Derun Heavy Steel Completes Yingshan No.1 Community Steel Landscape Gate

Derun Heavy Steel Completes Yingshan No.1 Community Steel Landscape Gate

Circular Tube Curves Showcase Modern Architectural Aesthetics


On April 15, 2026, the Yingshan No.1 residential community steel landscape gate, which was designed and constructed by Derun Heavy Steel, was officially completed. As the landmark entrance structure for the community, the project employs a modern design language with multiple angles and curvatures. Circular steel tube columns serve as the primary vertical load-bearing members, and they are paired with a top spatial truss structure to present a grand yet dynamic visual effect. The gate has become a model work for residential landscape architecture in the region.

Traditional reinforced concrete structures possess inherent limitations in formwork fabrication for large-span irregular members, and construction cycles are long while smooth curved forms are difficult to achieve. The technical team at Derun Heavy Steel gave full play to the technical advantages of steel structures, which include light weight, high strength, high fabrication accuracy, and strong form adaptability. All circular tube components were precisely processed in the factory with CNC bending equipment, and precise installation was achieved on site through three-dimensional coordinate positioning technology. The surface coating employs weather-resistant fluorocarbon paint, which protects the steel from atmospheric corrosion while lending the gate enduring visual appeal.

The successful delivery of this project once again validates the unique competitiveness of steel structures in landscape architecture, landmark gates, and large-span irregular structures. When compared with traditional concrete solutions, steel structures demonstrate significant advantages in form freedom, construction efficiency, weight control, and seismic performance. Derun Heavy Steel will continue to promote the deep application of steel structures in diversified architectural scenarios through technological innovation.


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