Research on the Cumulative Damage Mechanism of Special Equipment Steel Structures Based on Complex Load

2026-99-1011

8/7/2026

Authors
Abstract
Content
Steel structures subjected to complex loading conditions undergo various types of damage, including fatigue, crack propagation, plastic deformation, and corrosion. As time and loads accumulate, these damages may lead to structural failure. The investigation of the damage mechanisms and constitutive models for special equipment steel structures under complex loading has been a significant challenge in engineering. This study develops a constitutive model for steel structure damage under static and dynamic loads, as well as vibration disturbances, through a normalization approach. The proposed model is validated via simulation to assess its feasibility.
The findings offer a theoretical foundation for the design, life prediction, and health monitoring of steel structures in special equipment, aiming to enhance their safety and reliability. This research provides critical insights into damage analysis, failure prediction, and the optimization of repair strategies for steel structures, with significant practical implications in engineering applications.
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Citation
Wang, J., Yu, Z., Huang, Y., and Chen, W., "Research on the Cumulative Damage Mechanism of Special Equipment Steel Structures Based on Complex Load," 2025 11th International Conference on Materials Processing and Manufacturing Engineering (ICMPME 2025), Sydney, Australia, December 2, 2025, .
Additional Details
Publisher
Published
3 hours ago
Product Code
2026-99-1011
Content Type
Technical Paper
Language
English