Joints Fatigue Damage Prediction for a Steel Truss Suspension Bridge Considering Corrosion Environment

被引:0
|
作者
Weiwei Wu
Xiongjun He
Li He
Chao Wu
Jia He
Andong Zhu
机构
[1] Wuhan University of Technology,School of Transportation
[2] Hubei Province Highway Engineering Research Center,School of Civil Engineering
[3] Guizhou Institute of Technology,Department of the Built Environment
[4] Eindhoven University of Technology,undefined
关键词
Steel truss bridge; Corrosion model; Fatigue test; Stiffness degradation; Damage prediction;
D O I
暂无
中图分类号
学科分类号
摘要
The corrosion environment of a steel truss bridge significantly shortens its service life, particularly the chemical pollution in the air. A linear corrosion prediction model is proposed based on Miner’s linear cumulative damage concept to solve the difficulty of implementing accelerated corrosion tests. Moreover, an equivalent fatigue test is designed in combination with the corrosion prediction model. The results indicate that the bridge’s fatigue resistance can meet the design requirements when the corrosion environment is not considered. When the corrosion effects are jointly considered, the fatigue durability of the bridge is insufficient. With the increase in fatigue cycles, stiffness degradation presents a three-stage trend. The intermediate stage is a gentle development stage from the fatigue test results, accounting for approximately 80% of the total life cycles. Finally, a fatigue damage prediction model considering corrosion factors is established, and the law of fatigue damage and stiffness degradation of the structure under a corrosive environment is determined.
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页码:4879 / 4892
页数:13
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