Shockproof sound insulation glass curtain wall structure
By installing the glass main body on the support frame of the glass curtain wall and filling it with sound insulation cotton, and using fastening components and shock-proof membranes, the sound insulation and shock-proof problems of the existing glass curtain wall are solved, achieving better sound insulation effect and shock-proof performance.
Patent Information
- Application Number
- CN202422477186.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-14
AI Technical Summary
The connection method of the existing glass curtain walls leads to poor sound insulation and is prone to collision due to vibration. In the prior art, the glass curtain walls connected by frames are prone to collision under vibration, and the sound insulation effect is limited.
The glass main body is installed with a support frame and sound insulation cotton is filled between adjacent glass main bodies. The fastening component is used to firmly connect the sound insulation cotton to the glass main body and the support frame, and the shockproof and sound insulation effect of the glass curtain wall is improved through the fastening component and shockproof film.
It improves the sound insulation effect of the glass curtain wall, enhances shock resistance, ensures that the glass main body is uniformly subjected to, extends the service life and reduces collision damage caused by vibration.
Smart Images

Figure CN223240905U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field related to glass curtain walls, in particular to a shock-proof and sound-insulating glass curtain wall structure. Background Art
[0002] To enhance the aesthetics of buildings, curtain walls are often installed on their exteriors. Existing curtain walls primarily include glass, stone, terracotta, and metal alloys. Glass curtain walls offer enhanced transparency and decorative aesthetics, making them a popular choice for most buildings. However, in urban environments, where noise levels are high, existing glass curtain walls typically use metal frames or glass adhesive to join the glass panels. However, these methods offer poor sound insulation, generate high noise levels, and are detrimental to living and learning. They can also easily cause collisions with adjacent components due to vibration.
[0003] China Patent Authorization Announcement No.: CN221236254U, Authorization Announcement Date: June 28, 2024, discloses a glass curtain wall that is easy to install, including a mounting frame, characterized in that: plug-in clips are symmetrically welded to the top and bottom of one side of the mounting frame, the surface of the plug-in clip is provided with a groove, a light strip assembly is fixedly installed inside the groove, a curtain wall assembly is inserted inside the plug-in clip, one side of the curtain wall assembly is connected to a transparent photovoltaic panel via screw threads, and the transparent photovoltaic panel is electrically connected to an energy storage mechanism, two sets of plug blocks are provided on one side of the mounting frame, and two sets of insertion heads are welded to the other side of the mounting frame, and the top surface of the insertion heads is fixedly connected to a limiting mechanism. The disadvantage of this utility model is that the glass curtain walls of the device are connected by plugging the mounting frame, which has limited sound insulation effect, and the glass curtain walls are also prone to collision with the mounting frame due to vibration. Utility Model Content
[0004] The utility model aims to overcome the shortcomings of the prior art installation method of connecting through frames, which has poor sound insulation and shockproof effects, and provides a shock-proof and sound-insulating glass curtain wall structure by filling the gaps between the glasses.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0006] A shockproof and soundproof glass curtain wall structure includes a support frame, a glass body, sound insulation cotton and a fastening assembly. The glass bodies are provided with several and evenly distributed glass bodies, each of which is installed on the support frame. The sound insulation cotton is placed between two adjacent glass bodies. The fastening assembly is installed on both sides of the sound insulation cotton and is in contact with the glass body. One end of the fastening assembly is connected to the support frame.
[0007] The support frame is used to install the overall device, fix the glass body on the wall, and install several evenly distributed glass bodies on the support frame, leaving a gap between two adjacent glass bodies, and then fill the gap with sound insulation cotton to improve the sound insulation effect, and then install fastening components on both sides of the glass body, the installation position of the fastening components corresponds to the sound insulation cotton, and then the glass body is fastened by the fastening components, and the fastening components can be more firmly connected to the support frame. The sound insulation cotton is filled between two adjacent glass bodies, which can improve the sound insulation effect while also providing a certain amount of movement space for the glass body. Since the sound insulation cotton is a flexible material, the shockproof effect is further improved, and the fastening components installed in the gap can ensure that the glass body is firmly connected to the support frame, thereby achieving the purpose of filling the gap between the glass.
[0008] Preferably, the support frame includes a mounting column, a connecting plate and a positioning rod, one end of the mounting column is connected to one side of the connecting plate, the positioning rod is installed on the other side of the connecting plate, four positioning rods are provided and distributed in a square shape, the top corners of the glass body correspond to the positioning rods one-to-one, one end of the positioning rod passes through the glass body and is placed on the other side, two positioning blocks are installed on the positioning rod, the positioning blocks are respectively placed on both sides of the glass body and connected to the glass body. The mounting column of the support frame is connected to the wall, and the parts are installed through the connecting plate on the mounting column. Four positioning rods distributed in a square shape are installed on the connecting plate. The four positioning rods correspond to four glass bodies. In this way, one support frame can position the four glass bodies. After the positioning is completed, other parts can be installed. The two positioning blocks installed on the positioning rods restrict the glass body to the positioning rods to ensure the position of the glass body. Such a design can constitute the main body of the glass curtain wall.
[0009] Preferably, the sound insulation cotton is shaped like a cross, corresponding to the joints between the sound insulation cotton and the glass body. The fastening assembly includes a pressing plate and rivets. The shape of the pressing plate corresponds to the shape of the sound insulation cotton. Two pressing plates are provided, one on each side of the glass body. A plurality of rivets are provided and evenly distributed. The rivets pass through the pressing plate and the sound insulation cotton on one side and then connect to the pressing plate on the other side. The gaps between the four glass bodies are shaped like a cross. The sound insulation cotton in the cross shape is filled between the gaps between the glass bodies to ensure the sound insulation effect at the joints. Then, pressing plates are installed on both sides of the glass body. The pressing plates are also shaped like a cross and are installed in the gaps corresponding to the sound insulation cotton to ensure the connection strength at the gaps. The pressing plates on both sides are connected together by rivets, sealing the sound insulation cotton in the gaps, thereby extending the service life. At the same time, the relative position of the glass body joints can be ensured to avoid large deviations. Such a design can improve the sound insulation effect.
[0010] Preferably, a force block is provided on the connecting plate, and a plurality of pull rods are provided on the force block. The pull rods correspond to rivets one by one, and one end of the pull rod is connected to the force block, and the other end of the pull rod is connected to the rivet. In order to improve the shockproof effect of the glass body, a force block is installed on the connecting rod, and a pull rod is installed on the force block. One end of the pull rod is connected to the force block, and the other end is connected to the rivet. The presence of the pull rod can transfer the force on the glass body to the force block. Since there are several rivets evenly distributed, the presence of the pull rod can provide multi-point support for the glass body, ensuring that the force on the glass body is evenly applied during vibration, and then acting on the support frame through the pull rod. Such a design can improve the shockproof effect.
[0011] Preferably, a shock-absorbing film is mounted on the side of the glass body away from the support frame, with the film corresponding to the glass body. Because the pull rod acts on the buckling plate, the center of the glass body is inevitably subjected to uneven force, thereby reducing the shock-absorbing ability. Therefore, the shock-absorbing film is attached to the side of the glass body to distribute the external force on the glass body, thereby improving the shock-absorbing effect. This design can ensure uniform force distribution.
[0012] Preferably, the glass body comprises a tempered glass and a sealing frame. Two tempered glasses are provided, one on each side of the sealing frame. The two sides of the sealing frame are sealed to the tempered glasses on either side, and a vacuum chamber is provided between the two tempered glasses. Since the sound insulation cotton placed in the gap provides sound insulation, the sound insulation of the glass body is also very important. Therefore, the glass body is composed of the tempered glass and the sealing frame. The sealing frame and the tempered glasses on both sides form a sealed vacuum chamber, which is vacuumed to improve the sound insulation performance of the glass body. This design can improve the sound insulation effect of the glass body.
[0013] The beneficial effects of the utility model are as follows: by filling the gaps between the glass, a glass curtain wall main body can be formed, the sound insulation effect can be improved, the shockproof effect can be improved, the force can be ensured to be uniform, and the sound insulation effect of the glass main body can be improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a structural diagram of the utility model;
[0015] Figure 2 yes Figure 1 Schematic diagram of the structure of the glass body;
[0016] Figure 3 yes Figure 1 Schematic diagram of the structure of the middle support frame and fastening components;
[0017] Figure 4 yes Figure 1 Cross-section of the glass body.
[0018] In the figure: 1. Support frame; 11. Mounting column; 12. Connecting plate; 13. Positioning rod; 14. Positioning block; 15. Force block; 16. Pull rod; 2. Glass body; 21. Tempered glass; 22. Sealing frame; 23. Vacuum chamber; 3. Sound insulation cotton; 4. Fastening assembly; 41. Buckling plate; 42. Rivet; 5. Shockproof film. DETAILED DESCRIPTION
[0019] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0020] like Figure 1 、 Figure 2 In the embodiment shown, a shockproof and soundproof glass curtain wall structure includes a support frame 1, a glass body 2, sound insulation cotton 3 and a fastening assembly 4. The glass body 2 is provided with several and evenly distributed glass bodies 2. The glass bodies 2 are all installed on the support frame 1. The sound insulation cotton 3 is placed between two adjacent glass bodies 2. The fastening assembly 4 is installed on both sides of the sound insulation cotton 3 and is in contact with the glass body 2. One end of the fastening assembly 4 is connected to the support frame 1.
[0021] like Figure 3 As shown, the support frame 1 includes a mounting column 11, a connecting plate 12 and a positioning rod 13. One end of the mounting column 11 is connected to one side of the connecting plate 12, and the positioning rod 13 is installed on the other side of the connecting plate 12. There are four positioning rods 13 and they are distributed in a square shape. The top corners of the glass body 2 correspond one-to-one to the positioning rods 13. One end of the positioning rod 13 passes through the glass body 2 and is placed on the other side. Two positioning blocks 14 are installed on the positioning rod 13. The positioning blocks 14 are respectively placed on both sides of the glass body 2 and connected to the glass body 2.
[0022] The shape of the sound insulation cotton 3 is a "cross" shape, and the joint between the sound insulation cotton 3 and the glass body 2 corresponds to the fastening component 4. The fastening component 4 includes a buckling plate 41 and a rivet 42. The shape of the buckling plate 41 corresponds to the shape of the sound insulation cotton 3. There are two buckling plates 41 and they are respectively placed on both sides of the glass body 2. There are several rivets 42 and they are evenly distributed. The rivet 42 passes through the buckling plate 41 and the sound insulation cotton 3 on one side and is connected to the buckling plate 41 on the other side.
[0023] A force block 15 is provided on the connecting plate 12 , and a plurality of pull rods 16 are provided on the force block 15 . The pull rods 16 correspond to the rivets 42 one by one. One end of the pull rod 16 is connected to the force block 15 , and the other end of the pull rod 16 is connected to the rivet 42 .
[0024] A shock-proof film 5 is installed on a side of the glass body 2 away from the support frame 1 , and the shock-proof film 5 corresponds to the glass body 2 .
[0025] like Figure 4As shown, the glass body 2 includes a tempered glass 21 and a sealing frame 22. Two tempered glasses 21 are provided and are respectively placed on both sides of the sealing frame 22. Both sides of the sealing frame 22 are sealed and connected to the tempered glasses 21 on both sides respectively. A vacuum chamber 23 is provided between the two tempered glasses 21.
[0026] During installation, first install the support frame 1 on the wall, and then install the glass body 2 on the positioning rod 13 of the support frame 1. The glass body 2 is fixed to the positioning rod 13 by the positioning block 14 to perform preliminary positioning of the glass body 2. After positioning the glass body 2, fill the gap of the glass body 2 with sound insulation cotton 3. The sound insulation cotton 3 improves the sound insulation effect in the gap of the glass body 1. Then install the buckling plates 41 on both sides of the gap. The buckling plates 41 on both sides are fixed together by rivets 42 to ensure the connection strength of the glass body 2. Then connect the pull rod 16 on the force plate 15 to one end of the rivet 42 to support the buckling plate 41. Finally, a shockproof film 5 is affixed to the glass body 2 to ensure the strength of the glass body 2.
[0027] During use, when the glass body 2 is subjected to vibration, the glass body 2 can move to a certain extent under the support of the sound insulation cotton 3, thereby preventing damage to the glass body 2 due to vibration and impact. The buckling plate 41 can ensure the connection strength between the glass bodies 2, and the rear tie rod 16 can support the buckling plate 41 at multiple points. The tie rod 16 acts uniformly on the load-bearing plate 15, thereby ensuring uniform force on the glass body 2 and significantly improving shockproof performance.
Claims
1. A shockproof and soundproof glass curtain wall structure, characterized by: The invention comprises a support frame (1), a glass body (2), sound insulation cotton (3), and a fastening assembly (4), wherein the glass bodies (2) are provided with a plurality of sound insulation cottons and are evenly distributed, and the glass bodies (2) are all mounted on the support frame (1), and the sound insulation cottons (3) are placed between two adjacent glass bodies (2). The fastening assembly (4) is mounted on both sides of the sound insulation cottons (3) and is fitted with the glass body (2), and one end of the fastening assembly (4) is connected to the support frame (1).
2. The shockproof and soundproof glass curtain wall structure according to claim 1 is characterized in that: The support frame (1) includes a mounting column (11), a connecting plate (12) and a positioning rod (13), one end of the mounting column (11) is connected to one side of the connecting plate (12), and the positioning rod (13) is installed on the other side of the connecting plate (12). Four positioning rods (13) are provided and distributed in a square shape. The top corners of the glass body (2) correspond to the positioning rods (13) one by one. One end of the positioning rod (13) passes through the glass body (2) and is placed on the other side. Two positioning blocks (14) are installed on the positioning rod (13), and the positioning blocks (14) are respectively placed on both sides of the glass body (2) and connected to the glass body (2).
3. The shockproof and soundproof glass curtain wall structure according to claim 2 is characterized in that: The shape of the sound insulation cotton (3) is a "cross" shape, and the sound insulation cotton (3) corresponds to the joint of the glass body (2). The fastening assembly (4) includes a buckling plate (41) and a rivet (42). The shape of the buckling plate (41) corresponds to the shape of the sound insulation cotton (3). Two buckling plates (41) are provided and are respectively placed on both sides of the glass body (2). A plurality of rivets (42) are provided and are evenly distributed. The rivets (42) pass through the buckling plate (41) and the sound insulation cotton (3) on one side and are connected to the buckling plate (41) on the other side.
4. The shockproof and soundproof glass curtain wall structure according to claim 3 is characterized in that: The connecting plate (12) is provided with a force block (15), and the force block (15) is provided with a plurality of pull rods (16). The pull rods (16) correspond to the rivets (42) one by one, one end of the pull rod (16) is connected to the force block (15), and the other end of the pull rod (16) is connected to the rivet (42).
5. The shockproof and soundproof glass curtain wall structure according to claim 2 is characterized in that: A shock-proof film (5) is installed on a side of the glass body (2) away from the support frame (1), and the shock-proof film (5) corresponds to the glass body (2).
6. The shockproof and soundproof glass curtain wall structure according to claim 2 is characterized in that: The glass body (2) comprises a tempered glass (21) and a sealing frame (22). Two tempered glasses (21) are provided and are respectively placed on both sides of the sealing frame (22). Both sides of the sealing frame (22) are sealedly connected to the tempered glasses (21) on both sides. A vacuum chamber (23) is provided between the two tempered glasses (21).
Citation Information
Patent Citations
Glass curtain wall convenient to install
CN221236254U