Aluminum plate with special hyperboloid and arc unit curtain wall system
By connecting irregularly shaped hyperboloid aluminum panel components with the curved unit curtain wall system, the problem that traditional connection systems cannot meet the needs of modern irregularly shaped hyperboloid curtain walls is solved, achieving diversified exterior decoration effects and high-safety installation, while reducing the complexity of on-site installation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANG HAI FU YI MU QIANG GONG CHENG YOU XIAN GONG SI
- Filing Date
- 2025-06-18
- Publication Date
- 2026-07-28
AI Technical Summary
Traditional single connection systems cannot meet the high rationality and reliability requirements of irregular hyperboloid curtain walls in modern buildings, and it is difficult to achieve diverse exterior decoration effects.
The system employs irregularly shaped hyperboloid aluminum plate components and an arc-shaped unitized curtain wall system. The aluminum plates are connected into an integral hyperboloid aluminum plate component through vertical aluminum alloy inserts, horizontal aluminum alloy inserts, and connectors, and then fixed to the unitized curtain wall aluminum frame. Fasteners and screws are used for stable connection.
It achieves diverse exterior decoration effects for irregularly shaped hyperboloid curtain walls, improves installation safety and applicability, simplifies on-site installation process, and reduces costs.
Smart Images

Figure CN224565515U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to building unit curtain wall engineering, and in particular to an irregularly shaped hyperboloid aluminum plate component and an arc-shaped unit curtain wall system. Background Technology
[0002] In the field of modern architecture, many projects are no longer limited to a single unitized curtain wall form. To achieve unique architectural forms and meet overall aesthetic requirements, architects add decorative components to the exterior. This necessitates a higher level of rationality and reliability in the curtain wall system structure. Traditional single-connection systems are no longer sufficient to meet the needs of current projects. Therefore, developing a rational and reliable curtain wall structure to meet architectural requirements is particularly important.
[0003] Utility model CN202220656522.7 discloses a connection structure for a large-scale co-construction project's hyperboloid glass curtain wall, including a frame assembly and a curtain wall assembly. The frame assembly includes vertical and horizontal keels, which are fixed together by a first angle iron. Sliding grooves are formed on the surfaces of the vertical and horizontal keels. The curtain wall assembly includes unit frames and curved glass panels. Slots are formed around the perimeter of the unit frames. A sliding seat is slidably connected within the sliding groove, and a snap-fit plate is installed within the snap-fit plate. Bolts are inserted into the snap-fit plate, and the threaded ends of the bolts are threaded onto the sliding seat. This connection structure, with sliding grooves and snap-fit slots on both the frame assembly and the curtain wall assembly, allows the curtain wall assembly to slide left and right along the sliding groove direction, facilitating adjustment of the gap between adjacent unit frames. It also allows for the filling of sealant into the snap-fit slots between adjacent unit frames and the installation of sealing strips within the sliding grooves, thus providing convenience for the sealing process and achieving a convenient sealing installation effect. Summary of the Invention
[0004] To address the aforementioned issues, this utility model aims to provide an irregularly shaped hyperboloid aluminum plate component and an arc-shaped unit curtain wall system, employing hyperboloid decorative components to achieve diverse exterior decoration effects for the unit curtain wall.
[0005] To achieve the above objectives, the technical solution of this utility model is as follows: A shaped hyperboloid aluminum plate component and an arc-shaped unit curtain wall system, comprising an aluminum frame of a unit curtain wall composed of aluminum alloy beams and aluminum alloy columns, and a shaped hyperboloid aluminum plate component. The shaped hyperboloid aluminum plate component is formed by bending an aluminum plate at the arc position separately and welding it with other aluminum plates to form an integral hyperboloid aluminum plate. The hyperboloid aluminum plate is connected to the vertical and horizontal aluminum alloy inserts by fasteners to form an integral hyperboloid aluminum plate component. The hyperboloid aluminum plate component is fixed to the unit curtain wall aluminum frame by a horizontal aluminum alloy connector, an upper aluminum alloy connector, and a lower aluminum alloy connector.
[0006] Furthermore, the transverse aluminum alloy connector is bent separately and fixed to the upper aluminum alloy beam with an M6 countersunk machine screw.
[0007] Preferably, the hyperbolic aluminum plate component is fixed to the transverse aluminum alloy connector from top to bottom using M6 countersunk machine screws, and M8 socket head cap screws and nuts are fixed to the upper and lower aluminum alloy connectors.
[0008] Furthermore, M8 machine nails are used to fix the upper and lower aluminum alloy connectors to the aluminum alloy column, and the connection is reinforced by reinforcing aluminum blocks.
[0009] The decorative strips in this invention feature a hyperbolic design, with both horizontal and vertical strips seamlessly integrated with the arc-shaped unit. This results in a highly secure, versatile, and functionally comprehensive installation structure. Attached Figure Description
[0010] Figure 1 These are vertical installation node diagrams of various components of the present invention; Figure 2 These are horizontal installation node diagrams of various components of the present invention; Figure 3 This is an elevation view of the hyperbolic aluminum plate component of the present invention; Figure 4 This is a three-dimensional schematic diagram of the present invention; Explanation of the labels in the diagram: 01 – Aluminum alloy column, 02 – Reinforcing aluminum block 03—M8 machine-made nail, 04 – Upper aluminum alloy connector; 05 – Lower aluminum alloy connector. 06 – Aluminum alloy vertical insert; 07 – M8 socket head cap screw and nut. 08—Hyperbolic aluminum plate component; 09—Aluminum alloy upper crossbeam. 10 – Horizontal aluminum alloy connector; 11 – M6 countersunk machine stud. 12 – M6 countersunk machine screw, 13 – St4.8 pan head self-tapping screw. 14 - Horizontal aluminum alloy insert. Detailed Implementation
[0011] A type of irregularly shaped hyperboloid aluminum panel component and curved unitized curtain wall system, such as Figures 1 to 4 As shown, the unit curtain wall aluminum frame includes an aluminum alloy upper beam 09 and an aluminum alloy column 01, and also includes an irregularly shaped hyperboloid aluminum plate component. The irregularly shaped hyperboloid aluminum plate component is formed by bending an aluminum plate at the arc position separately and welding it with other aluminum plates to form an integral hyperboloid aluminum plate. The hyperboloid aluminum plate is connected to the aluminum alloy vertical insert 06 and the horizontal aluminum alloy insert 14 by fasteners to form an integral hyperboloid aluminum plate component 08. The hyperboloid aluminum plate component 08 is fixed to the unit curtain wall aluminum frame by the horizontal aluminum alloy connector 10, the upper aluminum alloy connector 04 and the lower aluminum alloy connector 05.
[0012] like Figure 1 As shown, the hyperbolic aluminum plate component 08 is fixed to the horizontal aluminum alloy connector 10 from top to bottom using M6 countersunk machine screws 12, and fixed to the upper aluminum alloy connector 04 and the lower aluminum alloy connector 05 using M8 socket head cap screws and nuts 07. The upper aluminum alloy connector 04 and the lower aluminum alloy connector 05 are fixed to the aluminum alloy column 01 using M8 machine screws 03.
[0013] like Figure 1 and 2 As shown, the transverse aluminum alloy connector 10 is bent separately and fixed to the aluminum alloy upper crossbeam 09 with an M6 countersunk machine screw 11.
[0014] Assembly is completed in the assembly workshop. First, the aluminum plate at the arc position is bent into shape separately, and then connected with other aluminum plates by welding to form an integral hyperbolic aluminum plate. The integral hyperbolic aluminum plate is connected into an integral hyperbolic aluminum plate component 08 by St4.8 pan head self-tapping screws 13, vertical aluminum alloy vertical inserts 06 and horizontal aluminum alloy inserts 14. Use M8 machine nails 03 to fix the upper aluminum alloy connector 04 and the lower aluminum alloy connector 05 to the aluminum alloy column 01, and strengthen the connection with reinforcing aluminum blocks 02. The transverse aluminum alloy connector 10 is bent separately and fixed to the upper aluminum alloy beam 09 with an M6 countersunk machine screw 11. Finally, the hyperbolic aluminum plate component 08 is fixed to the upper aluminum alloy connector 04 and the lower aluminum alloy connector 05 with M8 socket head cap screws and nuts 07, and fixed to the transverse aluminum alloy connector 10 with M6 countersunk machine screws 12.
[0015] In this way, the unitized curtain wall achieves diverse exterior decoration effects and is an installation structure that is highly safe, versatile, and functionally comprehensive.
[0016] This utility model discloses an irregularly shaped hyperboloid aluminum panel curtain wall structure, including a curtain wall vertical frame, a curtain wall horizontal frame, and transition support components. The irregularly shaped hyperboloid aluminum panel is integrally welded, and then the aluminum panel and decorative component keel are combined to form an aluminum frame. The assembled irregularly shaped hyperboloid aluminum panel components are hung on the curtain wall through hanging unit units. Assembly is convenient and cost-effective; assembly is completed in a professional assembly workshop, reducing the complexity and uncertainty of on-site installation.
Claims
1. A double-curved aluminum panel and arc-shaped unitized curtain wall system, comprising an aluminum alloy horizontal beam and an aluminum alloy vertical column forming a unitized curtain wall aluminum frame, characterized in that, It also includes irregular hyperboloid aluminum plate components. The irregular hyperboloid aluminum plate components are integral hyperboloid aluminum plates formed by bending the aluminum plate at the arc position separately and welding it with the aluminum plate. The hyperboloid aluminum plate is connected to the vertical aluminum alloy insert (06) and the horizontal aluminum alloy insert (14) by fasteners to form an integral hyperboloid aluminum plate component (08). The hyperboloid aluminum plate component (08) is fixed to the unit curtain wall aluminum frame by the horizontal aluminum alloy connector (10), the upper aluminum alloy connector (04) and the lower aluminum alloy connector (05).
2. The irregular hyperboloid aluminum panel and arc-shaped unit curtain wall system according to claim 1, characterized in that, The transverse aluminum alloy connector (10) is bent separately and fixed to the upper aluminum alloy beam (09) with an M6 countersunk machine screw (11).
3. The irregular hyperboloid aluminum panel and arc-shaped unit curtain wall system according to claim 1 or 2, characterized in that, The hyperbolic aluminum plate component (08) is fixed from top to bottom to the transverse aluminum alloy connector (10) with M6 countersunk machine nails (12), and M8 socket head cap screws and nuts (07) are fixed to the upper aluminum alloy connector (04) and the lower aluminum alloy connector (05).
4. The irregular hyperboloid aluminum panel and arc-shaped unit curtain wall system according to claim 1, characterized in that, The upper aluminum alloy connector (04) and the lower aluminum alloy connector (05) are fixed to the aluminum alloy column (01) using M8 machine nails (03), and the connection is reinforced by reinforcing aluminum blocks (02).