CHEN Zhenming, LI Qingwei, YANG Gaoyang, QIU Linbo. Research on Digital Manufacturing and Production Lines for High-Efficiency & High-Performance Standardized Profile Steel Components[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(8): 39-45. doi: 10.3724/j.gyjzG25060606
Citation:
CHEN Zhenming, LI Qingwei, YANG Gaoyang, QIU Linbo. Research on Digital Manufacturing and Production Lines for High-Efficiency & High-Performance Standardized Profile Steel Components[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(8): 39-45. doi: 10.3724/j.gyjzG25060606
CHEN Zhenming, LI Qingwei, YANG Gaoyang, QIU Linbo. Research on Digital Manufacturing and Production Lines for High-Efficiency & High-Performance Standardized Profile Steel Components[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(8): 39-45. doi: 10.3724/j.gyjzG25060606
Citation:
CHEN Zhenming, LI Qingwei, YANG Gaoyang, QIU Linbo. Research on Digital Manufacturing and Production Lines for High-Efficiency & High-Performance Standardized Profile Steel Components[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(8): 39-45. doi: 10.3724/j.gyjzG25060606
Profile steel components, characterized by their high degree of standardization and construction convenience, are considered green and high-efficiency & high-performance steel materials. However, the current processing methods have problems such as labor intensity and low efficiency. The key to realizing the digital manufacturing of profile steel components lies in the combination of advanced manufacturing processes, production control systems, and intelligent equipment. Based on three-dimensional model-driven and visual sensing technologies, this paper developed digital cutting, welding, surface cleaning, spraying processes, and advanced intelligent equipment for profile steel components. A cloud virtual system for manufacturing materials of steel structures was developed to connect the business, finance, and the Internet of Things, realizing the digital management of the entire process from placing orders for steel materials to blanking in the workshop. A manufacturing execution system for the production line of profile steel components was established to collect data of processing equipment in real time and conduct visual monitoring of the processing status of components. Finally, the digital manufacturing of profile steel components and the production line were verified through engineering applications, providing a reference for industry peers to carry out related research and application work.
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