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Key Technologies in Steel Structure Design and Construction
2025-02-20
Key Technologies in Steel Structure Design and Construction
The design and construction of steel structures are key links in ensuring the safe and efficient completion of buildings. With the advancement of technology, a series of key technologies have been applied in steel structure engineering to improve structural performance, shorten construction periods, and reduce costs.


1、 Design optimization technology


Finite element analysis: Using computer simulation to conduct accurate stress and deformation analysis of steel structures, optimize section dimensions and node design, and ensure structural safety and reliability.

Parametric design: Through parametric software, designers can quickly adjust design parameters, generate multiple design solutions, and improve design efficiency and flexibility.

2、 Processing and prefabrication technology


High precision cutting and welding: Advanced technologies such as laser cutting and automatic welding are used to ensure precise component dimensions, high weld quality, and improved overall structural stability.

Anti corrosion treatment: Hot dip galvanizing, sandblasting rust removal, and anti-corrosion coating are applied to steel to extend its service life and reduce maintenance costs.

3、 Construction technology


High altitude bulk and overall lifting: For large steel structures, the method of using high-altitude bulk or ground assembly for overall lifting is adopted to reduce the risk of high-altitude operations and improve construction efficiency.

Pre stress technology: By applying pre stress, adjusting the internal force distribution of the structure, improving the structural bearing capacity and stability, commonly used in large-span structures.

4、 Quality Control and Monitoring


Non destructive testing: using ultrasonic, radiation and other technologies to perform quality inspection on welds to ensure welding quality.

Health monitoring system: Install sensors to monitor structural stress, deformation, and other conditions in real time, and promptly identify and addres

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