Integrated light structure of inclined plane flying wing curtain wall
By using an integrated lighting structure with a wing-shaped keel frame and aluminum alloy brackets, the problems of slow installation, safety hazards, and easy damage to lampshades in cantilevered wing curtain walls are solved, achieving efficient and safe lighting installation and maintenance.
Patent Information
- Application Number
- CN202520328188.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-27
AI Technical Summary
The existing cantilevered wing curtain wall structure has a wide variety of parts, slow installation progress, difficulty in ensuring accuracy, fire safety hazards, inconvenient lighting installation, and lampshades that are prone to discoloration and brittle damage.
The integrated lighting structure includes a winged keel frame, glass panel, and aluminum panel, which are fixed by screws. The LED lights are integrated into the cantilevered columns, and the lampshades are made of cover plate material. The combination of aluminum alloy brackets and stainless steel bolts achieves efficient installation and safe connection.
It improves installation efficiency and safety, simplifies high-rise installation, enhances structural strength and load-bearing capacity, facilitates maintenance and replacement, and avoids the fire hazards and lampshade damage problems associated with traditional welding.
Smart Images

Figure CN223952042U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of integrated light structure of inclined plane fly wing curtain wall, belong to building curtain wall technical field. BACKGROUND
[0002] In the existing cantilever fly wing curtain wall, cantilever fly wing part usually adopts frame structure, main keel adopts aluminum profile or steel material, is fixed by steel piece etc., and auxiliary material and other corresponding parts are sent to the scene installation after processing in factory;This structure has many types of parts, and the operation process is more in the scene, and the installation progress is slower, and the accuracy is difficult to guarantee;If steel keel is used, it is usually welded in the mode, and there is fire safety hazard;In addition, the existing fly wing structure and led lamp strip structure are usually fixed and connected by nailing, when high floor construction, it is inconvenient to install light and later maintenance replacement, and most of the lampshades on the market are made of acrylic plate material, which can cause discoloration problem after a long time, and is easy to break. CONTENT OF UTILITY MODEL
[0003] The utility model aims at overcoming the insufficient of prior art and provides a kind of integrated light structure of inclined plane fly wing curtain wall.
[0004] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of: a kind of integrated light structure of inclined plane fly wing curtain wall, including fly wing keel frame, glass panel and aluminum panel;The glass panel is fixedly installed on one side of fly wing keel frame, and the aluminum panel is fixedly installed on the other side of fly wing keel frame;
[0005] The fly wing keel frame includes upper beam, middle beam, lower beam, public column, inclined middle vertical frame and cantilever column;The upper beam, middle beam and lower beam are arranged parallel to each other, and the middle beam is located between the upper beam and lower beam, the two ends of the public column and cantilever column are respectively connected and fixed with the two ends of the upper beam and lower beam, the two ends of the middle beam are respectively connected and fixed with the middle part of the public column and cantilever column, the inclined middle vertical frame is located between the public column and cantilever column, and the upper and lower ends of the inclined middle vertical frame are respectively connected and fixed with the upper beam and lower beam, and the middle part of the inclined middle vertical frame is matched with the middle beam, the rear end of the public column is provided with a hanging assembly, and the public column is installed on the building main body through the hanging assembly;
[0006] The lower side of the upper beam is fixedly provided with a triangular steel frame, which extends to the outside of the upper beam;The inclined middle vertical frame includes a first steel pipe and two first bent steel plates, the two first bent steel plates are respectively connected and fixed on the front and rear sides of the first steel pipe, and form an integral structure with the first steel pipe, and the glass panel is fixed on the first bent steel plate outside the first steel pipe through a glass attachment frame;
[0007] The outer end of the cantilever column is provided with a plurality of lamp grooves, and the lamp grooves are fixedly installed with LED lamps, and the outer end of the cantilever column is fixedly provided with a lampshade which cooperates with the LED lamps.
[0008] Preferably, the middle cross beam is an internally hollow aluminum profile, and the middle cross beam is internally provided with a plug core assembly which comprises a second steel pipe and two second bent steel plates, and the two second bent steel plates are respectively connected and fixed on two sides of the second steel pipe and form an integral structure with the second steel pipe.
[0009] Preferably, the contact positions of the second steel pipe and the second bent steel plate with the middle cross beam are all provided with hard pads.
[0010] Preferably, the hanging assembly comprises an aluminum alloy hanging piece, a rigid adapter and a stainless steel bolt set, the rigid adapter is connected and fixed on the building main body, the stainless steel bolt set is threaded on the rigid adapter, the front end of the aluminum alloy hanging piece is fixed on the public column, the rear end of the aluminum alloy hanging piece is provided with a hanging groove structure, and the aluminum alloy hanging piece is hung on the stainless steel bolt set through the hanging groove structure.
[0011] Preferably, a fastening nut is sleeved on the stainless steel bolt set, and the fastening nut is used for fixing the aluminum alloy hanging piece.
[0012] Preferably, the public column and the cantilever column are connected and fixed with the upper cross beam and the lower cross beam through screws, and the middle cross beam is connected and fixed with the public column and the cantilever column through screws.
[0013] Preferably, the lampshade is made of galvanized sheet.
[0014] Compared with the prior art, the utility model has the following advantages due to the use of the above technical scheme:
[0015] 1. The utility model discloses a lamp groove is set up on the outer end of the cantilever column, and the LED lamps are integrated on the cantilever column to form an integrated light structure, on the one hand, the integrated light structure can be concentrated in the factory and be processed and installed, and the installation efficiency can be improved, on the other hand, the integrated light structure discards the traditional nailing fixing mode, improves the convenience and safety when installing the high layer, and is convenient for the later maintenance and replacement.
[0016] 2. The utility model discloses a triangular steel frame, a first steel pipe and a first bent steel plate are combined to form an inclined middle vertical frame under the public column, and a plug core assembly is arranged in the middle cross beam, so that the structural strength of the flying wing curtain wall is improved as a whole, the ability of the flying wing curtain wall to resist external load is improved, and the flying wing curtain wall is more safe. DRAWINGS
[0017] The technical scheme of the utility model will be further described below with reference to the drawings:
[0018] Appendix Figure 1 This is a cross-sectional view of the integrated lighting structure of the inclined wing curtain wall described in this utility model;
[0019] Appendix Figure 2 For the appendix Figure 1 Enlarged view of point A in the middle;
[0020] Appendix Figure 3 For the appendix Figure 1 Enlarged view of point B in the middle;
[0021] Appendix Figure 4 This is a longitudinal section detail of an integrated lighting structure for a sloping wing curtain wall as described in this utility model;
[0022] Appendix Figure 5 For the appendix Figure 4 Enlarged view of point C in the middle;
[0023] Appendix Figure 6 This is a schematic diagram of the structure of the mounting component described in this utility model.
[0024] In the diagram: 1. Glass panel; 2. Aluminum panel; 3. Upper crossbeam; 4. Middle crossbeam; 5. Lower crossbeam; 6. Main column; 7. Cantilever column; 8. Main building structure; 9. Triangular steel frame; 10. First steel pipe; 11. First bent steel plate; 12. Glass subframe; 13. Light trough; 14. LED light fixture; 15. Lampshade; 16. Second steel pipe; 17. Second bent steel plate; 18. Rigid pad; 19. Aluminum alloy bracket; 20. Steel adapter; 21. Stainless steel bolt set; 22. Fastening nut. Detailed Implementation
[0025] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0026] As attached Figures 1-4 As shown, the integrated lighting structure of the sloping wing curtain wall of this utility model includes a wing keel frame, a glass panel 1 and an aluminum panel 2; the glass panel 1 is fixedly installed on one side of the wing keel frame, and the aluminum panel 2 is fixedly installed on the other side of the wing keel frame; in this embodiment, the aluminum panel 2 is fixed to the wing keel frame by screws.
[0027] The wing-shaped keel frame includes an upper crossbeam 3, a middle crossbeam 4, a lower crossbeam 5, a public column 6, a diagonal central vertical frame, and a cantilever column 7. The upper crossbeam 3, middle crossbeam 4, and lower crossbeam 5 are arranged parallel to each other, with the middle crossbeam 4 located between the upper crossbeam 3 and the lower crossbeam 5. The two ends of the public column 6 and the cantilever column 7 are respectively connected and fixed to the two ends of the upper crossbeam 3 and the lower crossbeam 5. The two ends of the middle crossbeam 4 are respectively connected and fixed to the middle of the public column 6 and the cantilever column 7. In this embodiment, the public column 6 and the cantilever column 7 are both connected and fixed to the upper crossbeam 3 and the lower crossbeam 5 by screws, and the middle crossbeam 4 is connected and fixed to the public column 6 and the cantilever column 7 by screws. The screw specification is ST6.3*25. Fixing the public column 6 and the cantilever column 7 to the upper crossbeam 3 and the lower crossbeam 5 with screws can avoid the fire hazards of traditional on-site welding.
[0028] The inclined vertical frame is located between the public column 6 and the cantilever column 7. The upper and lower ends of the inclined vertical frame are connected and fixed to the upper horizontal beam 3 and the lower horizontal beam 5, respectively, and the middle part of the inclined vertical frame is matched with the middle horizontal beam 4.
[0029] Specifically, the oblique vertical frame includes a first steel pipe 10 and two first bent steel plates 11. In this embodiment, the two first bent steel plates 11 are both U-shaped. The two first bent steel plates 11 are respectively connected and fixed to the front and rear sides of the first steel pipe 10 and form an integral structure with the first steel pipe 10. The glass panel 1 is fixed to the first bent steel plate 11 located outside the first steel pipe 10 through the glass subframe 12.
[0030] The reasonable layout and connection method of the flying wing keel frame provides a stable support structure for the flying wing curtain wall. At the same time, the first steel pipe 10 and two first bent steel plates 11 are combined and made into an integrated structure to enhance the support force of the flying wing keel frame and effectively improve the ability of the large-sized cantilever flying wing to resist external loads.
[0031] The entire processing and assembly of the flying wing keel frame is completed in the workshop, which can maximize processing accuracy and convenience, ensure the processing quality of each component, and maximize production efficiency and on-site construction efficiency.
[0032] As attached Figure 6 As shown, the rear end of the public column 6 is provided with a hanging assembly, and the public column 6 is installed on the building body 8 through the hanging assembly. Specifically, the hanging assembly includes an aluminum alloy hanger 19, a rigid adapter 20, and a stainless steel bolt group 21. The rigid adapter 20 is connected and fixed to the building body 8, and the stainless steel bolt group 21 passes through the rigid adapter 20. The front end of the aluminum alloy hanger 19 is fixed to the public column 6 with screws, and the rear end of the aluminum alloy hanger 19 has a hanging groove structure. This hanging groove structure is a conventional structure in this field. The aluminum alloy hanger 19 is hung on the stainless steel bolt group 21 through the hanging groove structure, thereby realizing the connection between the public column 6 and the building body 8.
[0033] Further, the stainless steel bolt set 21 is sleeved with a fastening nut 22, which is used to fix the aluminum alloy hanging piece 19. During installation, the fastening nut 22 can be loosened to fine-tune the position of the aluminum alloy hanging piece 19, so as to reduce installation errors. When the position of the aluminum alloy hanging piece 19 is determined, the fastening nut 22 is tightened to fix the aluminum alloy hanging piece 19.
[0034] The lower side of the upper cross beam 3 is fixedly provided with a triangular steel frame 9 extending to the outer side of the upper cross beam 3. In the embodiment, the triangular steel frame 9 is formed by three steel pipes and is directly transported to the site for installation after being processed in the factory. By arranging the triangular steel frame 9 on the lower side of the upper cross beam 3, the structural stability of the flying-wing curtain wall is further enhanced, and the safety of the flying-wing curtain wall is ensured.
[0035] The outer end of the cantilever column 7 is provided with a plurality of lamp grooves 13, and the lamp grooves 13 are fixedly installed with LED lamps 14. The outer end of the cantilever column 7 is fixedly provided with a lampshade 15 cooperating with the LED lamps 14. In the embodiment, the lampshade 15 is arc-shaped, and the two ends of the lampshade 15 are fixed on the outer end of the cantilever column 7 by screws.
[0036] By arranging the lamp grooves 13 on the outer end of the cantilever column 7 and integrating the LED lamps 14 on the cantilever column 7, an integrated lighting structure is formed. On the one hand, the integrated lighting structure can be concentrated in the factory for mold processing and installation, which can improve the installation efficiency. On the other hand, the integrated lighting structure discards the traditional nailing fixing method, improves the convenience and safety during high-rise installation, and is also convenient for later maintenance and replacement.
[0037] As a preferred embodiment, the lampshade 15 is made of galvanized sheet to solve the problems of discoloration and brittle damage of the lampshade 15, effectively prolonging the service life of the lampshade 15.
[0038] As shown in the accompanying drawings, Figure 5 The middle cross beam 4 is an internally hollow aluminum profile, and the inside of the middle cross beam 4 is provided with a plug core assembly including a second steel pipe 16 and two second bent steel plates 17. The two second bent steel plates 17 are respectively connected and fixed on both sides of the second steel pipe 16 and form an integral structure with the second steel pipe 16 to enhance the strength of the middle cross beam 4 and further ensure the structural stability of the flying-wing curtain wall.
[0039] The contact positions of the second steel pipe 16 and the second bent steel plate 17 with the middle cross beam 4 are provided with hard pads 18 to avoid damage caused by rigid contact between the second steel pipe 16 and the second bent steel plate 17 and the middle cross beam 4.
[0040] The above is only a specific application example of the present application, and does not constitute any limitation on the protection scope of the present application; any technical solution formed by equivalent transformation or equivalent replacement falls within the protection scope of the present application.
Claims
1. An integrated lighting structure for a sloping wing curtain wall, characterized in that: It includes a flying wing keel frame, a glass panel (1) and an aluminum panel (2); the glass panel (1) is fixedly installed on one side of the flying wing keel frame, and the aluminum panel (2) is fixedly installed on the other side of the flying wing keel frame; The wing keel frame includes an upper crossbeam (3), a middle crossbeam (4), a lower crossbeam (5), a central column (6), a diagonal vertical frame, and a cantilevered column (7); the upper crossbeam (3), the middle crossbeam (4), and the lower crossbeam (5) are arranged parallel to each other, with the middle crossbeam (4) located between the upper crossbeam (3) and the lower crossbeam (5). The two ends of the central column (6) and the cantilevered column (7) are respectively connected and fixed to the two ends of the upper crossbeam (3) and the lower crossbeam (5). The two ends of the central beam (4) are respectively connected and fixed to the middle of the public column (6) and the cantilever column (7). The oblique central vertical frame is located between the public column (6) and the cantilever column (7). The upper and lower ends of the oblique central vertical frame are respectively connected and fixed to the upper beam (3) and the lower beam (5). The middle part of the oblique central vertical frame cooperates with the central beam (4). The rear end of the public column (6) is provided with a hanging component. The public column (6) is installed on the main body of the building (8) through the hanging component. A triangular steel frame (9) is fixedly installed on the lower side of the upper crossbeam (3), and the triangular steel frame (9) extends to the outside of the upper crossbeam (3); the oblique vertical frame includes a first steel pipe (10) and two first bent steel plates (11), the two first bent steel plates (11) are respectively connected and fixed to the front and rear sides of the first steel pipe (10), and form an integral structure with the first steel pipe (10); the glass panel (1) is fixed to the first bent steel plate (11) located outside the first steel pipe (10) by a glass subframe (12); The cantilevered column (7) has multiple light slots (13) at its outer end. LED lights (14) are fixedly installed in the light slots (13). A lampshade (15) is fixedly installed at the outer end of the cantilevered column (7). The lampshade (15) cooperates with the LED lights (14).
2. The integrated lighting structure of the sloping wing curtain wall according to claim 1, characterized in that: The middle crossbeam (4) is an aluminum profile with a hollow interior. The middle crossbeam (4) is equipped with a core assembly. The core assembly includes a second steel pipe (16) and two second bent steel plates (17). The two second bent steel plates (17) are respectively connected and fixed to both sides of the second steel pipe (16) and form an integral structure with the second steel pipe (16).
3. The integrated lighting structure of the sloping wing curtain wall according to claim 2, characterized in that: Hard pads (18) are provided at the contact positions between the second steel pipe (16) and the second bent steel plate (17) and the middle crossbeam (4).
4. The integrated lighting structure of the sloping wing curtain wall according to claim 1, characterized in that: The mounting assembly includes an aluminum alloy bracket (19), a rigid adapter (20), and a stainless steel bolt assembly (21). The rigid adapter (20) is connected and fixed to the main building (8). The stainless steel bolt assembly (21) passes through the rigid adapter (20). The front end of the aluminum alloy bracket (19) is fixed to the public column (6). The rear end of the aluminum alloy bracket (19) has a mounting groove structure. The aluminum alloy bracket (19) is mounted on the stainless steel bolt assembly (21) through the mounting groove structure.
5. The integrated lighting structure of a sloping wing curtain wall according to claim 4, characterized in that: The stainless steel bolt assembly (21) is fitted with a fastening nut (22), which is used to fix the aluminum alloy hanger (19).
6. The integrated lighting structure of the sloping wing curtain wall according to claim 1, characterized in that: The public column (6) and the cantilever column (7) are both connected and fixed to the upper crossbeam (3) and the lower crossbeam (5) by screws, and the middle crossbeam (4) is connected and fixed to the public column (6) and the cantilever column (7) by screws.
7. The integrated lighting structure of a sloping wing curtain wall according to claim 1, characterized in that: The lampshade (15) is made of cover plate material.