Hollow glass for super high-rise building
By using a hollow glass containing a steel wire mesh layer, explosion-proof film, UV-proof film, heat-proof layer and anti-oxidation film in ultra-high-rise buildings, the problem of fragment splashing after glass is broken is solved, the safety and durability of the glass is improved, and excellent ultraviolet barrier and thermal insulation effect is provided.
Patent Information
- Application Number
- CN202421872613.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-08-05
AI Technical Summary
In super-high-rise buildings, the glass slag produced by the breaking of glass is likely to fall down, causing losses of life and property.
A hollow glass including a base layer, a steel wire mesh layer, an explosion-proof film, an ultraviolet-proof film, a heat-insulating layer and an oxide-proof film are used. The wire mesh layer increases the crack resistance of the glass through the braided structure of the first steel wire and the second steel wire, the explosion-proof film and the ultraviolet-proof film improve the safety and ultraviolet barrier ability of the glass, and the heat insulation layer and the anti-oxidation film enhance the heat insulation and oxidation resistance of the glass.
Through the combination of the wire mesh layer and the explosion-proof layer, the hollow glass can resist cracks and prevent fragments from splashing, which improves the safety of the glass; the ultraviolet film and the anti-oxidation film make the glass have excellent ultraviolet barrier properties and oxidation resistance, maintaining high transparency and durability; the heat insulation layer has good thermal insulation effect, preventing heat energy from being transferred into the room.
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Figure CN222875508U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass, in particular to a hollow glass for super high-rise buildings. Background Art
[0002] Super high-rise buildings refer to buildings with more than 40 floors and a height of more than 100 meters. Windows need to be opened during the construction process, so a large amount of glass is needed.
[0003] However, since these high-rise buildings use a large amount of glass, when other objects collide violently with the glass, the glass fragments produced after the glass breaks can easily fall down, causing damage to other people's lives and property. Utility Model Content
[0004] The utility model aims to solve the shortcomings in the prior art and proposes a hollow glass for super high-rise buildings.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0006] A hollow glass for super high-rise buildings comprises a base layer, the upper surface of which is provided with a steel mesh layer, the steel mesh layer comprises a first steel wire and a second steel wire, and the first steel wire and the second steel wire are woven together, and an explosion-proof film is provided at the bottom of the base layer.
[0007] As a further solution of the utility model, an anti-ultraviolet film is provided at the bottom of the explosion-proof film.
[0008] As a further solution of the utility model, the bottom of the anti-ultraviolet film is coated with a second anti-oxidation film.
[0009] As a further solution of the present invention, a heat insulation layer is provided on the upper surface of the steel mesh layer.
[0010] As a further solution of the utility model, the upper surface of the thermal insulation layer is coated with a first anti-oxidation film.
[0011] As a further solution of the utility model, the base layer includes a glass substrate, and a hollow layer is opened inside the glass substrate.
[0012] The beneficial effects of the utility model are:
[0013] 1. Through the use of wire mesh layer and explosion-proof layer, the insulating glass can resist cracking, making the glass stronger. At the same time, when the glass breaks, it can effectively prevent the fragments from flying, thereby improving the safety of the glass.
[0014] 2. The anti-ultraviolet film of the utility model can make the insulating glass have excellent ultraviolet blocking property while maintaining high transparency. The first anti-oxidation film and the second anti-oxidation film have antioxidant properties and can maintain the stability of their physical and chemical properties under different environmental conditions.
[0015] 3. The heat-insulating layer of the utility model has good durability and transparency, can withstand long-term sunlight without being easily discolored or degraded, has good heat-insulating effect, and can effectively block heat energy from entering the room. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a three-dimensional structural schematic diagram of a hollow glass for super high-rise buildings proposed by the utility model;
[0017] Figure 2 This is a schematic diagram of the base structure of a hollow glass for super high-rise buildings proposed by the utility model;
[0018] Figure 3 The utility model is a schematic diagram of the steel wire mesh layer structure of a hollow glass for super high-rise buildings.
[0019] In the figure: 1. first anti-oxidation film; 2. heat insulation layer; 3. steel wire mesh layer; 4. base layer; 5. explosion-proof film; 6. anti-ultraviolet film; 7. second anti-oxidation film; 8. hollow layer; 9. glass substrate; 10. first steel wire; 11. second steel wire. DETAILED DESCRIPTION
[0020] It should be noted that the terms "first", "second", etc. in the specification and claims of this application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence, so that the embodiments of the application described here, based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative work should fall within the scope of protection of this application.
[0021] Reference Figure 1-Figure 3 A hollow glass for super high-rise buildings includes a base layer 4, an upper surface of the base layer 4 is provided with a steel mesh layer 3, the steel mesh layer 3 includes a first steel wire 10 and a second steel wire 11, and the first steel wire 10 and the second steel wire 11 are woven together, the steel mesh layer 3 has a crack-resistant effect, and makes the hollow glass more solid, an explosion-proof film 5 is provided at the bottom of the base layer 4, and the explosion-proof film 5 is made of PVB film, which can adhere to the glass. Once the glass is broken, it can effectively prevent the fragments from splashing.
[0022] In the present invention, it should be noted that an anti-ultraviolet film 6 is provided at the bottom of the explosion-proof film 5. The anti-ultraviolet film 6 is made of polymethyl methacrylate. Polymethyl methacrylate can make the glass have excellent ultraviolet blocking properties while maintaining high transparency. The bottom of the anti-ultraviolet film 6 is coated with a second anti-oxidation film 7. The upper surface of the steel wire mesh layer 3 is provided with an insulating layer 2. The insulating layer 2 is made of PET. It is insoluble in any organic solvent at room temperature, resistant to corrosion by acids, alkalis and various salts, has good durability and transparency, and can withstand long-term It is not easy to change color or degrade under the sun, has good durability and transparency, can withstand long-term sunlight without changing color or degrading, has good heat insulation effect, and can effectively block the heat energy from entering the room. The upper surface of the heat insulation layer 2 is coated with a first anti-oxidation film 1. The materials of the first anti-oxidation film 1 and the second anti-oxidation film 7 are mainly polyester substrates, which have antioxidant properties and can maintain the stability of their physical and chemical properties under different environmental conditions, so that the hollow glass has strong durability. The base layer 4 includes a glass substrate 9, and a hollow layer 8 is opened inside the glass substrate 9.
[0023] The present invention has been described through the above-mentioned embodiments. Those skilled in the art will appreciate that the present invention is not limited to the above-mentioned embodiments, and more modifications may be made according to the teachings of the present invention. These modifications are all within the scope of protection claimed by the present invention. The scope of protection of the present invention is defined by the attached claims and their equivalents.
Claims
1. A hollow glass for super high-rise buildings, comprising a base layer (4), characterized in that: A steel mesh layer (3) is provided on the upper surface of the base layer (4), wherein the steel mesh layer (3) comprises a first steel wire (10) and a second steel wire (11), wherein the first steel wire (10) and the second steel wire (11) are woven together, and an explosion-proof membrane (5) is provided at the bottom of the base layer (4).
2. The insulating glass for super high-rise buildings according to claim 1, characterized in that: An anti-ultraviolet film (6) is provided at the bottom of the explosion-proof film (5).
3. The insulating glass for super high-rise buildings according to claim 2, characterized in that: The bottom of the anti-ultraviolet film (6) is coated with a second anti-oxidation film (7).
4. The insulating glass for super high-rise buildings according to claim 1, characterized in that: The upper surface of the steel wire mesh layer (3) is provided with a heat insulation layer (2).
5. The insulating glass for super high-rise buildings according to claim 4, characterized in that: The upper surface of the heat insulation layer (2) is coated with a first anti-oxidation film (1).
6. The insulating glass for super high-rise buildings according to claim 1, characterized in that: The base layer (4) comprises a glass substrate (9), and a hollow layer (8) is provided inside the glass substrate (9).