Laminated glass bakelite strip shock insulator structure

By using a bakelite strip spacer structure for laminated glass, the problem of uneven stress on the glass edges in laminated high-pressure glass is solved, achieving uniform stress on the glass edges and improving the quality and aesthetics of the product.

CN224013158UActive Publication Date: 2026-03-20XINYI GLASS (MAANSHAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

In the current production of laminated high-pressure glass, the glass edges are subjected to uneven stress in the autoclave, resulting in vortex-like deformation, which affects product quality and aesthetics.

Method used

The structure employs a laminated glass bakelite strip spacer, comprising a spacer body and a limiting structure. The spacer body is located between adjacent glass panes, and the limiting block abuts against the edge of the glass and is fixed by locking screws to ensure uniform force distribution.

Benefits of technology

During the high-pressure process, avoid vortex-like deformation at the glass edges to improve the quality and aesthetics of laminated high-pressure glass products.

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Abstract

The laminated glass electric batten shock insulator structure comprises the shock insulator body and the limiting structure arranged on the shock insulator body, the shock insulator body is located between two adjacent pieces of laminated glass, and the shock insulator body can evenly support the adjacent pieces of glass in the high-pressure heating process of an autoclave, so that the edges of the adjacent pieces of glass are evenly stressed, and the shock insulator body is not prone to falling off. Compared with the prior art, the laminated glass bakelite spacer structure has the advantages that stress concentration at the edge of the glass is reduced, vortex-shaped deformation of the edge of the glass is avoided, and the quality and the overall attractiveness of a laminated high-pressure glass product are improved, so that the laminated glass bakelite spacer structure provided by the utility model can enable adjacent glass to be uniformly stressed in a high-pressure process; vortex-shaped deformation of the edge of the glass can be avoided, and the quality and the overall attractiveness of an interlayer high-pressure glass product can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the production field of sandwich high pressure glass, specifically, the utility model relates to a kind of laminated glass bakelite strip spacer structure. BACKGROUND

[0002] In the production process of sandwich high pressure glass, glass is usually placed on trolley to carry out flat pressing treatment, and the glass needs to be separated by spacer in the flat pressing process, and the existing technology adopts Teflon material, and the stress area of Teflon spacer is small, and the stress between adjacent glass edges is uneven, which can cause extrusion marks on the edge of glass after entering autoclave for heating and high pressure, resulting in vortex deformation of glass edge, and reducing the quality and overall aesthetic of glass product.

[0003] To solve the above problems, the patent document with publication number 208278655U discloses a kind of sandwich glass spacer, including connecting portion and the length direction of the connecting portion is arranged abutting portion, the abutting portion is equipped with the abutting boss for abutting sandwich glass, the abutting boss and the connecting portion form the avoiding slot for avoiding the edge portion of the sandwich glass between them.The sandwich glass spacer of the utility model, since the avoiding slot is formed between the connecting portion and the abutting portion, when the abutting boss abuts with the sandwich glass, the edge portion of the sandwich glass will be suspended in the avoiding slot 30, the edge portion of the sandwich glass will not be extruded, and the film of the sandwich glass will not be extruded, so that the phenomenon of delamination damage will not occur when the sandwich glass is used, and the quality of the sandwich glass is improved, and the soft component such as cloth bag does not need to be sleeved during use, but the above problems cannot be solved.

[0004] Therefore, in order to improve or solve the above at least one problem, a laminated glass bakelite strip spacer structure is provided, which can make the adjacent glass uniformly stressed during high pressure process, avoid vortex deformation of glass edge, and improve the quality and overall aesthetic of sandwich high pressure glass product. UTILITY MODEL CONTENTS

[0005] The utility model is carried out in order to solve the above problems, and aims at providing a laminated glass bakelite strip spacer structure which can make the adjacent glass uniformly stressed during high pressure process, avoid vortex deformation of glass edge, and improve the quality and overall aesthetic of sandwich high pressure glass product, in order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:

[0006] The utility model provides a kind of laminated glass bakelite strip spacer structure, with such characteristics, including spacer body and the limiting structure being set on spacer body, spacer body is located between two adjacent sandwich glasses.

[0007] The laminated glass electric batten gap pad structure further has the following features: the limiting structure comprises limiting blocks, the limiting blocks are arranged on the gap pad body, and the limiting blocks abut against edges of the laminated glass.

[0008] The laminated glass electric batten gap pad structure further has the following features: the limiting blocks are evenly arranged on the gap pad body and are respectively located on two sides of the gap pad body.

[0009] The laminated glass electric batten gap pad structure further has the following features: the gap pad body is provided with adjusting holes, and the adjusting holes are evenly arranged on the gap pad body.

[0010] The laminated glass electric batten gap pad structure further has the following features: the limiting blocks are provided with locking holes, locking screws are arranged in the locking holes, and the locking screws are arranged in the adjusting holes.

[0011] The laminated glass electric batten gap pad structure further has the following features: the length of the gap pad body is 100mm to 120mm.

[0012] The laminated glass electric batten gap pad structure further has the following features: the gap pad body is an electric batten.

[0013] The laminated glass electric batten gap pad structure provided by the utility model has the technical effects that: the laminated glass electric batten gap pad structure comprises a gap pad body and a limiting structure arranged on the gap pad body, the gap pad body is located between two adjacent laminated glasses, the gap pad body can uniformly support the adjacent glasses in the process of heating and high pressure in an autoclave, the adjacent glasses are uniformly stressed between edges of the adjacent glasses, stress concentration of the edges of the glasses is reduced, vortex deformation of the edges of the glasses is avoided, and the quality and overall aesthetic degree of the laminated high-pressure glass product are improved.

[0014] Therefore, the laminated glass electric batten gap pad structure can make the adjacent glasses uniformly stressed in the high-pressure process, can avoid vortex deformation of the edges of the glasses, and is favorable for improving the quality and overall aesthetic degree of the laminated high-pressure glass product. BRIEF DESCRIPTION OF DRAWINGS

[0015] The present specification includes the following drawings, and the shown contents are respectively:

[0016] Figure 1 is a structure schematic view of the laminated glass electric batten gap pad structure in the embodiment of the utility model in the front view direction;

[0017] Figure 2 is a structure schematic view of the laminated glass electric batten gap pad structure in the embodiment of the utility model in the side view direction;

[0018] Figure 3 is the cross-sectional view of the laminated glass electrical wood strip spacer structure in the embodiment of the utility model in the side view direction;

[0019] Figure 4 is the structure schematic view of the spacer body in the embodiment of the utility model in the plan view direction.The figure is marked as: spacer body-10, adjusting hole-11, limiting structure-20, limiting block-21, locking hole-22, locking screw-23. DETAILED DESCRIPTION

[0020] The specific embodiments of the present application are further described below with reference to the drawings, by describing the embodiments, for the purpose of helping the skilled in the art to have more complete, accurate and in-depth understanding of the inventive concept and technical solution of the present application, and to help its implementation.

[0021] Figure 1 is the structure schematic view of the laminated glass electrical wood strip spacer structure in the embodiment of the utility model in the front view direction; Figure 2 is the structure schematic view of the laminated glass electrical wood strip spacer structure in the embodiment of the utility model in the side view direction; Figure 3 is the cross-sectional view of the laminated glass electrical wood strip spacer structure in the embodiment of the utility model in the side view direction.

[0022] As Figure 1 , Figure 2 and Figure 3 shown, the laminated glass electrical wood strip spacer structure provided by the utility model comprises a spacer body 10 and a limiting structure 20 arranged on the spacer body 10, the spacer body 10 is located between two adjacent laminated glasses, the spacer body 10 can uniformly support the adjacent glasses in the process of autoclave heating and high pressure, so that the adjacent glass edges are uniformly stressed, the stress concentration of the glass edge is reduced, which is beneficial to avoid vortex deformation of the glass edge and improve the quality and overall aesthetic degree of the laminated high-pressure glass product, so that the laminated glass electrical wood strip spacer structure provided by the utility model can make the adjacent glasses uniformly stressed in the high-pressure process, can avoid vortex deformation of the glass edge, and is beneficial to improve the quality and overall aesthetic degree of the laminated high-pressure glass product.

[0023] The spacer body 10 is an electrical wood strip made of electrical wood material, in the form of a rectangular cuboid strip, located at the edge of the glass, and the two sides of the spacer body 10 abut against two glasses respectively, the limiting structure 20 comprises a limiting block 21, the limiting block 21 is arranged on the spacer body 10, and the limiting block 21 abuts against the edge of the laminated glass, so as to limit the spacer body 10, prevent the spacer body 10 from slipping or falling off between the glasses, and improve the reliability of the structure.

[0024] Figure 4 This is a schematic diagram of the structure of the diaphragm body in the top view direction in an embodiment of this utility model.

[0025] The limiting blocks 21 are evenly distributed on the spacer body 10, with two limiting blocks 21 located on opposite sides of the spacer body 10, as shown below. Figure 4 As shown, the spacer body 10 is provided with adjustment holes 11, which are evenly distributed on the spacer body 10. The limiting block 21 is provided with locking holes 22, and locking screws 23 are inserted into the locking holes 22. The locking screws 23 are inserted into the locking holes 22 and the adjustment holes 23, thereby locking and fixing the limiting block 21 and the spacer body 10, improving the stability and structural strength between the limiting block 21 and the spacer body 10. By inserting the locking screws 23 into different adjustment holes 11, the position of the limiting block 21 can be adjusted, which is convenient for flexible adjustment according to the glass size.

[0026] The length of the spacer body 10 is 100mm to 120mm, which can be flexibly selected according to the glass size, thus improving flexibility.

[0027] The role and effect of the embodiments

[0028] The laminated glass bakelite strip spacer structure provided by this utility model includes a spacer body 10 and a limiting structure 20 disposed on the spacer body 10. The spacer body 10 is located between two adjacent laminated glass pieces. During the high-pressure heating process in the autoclave, the spacer body 10 can evenly support the adjacent glass pieces, so that the edges of the adjacent glass pieces are evenly stressed, reducing stress concentration at the glass edges. This helps to avoid vortex-like deformation at the glass edges and improves the quality and overall aesthetics of the laminated high-pressure glass products. Therefore, the laminated glass bakelite strip spacer structure provided by this utility model can ensure that the adjacent glass pieces are evenly stressed during the high-pressure process, and can avoid vortex-like deformation at the glass edges, thus improving the quality and overall aesthetics of the laminated high-pressure glass products.

[0029] The present invention has been described above by way of example with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution of the present invention; or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.

Claims

1. A laminated glass-bakelite strip spacer structure, characterized in that, It includes a spacer body (10) and a limiting structure (20) disposed on the spacer body (10), the spacer body (10) being located between two adjacent laminated glass pieces.

2. The laminated glass-bakelite strip spacer structure according to claim 1, characterized in that, The limiting structure (20) includes a limiting block (21), which is disposed on the spacer body (10) and abuts against the edge of the laminated glass.

3. The laminated glass-bakelite strip spacer structure according to claim 2, characterized in that, The limiting blocks (21) are evenly arranged on the diaphragm body (10) and are located on both sides of the diaphragm body (10).

4. The laminated glass-bakelite strip spacer structure according to claim 3, characterized in that, The septum body (10) is provided with adjustment holes (11), which are evenly distributed on the septum body (10).

5. The laminated glass-bakelite strip spacer structure according to claim 4, characterized in that, The limiting block (21) is provided with a locking hole (22), and a locking screw (23) is inserted into the locking hole (22). The locking screw (23) is inserted into the adjusting hole (11).

6. The laminated glass-bakelite strip spacer structure according to claim 5, characterized in that, The length of the septum body (10) is 100mm to 120mm.

7. The laminated glass-bakelite strip spacer structure according to claim 6, characterized in that, The spacer body (10) is a bakelite strip.