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Phase-field modeling for pH-dependent general and pitting corrosion of iron

机译:pH依赖的铁的一般腐蚀和点蚀的相场建模

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摘要

This study proposes a new phase-field (PF) model to simulate the pH-dependent corrosion of iron. The model is formulated based on Bockris’s iron dissolution mechanism to describe the pH dependence of the corrosion rate. We also propose a simulation methodology to incorporate the thermodynamic database of the electrolyte solutions into the PF model. We show the applications of the proposed PF model for simulating two corrosion problems: general corrosion and pitting corrosion in pure iron immersed in an acid solution. The simulation results of general corrosion demonstrate that the incorporation of the anodic and cathodic current densities calculated by a Corrosion Analyzer software allows the PF model to simulate the migration of the corroded iron surface, the variation of ion concentrations in the electrolyte, and the electrostatic potential at various pH levels and temperatures. The simulation of the pitting corrosion indicates that the proposed PF model successfully captures the anisotropic propagation of a pit that is affected by the local pH of the electrolyte solution and the aggregation of Cl ions in the pit.
机译:这项研究提出了一个新的相场(PF)模型来模拟铁的pH依赖性腐蚀。该模型是根据Bockris的铁溶解机理制定的,用于描述腐蚀速率的pH依赖性。我们还提出了一种模拟方法,将电解质溶液的热力学数据库纳入PF模型。我们展示了拟议的PF模型在模拟两个腐蚀问题时的应用:普通腐蚀和浸入酸溶液中的纯铁的点蚀。普通腐蚀的模拟结果表明,通过腐蚀分析仪软件计算出的阳极和阴极电流密度的合并,PF模型可以模拟腐蚀的铁表面的迁移,电解质中离子浓度的变化以及静电势在各种pH值水平和温度下。点腐蚀的模拟表明,所提出的PF模型成功地捕获了受电解质溶液局部pH值和坑中Cl -离子聚集影响的坑的各向异性传播。

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