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Ultimate strength assessment of plated steel structures with random pitting corrosion damage

机译:随机点蚀腐蚀的镀层钢结构极限强度评估

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Pitting corrosion poses a threat to plated steel structures serving in aggressive corrosion environments. This paper involves numerical studies on the structural behaviour and ultimate strength reduction of plated steel structures due to random pitting damage. Stochastic simulations were used to model the random nature of the pitting corrosion varying pitting shape, depth and distribution. A series of nonlinear analyses were performed on unstiffened plates and stiffened panels to understand the mechanisms of structural collapse due to random pitting damage. Empirical formulae were derived respectively for the prediction of ultimate strength reductions of unstiffened plates and stiffened panels in terms of regression analysis from the numerical results. Random pitting corrosion induces a variation and reduction in ultimate strength, and can lead to a transition in failure mode. The collapse of pitted structures under uniaxial compression has a feature that the onset of plasticity initiates in the areas close to the unloaded edge of the structure, and propagates into a continuous plasticity region linking the pits with highly concentrated stress. The pitted area with intensively stress-concentrated pits undergoes a locally amplified deformation that determines the failure mode, leading to structural failure. (C) 2018 Elsevier Ltd. All rights reserved.
机译:点蚀对在腐蚀性腐蚀环境中工作的镀钢结构构成威胁。本文涉及数值研究由于随机点蚀造成的镀层钢结构的结构行为和极限强度降低。随机模拟被用来模拟点蚀的随机性质,该点蚀随点蚀形状,深度和分布的变化而变化。对未加劲的板和加劲的板进行了一系列的非线性分析,以了解由于随机点蚀造成的结构倒塌的机理。根据数值结果进行回归分析,分别得出经验公式,用于预测未加筋板和加筋板的极限强度降低。随机点蚀会引起极限强度的变化和降低,并可能导致破坏模式的转变。凹坑结构在单轴压缩下的塌陷具有可塑性开始于靠近结构未加载边缘的区域的特征,并传播到将凹坑与高度集中的应力连接起来的连续塑性区域。具有集中应力的凹坑的凹坑区域经历局部放大的变形,该变形确定了破坏模式,从而导致结构破坏。 (C)2018 Elsevier Ltd.保留所有权利。

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