Curtain wall assembly part system
By using prefabricated frame systems in factories and installing them on-site, the shortcomings of traditional curtain walls in terms of construction period, quality, and cost are solved, achieving efficient and low-cost curtain wall installation that meets building codes and environmental impact assessment requirements.
Patent Information
- Application Number
- CN202423128730.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Traditional framed curtain walls cannot meet the requirements of construction units for construction period, quality and cost, while unitized curtain walls are more expensive.
The system employs an assembly frame system, including aluminum alloy columns, top beams, middle beams, and bottom beams. The glass panels are assembled as finished products in the factory, while the loose components are installed on-site. They are connected by screw slots and beam inserts, combined with aluminum alloy pressure plates and decorative strips, to achieve high-precision industrial integrated production.
It achieves high-precision control of factory-assembled finished products, reduces on-site installation workload, meets construction period and quality requirements, and has a cost between frame and unitized curtain wall, thus meeting building compliance requirements.
Smart Images

Figure CN223548789U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a curtain wall assembly system. Background Technology
[0002] With the continuous development of the curtain wall industry, the types of curtain wall systems are also constantly increasing and innovating. At present, conventional framed glass curtain wall systems use aluminum alloy profiles as the curtain wall keel system for the horizontal beams and columns, and all curtain wall components are installed on the construction site. Conventional unitized glass curtain wall systems use aluminum alloy horizontal beams and columns, and the frames are assembled in the factory, the panels are installed to form finished products, and then transported to the construction site for overall hoisting.
[0003] As construction companies place increasingly higher demands on schedule, quality, and cost control, traditional frame curtain walls can no longer meet the schedule and quality requirements of more and more construction companies, while traditional unitized curtain walls are relatively expensive. Summary of the Invention
[0004] The purpose of this utility model is to provide a new type of assembly system that greatly meets the requirements of construction units for construction period, quality and cost.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A curtain wall assembly system includes an assembly frame, with bulk components installed between two assembly frames. The assembly frame includes two side columns and aluminum alloy top beams, aluminum alloy middle beam one, aluminum alloy middle beam two, and aluminum alloy bottom beams installed at intervals from top to bottom between the two side columns. A top glass panel is installed between the aluminum alloy top beam and the aluminum alloy middle beam one, a middle glass panel is installed between the aluminum alloy middle beam one and the aluminum alloy middle beam two, and a bottom glass panel is installed between the aluminum alloy middle beam two and the aluminum alloy bottom beam.
[0007] The bulk components include an aluminum alloy top crossbeam A, an aluminum alloy middle crossbeam A, an aluminum alloy middle crossbeam B, and an aluminum alloy bottom crossbeam A. The aluminum alloy top crossbeam A, aluminum alloy middle crossbeam A, aluminum alloy middle crossbeam B, and aluminum alloy bottom crossbeam A are respectively connected to the columns between the two assembled frames through crossbeam inserts. A top glass panel A is installed between the aluminum alloy top crossbeam A and the aluminum alloy middle crossbeam A, a middle glass panel A is installed between the aluminum alloy middle crossbeam A and the aluminum alloy middle crossbeam B, and a bottom glass panel A is installed between the aluminum alloy middle crossbeam B and the aluminum alloy bottom crossbeam A.
[0008] The column includes a U-frame, the open end of which is sealed with a front side plate that is vertically bent in a Z-shape. The plate that is folded inward forms a groove with the front end of one side plate of the U-frame. A T-shaped plate is provided on the outer wall of the rear plate of the U-frame.
[0009] The aluminum alloy top beam includes a rectangular frame. Screw grooves are provided on the inner walls of the top plate, bottom plate and rear plate of the rectangular frame. The frame is connected to the column through the screw grooves. Glass sealing strip mounting grooves are provided at both ends of the front side plate of the rectangular frame. An inverted H-shaped connecting plate is provided in the middle of the front side plate of the rectangular frame. A T-shaped groove is formed at the free end of the connecting plate. The aluminum alloy top beam has the same structure as the aluminum alloy middle beam.
[0010] The aluminum alloy crossbeam includes an inverted trapezoidal frame. An inverted H-shaped connecting plate A is provided in front of the front long bottom plate of the trapezoidal frame. The free end of the inverted H-shaped connecting plate A forms two connected T-shaped grooves A. Screw grooves are provided on the inner walls of the two waist plates and the rear short bottom plate of the inverted trapezoidal frame, and the connection with the column is achieved through the screw grooves. Sealing strip mounting grooves are provided at both ends of the front long bottom plate.
[0011] The aluminum alloy bottom crossbeam includes a vertical frame, an inverted F-frame, and an H-frame. An inverted F-frame is provided at the lower front end of the vertical frame. An H-frame is provided at the middle front of the vertical side plate of the inverted F-frame. A sealing strip mounting groove is provided at the free end of the vertical side plate of the inverted F-frame. A T-slot is provided at the free end of the H-frame. Screw slots are provided on the inner walls of the two horizontal side plates of the F-frame. A screw slot is provided on the bottom plate of the vertical frame. The vertical frame is connected to the column screws through the screw slots.
[0012] Install an aluminum alloy top pressure plate on the aluminum alloy top crossbeam, install an aluminum alloy pressure plate on the aluminum alloy middle crossbeam, install an aluminum alloy bottom pressure plate on the aluminum alloy bottom crossbeam, install an aluminum alloy decorative strip on the aluminum alloy middle crossbeam, install an aluminum alloy decorative strip on the aluminum alloy pressure plate, and install a common decorative strip on the aluminum alloy bottom pressure plate and the aluminum alloy top pressure plate below.
[0013] The aluminum alloy top pressure plate and aluminum alloy bottom pressure plate have the same structure and are arranged symmetrically. The aluminum alloy bottom pressure plate includes T-shaped groove plates at the upper and lower ends. Glass sealing strips are installed on the T-shaped groove plates. The connecting bottom plate between the two T-shaped groove plates is bolted to the T-shaped groove of the aluminum alloy bottom crossbeam. An arm plate is provided on the side plate of one of the T-shaped groove plates. The arm plate of the aluminum alloy top pressure plate and the arm plate of the aluminum alloy bottom pressure plate are screwed to a common decorative strip.
[0014] The middle part of the aluminum alloy pressure plate 2 is bolted to the T-slot A of the aluminum alloy middle crossbeam 2. Glass sealing strips are installed at the upper and lower ends of the aluminum alloy pressure plate 2. The top plate of the aluminum alloy pressure plate 2 is screwed to the aluminum alloy decorative strip 2. The aluminum alloy decorative strip 2 includes a long concave plate and a short concave plate. The opening end of the short concave plate is located at the lower end of the long concave plate.
[0015] The common decorative strip includes a right-angled trapezoidal frame, with T-shaped screw slots at the upper and lower ends of the right-angled plate between its top and bottom plates, which are connected to the support arm screws of the corresponding aluminum alloy top pressure plate and aluminum alloy bottom pressure plate through the T-shaped screw slots.
[0016] Install aluminum alloy top pressure plate A on aluminum alloy top crossbeam A, aluminum alloy decorative strip A on aluminum alloy middle crossbeam A, aluminum alloy pressure plate B on aluminum alloy middle crossbeam B, aluminum alloy bottom pressure plate A on aluminum alloy bottom crossbeam A, aluminum alloy decorative strip B on aluminum alloy pressure plate B, and a common decorative strip A on aluminum alloy bottom pressure plate A and the aluminum alloy top pressure plate A below it.
[0017] The beneficial effects of this utility model are as follows: The assembly system of this utility model is similar to the unitized curtain wall system. Both are industrially integrated production, and the finished products are assembled in the factory. The precision is high, and the quality and construction period are easy to control. The cost is between that of frame curtain walls and unitized curtain walls. Attached Figure Description
[0018] To more clearly illustrate the embodiments of this utility model, the embodiments will be described below in conjunction with the accompanying drawings.
[0019] Figures 1 to 4 This is a schematic diagram of the assembly frame of this utility model during the factory assembly process.
[0020] Figures 5 to 10 This is a schematic diagram of the structure installed on site.
[0021] Figure 11 This is a schematic diagram of the structure after on-site installation.
[0022] Figure 12 This is a schematic diagram showing the horizontal node structure of the column.
[0023] Figure 13 This is a structural schematic diagram of the vertical section node of the assembly frame.
[0024] Figure 13a yes Figure 13 A magnified view of the structure at point A.
[0025] Figure 13b yes Figure 13 Enlarged structural diagram at point B
[0026] Figure 13c yes Figure 13 A magnified schematic diagram of the structure at point C.
[0027] Figure 14 This is a schematic diagram of the vertical section node structure after the bulk components are installed. Detailed Implementation
[0028] The following examples illustrate possible implementations of the present invention, but are not intended to limit the scope of protection of the present invention.
[0029] like Figures 1 to 14As shown, this utility model discloses a curtain wall assembly system, including an assembly frame 1. Bulk components are installed between two assembly frames. The assembly frame 1 includes two side columns 11 and aluminum alloy top beams 12, aluminum alloy middle beam 13, aluminum alloy middle beam 2 14, and aluminum alloy bottom beams 15 installed between the two side columns from top to bottom. A top glass panel is installed between the aluminum alloy top beam 12 and the aluminum alloy middle beam 13, a middle glass panel is installed between the aluminum alloy middle beam 13 and the aluminum alloy middle beam 2 14, and a bottom glass panel is installed between the aluminum alloy middle beam 2 14 and the aluminum alloy bottom beam 15. The column 11 includes a U-frame, the open end of which is sealed with a Z-shaped vertically bent front side plate. The folded-in plate of the front side plate forms a groove with the front end of one side plate of the U-frame. A T-shaped plate is provided on the outer wall of the bottom plate of the U-frame.
[0030] The aluminum alloy top crossbeam 12 includes a rectangular frame. Screw grooves are provided on the inner walls of the top, bottom, and rear plates of the rectangular frame, connecting it to the column via these grooves. Glass sealing strip mounting grooves are provided at both ends of the front side plate of the rectangular frame. An inverted H-shaped connecting plate is provided in the middle of the front side plate of the rectangular frame, with a T-shaped groove formed at the free end of the connecting plate. The aluminum alloy top crossbeam has the same structure as the aluminum alloy middle crossbeam 1. The aluminum alloy middle crossbeam 2 14 includes an inverted trapezoidal frame. An inverted H-shaped connecting plate A is provided in front of the front long bottom plate of the trapezoidal frame, with two connecting T-shaped grooves A formed at the free end of the inverted H-shaped connecting plate A. Screw grooves are provided on the inner walls of the two waist plates and the rear short bottom plate of the inverted trapezoidal frame, connecting it to the column via these grooves. Glass sealing strip mounting grooves A are provided at both ends of the front long bottom plate. The aluminum alloy bottom crossbeam 15 includes a vertical frame, an inverted F-frame, and an H-frame. An inverted F-frame is provided at the lower front end of the vertical frame. An H-frame is provided at the middle front of the vertical side plate of the inverted F-frame. A glass sealing strip mounting groove B is provided at the free end of the vertical side plate of the inverted F-frame. A T-slot is provided at the free end of the H-frame. Screw slots are provided on the inner walls of the two horizontal side plates of the F-frame. A screw slot is provided on the bottom plate of the vertical frame. The vertical frame is connected to the column screws through the screw slots.
[0031] An aluminum alloy top pressure plate 12a is installed on the aluminum alloy top crossbeam 12, an aluminum alloy pressure plate 14a is installed on the aluminum alloy middle crossbeam 14, an aluminum alloy bottom pressure plate 15a is installed on the aluminum alloy bottom crossbeam 15, an aluminum alloy decorative strip 13b is installed on the aluminum alloy middle crossbeam 1, an aluminum alloy decorative strip 14b is installed on the aluminum alloy pressure plate 14a, and a common decorative strip 10b is installed on the aluminum alloy bottom pressure plate and the aluminum alloy top pressure plate below. The aluminum alloy top pressure plate 12a and the aluminum alloy bottom pressure plate 15a have the same structure and are arranged symmetrically. The aluminum alloy bottom pressure plate includes T-shaped groove plates at the upper and lower ends. A glass sealing strip is installed on the T-shaped groove plate. The connecting base plate between the two T-shaped groove plates is bolted to the T-shaped groove of the aluminum alloy bottom crossbeam. An arm plate is provided on the side plate of one of the T-shaped groove plates. The arm plate of the aluminum alloy top pressure plate and the arm plate of the aluminum alloy bottom pressure plate are connected to the common decorative strip screw 10 through the arm plate of the aluminum alloy top pressure plate and the arm plate of the aluminum alloy bottom pressure plate.
[0032] The middle part of the aluminum alloy pressure plate 14b is connected to the T-slot A bolt 14c of the aluminum alloy middle beam 14. Glass sealing strips are installed at the upper and lower ends of the aluminum alloy pressure plate 14. A middle glass panel is installed between the upper end of the aluminum alloy middle beam and the aluminum alloy pressure plate 14, and a bottom glass panel is installed between the lower end of the aluminum alloy middle beam and the aluminum alloy pressure plate 14. The top plate of the aluminum alloy pressure plate 14b is connected to the aluminum alloy decorative strip 2 by screws 14d. The aluminum alloy decorative strip 2 includes a long concave plate and a short concave plate, with the opening end of the short concave plate located at the lower end of the long concave plate.
[0033] The common decorative strip 10b includes a right-angled trapezoidal frame, and T-shaped screw slots are provided at the upper and lower ends of the right-angled back plate between its top plate and bottom plate. The T-shaped screw slots are used to connect with the support arm screws 10d of the corresponding aluminum alloy top plate and aluminum alloy bottom plate.
[0034] The bulk components include an aluminum alloy top crossbeam A21, an aluminum alloy middle crossbeam A22, an aluminum alloy middle crossbeam B23, and an aluminum alloy bottom crossbeam A24. The aluminum alloy top crossbeam A, aluminum alloy middle crossbeam A, aluminum alloy middle crossbeam B, and aluminum alloy bottom crossbeam A are respectively connected to the columns 11 between the two assembly frames through crossbeam inserts 25. A top glass panel A is installed between the aluminum alloy top crossbeam A and the aluminum alloy middle crossbeam A, a middle glass panel A is installed between the aluminum alloy middle crossbeam A and the aluminum alloy middle crossbeam B, and a bottom glass panel A is installed between the aluminum alloy middle crossbeam B and the aluminum alloy bottom crossbeam A. Install aluminum alloy top pressure plate A on aluminum alloy top crossbeam A21, aluminum alloy decorative strip A22b on aluminum alloy middle crossbeam A22, aluminum alloy pressure plate B on aluminum alloy middle crossbeam B23, aluminum alloy bottom pressure plate A on aluminum alloy bottom crossbeam A24, aluminum alloy decorative strip B23b on aluminum alloy pressure plate B, and a common decorative strip A20 on aluminum alloy bottom pressure plate A and the aluminum alloy top pressure plate A below it.
[0035] The aluminum alloy top beam A21 includes a rectangular frame a, and an inverted H-shaped connecting plate a is provided in the middle of the front side plate of the rectangular frame. A T-shaped groove a is formed at the free end of the connecting plate for bolt connection with the aluminum alloy top pressure plate A.
[0036] The aluminum alloy middle crossbeam A22 includes a rectangular frame b. An inverted H-shaped connecting plate b is provided in the middle of the front side plate of the rectangular frame b. A T-slot b is formed at the free end of the connecting plate. Upper and lower protrusions are provided on the inner wall of the rear side plate of the aluminum alloy middle crossbeam A for securing the crossbeam insert. The aluminum alloy middle crossbeam B has the same structure as the aluminum alloy bottom crossbeam A.
[0037] The aluminum alloy crossbeam B23 includes an inverted trapezoidal frame c. An inverted H-shaped connecting plate c is provided in front of the front long base plate of the trapezoidal frame c. The free end of the inverted H-shaped connecting plate c forms two connected T-shaped grooves c. Sealing strip mounting grooves are provided at both ends of the front long base plate. The inner wall surface of the rear side plate of the aluminum alloy crossbeam B has upper and lower protrusions for locking onto the crossbeam insert.
[0038] Aluminum alloy decorative strip one has the same structure as aluminum alloy decorative strip A, aluminum alloy decorative strip two has the same structure as aluminum alloy decorative strip B, and the shared decorative strip has the same structure as shared decorative strip A.
[0039] The assembly frame of this utility model is assembled in the factory and then hung on site. The bulk components are installed on site between the two assembly frames. This system breaks through the limitations of conventional frame curtain walls, which can only install individual components on site, making it difficult to control the quality and construction period. At the same time, the cost is lower than that of conventional unitized curtain walls, thus meeting the requirements of construction units for construction period, quality and cost. In addition, because some buildings are restricted by relevant regulations and environmental impact assessments, they cannot be designed as conventional glass curtain walls. However, this unit window is designed, processed and installed according to the properties of windows, thus solving the building compliance problem.
[0040] The assembly frame of this utility model is processed and assembled into a finished product in the factory, then transported to the construction site for overall hoisting and installation, and finally sealed with adhesive. This process has a high degree of coordination and is easy to control in terms of quality. There is no need to install the keel system such as beams and columns separately on site. Only the steel sub-frame similar to the door and window system needs to be installed, which greatly reduces the workload on site and reduces the pressure of protecting the finished product on site. At the same time, this assembly frame has no installation procedure restrictions and can be installed independently, while the installation procedure of conventional unitized curtain walls must be installed from bottom to top. It also has a great cost advantage compared to unitized curtain walls.
Claims
1. A curtain wall assembly system, characterized in that: The assembly includes an assembly frame, with bulk components installed between the two assembly frames. The assembly frame includes two side columns and aluminum alloy top crossbeams, aluminum alloy middle crossbeam one, aluminum alloy middle crossbeam two, and aluminum alloy bottom crossbeams installed at intervals from top to bottom between the two side columns. A top glass panel is installed between the aluminum alloy top crossbeam and aluminum alloy middle crossbeam one, a middle glass panel is installed between aluminum alloy middle crossbeam one and aluminum alloy middle crossbeam two, and a bottom glass panel is installed between aluminum alloy middle crossbeam two and aluminum alloy bottom crossbeam. The bulk components include an aluminum alloy top crossbeam A, an aluminum alloy middle crossbeam A, an aluminum alloy middle crossbeam B, and an aluminum alloy bottom crossbeam A. The aluminum alloy top crossbeam A, aluminum alloy middle crossbeam A, aluminum alloy middle crossbeam B, and aluminum alloy bottom crossbeam A are respectively connected to the columns between the two assembled frames through crossbeam inserts. A top glass panel A is installed between the aluminum alloy top crossbeam A and the aluminum alloy middle crossbeam A, a middle glass panel A is installed between the aluminum alloy middle crossbeam A and the aluminum alloy middle crossbeam B, and a bottom glass panel A is installed between the aluminum alloy middle crossbeam B and the aluminum alloy bottom crossbeam A. The column includes a U-frame, the open end of which is sealed with a front side plate that is vertically bent in a Z-shape. The plate that is folded inward forms a groove with the front end of one side plate of the U-frame. A T-shaped plate is provided on the outer wall of the rear plate of the U-frame. The aluminum alloy top beam includes a rectangular frame. Screw grooves are provided on the inner walls of the top plate, bottom plate and rear plate of the rectangular frame. The frame is connected to the column through the screw grooves. Glass sealing strip mounting grooves are provided at both ends of the front side plate of the rectangular frame. An inverted H-shaped connecting plate is provided in the middle of the front side plate of the rectangular frame. A T-shaped groove is formed at the free end of the connecting plate. The aluminum alloy top beam has the same structure as the aluminum alloy middle beam. The aluminum alloy crossbeam includes an inverted trapezoidal frame. An inverted H-shaped connecting plate A is provided in front of the front long bottom plate of the trapezoidal frame. The free end of the inverted H-shaped connecting plate A forms two connected T-shaped grooves A. Screw grooves are provided on the inner walls of the two waist plates and the rear short bottom plate of the inverted trapezoidal frame, and the frame is connected to the column through the screw grooves. Glass sealing strip mounting grooves A are provided at both ends of the front long bottom plate. The aluminum alloy bottom crossbeam includes a vertical frame, an inverted F-frame, and an H-frame. An inverted F-frame is provided at the lower front end of the vertical frame. An H-frame is provided at the middle front of the vertical side plate of the inverted F-frame. A glass sealing strip mounting groove B is provided at the free end of the vertical side plate of the inverted F-frame. A T-slot is provided at the free end of the H-frame. Screw slots are provided on the inner walls of the two horizontal side plates of the F-frame. A screw slot is provided on the bottom plate of the vertical frame. The vertical frame is connected to the column screws through the screw slots.
2. A curtain wall assembly system according to claim 1, characterized in that: Install an aluminum alloy top pressure plate on the aluminum alloy top crossbeam, install an aluminum alloy pressure plate on the aluminum alloy middle crossbeam, install an aluminum alloy bottom pressure plate on the aluminum alloy bottom crossbeam, install an aluminum alloy decorative strip on the aluminum alloy middle crossbeam, install an aluminum alloy decorative strip on the aluminum alloy pressure plate, and install a common decorative strip on the aluminum alloy bottom pressure plate and the aluminum alloy top pressure plate below. The aluminum alloy top pressure plate and aluminum alloy bottom pressure plate have the same structure and are arranged symmetrically. The aluminum alloy bottom pressure plate includes T-shaped groove plates at the upper and lower ends. Glass sealing strips are installed on the T-shaped groove plates. The connecting bottom plate between the two T-shaped groove plates is bolted to the T-shaped groove of the aluminum alloy bottom crossbeam. An arm plate is provided on the side plate of one of the T-shaped groove plates. The arm plate of the aluminum alloy top pressure plate and the arm plate of the aluminum alloy bottom pressure plate are screwed to a common decorative strip. The middle part of the aluminum alloy pressure plate 2 is bolted to the T-slot A of the aluminum alloy middle crossbeam 2. Glass sealing strips are installed at the upper and lower ends of the aluminum alloy pressure plate 2. The top plate of the aluminum alloy pressure plate 2 is screwed to the aluminum alloy decorative strip 2. The aluminum alloy decorative strip 2 includes a long concave plate and a short concave plate. The opening end of the short concave plate is located at the lower end of the long concave plate. The common decorative strip includes a right-angled trapezoidal frame, with T-shaped screw slots at the upper and lower ends of the right-angled back plate between its top and bottom plates, which are connected to the support arm screws of the corresponding aluminum alloy top pressure plate and aluminum alloy bottom pressure plate through the T-shaped screw slots.
3. A curtain wall assembly system according to claim 2, characterized in that: Install aluminum alloy top pressure plate A on aluminum alloy top crossbeam A, aluminum alloy decorative strip A on aluminum alloy middle crossbeam A, aluminum alloy pressure plate B on aluminum alloy middle crossbeam B, aluminum alloy bottom pressure plate A on aluminum alloy bottom crossbeam A, aluminum alloy decorative strip B on aluminum alloy pressure plate B, and a common decorative strip A on aluminum alloy bottom pressure plate A and the aluminum alloy top pressure plate A below it.