Connecting structure of curtain wall and glass panel on both sides of canopy roof
Patent Information
- Application Number
- CN202310233659.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-13
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2043-03-13
AI Technical Summary
[0002]随着建筑外围幕墙技术的发展,幕墙技术在雨棚建筑中也得到了广泛的运用,雨棚棚顶端部内侧幕墙与雨棚棚顶端部外侧幕墙与下方玻璃面板的连接结构是雨棚幕墙结构施工中的难点,而且雨棚棚顶两侧的幕墙与玻璃面板的交接处为下部支撑结构对雨棚棚顶结构的支撑点,此处结构尤其需具备良好的气密性,避免水汽腐蚀结构构件对整体结构安全的影响,由于此处为雨棚棚顶两侧的幕墙与玻璃面板的交接处,涉及构件较多,结构的稳定性和气密性难以得到保证
本发明为雨棚棚顶两侧幕墙与玻璃面板连接结构,通过在第一GRC板面结构和第二GRC板面结构之间设置封堵构件,将玻璃面板与封堵构件底部连接,封堵构件包括工字钢梁、设于工字钢梁两个翼缘板外侧的两个镀锌角钢,工字钢梁与第一GRC面板之间设有第一封口框,工字钢梁与第二GRC面板之间设有第二封口框,第一封口框的两个竖部分别与铝合金边框和靠近第一GRC面板方向的L型连接件固定,第二封口框的两个竖部分别与铝合金边框和靠近第二GRC面板方向的L型连接件固定,第一封口框与第一GRC面板之间以及第二封口框与第二GRC面板之间均密封连接,从而将雨棚棚顶端部内侧的第一GRC板面结构端部与雨棚棚顶端部外侧的第二GRC板面结构端部封堵,而玻璃面板边部固定在铝合金扣条与铝合金边框之间构成夹固空间内,使得雨棚棚顶两侧幕墙与玻璃面板处连接结构既具有良好的结构稳定性,又具有良好的气密性,减少水汽腐蚀结构构件对整体结构安全的影响,具有安全、适用等特点,有很好的推广和实用价值,广泛的推广应用后会产生良好的经济效益。
Smart Images

Figure CN116104238B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of canopy curtain wall structure construction, and more particularly to the connection structure between the curtain walls on both sides of the canopy roof and the glass panels. Background Technology
[0002] With the development of building exterior curtain wall technology, curtain wall technology has also been widely used in canopy buildings. The connection structure between the inner curtain wall at the top of the canopy and the outer curtain wall at the top of the canopy and the glass panel below is a difficult point in the construction of the canopy curtain wall structure. Moreover, the junction of the curtain wall and the glass panel on both sides of the canopy roof is the support point of the lower support structure for the canopy roof structure. The structure here must have good air tightness to avoid the impact of water vapor corrosion on the structural components and the overall structural safety. Since this is the junction of the curtain wall and the glass panel on both sides of the canopy roof, there are many components involved, and the stability and air tightness of the structure are difficult to guarantee. Summary of the Invention
[0003] The purpose of this invention is to provide a connection structure between the curtain walls and glass panels on both sides of the canopy roof, in order to solve the technical problems mentioned in the background section.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: The canopy roof's side curtain walls and glass panel connection structure includes a first GRC panel structure located on the inner side of the canopy roof top, a second GRC panel structure located on the outer side of the canopy roof top, a sealing member located between the first and second GRC panel structures, and a glass panel located at the bottom of the sealing member; the bottom of the canopy roof is provided with a canopy steel structure member, the first GRC panel structure includes a first GRC panel, both the canopy steel structure member and the first GRC panel are arc-shaped structures, and the first GRC panel is fixed to the canopy steel structure member; the canopy roof... The end is provided with a main steel structure column. The second GRC panel structure includes a second GRC panel, which is fixed to the main steel structure column. GRC plate reinforcement bars are provided at intervals on the inner side of the first GRC panel. A transition rod is fixed to the web of the canopy steel structure member, and the GRC plate reinforcement bars are fixed to the transition rod. GRC reinforcing ribs are provided on the inner side of the second GRC panel. Aluminum alloy hangers are provided on the GRC reinforcing ribs. The main steel structure column is provided with a hanger that works with the aluminum alloy hanger. The aluminum alloy hanger is hung with the hanger.
[0005] Furthermore, the aluminum alloy hanger includes a fixing part and a hanging part. The fixing part has a Z-shaped structure and is fixed to the GRC reinforcing rib by a stainless steel back bolt. The opening of the fixing part faces away from the GRC reinforcing rib. The hanging part has an L-shaped structure, and the hanging part and the fixing part form an n-shaped hanging space. The hanger includes a connecting part and a receiving part and a bolting part that are vertically arranged at both ends of the connecting part in opposite directions. The bolting part is fixed to the main steel structure column, and the receiving part extends into the n-shaped hanging space of the aluminum alloy hanger. The aluminum alloy hanger abuts against the side plate of the receiving part.
[0006] Furthermore, the sealing component includes an I-beam, two galvanized angle steels located on the outer sides of the two flanges of the I-beam, and L-shaped connectors on the galvanized angle steels. Hot-dip galvanized steel adapters are provided between the two galvanized angle steels and the two flanges of the I-beam, and the two galvanized angle steels are respectively connected and fixed to the two flanges of the I-beam through the hot-dip galvanized steel adapters.
[0007] Furthermore, the bottom of the web of the I-beam is provided with a hot-dip galvanized U-shaped channel steel. The hot-dip galvanized U-shaped channel steel is fixed to the web of the I-beam with its open end facing the web of the I-beam. An aluminum alloy frame is fixed to the outside of the hot-dip galvanized U-shaped channel steel. The aluminum alloy frame is fixed to the hot-dip galvanized U-shaped channel steel on the side of the hot-dip galvanized U-shaped channel steel away from the web of the I-beam.
[0008] Furthermore, a first sealing frame is provided between the I-beam and the first GRC panel, and a second sealing frame is provided between the I-beam and the second GRC panel. The first sealing frame has a U-shaped structure, and its two vertical parts are respectively fixed to the aluminum alloy frame and the L-shaped connectors near the first GRC panel. The second sealing frame has a U-shaped structure, and its two vertical parts are respectively fixed to the aluminum alloy frame and the L-shaped connectors near the second GRC panel. The first sealing frame and the first GRC panel, as well as the second sealing frame and the second GRC panel, are sealed together.
[0009] Furthermore, the aluminum alloy frame corner is provided with an L-shaped groove, and an aluminum alloy buckle is provided in the L-shaped groove. The aluminum alloy buckle has an n-shaped structure. The aluminum alloy buckle forms a clamping space between the aluminum alloy frame and the L-shaped groove, and the edge of the glass panel is fixed in the clamping space.
[0010] Furthermore, the two vertical ends of the aluminum alloy buckle are respectively provided with outward folded edges and slots. The included angle between the folded edges and the vertical parts of the aluminum alloy buckle is 90~140°. The middle and outer sides of the bottom edge of the L-shaped groove are provided with locking protrusions. The folded edges are connected to the locking protrusions in the middle of the bottom edge of the L-shaped groove, and the slots are connected to the locking protrusions in the outer sides of the bottom edge of the L-shaped groove.
[0011] Furthermore, the top and outer sides of the aluminum alloy buckle are flush with the corresponding sides of the aluminum alloy frame.
[0012] Furthermore, the thickness of both the first and second GRC panels is 15mm.
[0013] Compared with the prior art, the present invention has the following features and beneficial effects: This invention relates to a connection structure between the curtain walls on both sides of an awning roof and the glass panel. A sealing component is installed between the first and second GRC panel structures to connect the glass panel to the bottom of the sealing component. The sealing component includes an I-beam and two galvanized angle steels located on the outer sides of the two flanges of the I-beam. A first sealing frame is provided between the I-beam and the first GRC panel, and a second sealing frame is provided between the I-beam and the second GRC panel. The two vertical sections of the first sealing frame are respectively fixed to an aluminum alloy frame and an L-shaped connector near the first GRC panel. The two vertical sections of the second sealing frame are respectively fixed to an aluminum alloy frame and an L-shaped connector near the second GRC panel. The first sealing frame and the first GRC panel, as well as the second sealing frame and the second GRC panel, are sealed together, thus sealing the end of the first GRC panel structure on the inner side of the canopy top and the end of the second GRC panel structure on the outer side of the canopy top. The edge of the glass panel is fixed in the clamping space formed between the aluminum alloy buckle and the aluminum alloy frame. This makes the connection structure between the curtain wall on both sides of the canopy top and the glass panel have both good structural stability and good airtightness, reducing the impact of water vapor corrosion on the structural components on the overall structural safety. It has the characteristics of safety and applicability, and has good promotion and practical value. After widespread promotion and application, it will generate good economic benefits. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the connection structure between the glass panel and the aluminum alloy frame of the present invention.
[0015] Reference numerals: 1. Glass panel; 2. Steel structural member of the canopy; 3. First GRC panel; 4. Main steel structural column; 5. Second GRC panel; 6. GRC panel reinforcement; 7. Adapter rod; 8. GRC reinforcing rib; 9. Aluminum alloy hanger; 10. N-shaped hanging space; 11. I-beam; 12. Galvanized angle steel; 13. L-shaped connector; 14. Hot-dip galvanized steel adapter; 15. Hot-dip galvanized U-shaped channel steel; 16. Aluminum alloy frame; 17. First sealing frame; 18. Second sealing frame; 19. L-shaped channel; 20. Aluminum alloy buckle strip; 2001. Folded edge; 2002. Card slot; 21. Hanger. Detailed Implementation
[0016] To make the technical means, innovative features, objectives and effects of this invention easier to understand, the invention will be further described below.
[0017] The embodiments described herein are specific implementations of the present invention, used to illustrate the concept of the invention, and are illustrative and exemplary, and should not be construed as limiting the implementation or scope of the invention. In addition to the embodiments described herein, those skilled in the art can employ other obvious technical solutions based on the content disclosed in the claims and specification of this application. These technical solutions include those that make any obvious substitutions and modifications to the embodiments described herein.
[0018] This invention discloses a connection structure between the curtain walls on both sides of the canopy roof and the glass panel, such as... Figure 1 As shown, the inner side of the canopy roof is an arched structure, and the outer side of the canopy roof top is a vertical structure, including a first GRC panel structure on the inner side of the canopy roof top, a second GRC panel structure on the outer side of the canopy roof top, a sealing component between the first and second GRC panel structures, and a glass panel 1 at the bottom of the sealing component; the bottom of the canopy roof is provided with a canopy steel structure member 2, the first GRC panel structure includes a first GRC panel 3, both the canopy steel structure member 2 and the first GRC panel 3 are arc-shaped structures, GRC plate reinforcement 6 are spaced apart on the inner side of the first GRC panel 3, a transition rod 7 is fixedly provided on the belly of the canopy steel structure member 2, and the GRC plate reinforcement 6 is welded and fixed to the transition rod 7, thereby fixing the first GRC panel 3 to the canopy steel structure member 2; the top of the canopy roof is provided with a main steel structure column 4, the second GRC panel structure includes a second GRC panel 5, the inner side of the second GRC panel 5 is... The main steel column 4 is equipped with a GRC reinforcing rib 8, and an aluminum alloy hanger 9 is provided on the GRC reinforcing rib 8. The aluminum alloy hanger 9 includes a fixing part and a hanging part. The fixing part has a Z-shaped structure and is fixed to the GRC reinforcing rib 8 by a stainless steel back bolt. The opening of the fixing part faces away from the GRC reinforcing rib 8. The hanging part has an L-shaped structure. The hanging part and the fixing part form an n-shaped hanging space 10. The main steel column 4 is equipped with a hanger 21 that works with the aluminum alloy hanger 9. The hanger 21 includes a connecting part and a receiving part and a bolting part that are vertically arranged at both ends of the connecting part in opposite directions. The bolting part is fixed to the main steel column 4. The aluminum alloy hanger 9 is hung on the receiving part of the hanger 21. The receiving part of the hanger 21 extends into the n-shaped hanging space 10 of the aluminum alloy hanger 9. The aluminum alloy hanger 9 is attached to the side plate of the receiving part, thereby connecting and fixing the second GRC panel 5 to the main steel column 4. The thickness of the first GRC panel and the second GRC panel is 15mm.
[0019] like Figure 1As shown, the sealing component includes an I-beam 11, two galvanized angle steels 12 located on the outer sides of the two flanges of the I-beam 11, and L-shaped connectors 13 on the galvanized angle steels 12. The I-beam 11 is arranged with its web horizontal and parallel to the second GRC plate. The galvanized angle steels 12 have a specification of 50*50*4mm. A 6mm thick hot-dip galvanized steel adapter 14 is provided between each of the two galvanized angle steels 12 and the two flanges of the I-beam 11. Both galvanized angle steels 12 are hot-dip galvanized steels. Galvanized steel adapter 14 is connected and fixed to the two flanges of the I-beam 11. L-shaped connector 13 is fixed to galvanized angle steel 12 by bolts. Hot-dip galvanized U-shaped channel steel 15 is provided at the bottom of the web of the I-beam 11. The hot-dip galvanized U-shaped channel steel 15 is welded and fixed to the web of the I-beam 11 with its open end facing the web. An aluminum alloy frame 16 is fixed on the outside of the hot-dip galvanized U-shaped channel steel 15. The aluminum alloy frame 16 is a rectangular frame structure. The side of steel 15 away from the web of the I-beam 11 is fixed to the hot-dip galvanized U-shaped channel steel 15 by long screws. A first sealing frame 17 is provided between the I-beam 11 and the first GRC panel 3, and a second sealing frame 18 is provided between the I-beam 11 and the second GRC panel 5. Both the first sealing frame 17 and the second sealing frame 18 are formed by bending 3mm thick aluminum plates. The first sealing frame 17 has a U-shaped structure, and its two vertical parts are respectively connected to the aluminum alloy frame 16 and the side near the first GRC panel. The L-shaped connector 13 in three directions is fixed, the second sealing frame 18 is a U-shaped structure, and the two vertical parts of the second sealing frame 18 are respectively fixed to the aluminum alloy frame 16 and the L-shaped connector 13 in the direction close to the second GRC panel 5. The first sealing frame 17 and the first GRC panel 3 and the second sealing frame 18 and the second GRC panel 5 are sealed and connected, thereby sealing the end of the first GRC panel structure on the inner side of the top of the canopy and the end of the second GRC panel structure on the outer side of the top of the canopy.
[0020] like Figure 2 As shown, the aluminum alloy frame 16 has an L-shaped groove 19 at its corner, and an aluminum alloy buckle 20 is provided in the L-shaped groove 19. The aluminum alloy buckle 20 has an n-shaped structure. The aluminum alloy buckle 20 forms a clamping space between the aluminum alloy frame 16 and the L-shaped groove 19. The edge of the glass panel 1 is fixed in the clamping space. The two vertical ends of the aluminum alloy buckle 20 are respectively provided with an outwardly folded edge 2001 and a slot 2002. The included angle between the folded edge 2001 and the vertical part of the aluminum alloy buckle 20 is 90~140°. The middle and outer sides of the bottom edge of the L-shaped groove 19 are provided with a latching protrusion. The folded edge 2001 is connected to the latching protrusion in the middle of the bottom edge of the L-shaped groove 19, and the slot 2002 is connected to the latching protrusion in the outer side of the bottom edge of the L-shaped groove 19, thereby fixing the aluminum alloy buckle 20 in the L-shaped groove 19. The top and outer sides of the aluminum alloy buckle 20 are flush with the corresponding sides of the aluminum alloy frame 16.
[0021] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0022] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. The connection structure between the curtain walls and glass panels on both sides of the canopy roof, characterized in that: The canopy includes a first GRC panel structure located on the inner side of the top of the canopy, a second GRC panel structure located on the outer side of the top of the canopy, a sealing member located between the first and second GRC panel structures, and a glass panel (1) located at the bottom of the sealing member; a steel structure member (2) is provided at the bottom of the canopy roof, the first GRC panel structure includes a first GRC panel (3), both the steel structure member (2) and the first GRC panel (3) are arc-shaped structures, and the first GRC panel (3) is fixed to the steel structure member (2); The top of the canopy is provided with a main steel structure column (4). The second GRC panel structure includes a second GRC panel (5), which is fixed to the main steel structure column (4). GRC plate reinforcement bars (6) are provided at intervals on the inner side of the first GRC panel (3). A transition rod (7) is fixed on the belly of the canopy steel structure member (2), and the GRC plate reinforcement bars (6) are fixed to the transition rod (7). GRC reinforcing ribs (8) are provided on the inner side of the second GRC panel (5), and aluminum alloy hangers are provided on the GRC reinforcing ribs (8). (9) The main steel structure column (4) is provided with a hook-fitting piece (21) for use with the aluminum alloy hanger (9), and the aluminum alloy hanger (9) is hooked to the hook-fitting piece (21); the sealing component includes an I-beam (11), two galvanized angle steels (12) located on the outer side of the two flange plates of the I-beam (11), and an L-shaped connector (13) located on the galvanized angle steels (12). Hot-dip galvanized steel adapters (14) are provided between the two galvanized angle steels (12) and the two flange plates of the I-beam (11). The two galvanized angle steels (12) are connected to each other. Hot-dip galvanized steel adapter (14) is connected and fixed to the two flange plates of the I-beam (11); the bottom of the web of the I-beam (11) is provided with hot-dip galvanized U-shaped channel steel (15), the hot-dip galvanized U-shaped channel steel (15) is open and facing the web of the I-beam (11) and fixed to the web of the I-beam (11), and an aluminum alloy frame (16) is fixed on the outside of the hot-dip galvanized U-shaped channel steel (15), and the aluminum alloy frame (16) is fixed on the side of the hot-dip galvanized U-shaped channel steel (15) away from the web of the I-beam (11);A first sealing frame (17) is provided between the I-beam (11) and the first GRC panel (3), and a second sealing frame (18) is provided between the I-beam (11) and the second GRC panel (5). The first sealing frame (17) has a U-shaped structure, and its two vertical parts are respectively fixed to the aluminum alloy frame (16) and the L-shaped connector (13) near the first GRC panel (3). The second sealing frame (18) has a U-shaped structure, and its two vertical parts are respectively fixed to the aluminum alloy frame (16) and the L-shaped connector (13) near the second GRC panel (5). The first sealing frame (17) and the first GRC panel (3) and the second sealing frame (18) and the second GRC panel (5) are both sealed together.
2. The connection structure between the curtain walls and glass panels on both sides of the canopy roof according to claim 1, characterized in that: The aluminum alloy hanger (9) includes a fixing part and a hanging part. The fixing part has a Z-shaped structure and is fixed to the GRC reinforcing rib (8) by a stainless steel back bolt. The opening of the fixing part faces away from the GRC reinforcing rib (8). The hanging part has an L-shaped structure and forms an n-shaped hanging space (10) between the hanging part and the fixing part. The hanging part (21) includes a connecting part and a receiving part and a bolting part that are vertically arranged at both ends of the connecting part in opposite directions. The bolting part is fixed to the main steel structure column (4). The receiving part extends into the n-shaped hanging space (10) of the aluminum alloy hanger (9). The aluminum alloy hanger (9) abuts against the side plate of the receiving part.
3. The connection structure between the curtain walls and glass panels on both sides of the canopy roof according to claim 2, characterized in that: The aluminum alloy frame (16) has an L-shaped groove (19) at the corner, and an aluminum alloy buckle (20) is provided in the L-shaped groove (19). The aluminum alloy buckle (20) has an n-shaped structure. The aluminum alloy buckle (20) and the aluminum alloy frame (16) form a clamping space in the L-shaped groove (19), and the edge of the glass panel (1) is fixed in the clamping space.
4. The connection structure between the curtain walls and glass panels on both sides of the canopy roof according to claim 3, characterized in that: The two vertical ends of the aluminum alloy buckle (20) are respectively provided with outward folded edges (2001) and slots (2002). The included angle between the folded edges (2001) and the vertical part of the aluminum alloy buckle (20) is 90~140°. The middle and outer sides of the bottom edge of the L-shaped groove (19) are provided with snap protrusions. The folded edges (2001) are snapped together with the snap protrusions in the middle of the bottom edge of the L-shaped groove (19), and the slots (2002) are snapped together with the snap protrusions in the outer sides of the bottom edge of the L-shaped groove (19).
5. The connection structure between the curtain walls and glass panels on both sides of the canopy roof according to claim 4, characterized in that: The top and outer sides of the aluminum alloy buckle (20) are flush with the corresponding sides of the aluminum alloy frame (16).
6. The connection structure between the curtain walls and glass panels on both sides of the canopy roof according to any one of claims 1 to 5, characterized in that: The thickness of the first GRC panel (3) and the second GRC panel (5) is 15mm.
Citation Information
Patent Citations
Canopy roof end outer side curtain wall and inner side curtain wall sealing construction joint
CN219491417U
Construction node of connecting structure of curtain wall on inner side of canopy roof and end sealing component
CN220035803U