Reinforced anti-seismic laminated glass capable of insulating sound and heat
By setting internal and external sound insulation layers, heat insulation layers and antistatic layers in laminated glass, and using protective frames and specific glass panels, the problems of insufficient sound insulation and heat insulation and earthquake resistance of laminated glass are solved, and its safety and service life are improved.
Patent Information
- Application Number
- CN202422482322.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-10-15
AI Technical Summary
Existing laminated glass has insufficient sound insulation and heat insulation performance, and is prone to breakage during earthquakes, posing a safety hazard.
The combined design of internal and external sound insulation layers, heat insulation layers and antistatic layers, combined with a protective frame and specific glass panel materials, enhances the overall sound insulation and heat insulation performance of laminated glass, and provides buffering protection through the rubber frame.
It achieves all-round sound insulation and heat insulation effects, improves the earthquake resistance of laminated glass, reduces dust adhesion, and enhances safety and service life.
Smart Images

Figure CN223330457U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of laminated glass, in particular to a reinforced earthquake-resistant laminated glass capable of sound insulation and heat insulation. Background Art
[0002] During an earthquake, buildings are subjected to vibration. Glass windows, as fragile and brittle materials, can easily break during an earthquake, causing harm to people and safety hazards. In order to improve the seismic performance of buildings and reduce the damage caused by earthquakes to glass materials, the use of seismic-resistant laminated glass in buildings is particularly important.
[0003] At present, although the existing laminated glass is provided with sound insulation and heat insulation materials during use, since the sound insulation and heat insulation materials are mostly provided between two glasses, the sound insulation and heat insulation performance is insufficient. Therefore, in order to advance the industry technology, better realize the sound insulation and heat insulation functions of laminated glass, and improve the competitiveness of core technology, this application proposes a new implementation scheme that is different from the laminated glass structure in the prior art. Utility Model Content
[0004] The purpose of the utility model is to solve the problem of insufficient sound insulation and heat insulation performance of existing laminated glass, and to propose a reinforced earthquake-resistant laminated glass that can be soundproof and heat-insulated.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0006] A reinforced, earthquake-resistant laminated glass capable of sound and heat insulation comprises a laminated glass assembly and a protective frame, wherein the laminated glass assembly is located within the protective frame, the laminated glass assembly comprises an inner glass plate, an outer glass plate and a supporting glass plate, inner sound insulation layers are respectively provided on both sides of the supporting glass plate, inner heat insulation layers are respectively provided on one side of the two inner sound insulation layers, and the two inner heat insulation layers are respectively provided on one side of the corresponding inner glass plate and outer glass plate, outer sound insulation layers are respectively provided on the other side of the inner glass plate and outer glass plate, and outer heat insulation layers are respectively provided on one side of the two outer sound insulation layers.
[0007] Furthermore, an inner rubber frame and an outer rubber frame are bonded to the inner surface and outer surface of the protective frame respectively, and the inner rubber frame is bonded to the outer surface of the laminated glass assembly.
[0008] Furthermore, an antistatic layer is provided on one side of each of the two outer heat-insulating layers.
[0009] Furthermore, the inner sound insulation layer and the outer sound insulation layer are both PVB sound insulation film layers.
[0010] Furthermore, the inner heat insulation layer and the outer heat insulation layer are both heat reflection film layers.
[0011] Furthermore, the antistatic layer is a conductive polyethylene film layer.
[0012] Furthermore, the supporting glass plate is a fluorophosphate glass plate.
[0013] The beneficial effects of the utility model are:
[0014] 1. The laminated glass can be protected from sound and heat by combining two inner sound insulation layers, two outer sound insulation layers, two inner heat insulation layers, and two outer heat insulation layers. The two inner sound insulation layers, two outer sound insulation layers, two inner heat insulation layers, and two outer heat insulation layers are distributed in the inner, middle, and outer positions of the laminated glass, which can provide all-round and integrated sound and heat insulation protection for the laminated glass, thereby enhancing the sound and heat insulation performance of the laminated glass during use.
[0015] 2. The design of the protective frame can provide load-bearing protection for the outer surface of the laminated glass assembly, so that when the building is subjected to vibration impact, the pressure on the laminated glass assembly is reduced, thereby enhancing the use of the laminated glass. The inner rubber frame can provide load-bearing buffering between the protective frame and the laminated glass assembly to avoid collisions between the laminated glass assembly and the protective frame. The outer rubber frame can prevent the laminated glass and the curtain wall from being damaged by collisions, thereby improving the safety of the laminated glass.
[0016] 3. Through the design of two antistatic layers, the inside and outside of the laminated glass can be protected against static electricity respectively, reducing the amount of dust adhering to the inside and outside of the laminated glass when in use, making it easier for operators to clean. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of a reinforced, earthquake-resistant laminated glass that can provide sound insulation and heat insulation, as proposed by the present invention;
[0018] Figure 2 This is a schematic cross-sectional view of a reinforced, earthquake-resistant laminated glass that provides sound insulation and heat insulation, as proposed by the present invention;
[0019] Figure 3 This is a schematic diagram of the enlarged structure of point A of the reinforced earthquake-resistant laminated glass that can be soundproof and heat-insulated proposed by the utility model;
[0020] Figure 4 This is a schematic diagram of the explosion separation structure of a reinforced earthquake-resistant laminated glass that can provide sound insulation and heat insulation, proposed by the utility model.
[0021] In the figure: 1. Laminated glass assembly; 101. Inner glass panel; 102. Outer glass panel; 103. Load-bearing glass panel; 104. Inner sound insulation layer; 105. Inner heat insulation layer; 106. Outer sound insulation layer; 107. Outer heat insulation layer; 2. Protective frame; 3. Inner rubber frame; 4. Outer rubber frame; 5. Antistatic layer. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0023] Reference Figure 1-Figure 4 A reinforced earthquake-resistant laminated glass with sound insulation and heat insulation includes a laminated glass component 1 and a protective frame 2, and the laminated glass component 1 is located in the protective frame 2. The inner and outer surfaces of the protective frame 2 are respectively bonded with an inner rubber frame 3 and an outer rubber frame 4, and the inner rubber frame 3 is bonded to the outer surface of the laminated glass component 1. Through the design of the protective frame 2, the outer surface of the laminated glass component 1 can be load-bearing and protected, so that when the building is subjected to vibration impact, the pressure on the laminated glass component 1 is reduced, thereby strengthening the use of the laminated glass, and the inner rubber frame 3 can provide load-bearing buffering between the protective frame 2 and the laminated glass component 1 to avoid collision between the laminated glass component 1 and the protective frame 2, and the outer rubber frame 4 can prevent the laminated glass and the curtain wall from being damaged by collision, thereby improving the safety of the laminated glass.
[0024] The laminated glass assembly 1 includes an inner glass plate 101, an outer glass plate 102 and a supporting glass plate 103. The supporting glass plate 103 is provided with an inner sound insulation layer 104 on both sides. One side of the two inner sound insulation layers 104 is provided with an inner heat insulation layer 105. The two inner heat insulation layers 105 are provided on one side of the corresponding inner glass plate 101 and outer glass plate 102. The other side of the inner glass plate 101 and outer glass plate 102 is provided with an outer sound insulation layer 106. One side of the two outer sound insulation layers 106 is provided with an outer The heat-insulating layer 107 can provide sound and heat insulation protection for the laminated glass by combining the two inner sound-insulating layers 104, the two outer sound-insulating layers 106, the two inner heat-insulating layers 105, and the two outer heat-insulating layers 107. The two inner sound-insulating layers 104, the two outer sound-insulating layers 106, the two inner heat-insulating layers 105, and the two outer heat-insulating layers 107 are distributed in the inner, middle, and outer positions of the laminated glass, which can provide all-round and integrated sound and heat insulation protection for the laminated glass, thereby enhancing the sound and heat insulation performance of the laminated glass during use.
[0025] An antistatic layer 5 is provided on one side of the two outer insulation layers 107. Through the design of the two antistatic layers 5, the inside and outside of the laminated glass can be respectively protected against static electricity, thereby reducing the amount of dust adhering to the inside and outside of the laminated glass when in use, making it easier for operators to clean.
[0026] At the same time, the inner sound insulation layer 104 and the outer sound insulation layer 106 are both PVB sound insulation film layers, which have the advantage of reducing noise and can ensure the sound insulation effect of the laminated glass; the inner heat insulation layer 105 and the outer heat insulation layer 107 are both heat reflection film layers, which can effectively reflect infrared rays, reduce the heat radiation received in the room, thereby lowering the indoor temperature, reducing the frequency of use and energy consumption of refrigeration equipment such as air conditioners, and ensuring the heat insulation performance of the laminated glass, so that the laminated glass can be used in an environmentally friendly manner; the antistatic layer 5 is a conductive polymer. The ethylene film layer and the conductive polyethylene film layer have excellent antistatic properties, reduce the adhesion of dust on the surface of the laminated glass, and are convenient to use; the supporting glass plate 103 is a fluorophosphate glass plate. The relative density of fluorophosphate glass is generally lower than that of traditional heavy glass and fluoride glass, and it has good mechanical strength and lightness. In this way, the fluorophosphate glass plate is combined with the inner glass plate 101 and the outer glass plate 102 to improve the overall strength of the laminated glass assembly 1, enhance the bearing capacity of the laminated glass, and ensure the practicality of the laminated glass.
[0027] The working principle of this embodiment is as follows: when in use, the laminated glass is installed in the curtain wall glass installation cavity by the operator, and the outer surface of the outer rubber frame 4 contacts the inner surface of the curtain wall glass installation cavity. In this way, the sealing between the laminated glass and the curtain wall is ensured, the transfer of external heat is reduced, and at the same time, the laminated glass and the curtain wall are prevented from being damaged by collision;
[0028] During the use of the laminated glass, the multiple inner and outer PVB sound insulation film layers formed by the two inner sound insulation layers 104 and the two outer sound insulation layers 106 are designed. Since the PVB sound insulation film layer has the excellent characteristic of reducing noise, the laminated glass can be provided with integrated sound insulation protection inside, inside and outside. The multiple inner and outer heat reflection film layers formed by the two inner heat insulation layers 105 and the two outer heat insulation layers 107 are designed. Since the heat reflection film has the characteristic of effectively reflecting infrared rays, it can reduce the heat radiation received in the room, thereby lowering the indoor temperature and reducing the frequency of use and energy consumption of refrigeration equipment such as air conditioners. Since the antistatic layer 5 is a conductive polyethylene film layer, the conductive polyethylene film layer has excellent antistatic performance, and the antistatic properties on both sides of the laminated glass assembly 1 The electrical layer 5 can reduce the amount of dust adhering to the inside and outside of the laminated glass when it is in use, making it easier for operators to clean. Since the supporting glass plate 103 is a fluorophosphate glass plate, the relative density of fluorophosphate glass is generally lower than that of traditional heavy glass and fluoride glass, and it has better mechanical strength and lightness, thereby improving the overall strength of the laminated glass assembly 1. The protective frame 2 can carry and protect the outer surface of the laminated glass assembly 1, so that when the building is subjected to vibration and impact, the pressure on the laminated glass assembly 1 is reduced, thereby strengthening the use of the laminated glass. The inner rubber frame 3 can carry and buffer the protective frame 2 and the laminated glass assembly 1, thereby avoiding collisions between the laminated glass assembly 1 and the protective frame 2. This is the use of the laminated glass.
[0029] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A reinforced, earthquake-resistant laminated glass capable of sound insulation and heat insulation, comprising a laminated glass assembly (1) and a protective frame (2), wherein the laminated glass assembly (1) is located within the protective frame (2), and the laminated glass assembly (1) comprises an inner glass plate (101), an outer glass plate (102), and a supporting glass plate (103), characterized in that: Inner sound insulation layers (104) are respectively provided on both sides of the bearing glass plate (103); inner heat insulation layers (105) are respectively provided on one side of the two inner sound insulation layers (104); and the two inner heat insulation layers (105) are respectively provided on one side of the corresponding inner glass plate (101) and outer glass plate (102); outer sound insulation layers (106) are respectively provided on the other side of the inner glass plate (101) and outer glass plate (102); and outer heat insulation layers (107) are respectively provided on one side of the two outer sound insulation layers (106).
2. The soundproof and heat-insulating reinforced earthquake-resistant laminated glass according to claim 1, characterized in that: An inner rubber frame (3) and an outer rubber frame (4) are respectively bonded to the inner surface and the outer surface of the protective frame (2), and the inner rubber frame (3) is bonded to the outer surface of the laminated glass assembly (1).
3. The soundproof and heat-insulating reinforced earthquake-resistant laminated glass according to claim 1, characterized in that: An antistatic layer (5) is respectively provided on one side of the two outer heat-insulating layers (107).
4. The soundproof and heat-insulating reinforced earthquake-resistant laminated glass according to claim 1, characterized in that: The inner sound insulation layer (104) and the outer sound insulation layer (106) are both PVB sound insulation film layers.
5. The soundproof and heat-insulating reinforced earthquake-resistant laminated glass according to claim 1, characterized in that: The inner heat insulation layer (105) and the outer heat insulation layer (107) are both heat reflection film layers.
6. The soundproof and heat-insulating reinforced earthquake-resistant laminated glass according to claim 3, characterized in that: The antistatic layer (5) is a conductive polyethylene film layer.
7. The soundproof and heat-insulating reinforced earthquake-resistant laminated glass according to claim 1, characterized in that: The supporting glass plate (103) is a fluorophosphate glass plate.