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Modeling the influence of microstructure on the stress distributions of corrosion pits

机译:模拟微观结构对腐蚀点应力分布的影响

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This work explores how microstructure influences stress distributions around corrosion pits through computational modeling that captures crystallographic orientation dependencies in corrosion potential and mechanical response. Several sites are considered for initial corrosion pits to investigate the resultant variation in pit geometry and stress quantities. Comparisons to a homogeneous, semi-circular model show that microstructure-sensitive cases can have much larger maximum stress magnitudes, but the stress intensity factors from the homogeneous case are quite congruous to those from the microstructure-sensitive cases. This study illustrates how microstructure impacts local quantities, whereas global quantities are more consistent and comparable to a fully homogeneous assumption.
机译:这项工作通过计算模型来探索微观结构如何影响腐蚀坑周围的应力分布,该模型捕获了腐蚀电位和机械响应中的晶体取向依赖性。初步腐蚀坑考虑了几个位置,以研究腐蚀坑几何形状和应力量的最终变化。与均质,半圆形模型的比较表明,对微结构敏感的情况可以具有更大的最大应力大小,但均质情况下的应力强度因子与对微结构敏感情况下的应力强度因子相当一致。这项研究说明了微观结构如何影响局部数量,而整体数量则更一致且可与完全同质的假设相媲美。

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