Double-pitched daylighting roof

By combining the aluminum alloy adapter frame and the glass sub-frame adapter, along with a triple sealing system of structural adhesive and sealant, the problems of inflexible connection, poor corrosion resistance, and difficulty in glass replacement in traditional double-slope skylights are solved. This achieves efficient sealing and improved corrosion resistance, and supports partial glass replacement.

CN224300288UActive Publication Date: 2026-05-29SHENYANG ZHENGXIANG DECORATION DESIGN CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENYANG ZHENGXIANG DECORATION DESIGN CO LTD
Filing Date
2025-07-11
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Traditional double-slope skylight structures suffer from low flexibility in connection and sealing, poor corrosion resistance, and difficult maintenance. Furthermore, glass replacement is inefficient and poses safety hazards.

Method used

It adopts a combination structure of aluminum alloy adapter frame, glass sub-frame adapter and glass sub-frame at any angle, combined with a triple sealing system of structural adhesive, foam rod and sealant, and sprays anti-corrosion coating on the outer wall of metal parts, so as to realize arbitrary angle adjustment and all-round sealing of glass sub-frame and support modular glass replacement.

Benefits of technology

It enables flexible adaptation to gable roofs, eliminates the risk of leakage, improves the corrosion resistance and lifespan of metal components, reduces maintenance difficulty and cost, and improves construction efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224300288U_ABST
    Figure CN224300288U_ABST
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Abstract

The utility model discloses a double -pitch daylighting roof, including rectangular steel pipe, the rectangular steel pipe upper end is equipped with daylighting installation structure, the daylighting installation structure includes: aluminium alloy adapter frame, screw, two glass vice frame adapter spare, two arbitrary angle glass vice frame, compression assembly, two structural glue, two toughened glass, foam stick and sealant, the utility model relates to building technical field, through two arbitrary angle glass vice frame and glass vice frame adapter spare's movable suit structure, realize glass vice frame's free adjustment under arbitrary slope, perfect adaptation double -pitch roof's inclination change, completely solve traditional fixed angle frame's adaptation problem, adopt structural glue bonding, foam stick filling and sealant cover's three -fold sealing system, completely eliminate the risk of leakage, aluminium alloy adapter frame, glass vice frame adapter spare and arbitrary angle glass vice frame outer wall full -coverage anticorrosion coating, significantly improve the corrosion -resistant life of metal parts in humid environment.
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Description

Technical Field

[0001] This utility model relates to the field of building technology, specifically to a double-slope skylight. Background Technology

[0002] In traditional double-slope skylight structures, the connection between rectangular steel pipes and skylight units is often designed at a fixed angle, making it difficult to adapt to roofs with different slopes. This results in low installation flexibility and difficulty in ensuring sealing. Metal connectors lack systematic anti-corrosion treatment and are prone to rust and failure after long-term exposure to the environment. Glass joints rely on only a single layer of sealant, which is prone to cracking due to aging or deformation, leading to water leakage and reduced airtightness. Replacing broken glass requires dismantling the entire structure, which is inefficient and poses safety hazards. In view of this, existing technologies may already have solutions to the above problems, but this case aims to provide an alternative or replacement technical solution. Utility Model Content

[0003] To achieve the above objectives, this utility model is implemented through the following technical solution: a double-slope skylight, comprising a rectangular steel pipe, wherein a skylight installation structure is installed at the upper end of the rectangular steel pipe;

[0004] The light-transmitting installation structure includes: an aluminum alloy adapter frame, screws, two glass sub-frame adapters, two glass sub-frames at arbitrary angles, a clamping assembly, two structural adhesives, two tempered glass panes, a foam rod, and sealant.

[0005] The aluminum alloy adapter frame is located above the rectangular steel tube. The bottom end of the screw passes through both sides of the lower end of the aluminum alloy adapter frame and is embedded in the upper wall of the rectangular steel tube. The two glass sub-frame adapters are respectively located on both sides of the upper end of the aluminum alloy adapter frame. The lower ends of the two arbitrary-angle glass sub-frames are respectively movably fitted on the upper sides of the two glass sub-frame adapters. The clamping assembly is located above the two glass sub-frame adapters, and its bottom end passes through the center of the upper wall of the aluminum alloy adapter frame. The two structural adhesives are respectively applied on the upper sides of the two arbitrary-angle glass sub-frames. The lower ends of the two tempered glass pieces are respectively located on the upper sides of the two structural adhesives. The foam rod is movably embedded inside the space between the two tempered glass pieces. The sealant is applied on the outer side between the two tempered glass pieces.

[0006] Preferably, the clamping assembly includes: an aluminum alloy pressure plate, a clamping screw, and a clamping nut;

[0007] The aluminum alloy pressure plate is placed above the two glass sub-frame adapters. One end of the clamping screw passes through the upper wall of the aluminum alloy adapter frame and the center of the aluminum alloy pressure plate. The clamping nut is movably fitted onto the upper end of the clamping screw and is located at the upper end of the aluminum alloy pressure plate.

[0008] Preferably, the screw is a self-tapping screw.

[0009] Preferably, the aluminum alloy adapter frame, the glass sub-frame adapter, and the outer wall of the glass sub-frame at any angle are all coated with an anti-corrosion coating.

[0010] Preferably, the tempered glass is tempered insulated laminated glass.

[0011] Beneficial effects

[0012] This utility model provides a double-slope skylight with the following advantages: Through the movable assembly structure of two glass sub-frames at arbitrary angles and glass sub-frame adapters, the glass sub-frames can be freely adjusted at any slope, perfectly adapting to the angle changes of the double-slope roof and completely solving the adaptation problem of traditional fixed-angle frames. A triple sealing system of structural adhesive bonding, foam rod filling, and sealant covering completely eliminates the risk of leakage. The aluminum alloy adapter frame, glass sub-frame adapters, and the outer wall of the glass sub-frames at arbitrary angles are fully covered with an anti-corrosion coating, significantly improving the corrosion resistance and lifespan of metal components in humid environments and reducing maintenance costs. The modular design supports partial glass replacement, greatly reducing maintenance difficulty. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the main structure of the double-slope skylight of this utility model.

[0014] In the diagram: 1. Rectangular steel pipe, 2. Aluminum alloy adapter frame, 3. Screw, 4. Glass sub-frame adapter, 5. Glass sub-frame at any angle, 6. Structural adhesive, 7. Tempered glass, 8. Foam rod, 9. Sealant, 10. Aluminum alloy pressure plate, 11. Clamping screw, 12. Clamping nut. Detailed Implementation

[0015] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0016] Example: Please refer to Figure 1 The double-slope skylight includes a rectangular steel pipe 1, and a skylight installation structure is installed on the upper end of the rectangular steel pipe 1.

[0017] The lighting installation structure includes: 2 aluminum alloy adapter frame, 3 screws, 4 two glass sub-frame adapters, 5 two glass sub-frames at arbitrary angles, 6 clamping components, 7 two structural adhesives, 8 two tempered glass pieces, 9 foam rods, and 10 sealant.

[0018] The aluminum alloy adapter frame 2 is located above the rectangular steel tube 1. The bottom end of the screw 3 passes through both sides of the lower end of the aluminum alloy adapter frame 2 and is embedded in the upper wall of the rectangular steel tube 1. The two glass sub-frame adapter pieces 4 are located on both sides of the upper end of the aluminum alloy adapter frame 2. The lower one side of the two arbitrary angle glass sub-frames 5 is movably fitted above the two glass sub-frame adapter pieces 4. The clamping component is located above the two glass sub-frame adapter pieces 4, and its bottom end passes through the center of the upper wall of the aluminum alloy adapter frame 2. The two structural adhesives 6 are applied above the two arbitrary angle glass sub-frames 5. The lower one side of the two tempered glass pieces 7 is located above the two structural adhesives 6. The foam rod 8 is movably embedded inside the two tempered glass pieces 7. The sealant 9 is applied to the outside between the two tempered glass pieces 7.

[0019] During assembly, the rectangular steel pipe 1 is first fixed in the designated position. Then, the aluminum alloy adapter frame 2 is fixed to the upper end of the rectangular steel pipe 1 with screws 3. Two glass sub-frame adapters 4 are placed on both sides of the upper end of the aluminum alloy adapter frame 2 and fixed with clamping components. Then, two glass sub-frames 5 at arbitrary angles are fitted on top of the two glass sub-frame adapters 4, and the two tempered glass 7 are bonded and fixed with structural adhesive 6. Under the movable connection between the two glass sub-frame adapters 4 and the two glass sub-frames 5 at arbitrary angles, the two tempered glass 7 can adapt to the tilt angle changes of the double-sloped roof. Finally, the foam rod is embedded in the gap between the two tempered glass 7, and sealant 9 is applied to the outside to fill and seal the gap between the two tempered glass 7.

[0020] In the specific implementation process, the clamping assembly includes: aluminum alloy pressure plate 10, clamping screw 11 and clamping nut 12;

[0021] An aluminum alloy pressure plate 10 is placed above two glass sub-frame adapters 4. One end of a clamping screw 11 passes through the upper wall of the aluminum alloy adapter frame 2 and the center of the aluminum alloy pressure plate 10. A clamping nut 12 is movably fitted onto the upper end of the clamping screw 11 and is located on the upper end of the aluminum alloy pressure plate 10.

[0022] When clamping and fixing the two glass sub-frame adapters 4, the aluminum alloy pressure plate 10 is placed above the two glass sub-frame adapters 4. Then, the clamping screw 11 is passed through the upper wall of the aluminum alloy adapter frame 2 and through the center of the aluminum alloy pressure plate 10. Finally, the clamping nut 12 is fitted onto the upper end of the clamping screw 11 and connected with the aluminum alloy pressure plate 10. The two glass sub-frame adapters 4 are fixed by the aluminum alloy pressure plate 10.

[0023] In the specific implementation process, screw 3 is a self-tapping screw 3, which is directly embedded in the wall of the rectangular steel pipe 1, eliminating the need for pre-drilling.

[0024] In the specific implementation process, the outer walls of the aluminum alloy adapter frame 2, the glass sub-frame adapter 4, and the glass sub-frame 5 at any angle are all coated with an anti-corrosion coating, which significantly improves the corrosion resistance life of metal components in humid environments and reduces maintenance costs.

[0025] In the specific implementation process, tempered glass 7 adopts tempered insulated laminated glass. The tempered layer is impact-resistant and prevents falling, and no fragments fly when the laminated layer is damaged. The insulated layer isolates heat conduction and reduces building energy consumption.

[0026] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A double-slope skylight, comprising a rectangular steel pipe (1), characterized in that, A light-transmitting installation structure is installed at the upper end of the rectangular steel pipe (1); The light-transmitting installation structure includes: an aluminum alloy adapter frame (2), screws (3), two glass sub-frame adapters (4), two glass sub-frames at arbitrary angles (5), a clamping assembly, two structural adhesives (6), two tempered glass pieces (7), a foam rod (8), and sealant (9). The aluminum alloy adapter frame (2) is located above the rectangular steel pipe (1). The bottom end of the screw (3) passes through both sides of the lower end of the aluminum alloy adapter frame (2) and is embedded in the upper wall of the rectangular steel pipe (1). The two glass sub-frame adapters (4) are located on both sides of the upper end of the aluminum alloy adapter frame (2). The lower side of the two arbitrary angle glass sub-frames (5) is movably fitted above the two glass sub-frame adapters (4). The clamping assembly is located above the two glass sub-frame adapters (4) and its bottom end passes through the center of the upper wall of the aluminum alloy adapter frame (2). The two structural adhesives (6) are applied above the two arbitrary angle glass sub-frames (5). The lower side of the two tempered glass pieces (7) is located above the two structural adhesives (6). The foam rod (8) is movably embedded inside the two tempered glass pieces (7). The sealant (9) is applied to the outside between the two tempered glass pieces (7).

2. The double-slope skylight according to claim 1, characterized in that, The clamping assembly includes: an aluminum alloy pressure plate (10), a clamping screw (11), and a clamping nut (12); The aluminum alloy pressure plate (10) is placed above the two glass sub-frame adapters (4). One end of the clamping screw (11) passes through the upper wall of the aluminum alloy adapter frame (2) and the center of the aluminum alloy pressure plate (10). The clamping nut (12) is movably fitted on the upper end of the clamping screw (11) and is located on the upper end of the aluminum alloy pressure plate (10).

3. The double-slope skylight according to claim 1, characterized in that, The screw (3) is a self-tapping screw (3).

4. The double-slope skylight according to claim 1, characterized in that, The outer walls of the aluminum alloy adapter frame (2), the glass sub-frame adapter (4), and the glass sub-frame at any angle (5) are all coated with an anti-corrosion coating.

5. The double-slope skylight according to claim 1, characterized in that, The tempered glass (7) is tempered insulated laminated glass.