All-glass daylighting roof system
Through the all-glass skylight system, the design of support brackets and glass ribs solves the problem of sunlight obstruction in the existing skylight system, achieving better lighting effects and panel stability.
Patent Information
- Application Number
- CN202423016921.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-07
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-07
AI Technical Summary
In existing glass skylight systems, the clamping components and structural support materials block sunlight, resulting in poor indoor lighting effects.
An all-glass skylight system is used, including skylight glass panels, support brackets, glass ribs and structural sealant. The support brackets are fixed to the main steel structure, and the glass panels are fixed to the brackets with sealant. The glass ribs are used to support the joints of the panels and are connected with stainless steel brackets and bolts to ensure the stability and transparency of the panels.
It improves the indoor lighting effect and the stability of the glass panel, reduces the possibility of damage to the stainless steel supports, and enhances the overall stability of the skylight.
Smart Images

Figure CN223468950U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of daylighting roof, in particular to a full glass daylighting roof system. BACKGROUND
[0002] The glass daylighting roof has the advantages of natural lighting, transparent fusion and spaciousness. In the background of people's increasing pursuit of nature, the glass daylighting roof is increasingly applied in modern buildings, such as public buildings like gymnasiums, airports and exhibition centers, hotel lobbies, shared spaces of office buildings and top floors of various buildings.
[0003] In the existing daylighting roof construction engineering technology, the glass daylighting roof system is generally composed of a glass panel, a clamping assembly and a structural support. The clamping assembly is usually made of aluminum alloy profile, and the structural support is usually a steel structural purlin. The aluminum alloy clamping assembly is usually connected with the steel structural purlin by adjusting the steel parts.
[0004] However, the clamping assembly, the structural support and the steel structural purlin are all made of aluminum alloy, which hinders the sunlight and affects the indoor lighting. CONTENT OF THE INVENTION
[0005] To improve the indoor lighting effect, the present application provides a full glass daylighting roof system.
[0006] The full glass daylighting roof system provided by the present application adopts the following technical scheme:
[0007] A full glass daylighting roof system, comprising a daylighting roof glass panel, a support bracket, a glass rib and a structural sealant. The support bracket is fixedly arranged on a main body steel structure. The daylighting roof glass panel is fixedly arranged on the support bracket by the structural sealant. The daylighting roof glass panel is laid on the support bracket. The glass rib is fixedly arranged on the support bracket and is used to support the spliced joint of the daylighting roof glass panel.
[0008] Optionally, the support bracket comprises a connecting steel plate and a stainless steel bracket. The connecting steel plate is fixedly arranged on the main body steel structure. The stainless steel bracket is in T shape. The vertical plate of the stainless steel bracket is fixedly arranged on the connecting steel plate. The horizontal plate is used to support the daylighting roof glass panel. A rubber pad is arranged between the daylighting roof glass panel and the horizontal plate of the stainless steel bracket.
[0009] Optionally, the vertical plate of the stainless steel bracket is provided with a connecting groove. The connecting steel plate is clamped in the connecting groove. The vertical plate of the stainless steel bracket is provided with a strip-shaped notch. The strip-shaped notch is vertically arranged. The connecting steel plate is provided with a first through hole. The connecting steel plate and the stainless steel bracket are fixedly connected by a bolt, the strip-shaped notch and the through hole, and a nut.
[0010] Optionally, the stainless steel supporting member further comprises a stainless steel connecting plate, the stainless steel connecting plate is located on both sides of the connecting steel plate, both sides of the connecting steel plate are provided with two stainless steel connecting plates which are opposite to each other, the connecting steel plate is located between the two stainless steel connecting plates and is connected by bolts and nuts; the glass rib is clamped between the two stainless steel connecting plates and is fixed on the stainless steel connecting plate by bolts and nuts.
[0011] Optionally, a stainless steel spacer plate is arranged between the stainless steel connecting plate and the connecting steel plate.
[0012] Optionally, an aluminum alloy spacer frame is arranged between the glass rib and the daylighting roof glass panel, both sides of the aluminum alloy spacer frame are formed with a fixing groove, the glass rib is clamped in the fixing groove, the fixing groove away from the glass rib 3 is used for receiving the splicing joint of the daylighting roof glass panel, and the structural sealant is arranged in the fixing groove to fixedly connect the structural sealant, the glass rib and the daylighting roof glass panel.
[0013] Optionally, a rubber pad is arranged at the bottom of the fixing groove for clamping the glass rib, and the rubber pad is used for separating the aluminum alloy spacer frame and the glass rib.
[0014] Optionally, the stainless steel supporting member is provided with a partition plate on the surface away from the vertical plate of the horizontal plate, and the partition plate is arranged between adjacent daylighting roof glass panels and is embedded in the structural sealant.
[0015] Optionally, the daylighting roof glass panel is a double-layer laminated glass panel.
[0016] Optionally, the stainless steel connecting plate is provided with a rounded corner at the edge.
[0017] In summary, the present application has at least one of the following beneficial technical effects:
[0018] 1. During installation of the daylighting roof, first, the supporting bracket is installed on the main body steel structure, then the daylighting roof glass panel is laid on the supporting bracket, and the glass panel is fixed on the supporting bracket by the structural sealant, and then the glass rib is fixed on the supporting bracket, the glass rib supports the splicing joint of the daylighting roof glass panel, thereby improving the stability of the daylighting roof glass panel, since the daylighting roof glass panel and the glass rib are transparent, the indoor lighting is improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a whole structure schematic view of a full-glass daylighting roof system according to an embodiment of the present application;
[0020] Figure 2 is Figure 1 is a sectional view of A-A in FIG. 4;
[0021] Figure 3 is Figure 1 a sectional view along B-B plane in FIG. 1;
[0022] Figure 4 is Figure 1 a sectional view along C-C plane in FIG. 1;
[0023] Figure 5 is Figure 2 a sectional view along D-D plane in FIG. 1.
[0024] Explanation of Reference Signs: 1, daylighting roof glass panel; 2, support bracket; 21, connecting steel plate; 22, stainless steel support; 23, rubber pad; 24, stainless steel connecting plate; 25, stainless steel pad plate; 3, glass rib; 4, structural sealant; 5, main body steel structure; 6, connecting groove; 7, strip-shaped notch; 8, first through hole; 9, aluminum alloy pad frame; 10, fixing groove; 11, partition plate.
[0025] 3, glass rib; 4, structural sealant; 5, main body steel structure; 6, connecting groove; 7, strip-shaped notch; 8, first through hole; 9, aluminum alloy pad frame; 10, fixing groove; 11, partition plate.
[0026] 3, glass rib; 4, structural sealant; 5, main body steel structure; 6, connecting groove; 7, strip-shaped notch; 8, first through hole; 9, aluminum alloy pad frame; 10, fixing groove; 11, partition plate. DETAILED DESCRIPTION
[0027] The following will be described in detail in combination with the accompanying Figures 1-5 The present application is further described in detail.
[0028] The embodiment of the present application discloses a full-glass daylighting roof system. Referring to Figure 1 and Figure 2 The full-glass daylighting roof system comprises a daylighting roof glass panel 1, a support bracket 2, a glass rib 3 and a structural sealant 4, the support bracket 2 is fixedly arranged on a main body steel structure 5, the daylighting roof glass panel 1 is fixedly arranged on the support bracket 2 through the structural sealant 4, the daylighting roof glass panel 1 is laid on the support bracket 2, and the glass rib 3 is fixedly arranged on the support bracket 2 and used for supporting a joint seam of the daylighting roof glass panel 1. When the daylighting roof is installed, first, the support bracket 2 is installed on the main body steel structure 5, then the daylighting roof glass panel 1 is laid on the support bracket 2, and the glass panel is fixed on the support bracket 2 through the structural sealant 4, and subsequently, the glass rib 3 is fixed on the support bracket 2, the glass rib 3 supports the joint seam of the daylighting roof glass panel 1, thereby improving the stability of the daylighting roof glass panel 1, because the daylighting roof glass panel 1 and the glass rib 3 are both transparent, therefore, the indoor daylighting property is improved.
[0029] Referring to Figure 2 and Figure 3In the embodiment of the present application, the support bracket 2 comprises a connecting steel plate 21 and a stainless steel support piece 22. The connecting steel plate 21 is fixedly arranged on the main body steel structure 5 and is welded on the I-beam of the main body steel structure 5. The stainless steel support piece 22 is in a T shape. The vertical plate of the stainless steel support piece 22 is fixedly arranged on the connecting steel plate 21. The horizontal plate is used for supporting the daylighting roof glass panel 1. The rubber pad 23 is arranged between the daylighting roof glass panel 1 and the horizontal plate of the stainless steel support piece 22. The connecting steel plate 21 is welded on the steel structure main body. Then, the stainless steel support piece 22 is fixed on the connecting steel plate 21. The horizontal plate of the stainless steel support piece 22 is transverse. The daylighting roof glass panel 1 is laid flat and is received on the stainless steel support piece 22. The structural sealant 4 is used to fix the daylighting roof glass panel 1 on the stainless steel support piece 22. The operation is simple and convenient. Under the action of the rubber pad 23, the daylighting roof glass panel 1 and the stainless steel support piece 22 are separated. The possibility of damage of the daylighting roof glass panel 1 due to the stainless steel support piece 22 is reduced.
[0030] With reference to Figure 2 and Figure 3 In the embodiment of the present application, the vertical plate of the stainless steel support piece 22 is provided with a connecting groove 6. The connecting steel plate 21 is clamped in the connecting groove 6. The vertical plate of the stainless steel support piece 22 is provided with a strip-shaped notch 7. The strip-shaped notch 7 is vertically arranged. The connecting steel plate 21 is provided with a first through hole 8. The connecting steel plate 21 and the stainless steel support piece 22 are fixedly connected through the strip-shaped notch 7 and the through hole by a bolt and a nut. When the connecting steel plate 21 is connected with the stainless steel support piece 22, the stainless steel support piece 22 is clamped on the connecting steel plate 21. Then, the bolt is passed through the strip-shaped notch 7 and the first through hole 8. The nut is threadedly connected on the bolt. The bolt fixedly connects the stainless steel support piece 22 and the connecting steel plate 21. The operation is simple and convenient.
[0031] With reference to Figure 2 , Figure 4 and Figure 5 In order to fix the glass rib 3 on the stainless steel support piece 22, the stainless steel support piece 22 further comprises a stainless steel connecting plate 24. The stainless steel connecting plate 24 is located on both sides of the connecting steel plate 21. The stainless steel connecting plate 24 on both sides of the connecting steel plate 21 is two pieces. The two pieces are opposite to each other. The connecting steel plate 21 is located between the two pieces of the stainless steel connecting plate 24 and is connected through a bolt and a nut.
[0032] With reference to Figure 2 , Figure 4 and Figure 5 The glass rib 3 is clamped between the two pieces of the stainless steel connecting plate 24 and is fixed on the stainless steel connecting plate 24 through a bolt and a nut.
[0033] When the glass rib 3 is installed, first, the stainless steel connecting plate 24 is placed on both sides of the connecting steel plate 21, and the stainless steel connecting plate 24 and the connecting steel plate 21 are fixedly connected by using bolts and nuts, then the glass rib 3 is placed between the stainless steel connecting plates 24, and the glass rib 3 is fixed on the stainless steel connecting plates 24 by using bolts and nuts, which is simple and convenient to operate.
[0034] With reference to Figure 2 , Figure 4 and Figure 5 , in order to improve the connection stability of the stainless steel connecting plate 24 and the connecting steel plate 21, a stainless steel backing plate 25 is arranged between the stainless steel connecting plate 24 and the connecting steel plate 21.
[0035] With reference to Figure 2 , Figure 4 and Figure 5 , in order to improve the support performance of the glass rib 3 to the daylighting roof glass panel 1, an aluminum alloy backing frame 9 is arranged between the glass rib 3 and the daylighting roof glass panel 1, both sides of the aluminum alloy backing frame 9 are formed with a fixing groove 10, the glass rib 3 is clamped in the fixing groove 10, the fixing groove 10 away from the glass rib 3 is used to support the splicing joint of the daylighting roof glass panel 1, and the structural sealant 4 is arranged in the fixing groove 10, so as to fixedly connect the structural sealant 4, the glass rib 3 and the daylighting roof glass panel 1; when the glass rib 3 is installed on the stainless steel connecting plate 24, first, the aluminum alloy backing frame 9 is clamped on the glass rib 3, then the structural sealant 4 is coated in the fixing groove 10, the structural sealant 4 fixes the glass rib 3 in the fixing groove 10, so as to complete the fixed connection of the aluminum alloy backing frame 9 and the glass rib 3, then the glass rib 3 is fixed between the stainless steel connecting plates 24, at this time, the fixing groove 10 supports the splicing joint of the adjacent daylighting roof glass panel 1, then the structural sealant 4 is injected from the splicing joint of the daylighting roof glass panel 1 into the fixing groove 10, the liquid level of the structural sealant 4 gradually rises to fill the fixing groove 10 and enters the splicing joint of the daylighting roof glass panel 1, so as to fix the daylighting roof glass panel 1 on the glass rib 3, which is simple and convenient to operate.
[0036] With reference to Figure 2 , Figure 4 and Figure 5 , in the embodiment of the application, the bottom of the fixing groove 10 clamping the glass rib 3 is provided with a rubber pad 23, and the rubber pad 23 is used to separate the aluminum alloy backing frame 9 and the glass rib 3; under the action of the rubber pad 23, the possibility that the aluminum alloy backing frame 9 damages the glass rib 3 is reduced, so as to improve the support performance of the glass rib 3 to the daylighting roof glass panel 1.
[0037] With reference to Figure 2 , Figure 4 and Figure 5In the embodiment of the present application, a partition plate 11 is provided on the surface of the horizontal plate of the stainless steel bracket 22 facing away from the vertical plate. The partition plate 11 is used to be placed between adjacent skylight glass panels 1 and buried in the structural sealant 4; after the stainless steel bracket 22 is fixed on the connecting steel plate 21, the partition plate 11 enters the splicing seam of the skylight glass panel 1, and then the structural sealant 4 is injected into the splicing seam. The partition plate 11 is buried in the structural sealant 4. When the structural sealant 4 solidifies, the partition plate 11 forms a skeleton in the structural sealant 4, thereby improving the stability of the skylight glass panel 1.
[0038] Reference Figure 3 In the embodiment of the present application, the skylight glass panel 1 is a double-layer laminated glass panel.
[0039] Reference Figure 2 In the embodiment of the present application, the corners of the stainless steel connecting plate 24 are rounded; under the effect of the rounded corners, the possibility of stress concentration at the corners of the stainless steel connecting plate 24 is reduced, thereby improving the stability of the stainless steel connecting plate 24 and extending the service life of the stainless steel connecting plate 24.
[0040] The implementation principle of the all-glass skylight system in the embodiment of the present application is as follows:
[0041] When installing the skylight, first install the supporting bracket 2 on the main steel structure 5, then lay the skylight glass panel 1 flat on the supporting bracket 2, and fix the glass panel to the supporting bracket 2 through the structural sealant 4, then fix the glass ribs 3 on the supporting bracket 2. The glass ribs 3 support the joints of the skylight glass panel 1 and improve the stability of the skylight glass panel 1. Because the skylight glass panel 1 and the glass ribs 3 are both transparent, the indoor lighting is improved; and the glass ribs 3 bear variable loads, and the stainless steel bracket 22 is used to bear constant loads, thereby improving the stability of the skylight.
[0042] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A full glass glazing roof system characterized by: The utility model provides a kind of skylight glass panel (1), support bracket (2), glass rib (3) and structural sealant (4) comprising, support bracket (2) is fixedly arranged on main body steel structure (5), skylight glass panel (1) is fixedly arranged on support bracket (2) by structural sealant (4), skylight glass panel (1) is laid on support bracket (2), glass rib (3) is fixedly arranged on support bracket (2) and is used to support the joint of skylight glass panel (1).
2. A total glass ceiling system according to claim 1, characterized in that: The support bracket (2) includes a connecting steel plate (21) and a stainless steel bracket (22), the connecting steel plate (21) is fixedly arranged on the main body steel structure (5), the stainless steel bracket (22) is in T shape, the vertical plate of the stainless steel bracket (22) is fixedly arranged on the connecting steel plate (21), and the horizontal plate is used to support the skylight glass panel (1), and the skylight glass panel (1) and the horizontal plate of the stainless steel bracket (22) are provided with rubber pads (23) therebetween.
3. A total glass ceiling system according to claim 2, wherein: The vertical plate of the stainless steel bracket (22) is provided with a connecting groove (6), the connecting steel plate (21) is clamped in the connecting groove (6), the vertical plate of the stainless steel bracket (22) is provided with a strip-shaped notch (7), the strip-shaped notch (7) is vertically arranged, the connecting steel plate (21) is provided with a first through hole (8), and the connecting steel plate (21) and the stainless steel bracket (22) are connected by bolts passing through the strip-shaped notch (7) and the through hole and nuts.
4. A total glass ceiling system according to claim 2, wherein: The stainless steel bracket (22) further includes stainless steel connecting plates (24), the stainless steel connecting plates (24) are located on both sides of the connecting steel plate (21), each side of the connecting steel plate (21) is provided with two stainless steel connecting plates (24) which are opposite to each other, and the connecting steel plate (21) is located between the two stainless steel connecting plates (24) and connected by bolts and nuts; the glass rib (3) is clamped between the two stainless steel connecting plates (24) and fixed on the stainless steel connecting plates (24) by bolts and nuts.
5. A total glass ceiling system according to claim 4, wherein: A stainless steel pad (25) is arranged between the stainless steel connecting plate (24) and the connecting steel plate (21).
6. A total glass ceiling system according to claim 4, wherein: An aluminum alloy pad frame (9) is arranged between the glass rib (3) and the skylight glass panel (1), the aluminum alloy pad frame (9) is provided with fixing grooves (10) on both sides, the glass rib (3) is clamped in the fixing grooves (10), the fixing grooves (10) away from the glass rib (3) are used to support the joint of the skylight glass panel (1), and the structural sealant (4) is arranged in the fixing grooves (10) to fix the structural sealant (4), the glass rib (3) and the skylight glass panel (1).
7. A total glass ceiling system according to claim 4, wherein: The bottom of the fixing groove (10) for clamping the glass rib (3) is provided with a rubber pad (23), and the rubber pad (23) is used to separate the aluminum alloy pad frame (9) and the glass rib (3).
8. A total glass ceiling system according to claim 2, wherein: The horizontal plate of the stainless steel bracket (22) is provided with a partition plate (11) away from the vertical plate, and the partition plate (11) is used to be arranged between adjacent skylight glass panels (1) and embedded in the structural sealant (4).
9. A total glass ceiling system according to claim 1, wherein: The daylighting roof glass panel (1) is a double-layer laminated glass panel.
10. A total glass ceiling system according to claim 4, wherein: The corners of the stainless steel connecting plate (24) are provided with round corners.