High-transmittance composite fireproof glass
Through the combined structure of corner frames, borders, reinforcement ribs and plastic frames, the problem of composite fire-proof glass frame blocking light is solved, high light transmission and stable connection are achieved, and the lighting and field of view are improved.
Patent Information
- Application Number
- CN202422380136.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The existing composite fireproof glass has a large frame structure, which leads to serious light occlusion, affecting the lighting and outward view.
The combined structure of corner frames, borders, reinforcement ribs and plastic frames is adopted. The filling strips and glue are connected to ensure the stability and narrow design of the border and corner frames, reducing the shading area and improving the lighting effect.
It realizes a narrow frame design, enhances connection stability, expands the indoor outward view, and ensures good lighting and sound insulation.
Smart Images

Figure CN223190322U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fireproof glass, and more particularly to a high-light-transmittance composite fireproof glass. Background Art
[0002] Composite fireproof glass is a special type of glass made from two or more layers of glass and one or more layers of transparent or translucent fireproof material. It not only offers the light transmittance and aesthetics of ordinary glass, but also provides the crucial functions of controlling fire spread, isolating smoke, and providing heat insulation in a fire.
[0003] Composite fire-resistant glass offers strong frontal impact resistance, but its corners are easily damaged by knocks, necessitating a frame to protect them. Existing frame structures are bulky and thick, easily blocking light and impairing indoor lighting. To address this, we propose a highly transparent composite fire-resistant glass. Utility Model Content
[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, meet the actual needs, and provide a high-transmittance composite fire-resistant glass to solve the technical problem that the current glass frame structure easily blocks light, affecting lighting and outward vision.
[0005] In order to solve the above technical problems, the utility model provides the following technical solutions: a high-transmittance composite fireproof glass, including a corner frame, a frame, outer glass, reinforcing ribs and a plastic frame, wherein there are two outer glasses, and a laminated glue is provided between the two outer glasses, there are four corner frames, and the four corner frames are inserted at the four corners of the outer glass, the frame fits the side of the outer glass, and the two ends of the frame are connected to the corner frame, a second filling strip is fixed at the middle of the inner side of the corner frame, a first filling strip is fixed at the middle of the inner side of the frame, the inner recess of the corner frame is separated into a corner channel by the second filling strip, and the inner recess of the frame is separated into an edge channel by the first filling strip.
[0006] When the utility model is installed, the two corner frames on the same side are connected through the frame, the two ends of the reinforcement ribs of the frame are inserted into the docking holes, and then the upper and lower ends of the frame are docked with the upper and lower sides of the outer glass. The first filling strip and the second filling strip of the frame and the corner frame are clamped with the corresponding edges of the groove, so that the corner frame and the frame are combined into a frame structure wrapped around the outside of the outer glass, and the first filling strip and the second filling strip are clamped with the groove on the outside of the interlayer glue to complete the gap filling, ensuring the sound insulation effect, the arc mouth reduces the shielding part of the corner frame, and the narrow frame clamping edge reduces the shielding area, ensuring the lighting effect of the device, and at the same time making The indoor field of vision is expanded. After the assembly and installation are completed, the plastic frame is inserted from the insertion port, and the lower end of the plastic frame passes through the positioning port. The height of the plastic frame is greater than the depth of the insertion port and the positioning port. The operator presses down the top of the plastic frame with his hand to deform the plastic frame. The top of the plastic frame closes the opening of the insertion port. At the same time, the deformation of the plastic frame causes the film to rupture, and the glue between the film interlayers fills the insertion port and the positioning port outward. After the glue solidifies, it ensures the stability of the connection between the corner frame and the frame. The convenient assembly mechanism is easy to install, and the connection strength is enhanced by the plastic frame and the built-in glue.
[0007] Preferably, the interlayer adhesive is lower than the side height of the outer glass to form a groove, and the first filling strip and the second filling strip are adapted to the groove. The groove is filled by the first filling strip and the second filling strip to reduce the internal gap of the glass and ensure the sound insulation effect.
[0008] Preferably, both ends of the second filling strip are provided with docking holes, and both sides of the corner frame are provided with insertion ports, which are connected to the docking holes. The connection between the insertion ports and the docking holes facilitates the installation of the plastic frame.
[0009] Preferably, the reinforcing rib is installed through the middle of the first filling strip, and the two ends of the reinforcing rib are respectively inserted into the corresponding docking holes. The overall strength of the frame is increased by the reinforcing rib, and the reinforcing rib is connected to the docking holes to achieve a preliminary connection between the frame and the corner frame.
[0010] Preferably, both ends of the reinforcing rib are provided with positioning openings, and the positioning openings correspond to the insertion openings. Through hole adaptation, the plastic frame can be conveniently inserted into the positioning openings to achieve fixation of the reinforcing rib.
[0011] Preferably, the plastic frame passes through the insertion port and is inserted into the positioning port. Films are provided on both sides of the interior of the plastic frame, and glue is filled between the films. When the plastic frame docks with the positioning port, the palm of the hand presses the plastic frame to break the film, and the glue fills the gap to enhance the connection strength.
[0012] Preferably, the corner channel and the side channel are adapted to the top corner and side of the outer glass respectively, and the side of the corner frame is provided with an arc opening. The corner channel and the side channel are adapted to ensure the connection and fit between the corner frame and the frame. The arc opening reduces the blocking area of the corner frame and improves the lighting.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] 1. The utility model designs a corner frame and a frame, and the first filling strip and the second filling strip of the frame and the corner frame are clamped to the corresponding edges of the groove, so that the corner frame and the frame are combined into a frame structure wrapped around the outside of the outer glass. The first filling strip and the second filling strip are clamped to the groove on the outside of the interlayer glue to complete the gap filling, ensuring the sound insulation effect. The arc mouth reduces the blocked part of the corner frame, and the narrow frame clamping edge reduces the blocked area, ensuring the lighting effect of the device, while expanding the indoor field of view.
[0015] 2. The utility model also designs a plastic frame. After the assembly and installation are completed, the plastic frame is inserted from the insertion port, and the lower end of the plastic frame passes through the positioning port. The height of the plastic frame is greater than the depth of the insertion port and the positioning port. The operator presses down the top of the plastic frame with his hand to deform the plastic frame. The top of the plastic frame closes the opening of the insertion port. At the same time, the deformation of the plastic frame causes the film to rupture, and the glue between the film interlayers fills the insertion port and the positioning port outward. After the glue solidifies, it ensures the stability of the connection between the corner frame and the frame. The convenient assembly mechanism facilitates installation, and the connection strength is enhanced by the plastic frame and the built-in glue. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the main structure of the utility model;
[0017] Figure 2 This is a schematic diagram of the frame structure of the utility model;
[0018] Figure 3 This is a schematic diagram of the enlarged structure of the utility model;
[0019] Figure 4 This is a schematic diagram of the corner frame structure of the utility model;
[0020] Figure 5 This is a schematic cross-sectional view of the corner frame of the present invention;
[0021] Figure 6 This is a schematic diagram of the plastic frame structure of the present utility model;
[0022] Figure 7 This is a schematic diagram of the interlayer adhesive structure of the present utility model.
[0023] Explanation of the numbers in the figure: 1. Corner frame; 2. Frame; 3. Outer glass; 4. First filling strip; 5. Edge clamp; 6. Reinforcement rib; 7. Positioning opening; 8. Second filling strip; 9. Corner clamp; 10. Docking hole; 11. Insertion opening; 12. Arc opening; 13. Plastic frame; 14. Film; 15. Groove; 16. Interlayer glue. DETAILED DESCRIPTION
[0024] like Figures 1 to 7As shown, the utility model relates to a high-transmittance composite fireproof glass, comprising a corner frame 1, a frame 2, an outer glass 3, a reinforcing rib 6 and a plastic frame 13. There are two outer glasses 3, and an interlayer glue 16 is provided between the two outer glasses 3. Figure 7 As shown, the interlayer glue 16 is lower than the side height of the outer glass 3 to form a groove 15, the first filling strip 4 and the second filling strip 8 are adapted to the groove 15, and the groove 15 is filled by the first filling strip 4 and the second filling strip 8 to reduce the internal gap of the glass and ensure the sound insulation effect. Both ends of the second filling strip 8 are provided with docking holes 10, and both sides of the corner frame 1 are provided with insertion ports 11, and the insertion ports 11 are connected to the docking holes 10. The connection between the insertion ports 11 and the docking holes 10 facilitates the installation of the plastic frame 13. There are four corner frames 1 in total, and the four corner frames 1 are inserted at the four corners of the outer glass 3, the frame 2 fits the side of the outer glass 3, and the two ends of the frame 2 are docked with the corner frame 1, as shown Figure 2-3 As shown, the reinforcing rib 6 is installed through the middle of the first filling strip 4, and the two ends of the reinforcing rib 6 are respectively inserted into the corresponding docking holes 10. The overall strength of the frame 2 is increased by the reinforcing rib 6. The reinforcing rib 6 is connected to the docking holes 10 to achieve the initial connection between the frame 2 and the corner frame 1. Positioning openings 7 are provided at both ends of the reinforcing rib 6, and the positioning openings 7 correspond to the insertion openings 11. Through hole adaptation, the plastic frame 13 can be easily inserted into the positioning openings 7 to achieve the fixation of the reinforcing rib 6.
[0025] like Figures 2 to 6 As shown, the utility model relates to a high-transmittance composite fireproof glass, comprising a corner frame 1, a frame 2, an outer glass 3, a reinforcing rib 6 and a plastic frame 13. A second filling strip 8 is fixed to the middle of the inner side of the corner frame 1, a first filling strip 4 is fixed to the middle of the inner side of the frame 2, the inner recess of the corner frame 1 is divided into a corner channel 9 by the second filling strip 8, and the inner recess of the frame 2 is divided into a side channel 5 by the first filling strip 4. The plastic frame 13 passes through the insertion port 11 and is plugged into the positioning port 7. The plastic frame There are films 14 on both sides of the interior of 13, and glue is filled between the films 14. When the plastic frame 13 is docked with the positioning port 7, the palm of the hand presses the plastic frame 13 to break the film 14, and the glue fills the gap to strengthen the connection strength. The corner channel 9 and the side channel 5 are respectively adapted to the top corner and side of the outer glass 3. An arc opening 12 is opened on the side of the corner frame 1, and the corner channel 9 and the side channel 5 are adapted to ensure the connection fit between the corner frame 1 and the frame 2. The arc opening 12 reduces the blocking area of the corner frame 1 and improves the lighting.
[0026] Working principle: This embodiment provides a high-transmittance composite fireproof glass. When in use, the two corner frames 1 on the same side are connected through the frame 2. The two ends of the reinforcing ribs 6 of the frame 2 are inserted into the docking holes 10. Then the upper and lower ends of the frame 2 are docked with the upper and lower sides of the outer glass 3. The first filling strips 4 and the second filling strips 8 of the frame 2 and the corner frame 1 are clamped with the corresponding edges of the groove 15, so that the corner frame 1 and the frame 2 are combined into a frame structure wrapped around the outside of the outer glass 3. The first filling strips 4 and the second filling strips 8 are clamped with the groove 15 on the outside of the interlayer glue 16 to complete the gap. After filling and assembly, the plastic frame 13 is inserted from the insertion port 11, and the lower end of the plastic frame 13 passes through the positioning port 7. The height of the plastic frame 13 is greater than the depth of the insertion port 11 and the positioning port 7. The operator presses down the top of the plastic frame 13 with his hand to deform the plastic frame 13. The top of the plastic frame 13 closes the opening of the insertion port 11. At the same time, the deformation of the plastic frame 13 causes the film 14 to rupture, and the glue between the interlayers of the film 14 fills the insertion port 11 and the positioning port 7 outward. After the glue solidifies, it ensures the stability of the connection between the corner frame 1 and the frame 2.
[0027] The embodiments disclosed in the present invention are preferred embodiments, but are not limited to them. Ordinary technicians in this field can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. As long as they do not deviate from the spirit of the present invention, they are all within the scope of protection of the present invention.
Claims
1. A high-transmittance composite fireproof glass, comprising a corner frame (1), a frame (2), an outer glass (3), a reinforcing rib (6) and a plastic frame (13), characterized in that: There are two outer glasses (3) in total, and an interlayer glue (16) is provided between the two outer glasses (3); there are four corner frames (1) in total, and the four corner frames (1) are plugged into the four corners of the outer glass (3); the frame (2) fits the side of the outer glass (3), and the two ends of the frame (2) are connected to the corner frame (1); a second filling strip (8) is fixed to the middle of the inner side of the corner frame (1); a first filling strip (4) is fixed to the middle of the inner side of the frame (2); the inner notch of the corner frame (1) is divided into a corner channel (9) by the second filling strip (8), and the inner notch of the frame (2) is divided into a side channel (5) by the first filling strip (4).
2. The high-transmittance composite fireproof glass according to claim 1, characterized in that: The interlayer adhesive (16) is lower than the side height of the outer glass (3) to form a groove (15), and the first filling strip (4) and the second filling strip (8) are adapted to the groove (15).
3. The high-transmittance composite fireproof glass according to claim 1, characterized in that: Both ends of the second filling strip (8) are provided with docking holes (10), and both sides of the corner frame (1) are provided with insertion openings (11), and the insertion openings (11) are connected to the docking holes (10).
4. The high-transmittance composite fireproof glass according to claim 3, characterized in that: The reinforcing rib (6) is installed through the middle of the first filling strip (4), and both ends of the reinforcing rib (6) are respectively inserted into the corresponding docking holes (10).
5. The high-transmittance composite fireproof glass according to claim 4, characterized in that: Both ends of the reinforcing rib (6) are provided with positioning openings (7), and the positioning openings (7) correspond to the insertion openings (11).
6. The high-transmittance composite fireproof glass according to claim 1, characterized in that: The plastic frame (13) is inserted into the positioning opening (7) after passing through the insertion opening (11). Films (14) are provided on both sides of the interior of the plastic frame (13), and glue is filled between the films (14).
7. The high-transmittance composite fireproof glass according to claim 1, characterized in that: The corner channel (9) and the side channel (5) are adapted to the top corner and side edge of the outer glass (3), respectively, and the side edge of the corner frame (1) is provided with an arc opening (12).