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High-strength steel wires containing corrosion pits: stress analysis and critical distance based fatigue life estimation

机译:含有腐蚀坑的高强度钢丝:应力分析和基于关键距离的疲劳寿命估算

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The present paper deals with the problem of assessing the fatigue lifetime of high-strength steel wires containing corrosion pits, with this investigation being based on a large number of experimental data selected from the technical literature. To evaluate the stress concentration phenomena characterising corroded metallic wires, according to the state-of-the-art knowledge, pits were modelled either as semi-ellipsoidal cavities or as hemispherical notches. The stress concentration factors, K_t, associated with these simplified pit geometries were calculated numerically by solving numerous three-dimensional FE models. Subsequently, the K_t values being determined according to this standard numerical procedure were post-processed systematically to derive simple analytical solutions suitable for estimating, in situations of engineering interest, the stress concentration factors associated with pitting corrosion. Finally, after making some assumptions to derive the necessary fatigue properties, the Theory of Critical Distances was used in the form of the Point Method and the Line Method to reanalyse the literature data being collected. This systematic validation exercise allowed us to prove that the Theory of Critical Distances is successful also in assessing the fatigue lifetime of high-strength metallic cables containing corrosion pits, with the obtained estimates falling within an error factor of 3. Therefore, as far as wires weakened by corrosion pits are concerned, it was demonstrated that the Theory of Critical Distances can be used to post-process the local linear-elastic stress fields when they are not only determined numerically but also estimated by using those standard analytical solutions which are strictly valid solely for conventional notches.
机译:本文涉及评估含有腐蚀坑的高强度钢丝疲劳寿命的问题,本研究基于选自技术文献的大量实验数据。为了评估表征腐蚀金属线的应力浓度现象,根据现有技术的知识,凹坑被设计为半椭圆形腔或半球形凹口。通过求解许多三维Fe模型来计算与这些简化凹坑几何形状相关的应力集中因子K_T。随后,根据本标准数值确定的K_T值系统地系统地进行后处理,以推导出适用于在工程兴趣的情况下估计与点腐蚀相关的应力集中因子的简单分析解决方案。最后,在制定一些假设来导出必要的疲劳性质之后,以点法的形式和线方法来重复收集的文献数据的形式使用临界距离理论。这种系统验证练习允许我们证明临界距离理论也在评估含有腐蚀凹坑的高强度金属电缆的疲劳寿命方面也是成功的,所以获得的估计造成误差因子3.因此,如电线通过腐蚀凹坑削弱,证明了临界距离的理论可以用于在不仅通过使用严格有效的标准分析解决方案来确定局部线性弹性应力场时的临界距离。仅适用于常规凹口。

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