Tempered hollow glass with sound insulation function
By using a triple-layer tempered glass assembly and a slow-release structure design, the problem of insufficient sound insulation in tempered insulated glass is solved, achieving effective sound insulation and preventing water vapor infiltration, thus improving the comfort of the living environment.
Patent Information
- Application Number
- CN202423202482.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Existing tempered insulated glass lacks sound insulation, resulting in serious indoor noise pollution, which affects the quality of life of residents and may have a negative impact on their health.
The tempered glass features a three-layer structure, including an outer nest, a slow-release cavity, and a desiccant compartment. Combined with sound-insulating hollow layer one and sound-insulating hollow layer two, the glass assembly is held in place by a mounting base and sealing strip. The slow-release cavity and pressure-reducing shell buffer external impact forces, providing a dry environment and improving sound insulation.
It effectively isolates sound transmission, enhances the thickness and sound insulation of glass components, prevents moisture penetration, keeps glass components dry, and reduces indoor noise pollution.
Smart Images

Figure CN223661658U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of toughened hollow glass, and relates to a toughened hollow glass with sound insulation function. BACKGROUND
[0002] The toughened hollow glass is mainly composed of two or more layers of toughened glass, and the glass sheets are connected by a certain interval. The interval usually maintains the distance between the glass and connects them by aluminum strips or silicone. The outer glass is a toughened glass with high temperature resistance, impact resistance and safety performance. Even if it breaks, it will not produce sharp fragments, reducing the risk of personal injury. As a common building material, the toughened hollow glass is widely used in modern buildings, and its original design is to provide safety, heat insulation and sound insulation and other functions. However, if the toughened hollow glass does not have effective sound insulation effect, it will cause a series of problems.
[0003] The lack of sound insulation effect of the toughened hollow glass will cause serious indoor noise pollution. In a busy urban environment, noise from the outside, such as traffic noise and human voice, will easily penetrate the glass and enter the room, affecting the daily life and work of the occupants. Long-term living in a noisy environment will not only reduce people's quality of life, but also may have a negative impact on people's physical and mental health, so there is an urgent need for a toughened hollow glass with sound insulation function to solve the above problems. SUMMARY
[0004] In view of the deficiencies in the prior art, the utility model aims to provide a toughened hollow glass with sound insulation function to solve the problems in the background art.
[0005] The utility model realizes the following technical scheme: a toughened hollow glass with sound insulation function, comprising: an outer nest and a slow-release cavity, the inner side of the outer nest is provided with a group of glass assemblies for providing sound insulation function;
[0006] The outer nest is made of rubber material, and the inner side of the outer nest is a hollow structure.
[0007] The inner side of the outer nest is provided with a group of side limit plates for connecting and fixing the front and rear embedding seats on the left and right ends, the side limit plates are connected and fixed with the inner part of the outer nest, the right side of the side limit plates is provided with a group of front embedding seats for mutually embedding and connecting with the inner part of the front side of the glass assembly, and the position of the glass assembly can be maintained by using the front and rear embedding seats.
[0008] In a preferred embodiment, the right rear end of the side limiting plate is provided with a set of rear inserts for interlocking with the rear interior of the glass assembly. Both the front insert and the rear insert are integral with the set of side limiting plates. Both the front insert and the rear insert are provided with a set of desiccant chambers for providing a dry environment inside the glass assembly. A dry environment can be provided inside the glass assembly by using the desiccant chambers.
[0009] In a preferred embodiment, the front and rear sides of the front insert and the rear insert are each provided with a set of sealing strips for sealing and fitting with the inside of the glass assembly, and the outer nest is provided with several sets of pressure-relieving shells for mitigating external impact forces.
[0010] In a preferred embodiment, the pressure-reducing shell has a regular hexagonal cross-section and a set of slow-release cavities inside. The slow-release cavities are hollow and can be used to slow down the release of external impact forces through the use of the slow-release cavities and the pressure-reducing shell.
[0011] In a preferred embodiment, the glass assembly includes a first glass layer and a third glass layer, and a set of sound-insulating hollow layers is provided on the rear side of the first glass layer to improve the sound insulation effect inside the front end of the glass assembly.
[0012] In a preferred embodiment, a set of glass layers is provided behind the first sound-insulating hollow layer, and a set of sound-insulating hollow layers is provided behind the second glass layer to improve the sound insulation effect of the rear end of the glass assembly. A set of glass layers is provided behind the second sound-insulating hollow layer to provide protection for the rear side of the glass assembly. The sound insulation effect of the glass assembly can be improved by using the first and second sound-insulating hollow layers.
[0013] In a preferred embodiment, glass layer one, glass layer two, and glass layer three are all made of tempered glass. The left and right sides of sound-insulating hollow layer one and sound-insulating hollow layer two are respectively sealed and fitted with a set of front inserts and a set of rear inserts. The interiors of sound-insulating hollow layer one and sound-insulating hollow layer two are hollow.
[0014] After adopting the above technical solution, the beneficial effects of this utility model are: maintaining the position of the glass assembly by using the front and rear mounting brackets, providing a dry environment inside the glass assembly by using the desiccant chamber, releasing external impact force by using the slow-release chamber and the pressure-relieving shell, and improving the sound insulation effect of the glass assembly by using the first sound-insulating hollow layer and the second sound-insulating hollow layer. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 This is a top view of the front structure of a tempered insulating glass unit with sound insulation function according to this utility model.
[0017] Figure 2 This is a front top view of the internal structure of the glass assembly in a tempered insulated glass unit with sound insulation function according to this utility model.
[0018] Figure 3 This is an enlarged view of point B in a tempered insulating glass with sound insulation function according to this utility model;
[0019] Figure 4 This is an enlarged view of point A in a tempered insulating glass unit with sound insulation function according to this utility model;
[0020] In the diagram: 100-outer nest, 110-glass assembly, 120-side limiting plate, 130-front insert, 140-rear insert, 150-desiccant compartment, 160-pressure-releasing shell, 170-slow-release chamber;
[0021] 11a - Glass layer one, 11b - Sound insulation hollow layer one, 11c - Glass layer two, 11d - Sound insulation hollow layer two, 11e - Glass layer three. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figures 1-4 A tempered insulated glass with sound insulation function includes: an outer nest 100, a glass assembly 110 and a slow-release cavity 170, wherein a set of glass assemblies 110 for providing sound insulation function is provided on the inner side of the outer nest 100.
[0024] The front cross-section of the outer nest 100 is a rectangular structure. The outer nest 100 is made of a rubber material, and the inner side of the outer nest 100 is a hollow structure.
[0025] The outer nest 100 has a set of side limiting plates 120 on both the left and right sides of its inner side for connecting and fixing the front insert 130 and the rear insert 140. The outer side of the side limiting plate 120 is connected and fixed to the inside of the outer nest 100. The right front end of the side limiting plate 120 has a set of front inserts 130 for interlocking and connecting with the front inside of the glass assembly 110. The position of the glass assembly 110 can be maintained by using the front inserts 130 and the rear inserts 140.
[0026] The right rear end of the side limiting plate 120 is provided with a set of rear inserts 140 for interlocking with the rear interior of the glass assembly 110. The front insert 130 and the rear insert 140 are both integrally structured with the set of side limiting plates 120. The front insert 130 and the rear insert 140 are each provided with a set of desiccant chambers 150 for providing a dry environment inside the glass assembly 110. A dry environment can be provided inside the glass assembly 110 by using the desiccant chambers 150.
[0027] The front and rear sides of the front mount 130 and the rear and rear sides of the rear mount 140 are each provided with a set of sealing strips for sealing and fitting with the inside of the glass assembly 110. The outer nest 100 is provided with several sets of pressure-relieving shells 160 for mitigating external impact forces.
[0028] The pressure relief shell 160 has a regular hexagonal cross-section and a set of slow-release chambers 170 inside. The slow-release chambers 170 are hollow and can be used to slow down the release of external impact force through the use of the slow-release chambers 170 and the pressure relief shell 160.
[0029] The glass assembly 110 includes a first glass layer 11a and a third glass layer 11e. A sound-insulating hollow layer 11b is provided on the rear side of the first glass layer 11a to improve the sound insulation effect inside the front end of the glass assembly 110.
[0030] A set of glass layer 11c is provided behind the sound-insulating hollow layer 11b. A set of sound-insulating hollow layer 11d is provided behind the glass layer 11c to improve the sound insulation effect of the rear end of the glass assembly 110. A set of glass layer 11e is provided behind the sound-insulating hollow layer 11d to provide protection for the rear side of the glass assembly 110. The sound insulation effect of the glass assembly 110 can be improved by using the sound-insulating hollow layer 11b and the sound-insulating hollow layer 11d.
[0031] Glass layer 11a, glass layer 21c and glass layer 31e are all made of tempered glass. The left and right sides of sound insulation hollow layer 11b and sound insulation hollow layer 21d are respectively sealed and fitted with a set of front inserts 130 and a set of rear inserts 140. The interior of sound insulation hollow layer 11b and sound insulation hollow layer 21d is hollow.
[0032] Please seeFigures 1-4 As the first embodiment of this utility model: In order to solve the problem that tempered insulated glass with poor sound insulation can cause serious indoor noise pollution, in a busy urban environment, external noise such as traffic noise and human voices can easily penetrate the glass and enter the room, affecting the daily life and work of the residents, when using the tempered insulated glass of this utility model, since a set of sound-insulating hollow layers 11b is provided on the rear side of glass layer 11a to improve the sound insulation effect of the front end of the glass assembly 110, and a set of sound-insulating hollow layers 11b is provided on the rear side of glass layer 11c to improve the sound insulation effect of the glass assembly 110, the following is a description of the first embodiment of this utility model: In order to solve the problem that tempered insulated glass with poor sound insulation effect can cause serious indoor noise pollution, in a busy urban environment, external noise such as traffic noise and human voices can easily penetrate the glass and enter the room, affecting the daily life and work of the residents, when using tempered insulated glass with good sound insulation effect, a set of sound-insulating hollow layers 11b is provided on the rear side of glass layer 11a to improve the sound insulation effect of the front end of the glass assembly 110, and a set of sound-insulating hollow layers 11b is provided on the rear side of glass layer 11c to improve the sound insulation effect of the glass assembly 110. The glass assembly 110 has a sound-insulating hollow layer 11d at the rear end, and both the sound-insulating hollow layers 11b and 11d are hollow. The hollow structure of the sound-insulating hollow layers 11b and 11d can effectively isolate the air medium through which sound propagates, thereby interrupting sound transmission. The glass assembly 110 is composed of three layers of tempered glass. The glass layers 11a, 11c, and 11e can increase the thickness of the glass assembly 110 and further improve the sound insulation capability.
[0033] Please see Figures 1-4 As a second embodiment of this utility model: based on the description in the above embodiments, since both the front mounting 130 and the rear mounting 140 are provided with a set of desiccant chambers 150 for providing a dry environment inside the glass assembly 110, when used in a humid indoor environment, the desiccant inside the desiccant chamber can keep the interior of the sound insulation hollow layer 11b and the sound insulation hollow layer 11d dry, thereby preventing moisture from seeping in and causing the glass assembly 110 to become dirty.
[0034] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A tempered insulated glass unit with sound insulation function, comprising: The outer nest (100), glass assembly (110), and slow-release cavity (170) are characterized in that: a set of glass assembly (110) for providing sound insulation function is provided on the inner side of the outer nest (100); The front cross-section of the outer nest (100) is a rectangular structure, the outer nest (100) is made of a rubber material, and the inner side of the outer nest (100) is a hollow structure; The outer nest (100) has a set of side limiting plates (120) on both the left and right sides of its inner side for connecting and fixing the front insert (130) and the rear insert (140). The outer side of the side limiting plate (120) is connected and fixed to the inside of the outer nest (100). The front right side of the side limiting plate (120) has a set of front inserts (130) for interlocking and connecting with the front inside of the glass assembly (110).
2. The tempered insulating glass with sound insulation function according to claim 1, characterized in that: The right rear end of the side limiting plate (120) is provided with a set of rear inserts (140) for interlocking with the rear interior of the glass assembly (110). The front insert (130) and the rear insert (140) are both integrally formed with the set of side limiting plates (120). The front insert (130) and the rear insert (140) are each provided with a set of desiccant chambers (150) for providing a dry environment inside the glass assembly (110).
3. A tempered insulating glass with sound insulation function according to claim 2, characterized in that: The front insert (130) and the rear insert (140) are each provided with a set of sealing strips for sealing and fitting with the inside of the glass assembly (110). The outer nest (100) is provided with several sets of pressure-relieving shells (160) for mitigating external impact forces.
4. A tempered insulating glass with sound insulation function according to claim 3, characterized in that: The pressure-reducing shell (160) has a cross-section of a regular hexagonal structure. The pressure-reducing shell (160) has a set of slow-release cavities (170) for slow release inside. The slow-release cavities (170) have a hollow structure inside.
5. A tempered insulating glass with sound insulation function according to claim 2, characterized in that: The glass assembly (110) includes a first glass layer (11a) and a third glass layer (11e). A set of sound-insulating hollow layers (11b) is provided on the rear side of the first glass layer (11a) to improve the sound insulation effect inside the front end of the glass assembly (110).
6. A tempered insulating glass with sound insulation function according to claim 5, characterized in that: A set of glass layer two (11c) is provided behind the sound insulation hollow layer one (11b), a set of sound insulation hollow layer two (11d) is provided behind the glass layer two (11c) to improve the sound insulation effect of the rear end of the glass assembly (110), and a set of glass layer three (11e) is provided behind the sound insulation hollow layer two (11d) to provide protection for the rear side of the glass assembly (110).
7. A tempered insulating glass with sound insulation function according to claim 6, characterized in that: The first glass layer (11a), the second glass layer (11c), and the third glass layer (11e) are all made of tempered glass; The left and right sides of the first sound insulation hollow layer (11b) and the second sound insulation hollow layer (11d) are respectively sealed and fitted with a set of front inserts (130) and a set of rear inserts (140), and the interiors of the first sound insulation hollow layer (11b) and the second sound insulation hollow layer (11d) are both hollow.