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A FEM model for simulating trenching process around a MnS inclusion embedded in stainless steel

机译:一种用于模拟不锈钢夹层夹持过程的有限元模型

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摘要

A finite element method model has been elaborated to study the localized corrosion around a MnS inclusion particle in stainless steel, taking into account the three electrochemically active phases of the matrix, passive film and MnS inclusion. The simulation results show the evolution of this micro-galvanic corrosion process, which is initiated by MnS dissolution, followed by the simultaneous dissolution of the inclusion and matrix, and finally, the MnS inclusion stops dissolving and turns to be cathodic, leaving the matrix as the only corroding phase ("trenching" process). The deposition kinetics of the corrosion products and pH distribution around the corroding area are also predicted.
机译:考虑到基体、钝化膜和MnS夹杂物的三种电化学活性相,建立了一个有限元模型来研究不锈钢中MnS夹杂物颗粒周围的局部腐蚀。模拟结果显示了这种微电偶腐蚀过程的演变,该过程由MnS溶解开始,随后夹杂物和基体同时溶解,最后,MnS夹杂物停止溶解并变成阴极,使基体成为唯一的腐蚀阶段(“挖沟”过程)。还预测了腐蚀产物的沉积动力学和腐蚀区域周围的pH分布。

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