High-toughness composite tempered glass

By introducing base layer, explosion-proof layer, impact-resistant layer and heat-insulating layer into tempered glass, and adopting a rod slot structure, it is easy to disassemble and assemble, solving the problems of inconvenience and fragility of tempered glass, and improving safety and energy-saving effects.

CN223151926UActive Publication Date: 2025-07-25KUQA ZHENXING GLASS TECH CO LTD
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Patent Information

Application Number
CN202422069365.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-07-25
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

The existing tempered glass is inconvenient to replace and is fragile under external impact, resulting in increased safety hazards and energy consumption.

Method used

A high-tough composite tempered glass is designed, including a base layer, explosion-proof layer, impact-resistant layer and heat-insulating layer, and is easy to disassemble and assemble through the insert rod and slot structure, and it combines springs and fixing bolts to achieve rapid replacement, and breaks into fine particles during impact to reduce the risk of damage and energy consumption.

Benefits of technology

It realizes convenient replacement of tempered glass and improves safety during impact, reduces the risk of breakage damage, reduces energy consumption, and improves the energy-saving effect of the building.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of toughened glass, in particular to high-toughness composite toughened glass, which comprises a first frame body and toughened glass bodies positioned on two sides of the first frame body, and further comprises a first slot and a second slot which are respectively arranged at two ends of the first frame body, a first inserting rod is movably connected in the first slot, and a second inserting rod is movably connected in the second slot. A second frame body is fixed at the other end of the first insertion rod; the connecting frame is movably connected to the interior of the other end of the second frame body, a spring is fixedly connected between the bottom end of the connecting frame and the interior of the top end of the second frame body, a transverse frame is fixedly connected to the top end of the connecting frame, and a second inserting rod is fixed to the bottom of the other end of the transverse frame; according to the utility model, the first frame body and the second frame body can be detached, so that the toughened glass body can be conveniently replaced subsequently, and meanwhile, even if the toughened glass body is impacted by an external force, the toughened glass cannot be broken in a large area like common glass.
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Description

Technical Field

[0001] The utility model relates to the technical field of toughened glass, in particular to a high-toughness composite toughened glass. Background Technique

[0002] Toughened glass belongs to safety glass. In fact, toughened glass is a kind of prestressed glass. To improve the strength of the glass, chemical and physical methods are usually used to form compressive stress on the glass surface. When the glass bears external force, the surface stress is offset first, thereby improving the bearing capacity and enhancing the wind pressure resistance, cold and heat resistance, and impact resistance of the glass itself.

[0003] Toughened glass is often installed inside a glass frame and forms a cavity. The toughened glass and the glass frame are often connected by glass glue between the glass frame and the two toughened glasses on the inner side of the frame. When one of the toughened glasses is damaged, workers need to cut the glue on the frame bit by bit, which brings inconvenience to the replacement of the toughened glass by workers. Content of the Utility Model

[0004] The purpose of the utility model is to provide a high-toughness composite toughened glass to solve the problems raised in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A high-toughness composite toughened glass, including a first frame body and toughened glass bodies on both sides thereof, further comprising:

[0006] A first slot and a second slot respectively opened at both ends of the first frame body. A first insertion rod is movably connected inside the first slot, and the other end of the first insertion rod is fixed with a second frame body;

[0007] A connection frame movably connected inside the other end of the second frame body. A spring is fixedly connected between the bottom end of the connection frame and the inside of the top end of the second frame body. The top end of the connection frame is fixedly connected with a cross frame, and a second insertion rod is fixed at the bottom of the other end of the cross frame;

[0008] Fixing holes opened on both sides of the surfaces of the second insertion rod and the first insertion rod. Fixing bolts are threadedly connected to both sides of both ends of the first frame body and are used in cooperation with the inside of the fixing holes

[0009] Preferably, the toughened glass body further includes a base layer, an explosion-proof layer, an impact-resistant layer, and a heat-insulating layer. The explosion-proof layer is arranged on the outer side of the base layer, the impact-resistant layer is arranged on the side of the explosion-proof layer away from the base layer, and the heat-insulating layer is arranged on the outermost side of the impact-resistant layer.

[0010] Preferably, cavities are provided between adjacent base layers on the left and right, and inert gas is provided inside the cavities.

[0011] Preferably, soft pads are provided on the top surface of the first insertion rod and the surface of one side of the second insertion rod, and the soft pads are made of rubber material.

[0012] Preferably, the impact-resistant layer is made of polymethyl methacrylate, and the explosion-proof layer is made of polyvinyl butyral.

[0013] Preferably, the heat-insulating layer is made of phosphate absorption glass.

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

[0015] 1. Through the movable connection between the surface of the first insertion rod and the inside of the first insertion slot and the movable connection between the second insertion rod and the inside of the first insertion slot of the present utility model, the second frame body can drive the first insertion rod to disengage from the inside of the first insertion slot, and through the stretching tension of the spring itself, it can always drive the connection frame and the cross frame to move downward, so that the second insertion rod can not only be inserted into the inside of the second insertion slot, but also be disengaged from the inside of the second insertion slot, thereby achieving the effect of convenient disassembly and assembly to facilitate the subsequent replacement of the tempered glass body.

[0016] 2. Through the arrangement of the base layer, the explosion-proof layer, the impact-resistant layer and the heat-insulating layer of the present utility model, when the tempered glass body is impacted by external force, the glass will not break into large pieces like ordinary glass, but will break into small particles, thus greatly reducing the risk of injury caused by glass breakage, and can also effectively block the external heat from entering the room, thereby reducing the energy consumption of the indoor air conditioner and improving the energy-saving effect of the building. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is the three-dimensional structure schematic diagram of the present utility model;

[0018] Figure 2 is the three-dimensional separated structure schematic diagram of the present utility model;

[0019] Figure 3 is the partial cross-sectional structure schematic diagram of the present utility model;

[0020] Figure 4 is the laminated structure schematic diagram of the tempered glass of the present utility model.

[0021] In the figure: 1, tempered glass body; 101, base layer; 102, explosion-proof layer; 103, impact-resistant layer; 104, heat-insulating layer; 2, first frame body; 3, first insertion slot; 4, second insertion slot; 5, second frame body; 6, first insertion rod; 7, connection frame; 8, spring; 9, cross frame; 10, second insertion rod; 11, fixing hole; 12, fixing bolt; 13, cavity; 14, soft pad. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] To further elaborate on the technical means and effects adopted by the present utility model to achieve the predetermined utility model purpose, the following will, in conjunction with the accompanying drawings and preferred embodiments, detail the specific implementation manners, structures, features and their effects of the present utility model as follows.

[0023] Please refer to Figures 1-4 As shown in the figure, a high-toughness composite tempered glass includes a first frame body 2 and tempered glass bodies 1 on both sides thereof. First slots 3 and second slots 4 are respectively formed at both ends of the first frame body 2. A first insertion rod 6 is movably connected inside the first slot 3. The other end of the first insertion rod 6 is fixed with a second frame body 5. A connection frame 7 is movably connected inside the other end of the second frame body 5. A spring 8 is fixedly connected between the bottom end of the connection frame 7 and the inside of the top end of the second frame body 5. The top end of the connection frame 7 is fixedly connected with a cross frame 9. A second insertion rod 10 is fixed at the bottom of the other end of the cross frame 9. Fixing holes 11 are formed on both sides of the surfaces of the second insertion rod 10 and the first insertion rod 6. Fixing bolts 12 that are in cooperation with the inside of the fixing holes 11 are threadedly connected to both sides of both ends of the first frame body 2.

[0024] The tempered glass body 1 further includes a base layer 101, an explosion-proof layer 102, an impact-resistant layer 103 and a heat-insulating layer 104. The explosion-proof layer 102 is provided on the outer side of the base layer 101. The impact-resistant layer 103 is provided on the side of the explosion-proof layer 102 away from the base layer 101. The heat-insulating layer 104 is provided on the outermost side of the impact-resistant layer 103. In this way, even when the tempered glass body 1 is subjected to external force impact, the glass will not break into large pieces like ordinary glass, but will break into small particles, thereby greatly reducing the risk of injury caused by glass breakage, and can also effectively block the heat from the outside from entering the room, thereby reducing the energy consumption of the indoor air conditioner and improving the energy-saving effect of the building.

[0025] A cavity 13 is provided between adjacent base layers 101 on the left and right, and an inert gas is provided inside the cavity 13. Through the setting of the inert gas, the sound insulation performance of the glass is increased, and the transmission of noise is thereby weakened.

[0026] Soft pads 14 are provided on the top surface of the first insertion rod 6 and the surface of one side of the second insertion rod 10, and the soft pads 14 are made of rubber material. In this way, the friction between the first insertion rod 6 and the second insertion rod 10 and the inside of the first slot 3 and the second slot 4 can be increased, and the fixing effect can be thereby improved.

[0027] The material of the impact-resistant layer 103 is polymethyl methacrylate, and the material of the explosion-proof layer 102 is polyvinyl butyral. Such a setting makes the tempered glass have good adhesiveness and toughness, and can absorb energy when the glass is impacted, preventing the glass from breaking or reducing the degree of breakage.

[0028] The heat-insulating layer 104 is made of phosphate-absorbing glass, so that the tempered glass body 1 has a good heat-insulating effect.

[0029] Working principle: When disassembling and assembling the tempered glass body 1, the tempered glass body 1 can be placed inside the first frame body 2, and then one end of the second frame body 5 is inserted into the first slot 3, and then the horizontal frame 9 is applied with force upward, and the connecting frame 7 is driven to move together, so that the spring 8 is stretched. When the second frame body 5 is fitted with the right side of the tempered glass body 1, the horizontal frame 9 can be loosened. At this time, the spring 8 itself is stretched and the connecting frame 7 and the horizontal frame 9 are driven back to the starting position, so that the second plug rod 10 can enter the second slot 4. After that, the fixing bolt 12 can be screwed into the fixing hole 11, so as to fix the first frame body 2 and the first plug rod 6 and the second plug rod 10. If disassembly is performed, the fixing bolt 12 can be rotated, and the first plug rod 6 and The second plug rod 10 is limited between the positions, and then the horizontal frame 9 is pulled upward to make the second plug rod 10 disengage from the interior of the second slot 4, and then the second frame 5 is moved to the right, and the first plug rod 6 is slid out from the interior of the first slot 3, and then the tempered glass body 1 can be replaced. When the tempered glass body 1 is in use, the base layer 101, the explosion-proof layer 102, the impact-resistant layer 103 and the heat-insulating layer 104 are arranged, so that even when the tempered glass body 1 is impacted by external force, the glass will not produce large-scale shattering like ordinary glass, but will be broken into fine particles, thereby greatly reducing the risk of injury caused by glass breakage, and can also effectively block the external heat from entering the room, thereby reducing the energy consumption of indoor air conditioning and improving the energy-saving effect of the building.

[0030] The above description is only a preferred embodiment of the present invention and does not constitute any form of limitation to the present invention. Although the present invention has been disclosed as a preferred embodiment as above, it is not intended to limit the present invention. Any technical personnel in this field can make some changes or modify the technical contents disclosed above into equivalent embodiments without departing from the scope of the technical solution of the present invention. However, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention are still within the scope of the technical solution of the present invention.

Claims

1. A high-toughness composite tempered glass, comprising a first frame body (2) and tempered glass bodies (1) on both sides thereof, characterized in that, It further includes: A first slot (3) and a second slot (4) respectively opened at both ends of the first housing (2). A first plug rod (6) is movably connected inside the first slot (3), and the other end of the first plug rod (6) is fixed with a second housing (5); A connecting frame (7) movably connected inside the other end of the second housing (5). A spring (8) is fixedly connected between the bottom end of the connecting frame (7) and the inside of the top end of the second housing (5). The top end of the connecting frame (7) is fixedly connected with a cross frame (9), and a second plug rod (10) is fixed at the bottom of the other end of the cross frame (9); Fixing holes (11) opened on both sides of the surfaces of the second plug rod (10) and the first plug rod (6). Fixing bolts (12) which are in fit with the inside of the fixing holes (11) are threadedly connected on both sides of both ends of the first housing (2).

2. A high-toughness composite toughened glass according to claim 1, characterized in that: The toughened glass body (1) further includes a base layer (101), an explosion-proof layer (102), an impact-resistant layer (103) and a heat-insulating layer (104). The explosion-proof layer (102) is arranged on the outer side of the base layer (101). The impact-resistant layer (103) is arranged on the side of the explosion-proof layer (102) away from the base layer (101). The heat-insulating layer (104) is arranged on the outermost side of the impact-resistant layer (103).

3. The high-toughness composite toughened glass according to claim 2, wherein: A cavity (13) is arranged between adjacent base layers (101) on the left and right, and an inert gas is arranged inside the cavity (13).

4. A highly resilient composite toughened glass according to claim 1, characterized in that: Soft pads (14) are arranged on the top surface of the first plug rod (6) and the surface of one side of the second plug rod (10), and the soft pads (14) are made of rubber material.

5. A high-toughness composite toughened glass according to claim 2, characterized in that: The material of the impact-resistant layer (103) is polymethyl methacrylate, and the material of the explosion-proof layer (102) is polyvinyl butyral.

6. The high-toughness composite toughened glass according to claim 2, characterized in that: The heat-insulating layer (104) is made of phosphate absorption glass.