Folding line large-span delicate steel glass curtain wall

CN224647938UActive Publication Date: 2026-08-18SHENYANG ZHENGXIANG DECORATION DESIGN CO LTD
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Patent Information

Application Number
CN202522101313.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-08-18
Estimated Expiration
2035-09-29

AI Technical Summary

Technical Problem

[0002]在现代建筑领域,随着人们对建筑美学和功能性的要求不断提高,玻璃幕墙作为一种重要的建筑外围护结构,得到了广泛应用,玻璃幕墙不仅能够为建筑提供良好的采光效果,还能赋予建筑独特的外观,使其成为城市景观中的亮点,现有的玻璃幕墙多是采用简单的架体式安装结构,在进行大跨度的幕墙安装时,结构稳定性较差,需要使用大量的连接构件进行安装固定,不仅会增加建筑成本,还会影响建筑内部的使用空间和美观度,同时传统玻璃幕墙在造型上较为单一,多为直线型设计,难以满足现代建筑对个性化、独特性外观的追求

Benefits of technology

本实用新型提供了折线大跨度精致钢玻璃幕墙,具备以下有益效果:本折线大跨度精致钢玻璃幕墙通过后置钢埋板固定在建筑墙体上,后置钢埋板再通过固定连接架焊接矩形钢管组成支撑架体结构,为整个幕墙系统提供了坚实可靠的支撑基础,矩形钢管上安装固定钢管,进一步增强了结构的整体性和稳定性,能够有效承受大跨度玻璃幕墙的自重以及风荷载、地震荷载等外力作用,确保幕墙在各种恶劣环境下都能保持稳定,大大提高了建筑的安全性,固定钢管内侧壁面设置折线形的实心方钢,前端设置钢方管架体,钢方管架体上嵌装U型钢槽,玻璃幕墙通过加强组件相互连接且两端固定在U型钢槽内,这种安装方式使得玻璃幕墙的安装过程更加规范化和标准化,减少了安装过程中的误差和调整工作,提高了安装效率,同时,加强组件的设计保证了玻璃幕墙之间的连接牢固性,确保了幕墙的整体性能,同时采用折线形设计,打破了传统直线型玻璃幕墙的单调感,为建筑赋予了独特的动态美和立体感,可以根据建筑的整体风格和设计需求进行灵活调整,满足不同建筑的个性化要求,解决了现有的玻璃幕墙多是采用简单的架体式安装结构,在进行大跨度的幕墙安装时,结构稳定性较差,需要使用大量的连接构件进行安装固定,不仅会增加建筑成本,还会影响建筑内部的使用空间和美观度,同时传统玻璃幕墙在造型上较为单一,多为直线型设计,难以满足现代建筑对个性化、独特性外观的追求的问题。

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Abstract

The utility model discloses a polyline large-span exquisite steel glass curtain wall, including the back steel embedded plate, the back steel embedded plate is fixed on the building wall, the back steel embedded plate is welded with rectangular steel pipe through fixed connection frame, constitutes the support frame body structure, installs fixed steel pipe on the rectangular steel pipe, the utility model relates to glass curtain wall technical field, the beneficial effect of the case is: the existing glass curtain wall is mostly to adopt simple frame body type mounting structure, when the large-span curtain wall installation is carried out, the structural stability is poor, needs to use a large number of connecting components and installs fixed, not only will increase the construction cost, still can influence the use space and the aesthetic degree in the building interior, and the traditional glass curtain wall is single on the modelling, mostly is linear type design, is difficult to satisfy the pursuit of the modern building to the individualization, the unique appearance problem.
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Description

Technical Field

[0001] This utility model relates to the field of glass curtain wall technology, specifically a large-span, zigzag-line, high-precision steel-glass curtain wall. Background Technology

[0002] In the field of modern architecture, as people's requirements for architectural aesthetics and functionality continue to increase, glass curtain walls, as an important building envelope, have been widely used. Glass curtain walls not only provide good lighting for buildings, but also give them a unique appearance, making them a highlight in the urban landscape. Existing glass curtain walls mostly adopt simple frame-type installation structures. When installing large-span curtain walls, the structural stability is poor, requiring a large number of connecting components for installation and fixation. This not only increases construction costs, but also affects the usable space and aesthetics of the building's interior. At the same time, traditional glass curtain walls are relatively monotonous in shape, mostly linear designs, which makes it difficult to meet the pursuit of personalized and unique appearances in modern architecture. Utility Model Content

[0003] To achieve the above objectives, this utility model is implemented through the following technical solution: a large-span, fine steel-glass curtain wall with a zigzag pattern, including a rear-mounted steel embedded plate, the rear-mounted steel embedded plate being fixed to the building wall, and rectangular steel pipes being welded to the rear-mounted steel embedded plate through a fixed connecting frame to form a support frame structure, with fixed steel pipes installed on the rectangular steel pipes; The inner wall of the fixed steel pipe is provided with a solid square steel in the shape of a zigzag line. The front end of the fixed steel pipe is provided with a steel square tube frame. A U-shaped steel channel is embedded in the steel square tube frame. Several glass curtain walls are fixed on the solid square steel. The several glass curtain walls are connected to each other by equal reinforcing components, and the glass curtain walls at both ends are fixed in the U-shaped steel channel.

[0004] Preferably, the rear-mounted steel plate is fixed to the wall using stainless steel chemical anchors.

[0005] Preferably, the rectangular steel pipe, the fixed steel pipe, and the outer side of the steel square tube frame are all equipped with honeycomb aluminum panels.

[0006] Preferably, several of the glass curtain wall assemblies and the assemblies of the glass curtain wall and the U-shaped steel channel are filled with weather-resistant sealant.

[0007] Preferably, a plurality of the reinforcing components include a refined steel vertical frame embedded and fixed on a solid square steel. The refined steel vertical frame has a solid trapezoidal steel structure at one end embedded on the solid square steel, and a T-shaped connecting structure at the other end. The edge of the glass curtain wall is embedded inside the connecting groove structure of the refined steel vertical frame. An aluminum alloy pressure plate is pressed onto the outside of the glass curtain wall and fixed to the refined steel vertical frame with fixing bolts.

[0008] Preferably, aluminum alloy decorative buckles are installed on both the steel square tube frame and the aluminum alloy pressure plate.

[0009] Preferably, the glass curtain wall is made of fully tempered ultra-clear laminated insulated glass.

[0010] Beneficial effects This utility model provides a large-span, finely crafted steel-glass curtain wall with a zigzag design, offering the following advantages: The zigzag-shaped large-span finely crafted steel-glass curtain wall is fixed to the building wall via a rear-mounted steel embedded plate. The rear-mounted steel embedded plate is then welded with rectangular steel pipes through a fixed connecting frame to form a support frame structure, providing a solid and reliable support foundation for the entire curtain wall system. The installation of fixed steel pipes on the rectangular steel pipes further enhances the overall integrity and stability of the structure, effectively bearing the self-weight of the large-span glass curtain wall as well as external forces such as wind loads and seismic loads, ensuring the curtain wall remains stable under various harsh environments and greatly improving the building's safety. The inner wall of the fixed steel pipes is equipped with zigzag-shaped solid square steel, and a steel square tube frame is installed at the front end. U-shaped steel channels are embedded in the steel square tube frame. The glass curtain wall is interconnected through reinforcing components, with both ends fixed within the U-shaped steel channels. This installation method makes the installation process of the glass curtain wall more standardized. Standardization reduces errors and adjustments during installation, improving efficiency. Strengthened component design ensures robust connections between glass curtain walls, guaranteeing overall performance. The use of a zigzag design breaks away from the monotony of traditional straight-line glass curtain walls, giving buildings a unique dynamic beauty and three-dimensional feel. It can be flexibly adjusted according to the overall style and design requirements of the building, meeting the personalized needs of different architectures. This addresses the problem that existing glass curtain walls often use simple frame structures, resulting in poor structural stability for large-span installations. This necessitates the use of numerous connecting components for installation and fixation, increasing construction costs and impacting interior space and aesthetics. Furthermore, traditional glass curtain walls are often monotonous in design, mostly linear, failing to meet the modern pursuit of personalized and unique appearances. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the main structure of the large-span, finely crafted steel-glass curtain wall with a zigzag pattern as described in this utility model.

[0012] Figure 2 This is a schematic diagram of the AA top-down cross-sectional structure of the large-span, fine steel-glass curtain wall with zigzag lines described in this utility model.

[0013] Figure 3 This is an enlarged structural diagram of section B of the large-span, finely crafted steel-glass curtain wall with a zigzag pattern as described in this utility model.

[0014] Figure 4 This is an enlarged structural diagram of point C of the large-span, finely crafted steel-glass curtain wall with a zigzag pattern as described in this utility model.

[0015] In the diagram: 1-Rear-mounted steel embedded plate; 2-Fixed connecting frame; 3-Rectangular steel pipe; 4-Fixed steel pipe; 5-Solid square steel; 6-Steel square tube frame; 7-U-shaped steel channel; 8-Glass curtain wall; 9-Stainless steel chemical anchor; 10-Honeycomb aluminum plate; 11-Weather-resistant sealant; 12-Refined steel vertical frame; 13-Aluminum alloy pressure plate; 14-Fixed bolt; 15-Aluminum alloy decorative buckle cover. Detailed Implementation

[0016] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0017] Example: Please refer to Figure 1-4High-strength, corrosion-resistant post-installed steel embedded plates 1 are selected, with specifications customized according to the building wall structure and stress requirements. The post-installed steel embedded plates 1 are firmly fixed to the building wall using stainless steel chemical anchors 9. During installation, the spacing and depth of the anchors are strictly determined according to the design requirements to ensure the connection strength between the post-installed steel embedded plates 1 and the wall. The anchor spacing is controlled between 300-500mm, and the depth is determined according to the wall material and thickness to ensure that the post-installed steel embedded plates 1 will not loosen or fall off when subjected to external forces such as the curtain wall's self-weight and wind loads. Rectangular steel pipes 3 are welded onto the post-installed steel embedded plates 1 through fixed connecting frames 2 to form a support frame structure. The rectangular steel pipes 3 are made of high-quality hot-rolled seamless steel pipes with high strength and rigidity, and are hot-dip galvanized. Fixed steel pipes 4 are installed on the rectangular steel pipes 3. The specifications and spacing of the fixed steel pipes 4 are determined according to the span of the curtain wall and the stress requirements. The force conditions are precisely calculated and arranged. A solid square steel 5 with a zigzag shape is set on the inner wall of the fixed steel pipe 4. The solid square steel 5 is made of high-strength alloy steel and is precision machined to ensure the accuracy of its zigzag shape and surface flatness. The surface is coated with fluorocarbon. A steel square tube frame 6 is set at the front end of the fixed steel pipe 4. The steel square tube frame 6 is connected to the fixed steel pipe 4 by welding. The welding points are treated with anti-corrosion. U-shaped steel channels 7 are embedded in the steel square tube frame 6. The size of the U-shaped steel channels 7 is the same as the specifications of the glass curtain wall 8. To ensure precise positioning and stable support for the installation of the glass curtain wall 8, fully tempered ultra-clear laminated insulated glass is selected as the glass curtain wall 8. This type of glass has advantages such as high strength, high transparency, and good heat insulation and sound insulation performance. Several glass curtain walls 8 are interconnected through reinforcing components. The reinforcing components include delicate steel vertical frames 12 embedded and fixed on solid square steel 5. The delicate steel vertical frame 12 has a solid trapezoidal steel structure embedded on the solid square steel at one end and a T-shaped connection structure at the other end. The edge of the glass curtain wall 8 is precisely embedded in the connecting groove structure of the delicate steel vertical frame 12 to ensure that the embedding depth meets the design requirements. An aluminum alloy pressure plate 13 is pressed onto the outside of the glass curtain wall 8, and the aluminum alloy pressure plate 13 is firmly fixed to the delicate steel vertical frame 12 using fixing rods 14. The tightening torque of the fixing rods 14 is controlled according to the specifications to ensure the reliability of the connection. The glass curtain walls 8 at both ends are fixed in U-shaped steel channels 7. By adjusting the shims in the U-shaped steel channels 7, the glass curtain wall 8 is installed flat.

[0018] At the junction of the glass curtain wall 8 and the junction of the glass curtain wall 8 and the U-shaped steel channel 7, weather-resistant sealant 11 is evenly filled. The weather-resistant sealant 11 is made of high-quality silicone sealant, which has good weather resistance, elasticity and adhesion. During the filling process, a special sealant application tool is used to ensure that the sealant is fully filled and free of air bubbles, forming a continuous sealing layer, which effectively prevents rainwater leakage and air penetration.

[0019] Honeycomb aluminum panels 10 are installed on the outside of rectangular steel pipes 3, fixed steel pipes 4, and steel square tube frame 6. The honeycomb aluminum panels 10 have the advantages of being lightweight, high-strength, and providing sound and heat insulation. During installation, the honeycomb aluminum panels 10 are fixed to the supporting structure using special connectors to ensure that the installation is flat and firm. Aluminum alloy decorative covers 15 are installed on the steel square tube frame 6 and aluminum alloy pressure plate 13. The surface of the aluminum alloy decorative covers 15 is anodized, which has good corrosion resistance and decorative properties. During installation, attention should be paid to ensuring that the splicing gaps of the decorative covers 15 are uniform to enhance the overall aesthetics of the curtain wall.

[0020] After installation, this large-span, zigzag-shaped, high-quality steel-framed glass curtain wall underwent rigorous load testing and long-term use verification, demonstrating exceptional structural stability. Under maximum design wind load and the curtain wall's own weight, the supporting frame structure showed no significant deformation. The connection between the rear-mounted steel embedded plate 1 and the wall was firm and reliable, with no loosening observed. The glass curtain wall 8, secured by reinforcing components and U-shaped steel channels 7, maintained excellent flatness and stability, ensuring the building's safe use. The zigzag design gives the building a unique and modern appearance, making it a striking feature in the city. The high transparency of the fully tempered, ultra-clear laminated insulated glass provides ample natural light to the interior. From the outside, the glass curtain wall 8 is clear and transparent, harmonizing with the surrounding architectural environment. The installation of aluminum alloy decorative covers 15 and honeycomb aluminum panels 10 further enhances the overall aesthetics of the curtain wall, making the building's appearance more refined and grand. The excellent sealing performance of the weather-resistant sealant 11 effectively prevents rainwater leakage and air infiltration. In actual use, no problems such as dampness or mold on the walls caused by curtain wall leakage have occurred indoors. At the same time, the heat insulation and sound insulation performance of the fully tempered ultra-clear laminated insulated glass reduces indoor energy consumption and improves indoor comfort. According to actual measurements, during the high-temperature period in summer, the indoor temperature of rooms using this glass curtain wall is 3-5℃ lower than that of rooms with ordinary glass curtain walls, effectively reducing the use of air conditioning and lowering energy consumption.

[0021] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A large-span, finely crafted steel-glass curtain wall with a zigzag design, comprising a rear-mounted steel embedded plate (1), characterized in that, The rear steel embedded plate (1) is fixed on the building wall. A rectangular steel pipe (3) is welded on the rear steel embedded plate (1) through a fixed connecting frame (2) to form a support frame structure. A fixed steel pipe (4) is installed on the rectangular steel pipe (3). The inner wall of the fixed steel pipe (4) is provided with a solid square steel (5) in the shape of a zigzag line. The front end of the fixed steel pipe (4) is provided with a steel square tube frame (6). A U-shaped steel channel (7) is embedded in the steel square tube frame (6). Several glass curtain walls (8) are fixed on the solid square steel (5). Several glass curtain walls (8) are connected to each other by a uniform reinforcing component, and the glass curtain walls (8) at both ends are fixed in the U-shaped steel channel (7).

2. The large-span, finely crafted steel-glass curtain wall with a zigzag pattern according to claim 1, characterized in that, The rear-mounted steel embedded plate (1) is fixed to the wall by stainless steel chemical anchors (9).

3. The large-span, finely crafted steel-glass curtain wall with a zigzag pattern according to claim 1, characterized in that, The rectangular steel pipe (3), the fixed steel pipe (4), and the steel square tube frame (6) are all equipped with honeycomb aluminum plates (10) on their outer sides.

4. The large-span, finely crafted steel-glass curtain wall with a zigzag pattern according to claim 1, characterized in that, Several of the glass curtain wall (8) assemblies and the glass curtain wall (8) and the U-shaped steel channel (7) assemblies are filled with weather-resistant sealant (11).

5. The large-span, finely crafted steel-glass curtain wall with a zigzag pattern according to claim 1, characterized in that, Several of the reinforcing components include a fine steel vertical frame (12) embedded and fixed on a solid square steel (5). The fine steel vertical frame (12) has a solid trapezoidal steel structure at one end embedded on the solid square steel and a T-shaped connection structure at the other end. The edge of the glass curtain wall (8) is embedded inside the connection groove structure of the fine steel vertical frame (12). An aluminum alloy pressure plate (13) is pressed onto the outside of the glass curtain wall (8) and fixed to the fine steel vertical frame (12) using a fixing rod (14).

6. The large-span, finely crafted steel-glass curtain wall with a zigzag pattern according to claim 5, characterized in that, Aluminum alloy decorative buckles (15) are installed on both the steel square tube frame (6) and the aluminum alloy pressure plate (13).

7. The large-span, finely crafted steel-glass curtain wall with a zigzag pattern according to claim 5, characterized in that, The glass curtain wall (8) is made of fully tempered ultra-white laminated insulated glass.