pair. The ratio head is fixed at the fork opening end, and anti-rotation columns are arranged at the upper end and the lower end of the ratio head; the two colloidal particles are respectively arranged on the anti-rotation column; the pile head is rotatably connected with the two rubber particles and can limit the two rubber particles. According to the glasses leg structure disclosed by the utility model, the two rubber particles are ingeniously mounted, so that the pile head can be rotatably connected with the rubber particles, the two rubber particles are prevented from falling off, the body, the head, the rubber particles and the pile head are connected without screws, the disassembly is convenient, and glasses leg parts are convenient to replace. The glasses leg structure disclosed by the utility model can reduce the cost.
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Description

Technical Field

[0001] The utility model relates to glasses, in particular to a temple structure of glasses. Background Art

[0002] In the existing glasses, the stumps at both ends of the frame are fixed with single-thread hinges, which are generally fixed to the plastic frame by injection molding and cannot be disassembled. The double hinges of the temples are fixed to the single-thread hinges of the frame by screws, and the temples are rotatable.

[0003] When the single glue is damaged, since the single glue is injection-molded into the frame, the entire frame needs to be replaced, which is costly.

[0004] In view of this, it is necessary to improve the traditional temple structure. Utility Model Content

[0005] In view of the deficiencies in the prior art, the technical problem to be solved by the utility model is to provide a temple structure of glasses. The purposes of designing the temple structure are: first, no screws are required for connecting the temple head and the temple body, and second, easy disassembly.

[0006] In order to solve the above technical problems, the utility model is implemented by the following scheme: the utility model provides a temple structure of glasses, including a body, one end of the body is forked to form a fork end;

[0007] The temple structure also includes:

[0008] A fork head is fixed to the fork end, and anti-rotation columns are provided at the upper and lower ends of the fork head;

[0009] Two rubber particles are respectively installed on the anti-rotation column;

[0010] A pile head is rotatably connected with the two rubber particles and can confine the two rubber particles.

[0011] Furthermore, the frame includes two curved rods, and the straight sections of the two curved rods are welded and fixed along the length direction.

[0012] Furthermore, the coupling head is an integrated structure having a closed-loop structure portion welded and fixed to the fork end, and two anti-rotation columns are respectively arranged at the upper end and the lower end of the closed-loop structure portion.

[0013] Furthermore, the anti-rotation column is a square structural column.

[0014] Furthermore, the rubber particle is an integrated structure, which has a cylindrical part and a disc connected to the end face of the cylindrical part. The diameter of the disc is larger than the diameter of the cylindrical part and a square hole cooperating with the anti-rotation column is provided at the center of the outer end face of the disc.

[0015] Furthermore, the pile head is a U-shaped structural member, and the pile head is provided with two coaxial sleeve holes, and the two sleeve holes are sleeved on the cylindrical parts of the two rubber particles one by one.

[0016] Compared with the prior art, the beneficial effects of the utility model are:

[0017] 1. The temple structure of the utility model cleverly installs two rubber particles, so that the pile head can be rotatably connected with the rubber particles and ensure that the two rubber particles do not fall off. No screws are required to connect the body, the head, the rubber particles and the pile head, and it is easy to disassemble and replace the temple parts.

[0018] 2. The temple structure of the utility model can reduce costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a structural diagram of the utility model after the temples are assembled.

[0020] Figure 2 This is a diagram of the structure of the colloid particles of the utility model.

[0021] Figure 3 This is the structural diagram of the comparison head of the utility model.

[0022] Figure 4 This is a schematic diagram of step 1 of assembling the temples of the utility model.

[0023] Figure 5 This is a schematic diagram of step 2 of assembling the temples of the utility model.

[0024] Figure 6 This is a schematic diagram of step three of assembling the temples of the present invention.

[0025] Markings in the accompanying drawings: body 1, rubber particle 2, pile head 3, head 4, fork end 11, cylindrical section 21, disc 22, square hole 23, sleeve hole 31, closed-loop structure part 41, anti-rotation column 42. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model, so that the advantages and features of the utility model can be more easily understood by those skilled in the art, thereby making a clearer and more explicit definition of the protection scope of the utility model. Obviously, the embodiments described in the utility model are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the utility model.

[0027] In addition, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0028] Embodiment 1: The specific structure of the utility model is as follows:

[0029] Please refer to the attached Figure 1-6 The present invention provides a temple structure of glasses, comprising a body 1, one end of which is forked to form a fork end 11; the body 1 comprises two curved rods, and the straight sections of the two curved rods are welded and fixed along the length direction. Specifically, Figure 4 As shown, the rod bodies of the two curved rods are each provided with a curved section, the two ends of the curved section are respectively connected to a long straight section and a short straight section, and the two long straight sections are welded together along the length direction so that the two short straight sections form a fork structure.

[0030] The temple structure also includes a head 4, two rubber particles 2 and a pile head 3.

[0031] The head 4 is fixed to the fork end 11, and anti-rotation columns 42 are provided at both the upper and lower ends of the head 4; the head 4 is an integrated structure, and has a closed-loop structure portion 41 welded and fixed to the fork end 11, and two anti-rotation columns 42 are respectively provided at the upper and lower ends of the closed-loop structure portion 41. Specifically, the closed-loop structure portion 41 is oval, and the horizontal portions of the upper and lower ends thereof are respectively welded to two short straight line segments. The anti-rotation columns 42 are square structure columns, and the two anti-rotation columns 42 are in opposite directions.

[0032] Two rubber particles 2 are respectively mounted on the anti-rotation column 42; the rubber particle 2 is an integrated structure, which has a cylindrical portion 21 and a disc 22 connected to the end surface of the cylindrical portion 21, the diameter of the disc 22 is larger than the diameter of the cylindrical portion 21, and a square hole 23 matching the anti-rotation column 42 is provided at the center of the outer end surface of the disc 22. The square holes 23 of the two rubber particles 2 are respectively sleeved on the two anti-rotation columns 42.

[0033] The pile head 3 is rotatably connected to the two rubber particles 2 and can define the two rubber particles 2. Specifically, the pile head 3 is a U-shaped structural member, and the pile head 3 is provided with two coaxial sleeve holes 31, and the two sleeve holes 31 are sleeved on the cylindrical parts 21 of the two rubber particles 2 one by one.

[0034] Embodiment 2:

[0035] The following are the steps for installing the temples of the utility model:

[0036] Step 1, such as Figure 4 As shown, the head 4 is welded to the fork end 11.

[0037] Step 2, such as Figure 5 As shown, two rubber particles 2 are respectively sleeved on two anti-rotation posts 42 .

[0038] Step three, such as Figure 6As shown, the two side legs of the pile head 3 are spread open, and the two sleeve holes 31 on the pile head 3 are respectively sleeved on the cylindrical parts 21 of the two rubber particles 2, and finally the following is formed. Figure 1 Temple assembly shown.

[0039] like Figure 6 As shown, the two sleeve holes 31 on the pile head 3 are close to the inner side of the bottom end of the pile head 3, and there is a distance between the sleeve holes 31 and the bottom end of the pile head 3, and this distance can make the pile head 3 flush with the head 4. The interval between the two side feet of the pile head 3 is sufficient for the head 4 to pass through. The two side feet of the pile head 3 are bent to form a curved structure, and the outer ends of the two side feet are connected to the frame.

[0040] In summary, the temple structure of the utility model cleverly installs two rubber particles, so that the stud head can be rotatably connected to the rubber particles and ensure that the two rubber particles do not fall off, and no screws are required between the body, the stud head, the rubber particles and the stud head, and the temple structure is easy to disassemble and replace temple parts. The temple structure of the utility model can reduce costs.

[0041] The above description is only a preferred embodiment of the present invention, and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly used in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A temple structure of glasses, comprising a temple body (1), characterized in that: One end of the body (1) is forked to form a forked end (11); The temple structure also includes: The fork (4) is fixed to the fork end (11), and anti-rotation columns (42) are provided at both the upper and lower ends of the fork; Two rubber particles (2) are respectively mounted on the anti-rotation columns (42); A pile head (3) is rotatably connected to the two rubber particles (2) and can confine the two rubber particles (2).

2. The temple structure of glasses according to claim 1, characterized in that: The body (1) comprises two curved rods, and the straight sections of the two curved rods are welded and fixed along the length direction.

3. The temple structure of glasses according to claim 1, characterized in that: The coupling head (4) is an integrated structure having a closed-loop structure portion (41) welded and fixed to the fork end (11), and two anti-rotation columns (42) are respectively arranged at the upper end and the lower end of the closed-loop structure portion (41).

4. The temple structure of glasses according to claim 1 or 3, characterized in that: The anti-rotation column (42) is a square structural column.

5. The temple structure of glasses according to claim 4, characterized in that: The rubber particle (2) is an integrated structure, comprising a cylindrical portion (21) and a disc (22) connected to the end face of the cylindrical portion (21); the diameter of the disc (22) is greater than the diameter of the cylindrical portion (21), and a square hole matching the anti-rotation column (42) is provided at the center of the outer end face of the disc (22).

6. The temple structure of glasses according to claim 5, characterized in that: The pile head (3) is a U-shaped structural member, and is provided with two coaxial sleeve holes (31). The two sleeve holes (31) are sleeved one by one on the cylindrical parts (21) of the two rubber particles (2).