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首页> 外文期刊>Journal of structural engineering >Corrosion-Fatigue Strain-Life Model for Steel Bridge Girders under Various Weathering Conditions
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Corrosion-Fatigue Strain-Life Model for Steel Bridge Girders under Various Weathering Conditions

机译:各种风化条件下钢桥梁的腐蚀疲劳应变寿命模型

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摘要

Corrosion of existing infrastructure, such as steel bridges, would significantly reduce its anticipated fatigue life. There are very few corrosion-fatigue models that address civil engineering applications. To account for corrosion in the fatigue life prediction of steel bridges, a new fatigue strain-life model based on the Smith-Watson-Topper model is proposed. The proposed model provides the fatigue life predictions in the form of ranges with a minimum and a maximum value. The model takes into account the corrosivity of the environment, the stress level, and the corrosive behavior of the material used. The resulting fatigue life predictions using the proposed model matched well with the experimental results reported in the literature for 24 steel beams that were subjected to various fatigue and weathering conditions. The analytical predictions show that the proposed model is accurate, simple, and practical and can be easily calibrated for different materials.
机译:现有基础设施(例如钢桥)的腐蚀将大大缩短其预期的疲劳寿命。解决土木工程应用的腐蚀疲劳模型很少。考虑到腐蚀对钢桥疲劳寿命的影响,提出了一种基于Smith-Watson-Topper模型的疲劳应变寿命模型。所提出的模型以最小值和最大值的范围的形式提供了疲劳寿命预测。该模型考虑了环境的腐蚀性,应力水平以及所用材料的腐蚀性。使用所提出的模型得出的疲劳寿命预测与文献中针对24种承受各种疲劳和风化条件的钢梁的实验结果非常吻合。分析预测表明,所提出的模型准确,简单,实用,并且可以轻松地针对不同的材料进行校准。

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