Double-layer toughened glass fixing structure

By using a two-way screw system driven by fixing frame, sliding groove, sliding frame, fastening plate and motor-driven bidirectional screw system in the double-layer tempered glass fixing structure, the problems of unstable, offset and lack of resistance in the existing technology are solved, and better fixing effect and glass corner protection are achieved.

CN222991855UActive Publication Date: 2025-06-17ZHEJIANG KAIXIN GLASS CO LTD
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Patent Information

Application Number
CN202422123576.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-06-17
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The existing double-layer tempered glass fixing structure cannot be completely stable through the compression of the spring, resulting in the deviation of the glass and lack of stable resistance during fixing, and the overall fixing effect is poor.

Method used

A double-layer tempered glass fixing structure is designed, using components such as the fixing frame body, sliding groove, sliding frame, fastening plate, conflict pad, motor and bidirectional screw. Through the sliding groove limit, the motor drives the bidirectional screw to rotate, the fastening plate close to and conflict pad, the firm fixation of the double-layer glass is achieved.

Benefits of technology

This structure can effectively prevent double-layer glass from shifting, improve fixing stability, enhance overall fixing effect, and avoid damage to glass corners during transportation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222991855U_ABST
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Abstract

The utility model relates to the technical field of tempered glass, in particular to a double-layer tempered glass fixing structure which comprises a fixing frame body, a sliding groove is formed in the top face of the fixing frame body, and a first sliding frame and a second sliding frame are sequentially arranged in the sliding groove from front to back. A first fastening plate is fixedly connected to the lower surface of the first sliding frame, a second fastening plate is fixedly connected to the lower surface of the second sliding frame, and an abutting pad is arranged on the front surface of the second fastening plate. The fixing device can be attached to the front surface and the rear surface of double-layer glass through the abutting pads, the double-layer glass can be integrally fixed, the fixing effect is good, then the pushing plate is moved in the stabilizing frame, the front surface of the double-layer glass can be limited, and meanwhile the first fastening plate and the second fastening plate can be limited through the sliding grooves.
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Description

Technical Field

[0001] The utility model relates to the technical field of tempered glass, in particular to a fixing structure for double-layer tempered glass. Background Technique

[0002] Double-layer tempered glass is required for interior decoration and industrial manufacturing, but the existing double-layer tempered glass on the market is directly fixed by means of double-sided adhesive tape.

[0003] For example, the patent document with the publication number CN219884457U discloses a fixing structure for double-layer tempered glass, which relates to the technical field of tempered glass. The utility model includes a fixing block, on the upper surface of which a positioning plate is fixed; a plurality of sliding grooves are opened on the upper surface of the fixing block, and a sliding plate is slidably connected inside the sliding grooves; an adjusting plate is fixed on the top of the sliding plate, and a clamping plate is fixed on the bottom of the sliding plate; a tension spring is fixed between the adjusting plate and the positioning plate; a limiting groove is opened on one side of the fixing block, and a limiting block is fixed on one side of the clamping plate, and the limiting block is slidably connected with the limiting groove; threaded tubes are fixed on both sides of the fixing block; a threaded rod is threadedly connected inside the threaded tube, and a baffle is fixed at one end of the threaded rod. Through the action of the fixing block, the device can fix multiple double-layer tempered glass and also protect its corners, avoiding the situation that the corners of the double-layer tempered glass are damaged due to mutual collision during subsequent transportation.

[0004] However, in actual use, the double-layer glass cannot be completely stabilized only by the compression of the spring, and the double-layer glass will shift. At the same time, the double-layer glass is not stably resisted during fixation, and the overall fixation effect is poor. Therefore, it is urgent to design a fixing structure for double-layer tempered glass to solve the above problems. Content of the Utility Model

[0005] The purpose of the utility model is to provide a fixing structure for double-layer tempered glass to solve the problems that the double-layer glass cannot be completely stabilized by the compression of the spring, the double-layer glass will shift, and at the same time, the double-layer glass is not stably resisted during fixation, and the overall fixation effect is poor as mentioned in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A fixing structure for double-layer tempered glass includes a fixing frame body, on the top surface of which a sliding groove is opened. A first sliding frame and a second sliding frame are sequentially arranged in the sliding groove from front to back. A first fastening plate is fixedly connected to the lower surface of the first sliding frame, a second fastening plate is fixedly connected to the lower surface of the second sliding frame, and a resisting pad is arranged on the front surface of the second fastening plate.

[0007] Preferably, a stabilizing frame is fixedly connected to the front surface of the first fastening plate, and a pushing plate is arranged inside the stabilizing frame.

[0008] Preferably, a bidirectional lead screw body is inserted and installed inside the first sliding frame and the second sliding frame. A stabilizing block is arranged on the outer surface of the bidirectional lead screw body, and a motor body penetrates through the inside of the stabilizing block and is arranged on the bidirectional lead screw body.

[0009] Preferably, a limiting rod is installed inside the first sliding frame and the second sliding frame, and a sliding groove is formed inside the fixed frame body.

[0010] Preferably, the sliding groove is mutually adapted to the first fastening plate and the second fastening plate, and side blocks are fixedly connected to the front and rear surfaces of the fixed frame body.

[0011] Preferably, a stabilizing groove is fixedly connected to the right side surface of the fixed frame body, and a moving plate is arranged inside the stabilizing groove.

[0012] Preferably, a connecting rod is fixedly connected to the lower surface of the moving plate, a clamping frame is fixedly connected to the lower surface of the connecting rod, spring bodies are arranged on both sides of the inner wall of the clamping frame, and a resisting block is arranged at one end of the spring body far away from the clamping frame.

[0013] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0014] For this double-layer toughened glass fixing structure, through the arranged fixed frame body, sliding groove, first sliding frame, second sliding frame, first fastening plate, second fastening plate, resisting pad, stabilizing frame, pushing plate, bidirectional lead screw body, stabilizing block, motor body, limiting rod and sliding groove, during use, first, the first sliding frame and the second sliding frame are installed inside the sliding groove, and the sliding groove limits them. Then, when clamping the double-layer glass, the whole fixed frame body is installed at the upper left corner of the double-layer glass, and then the double-layer glass is installed inside the first fastening plate and the second fastening plate. Then, by starting the motor body, the motor body drives the bidirectional lead screw body to rotate, so that the first sliding frame and the second sliding frame move towards each other, the first fastening plate and the second fastening plate approach each other, and thus the resisting pad fits against the front and rear surfaces of the double-layer glass, and the double-layer glass can be fixed as a whole with a good fixing effect. Then, by moving the pushing plate inside the stabilizing frame, the front surface of the double-layer glass can be limited, and at the same time, the first fastening plate and the second fastening plate can also be limited through the sliding groove, and the side blocks can prevent the first fastening plate and the second fastening plate from sliding out of the fixed frame body, reflecting the practicability of the design.

[0015] This double-layer toughened glass fixing structure, through the set stable groove, moving plate, connecting rod, clamping frame, spring body and abutting block, during use, the moving plate can be moved inside the stable groove, so that the double-layer glass can be placed in the gap between the two abutting blocks. Through the expansion and contraction of the spring body and the telescopic rod, the abutting block can be driven to move, so that the double-layer glass can be stably clamped by the two abutting blocks, reflecting the functionality of the design. BRIEF DESCRIPTION OF THE DRAWINGS

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

[0017] Figure 2 is a three-dimensional schematic diagram of the structure of the first fastening plate and the second fastening plate of the present utility model;

[0018] Figure 3 is a three-dimensional schematic diagram of the structure of the bidirectional lead screw body and the motor body of the present utility model;

[0019] Figure 4 is a three-dimensional schematic diagram of the structure of the moving plate and the clamping frame of the present utility model.

[0020] In the figure: 1, fixing frame body; 2, sliding groove; 3, first sliding frame; 4, second sliding frame; 5, first fastening plate; 6, second fastening plate; 7, abutting pad; 8, stable frame; 9, pushing plate; 10, bidirectional lead screw body; 11, stable block; 12, motor body; 13, limiting rod; 14, chute; 15, side block; 16, stable groove; 17, moving plate; 18, connecting rod; 19, clamping frame; 20, spring body; 21, abutting block. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0022] Please refer to Figures 1-4 , an embodiment provided by the present utility model:

[0023] A double-layer tempered glass fixing structure. The bidirectional lead screw body 10, the motor body 12, and the spring body 20 used in this application are products that can be directly purchased on the market. Their principles and connection methods are all prior arts well-known to those skilled in the art. It includes a fixed frame body 1. A sliding groove 2 is opened on the top surface of the fixed frame body 1. A first sliding frame 3 and a second sliding frame 4 are sequentially arranged in the sliding groove 2 from front to back. A first fastening plate 5 is fixedly connected to the lower surface of the first sliding frame 3. A second fastening plate 6 is fixedly connected to the lower surface of the second sliding frame 4. A resisting pad 7 is arranged on the front surface of the second fastening plate 6. A stabilizing frame 8 is fixedly connected to the front surface of the first fastening plate 5. A pushing plate 9 is arranged inside the stabilizing frame 8. A bidirectional lead screw body 10 is inserted and installed inside the first sliding frame 3 and the second sliding frame 4. A stabilizing block 11 is arranged on the outer surface of the bidirectional lead screw body 10. A motor body 12 is arranged through the inside of the stabilizing block 11 on the bidirectional lead screw body 10. A limiting rod 13 is installed inside the first sliding frame 3 and the second sliding frame 4. A sliding groove 14 is opened inside the fixed frame body 1. The sliding groove 14 is adapted to the first fastening plate 5 and the second fastening plate 6. Side blocks 15 are fixedly connected to the front and back surfaces of the fixed frame body 1. A stabilizing groove 16 is fixedly connected to the right surface of the fixed frame body 1. A moving plate 17 is arranged inside the stabilizing groove 16. A connecting rod 18 is fixedly connected to the lower surface of the moving plate 17. A clamping frame 19 is fixedly connected to the lower surface of the connecting rod 18. Spring bodies 20 are arranged on both sides of the inner wall of the clamping frame 19. A resisting block 21 is arranged at one end of the spring body 20 away from the clamping frame 19. By installing the first sliding frame 3 and the second sliding frame 4 inside the sliding groove 2 and limiting them through the sliding groove 2, when clamping the double-layer glass, by installing the whole fixed frame body 1 at the upper left corner of the double-layer glass, then the double-layer glass is installed inside the first fastening plate 5 and the second fastening plate 6. Then, by starting the motor body 12, the motor body 12 drives the bidirectional lead screw body 10 to rotate, so that the first sliding frame 3 and the second sliding frame 4 move towards each other, and the first fastening plate 5 and the second fastening plate 6 approach each other, so that the resisting pad 7 fits against the front and back surfaces of the double-layer glass, and the double-layer glass can be fixed as a whole with good fixing effect. Then, moving the pushing plate 9 inside the stabilizing frame 8 can limit the front surface of the double-layer glass. At the same time, the first fastening plate 5 and the second fastening plate 6 can also be limited through the sliding groove 14. The side blocks 15 can prevent the first fastening plate 5 and the second fastening plate 6 from sliding out of the fixed frame body 1. The moving plate 17 can be moved inside the stabilizing groove 16, so that the double-layer glass can be placed in the gap between the two resisting blocks 21. The telescopic movement of the spring body 20 and the telescopic rod can drive the resisting block 21 to move, so that the double-layer glass can be stably clamped by the two resisting blocks 21.

[0024] Working principle: When in use, the first sliding frame 3 and the second sliding frame 4 are installed inside the sliding groove 2, and they are limited by the sliding groove 2. Then, when clamping the double-layer glass, the whole fixing frame body 1 is installed at the upper left corner of the double-layer glass, and then the double-layer glass is installed inside the first fastening plate 5 and the second fastening plate 6. Then, by starting the motor body 12, the motor body 12 drives the bidirectional lead screw body 10 to rotate, so that the first sliding frame 3 and the second sliding frame 4 move towards each other, and the first fastening plate 5 and the second fastening plate 6 approach each other, so that the contact pads 7 fit onto the front and back surfaces of the double-layer glass, and the double-layer glass can be fixed as a whole with a good fixing effect. Then, by moving the push plate 9 inside the stabilizing frame 8, the front surface of the double-layer glass can be limited, and at the same time, the first fastening plate 5 and the second fastening plate 6 can also be limited by the sliding groove 14. The moving plate 17 can be moved inside the stabilizing groove 16, so that the double-layer glass can be placed in the gap between the two sets of contact blocks 21. The telescopic movement of the spring body 20 and the telescopic rod can drive the contact blocks 21 to move, so that the double-layer glass can be stably clamped by the two sets of contact blocks 21. The above is the whole working principle of the present utility model.

[0025] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present utility model, the present utility model can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A double-layer tempered glass fixing structure, comprising a fixing frame body (1), wherein a sliding groove (2) is provided on the top surface of the fixing frame body (1), and characterized in that: A first sliding frame (3) and a second sliding frame (4) are sequentially arranged inside the sliding groove (2) from front to back, the lower surface of the first sliding frame (3) is fixedly connected to a first fastening plate (5), the lower surface of the second sliding frame (4) is fixedly connected to a second fastening plate (6), and the front surface of the second fastening plate (6) is provided with a contact pad (7).

2. A double-layer tempered glass fixing structure according to claim 1, characterized in that: A stabilizing frame (8) is fixedly connected to the front surface of the first fastening plate (5), and a pushing plate (9) is arranged inside the stabilizing frame (8).

3. The double-layer tempered glass fixing structure according to claim 1, characterized in that: A bidirectional screw rod body (10) is inserted and installed inside the first sliding frame (3) and the second sliding frame (4), a stabilizing block (11) is arranged on the outer surface of the bidirectional screw rod body (10), and a motor body (12) is arranged inside the bidirectional screw rod body (10) penetrating the stabilizing block (11).

4. The double-layer tempered glass fixing structure according to claim 1, characterized in that: Limiting rods (13) are installed inside the first sliding frame (3) and the second sliding frame (4), and a sliding groove (14) is provided inside the fixing frame body (1).

5. A double-layer tempered glass fixing structure according to claim 4, characterized in that: The slide groove (14) is adapted to the first fastening plate (5) and the second fastening plate (6), and the front and rear surfaces of the fixing frame body (1) are fixedly connected with side blocks (15).

6. The double-layer tempered glass fixing structure according to claim 1, characterized in that: A stabilizing groove (16) is fixedly connected to the right side surface of the fixing frame body (1), and a movable plate (17) is arranged inside the stabilizing groove (16).

7. A double-layer tempered glass fixing structure according to claim 6, characterized in that: The lower surface of the movable plate (17) is fixedly connected to a connecting rod (18), and the lower surface of the connecting rod (18) is fixedly connected to a clamping frame (19). Both sides of the inner wall of the clamping frame (19) are provided with a spring body (20), and an end of the spring body (20) away from the clamping frame (19) is provided with a resistance block (21).

Citation Information

Patent Citations

  • Double-layer toughened glass fixing structure

    CN219884457U