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首页> 外文期刊>Thin-Walled Structures >Investigation by numerical modeling of the mechano-electrochemical interaction of circumferentially aligned corrosion defects on pipelines
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Investigation by numerical modeling of the mechano-electrochemical interaction of circumferentially aligned corrosion defects on pipelines

机译:通过数值模拟研究管道上沿圆周排列的腐蚀缺陷的机械-电化学相互作用

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摘要

In this work, a finite element based multi-physics field coupling model was developed to investigate the mechano-electrochemical (M-E) interaction between adjacent, circumferentially aligned corrosion defects on an X46 steel pipeline. The M-E effect existing between the defects results in a high local stress concentration, a negative corrosion potential and a large anodic current density at the defect adjacency, contributing to an increased corrosion of the pipeline steel in service environments. At increased internal pressures, local stress concentration and plasticity occur primarily at the corrosion defects, while the effect on the adjacent area between the defects is slight. With the increase of the defect spacing, the interaction between the defects disappear, and the defects can be treated separately. The increased internal pressure caused a shift of corrosion potential more negatively and a more rapid increase of the anodic current density at the corrosion defects than the adjacent area. The ratio of the anodic current density at the middle of the defect adjacency to that of the uncorroded region is used as to define the separation of adjacent corrosion defects which can be considered as non-interacting. The critical ratio depends on the defect geometry under a given internal pressure.
机译:在这项工作中,建立了基于有限元的多物理场耦合模型,以研究X46钢管道上相邻的,沿圆周排列的腐蚀缺陷之间的机械-电化学(M-E)相互作用。缺陷之间存在的M-E效应导致缺陷附近存在较高的局部应力集中,负腐蚀电位和较大的阳极电流密度,从而导致使用环境中管道钢的腐蚀增加。在增加的内部压力下,局部应力集中和可塑性主要发生在腐蚀缺陷处,而对缺陷之间相邻区域的影响很小。随着缺陷间距的增加,缺陷之间的相互作用消失,可以单独处理缺陷。与相邻区域相比,增加的内部压力更不利地导致腐蚀电位的移动,并且腐蚀缺陷处的阳极电流密度更快地增加。缺陷邻接处中部的阳极电流密度与未腐蚀区域中的阳极电流密度之比用于定义相邻腐蚀缺陷的间隔,该间隔可被认为是非相互作用的。临界比取决于给定内部压力下的缺陷几何形状。

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