A modular curtain wall splicing structure convenient for quick installation

CN224549445UActive Publication Date: 2026-07-24河北建工雄安建设发展有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
河北建工雄安建设发展有限公司
Filing Date
2025-09-03
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Traditional modular curtain wall splicing structures suffer from problems such as the need for multiple bolts to be tightened one by one and poor component compatibility during installation, resulting in a complex installation process that is difficult to meet the pace of rapid construction projects.

Method used

The stability of the column structure is enhanced by using aluminum alloy inserts, combined with fasteners and bolts. Thick groove adapters and aluminum alloy brackets are used to achieve rapid adaptation. The modular design of aluminum alloy trusses and thermal insulation and fireproof rock wool, along with optimized component connection design, enables rapid installation.

Benefits of technology

It enables rapid installation of modular curtain walls, improves installation efficiency, reduces labor costs, and ensures structural stability and functional integrity, meeting the high-efficiency and safe requirements of building engineering.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of modularization curtain wall splicing structure of being convenient for quick installation, it is related to curtain wall splicing technical field, including aluminium alloy crossbeam, aluminium veneer, aluminium alloy hanging seat and thick slot type adapter, aluminium alloy crossbeam is connected with aluminium alloy stand by fastener, aluminium alloy stand is provided with aluminium alloy insert core in, aluminium alloy stand and aluminium alloy crossbeam are connected with aluminium alloy backing plate by bolt, aluminium alloy truss is installed in aluminium alloy crossbeam right side, subsequent in its and surrounding frame enclosure space, fill insulation rock wool, fireproof rock wool according to demand, frame, panel, insulation fireproof layer etc. Collaborate, frame carries load and is transferred to main structure, aluminium veneer plays decorative and protective role, insulation rock wool, fireproof rock wool realize insulation, fireproof function, each component connection guarantees curtain wall overall stability and functionality, modular design, let each component can prefabricate, quickly assemble, reduce on-site construction procedure and time, improve installation efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of curtain wall splicing technology, and in particular to a modular curtain wall splicing structure that is easy to install quickly. Background Technology

[0002] Modular curtain wall splicing structures, as a key component of building envelopes, are used to achieve functions such as decoration, thermal insulation, and fire protection, and are widely used in various building facade projects. They typically require the integration of the following core components to work together: 1. Main frame components: including aluminum alloy beams and aluminum alloy columns, which serve as the load-bearing foundation of the curtain wall, bearing and transmitting wind loads, self-weight and other loads, and providing stable support for the entire curtain wall structure; aluminum alloy inserts are used to enhance the structural strength at the splicing of aluminum alloy columns and ensure the continuity of the frame.

[0003] 2. Panels and connecting components: Aluminum single panels serve as decorative and protective panels, and are connected to the main frame through aluminum alloy brackets, thick-groove adapters, etc., to achieve the decorative effect of the building facade; aluminum alloy support plates assist in supporting the panels and related accessories, while galvanized steel plates are used for base protection and enclosure.

[0004] 3. Functional auxiliary components: Aluminum alloy trusses are used to strengthen the rigidity of local structures and provide installation space for thermal insulation rock wool and fireproof rock wool, meeting the building's thermal insulation and fireproof functional requirements; aluminum alloy toothed pads can improve the friction and stability of the connection parts.

[0005] Currently, to meet the diverse needs of building curtain walls, the industry has adopted various modular curtain wall splicing structures. Some structures focus on connecting various components through complex bolt groups, which can ensure strength, but the on-site installation process is cumbersome, time-consuming, and labor-intensive. Other structures simplify connection nodes in pursuit of rapid installation, but this results in insufficient overall stability of the curtain wall, making it prone to deformation and loosening under wind loads, affecting safety and lifespan.

[0006] However, the above-mentioned implementation methods still have the following problems: In terms of installation efficiency, the traditional method of tightening multiple bolts one by one and the poor compatibility of components requiring on-site debugging makes the installation process complicated and difficult to complete the splicing quickly, which cannot meet the pace of rapid construction in building projects. In response to this problem, this application proposes a solution that optimizes the component connection design and achieves rapid installation of modular curtain wall splicing structures through quick adaptation of adapters and core-reinforced columns, while ensuring structural stability and functional integrity, thus meeting the needs of building projects for high efficiency, safety and multi-functionality. Utility Model Content

[0007] To address the shortcomings of existing technologies, this utility model provides a modular curtain wall splicing structure that is easy to install quickly. It solves the problems of traditional connections that require multiple bolts to be tightened one by one and poor component compatibility, necessitating on-site debugging, which makes the installation process complicated, difficult to complete quickly, and unable to meet the pace of rapid construction projects.

[0008] To achieve the above objectives, this utility model provides the following technical solution: A modular curtain wall splicing structure that is easy to install quickly includes aluminum alloy beams, aluminum panels, aluminum alloy brackets, and thick-groove adapters. The aluminum alloy beams are connected to aluminum alloy columns by fasteners. The aluminum alloy columns have aluminum alloy inserts inside. The aluminum alloy columns and aluminum alloy beams are connected to aluminum alloy support plates by bolts. The surface of the aluminum alloy beams is covered with galvanized steel plates. The aluminum panels are connected to the aluminum alloy columns and aluminum alloy beams by thick-groove adapters and aluminum alloy brackets.

[0009] Preferably, an aluminum alloy truss is provided on the right side of the aluminum alloy beam, and the space enclosed by the aluminum alloy truss and the surrounding frame is filled with thermal insulation rock wool and fireproof rock wool.

[0010] Preferably, an aluminum alloy toothed pad is provided above the aluminum alloy bracket, and when the thermal insulation rock wool is double-layered rock wool, it is installed using a staggered joint bonding method.

[0011] Compared with the prior art, the present invention has the following beneficial effects: The aluminum alloy truss is installed on the right side of the aluminum alloy beam. Subsequently, the space enclosed by it and the surrounding frame is filled with thermal insulation rock wool and fireproof rock wool as needed. The frame, panels, thermal insulation and fireproof layer, etc. work together. The frame bears the load and transfers it to the main structure. The aluminum single panel plays a decorative and protective role. The thermal insulation rock wool and fireproof rock wool realize thermal insulation and fireproof functions. The connection of each component ensures the overall stability and functionality of the curtain wall. The modular design allows each component to be prefabricated and quickly assembled, reducing on-site construction procedures and time, improving installation efficiency and reducing labor costs. Attached Figure Description

[0012] The above description is only an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, the preferred embodiments of this utility model are described in detail below with reference to the accompanying drawings.

[0013] Figure 1 This is an overall structural diagram of the present invention; Figure 2 This is a structural diagram of the aluminum single-panel of this utility model; Figure 3 This is a structural diagram of the aluminum alloy insert of this utility model.

[0014] Legend: 1. Aluminum alloy beam; 2. Aluminum alloy column; 3. Aluminum alloy support plate; 4. Aluminum single panel; 5. Galvanized steel plate; 6. Aluminum alloy tooth pad; 7. Aluminum alloy bracket; 8. Thick groove adapter; 9. Aluminum alloy truss; 10. Thermal insulation rock wool; 11. Fireproof rock wool; 12. Aluminum alloy insert. Detailed Implementation

[0015] This application provides a modular curtain wall splicing structure that facilitates rapid installation. It effectively solves the problems of traditional connections that require multiple bolts for individual tightening and poor component compatibility, necessitating on-site adjustments, which complicate the installation process, make it difficult to complete splicing quickly, and fail to meet the fast-paced construction rhythm of building projects. By optimizing the component connection design, using adapters for rapid adaptation, and insert-core reinforced columns, the modular curtain wall splicing structure can be installed quickly while ensuring structural stability and functional integrity, thus meeting the needs of building projects for high efficiency, safety, and multi-functionality. Example

[0016] like Figure 1 , Figure 2 , Figure 3 As shown, the technical solution in this application embodiment effectively solves the technical problems of traditional connections, such as the need for on-site debugging due to the need for multiple bolts to tighten one by one and poor component compatibility, which makes the installation process complex, difficult to complete quickly, and unable to meet the pace of rapid construction in building projects. The overall idea is as follows: To address the problems existing in the prior art, this utility model provides a modular curtain wall splicing structure that is easy to install quickly, including an aluminum alloy beam 1, an aluminum panel 4, an aluminum alloy bracket 7, and a thick-groove adapter 8. The aluminum alloy beam 1 is connected to an aluminum alloy column 2 by fasteners. An aluminum alloy insert 12 is installed inside the aluminum alloy column 2. The aluminum alloy column 2 and the aluminum alloy beam 1 are connected by an aluminum alloy support plate 3 by bolts. A galvanized steel plate 5 is installed on the surface of the aluminum alloy beam 1. The aluminum panel 4 is connected to the aluminum alloy column 2 and the aluminum alloy beam 1 through the thick-groove adapter 8 and the aluminum alloy bracket 7. First, the aluminum alloy insert 12 is inserted into the aluminum alloy column 2 to enhance the structural stability of the column. Fasteners are then used to connect the aluminum alloy beam 1 to the aluminum alloy column. Connecting the aluminum alloy columns 2 and 1, the basic framework of the curtain wall is constructed. Then, the aluminum alloy support plate 3 is installed on the columns and beams with bolts. The galvanized steel plate 5 is laid on the surface of the aluminum alloy beam 1 to complete the frame protection and base sealing. The aluminum single panel 4 is adapted and connected to the aluminum alloy columns 2 and aluminum alloy beam 1 with the help of the thick groove adapter 8 and aluminum alloy bracket 7 to complete the installation of the curtain wall panel. The aluminum alloy toothed pad 6 is placed above the aluminum alloy bracket 7 to improve the connection friction and stability. The aluminum alloy truss 9 is installed on the right side of the aluminum alloy beam 1. Subsequently, the space enclosed by it and the surrounding frame is filled with thermal insulation rock wool 10 and fireproof rock wool 11 as needed. The frame, panel, thermal insulation and fireproof layer, etc. work together. The frame bears the load and transfers it to the main structure. The aluminum single panel 4 plays a decorative and protective role.

[0017] An aluminum alloy truss 9 is installed on the right side of the aluminum alloy beam 1. The space enclosed by the aluminum alloy truss 9 and the surrounding frame is filled with thermal insulation rock wool 10 and fireproof rock wool 11. An aluminum alloy toothed pad 6 is installed above the aluminum alloy bracket 7. When the thermal insulation rock wool 10 is double-layered, it is installed using a staggered joint bonding method. The thermal insulation rock wool 10 and fireproof rock wool 11 achieve thermal insulation and fireproof functions. The connection of each component ensures the overall stability and functionality of the curtain wall. The modular design allows each component to be prefabricated and quickly assembled, reducing on-site construction procedures and time. In addition, the installation efficiency is improved and labor costs are reduced. The aluminum alloy insert 12 enhances the splicing strength of the column, the toothed pad improves the anti-slip ability of the bracket connection, the support plate and truss assist the frame to bear the load, and the multi-layer protection makes the curtain wall structure stable. It has better wind resistance, earthquake resistance and other performance, ensuring long-term use safety. The double-layer rock wool staggered bonding optimizes the thermal insulation effect, the fireproof rock wool 11 realizes the fire compartment function, and the ultra-white glass and fluorocarbon spraying enhance the decoration and durability, meet the building energy-saving, safety and aesthetic requirements, and are suitable for curtain wall applications in multiple scenarios.

[0018] Working principle: First, insert the aluminum alloy insert 12 into the aluminum alloy column 2 to enhance the stability of the column structure. Use fasteners to connect the aluminum alloy beam 1 to the aluminum alloy column 2 to construct the basic frame of the curtain wall. Then, use bolts to install the aluminum alloy support plate 3 on the column and beam. Lay the galvanized steel plate 5 on the surface of the aluminum alloy beam 1 to complete the frame protection and base sealing. The aluminum single panel 4 is adapted and connected to the aluminum alloy column 2 and aluminum alloy beam 1 with the help of the thick groove adapter 8 and aluminum alloy bracket 7 to complete the installation of the curtain wall panel. The aluminum alloy toothed pad 6 is placed above the aluminum alloy bracket 7 to improve the connection friction and stability. The aluminum alloy truss 9 is installed on the right side of the aluminum alloy beam 1. Subsequently, the space enclosed by it and the surrounding frame is filled with thermal insulation rock wool 10 and fireproof rock wool 11 as needed. The frame, panel, thermal insulation and fireproof layer, etc. work together to support the load-bearing capacity of the frame. The aluminum single panel 4 serves both decorative and protective functions, while the thermal insulation rock wool 10 and fireproof rock wool 11 provide thermal insulation and fireproofing. The connection of each component ensures the overall stability and functionality of the curtain wall. The modular design allows for the prefabrication and rapid assembly of each component, reducing on-site construction procedures and time, improving installation efficiency, and lowering labor costs. The aluminum alloy insert 12 enhances the splicing strength of the columns, the toothed pad improves the anti-slip ability of the bracket connection, and the support plate and truss assist the frame in bearing the load. The multi-layer protection makes the curtain wall structure stable, with better wind and earthquake resistance, ensuring long-term safety. The double-layer rock wool with staggered joints optimizes the thermal insulation effect, and the fireproof rock wool 11 enables fireproof partitioning. Ultra-white glass and fluorocarbon spraying enhance the decorative and durability aspects, meeting the needs of building energy conservation, safety, and aesthetics, and adapting to various curtain wall applications.

[0019] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present invention and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.

Claims

1. A modular curtain wall splicing structure that facilitates rapid installation, characterized in that, It includes an aluminum alloy beam (1), an aluminum single panel (4), an aluminum alloy bracket (7), and a thick groove adapter (8); the aluminum alloy beam (1) is connected to an aluminum alloy column (2) by fasteners. The aluminum alloy column (2) is provided with an aluminum alloy insert (12), the aluminum alloy column (2) and the aluminum alloy beam (1) are connected by an aluminum alloy support plate (3) by bolts, and the surface of the aluminum alloy beam (1) is provided with a galvanized steel plate (5).

2. The modular curtain wall splicing structure for easy and rapid installation as described in claim 1, characterized in that: The aluminum panel (4) is connected to the aluminum alloy column (2) and aluminum alloy beam (1) through the thick groove adapter (8) and aluminum alloy bracket (7).

3. The modular curtain wall splicing structure for easy and rapid installation as described in claim 1, characterized in that: An aluminum alloy truss (9) is provided on the right side of the aluminum alloy beam (1).

4. The modular curtain wall splicing structure for easy and rapid installation as described in claim 3, characterized in that: The space enclosed by the aluminum alloy truss (9) and the surrounding frame is filled with thermal insulation rock wool (10) and fireproof rock wool (11).

5. The modular curtain wall splicing structure for easy and rapid installation as described in claim 1, characterized in that: An aluminum alloy toothed pad (6) is provided above the aluminum alloy bracket (7).

6. The modular curtain wall splicing structure for easy and rapid installation as described in claim 4, characterized in that: When the insulating rock wool (10) is a double-layer rock wool, it is set by staggered joint bonding.