Impact-resistant white double-steel hollow glass

By introducing a triple buffer design of U-shaped shock absorbers, longitudinal rubber columns, and rigid springs into the insulated glass, the problem of insufficient impact resistance of insulated glass is solved, achieving efficient energy dissipation and glass protection.

CN224093278UActive Publication Date: 2026-04-07JINJIANG XINNANYI GLASS PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing insulated glass is not strong enough to withstand strong winds, flying stones or accidental impacts, and is prone to breakage. Increasing the glass thickness or the effect of the interlayer treatment is limited.

Method used

It adopts a triple buffer design, including a U-shaped damping block, a longitudinal rubber column and a longitudinal rigid spring, and achieves energy dissipation in stages through the sliding connection of a rectangular sliding block and a sliding plate.

Benefits of technology

It effectively improves the impact resistance of insulated glass, enabling it to withstand strong wind pressure and impacts from flying stones, thus preventing glass damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses impact-resistant white double-steel hollow glass, and aims to solve the technical problems that in the prior art, the weight and the cost can be greatly increased by purely increasing the thickness of the glass, a laminated layer mainly absorbs low-frequency impact, and the buffering effect on instantaneous high-strength impact is limited. The hollow glass comprises a window frame, a rectangular mounting frame is fixed in the window frame, mounting pads are arranged on the two sides of the rectangular mounting frame, white glass tempered glass is arranged on the sides, away from the rectangular mounting frame, of the mounting pads, and a plurality of anti-impact mechanisms are evenly distributed between the mounting pads and the rectangular mounting frame; through the triple buffering design of the concentric-square-shaped damping blocks, the longitudinal rubber columns and the longitudinal rigid springs, impact energy can be effectively absorbed and dispersed, the impact resistance of the device is greatly improved, efficient step-by-step dissipation of the impact energy is achieved, and sudden impact such as strong wind pressure and flying stone collision can be effectively resisted.
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Description

Technical Field

[0001] This utility model belongs to the field of glass, specifically relating to an impact-resistant white double-glazed insulated glass. Background Technology

[0002] With the improvement of modern building safety standards, insulated glass is widely used in various buildings due to its excellent sound insulation and heat insulation performance. However, traditional insulated glass often shows insufficient impact resistance when faced with strong winds, flying stones or accidental impacts, and is prone to problems such as glass breakage and seal failure, which seriously affect the safety and durability of use.

[0003] The strength of conventional impact-resistant insulated glass is mainly improved by increasing the glass thickness, using tempering treatment, or adding a laminated layer. Although these methods have improved the impact resistance to a certain extent, they still have obvious shortcomings. Simply increasing the glass thickness will significantly increase the weight and cost, and the laminated layer mainly absorbs low-frequency impacts and has limited buffering effect on instantaneous high-intensity impacts. Therefore, an impact-resistant white double-tempered insulated glass is designed to change the above-mentioned technical defects. Utility Model Content

[0004] (1) Technical problems to be solved

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an impact-resistant white double-glazed insulated glass. This insulated glass aims to solve the technical problem that simply increasing the glass thickness under the existing technology will greatly increase the weight and cost, and the interlayer mainly absorbs low-frequency impacts, with limited buffering effect on instantaneous high-intensity impacts.

[0006] (2) Technical solution

[0007] To solve the above-mentioned technical problems, this utility model provides an impact-resistant white double-glazed insulated glass, which includes a window frame, a rectangular mounting frame fixed inside the window frame, mounting pads on both sides of the rectangular mounting frame, and white tempered glass on the side of the mounting pad away from the rectangular mounting frame. Multiple impact-resistant mechanisms are evenly distributed between the mounting pad and the rectangular mounting frame.

[0008] Preferably, the impact-resistant mechanism includes two rectangular sliding blocks. Rectangular sliding blocks are slidably connected to both sides inside the rectangular mounting frame. The side of the rectangular sliding block closest to the mounting pad is fixedly connected to the mounting pad. A rectangular sliding plate is fixed to the side of the rectangular sliding block away from the mounting pad. Longitudinal rubber columns are fixed to both ends between the two rectangular sliding plates. A longitudinal rigid spring is provided on the outside of the longitudinal rubber column and between the rectangular sliding plates.

[0009] Preferably, the longitudinal rubber column is made of silicone rubber.

[0010] Furthermore, a rectangular sliding groove is provided inside the rectangular mounting frame, and a rectangular sliding plate is located inside the rectangular sliding groove and is slidably connected to the rectangular mounting frame through the rectangular sliding groove.

[0011] Furthermore, an elliptical deformation component is provided between the two rectangular sliding plates and inside the rectangular sliding groove. The elliptical deformation component is made of spring steel.

[0012] Furthermore, a U-shaped limiting frame is fixed inside the rectangular mounting frame, and a U-shaped shock absorber is provided on the outside of the U-shaped limiting frame. Both sides of the U-shaped shock absorber are fixed with U-shaped sealing strips, which are connected to the mounting pad. The U-shaped shock absorber is made of extruded polystyrene.

[0013] (3) Beneficial effects

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0015] This invention utilizes a triple buffer design consisting of a U-shaped shock absorber, a longitudinal rubber column, and a longitudinal rigid spring to effectively absorb and disperse impact energy, greatly enhancing the device's impact resistance and achieving efficient, stepwise dissipation of impact energy. It can effectively resist sudden impacts such as strong wind pressure and flying stone strikes. Attached Figure Description

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

[0017] Figure 2 This is a structural schematic diagram of the window frame and rectangular mounting frame of this utility model;

[0018] Figure 3 This is a schematic diagram of the rectangular mounting frame and mounting pad of this utility model;

[0019] Figure 4 This is a schematic diagram of the structure of the U-shaped shock absorber and the U-shaped sealing strip of this utility model;

[0020] Figure 5 This is a schematic diagram of the structure of the loop-shaped shock absorber and the loop-shaped limiting frame of this utility model;

[0021] Figure 6 This is a schematic diagram of the internal structure of the rectangular mounting frame of this utility model;

[0022] Figure 7 This is a schematic diagram of the elliptical deformable component of this utility model.

[0023] The labels in the attached diagram are: 1. Window frame; 2. Clear tempered glass; 3. Rectangular mounting frame; 4. Mounting pad; 5. Rectangular sliding block; 6. U-shaped shock absorber; 7. U-shaped sealing strip; 8. U-shaped limiting frame; 9. Rectangular sliding plate; 10. Longitudinal rubber column; 11. Longitudinal rigid spring; 12. Elliptical deformation component. Detailed Implementation

[0024] This specific embodiment is an impact-resistant white double-glazed insulated glass, and its structural schematic diagram is shown below. Figures 1-7 As shown, the insulated glass includes a window frame 1, a rectangular mounting frame 3 is fixed inside the window frame 1, mounting pads 4 are provided on both sides of the rectangular mounting frame 3, and tempered clear glass 2 is provided on the side of the mounting pad 4 away from the rectangular mounting frame 3. Multiple impact-resistant mechanisms are evenly distributed between the mounting pad 4 and the rectangular mounting frame 3.

[0025] The impact-resistant mechanism includes two rectangular sliding blocks 5. Both sides of the rectangular mounting frame 3 are slidably connected to the rectangular sliding blocks 5. The side of the rectangular sliding block 5 close to the mounting pad 4 is fixedly connected to the mounting pad 4. The side of the rectangular sliding block 5 away from the mounting pad 4 is fixed with a rectangular sliding plate 9. Both ends between the two rectangular sliding plates 9 are fixed with longitudinal rubber columns 10. A longitudinal rigid spring 11 is provided on the outside of the longitudinal rubber column 10 and between the rectangular sliding plates 9.

[0026] The longitudinal rubber column 10 is made of silicone rubber. Silicone rubber is a type of high molecular elastomer with polysiloxane as the main chain. It has unique temperature resistance, flexibility and chemical stability. It is widely used in the fields of buffering, sealing and insulation. When the two rectangular sliding plates 9 move, the longitudinal rubber column 10 is deformed by force, which can provide buffering performance for the white tempered glass 2.

[0027] The rectangular mounting frame 3 has a rectangular sliding groove inside. The rectangular sliding plate 9 is located inside the rectangular sliding groove and is slidably connected to the rectangular mounting frame 3 through the rectangular sliding groove. The rectangular sliding groove allows the rectangular sliding plate 9 to move inside the rectangular mounting frame 3, thereby enabling the two rectangular sliding plates 9 to move the mounting pad 4.

[0028] An elliptical deformation element 12 is provided between the two rectangular sliding plates 9 and inside the rectangular sliding groove. The elliptical deformation element 12 is made of spring steel, which is a high-performance steel specially designed for manufacturing springs. It has excellent elastic deformation capacity and fatigue resistance. It can undergo elastic deformation when subjected to large loads, absorb impact energy, and quickly return to its original shape after unloading, providing a stable buffering effect.

[0029] A U-shaped limiting frame 8 is fixed inside the rectangular mounting frame 3. A U-shaped shock absorber 6 is set on the outside of the U-shaped limiting frame 8. A U-shaped sealing strip 7 is fixed on both sides of the U-shaped shock absorber 6. The U-shaped sealing strip 7 is connected to the mounting pad 4. The U-shaped shock absorber 6 is made of extruded polystyrene. Extruded polystyrene has excellent compressive strength, low thermal conductivity and excellent moisture resistance. Its dense cell structure gives the material high compressive strength and elastic recovery ability, which can effectively absorb and disperse impact energy, while providing stable support performance. When the clear tempered glass 2 is impacted, the U-shaped shock absorber 6 can effectively absorb the impact energy to prevent damage to the clear tempered glass 2.

[0030] Working principle: When the insulated glass using this technical solution is impacted, the rectangular sliding block 5 can move inside the rectangular mounting frame 3. The movement of the rectangular sliding block 5 causes the rectangular sliding plate 9 to move inside the rectangular mounting frame 3. The movement of the rectangular sliding plate 9 causes the longitudinal rubber column 10 and the longitudinal rigid spring 11 to deform under force. Through the setting of the longitudinal rubber column 10 and the longitudinal rigid spring 11, the impact force can be effectively absorbed. Furthermore, the movement of the insulated glass 2 causes the U-shaped shock absorber 6 to be compressed. The U-shaped shock absorber 6 can effectively absorb the impact energy to prevent damage to the insulated glass 2.

[0031] All technical features in this embodiment can be freely combined according to actual needs.

[0032] The above embodiments are preferred implementations of this utility model. In addition, this utility model can also be implemented in other ways. Any obvious substitutions without departing from the concept of this technical solution are within the protection scope of this utility model.

Claims

1. An impact-resistant double-glazed insulating glass unit, characterized in that: The insulated glass includes a window frame (1), a rectangular mounting frame (3) is fixed inside the window frame (1), mounting pads (4) are provided on both sides of the rectangular mounting frame (3), and tempered clear glass (2) is provided on the side of the mounting pad (4) away from the rectangular mounting frame (3). Multiple impact-resistant mechanisms are evenly distributed between the mounting pad (4) and the rectangular mounting frame (3).

2. The impact-resistant double-glazed insulating glass according to claim 1, characterized in that: The impact-resistant mechanism includes two rectangular sliding blocks (5). Both sides of the rectangular mounting frame (3) are slidably connected to the rectangular sliding blocks (5). The rectangular sliding blocks (5) are fixed to the mounting pad (4) on the side closer to the mounting pad (4). A rectangular sliding plate (9) is fixed to the side of the rectangular sliding blocks (5) away from the mounting pad (4). Longitudinal rubber columns (10) are fixed to both ends between the two rectangular sliding plates (9). A longitudinal rigid spring (11) is provided on the outside of the longitudinal rubber column (10) and between the rectangular sliding plates (9).

3. The impact-resistant double-glazed insulating glass according to claim 2, characterized in that: The longitudinal rubber column (10) is made of silicone rubber.

4. The impact-resistant double-glazed insulating glass according to claim 2, characterized in that: The rectangular mounting frame (3) has a rectangular sliding groove inside, and the rectangular sliding plate (9) is located inside the rectangular sliding groove and is slidably connected to the rectangular mounting frame (3) through the rectangular sliding groove.

5. The impact-resistant double-glazed insulating glass according to claim 2, characterized in that: An elliptical deformation member (12) is provided between the two rectangular sliding plates (9) and inside the rectangular sliding groove. The elliptical deformation member (12) is made of spring steel.

6. The impact-resistant double-glazed insulating glass according to claim 1, characterized in that: The rectangular mounting frame (3) has a U-shaped limiting frame (8) fixed inside. A U-shaped shock absorber (6) is provided on the outside of the U-shaped limiting frame (8). A U-shaped sealing strip (7) is fixed on both sides of the U-shaped shock absorber (6). The U-shaped sealing strip (7) is connected to the mounting pad (4). The U-shaped shock absorber (6) is made of extruded polystyrene.