A 2-D Reaction-Transport Model for Investigating Pit Morphology Under the Influence of a Salt Film

IF 3.1 4区 工程技术 Q2 ELECTROCHEMISTRY
Van Anh Nguyen, Roger C. Newman, Nicholas J. Laycock
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引用次数: 0

Abstract

A 2-D reaction transport model with the phase field method was employed here to simulate the propagation stage of corrosion pitting in stainless steels in a chloride environment. The influence of the salt film on pitting dissolution kinetics was incorporated into the model to study its effect on the pit morphology under various settings. In potentiostatic conditions, the pit morphology tends toward a dish-like shape due to the presence of the salt film inside a corrosion pit. This leads to diffusion-controlled dissolution at the pit bottom and active dissolution near the pit mouth. On the contrary, in galvanostatic conditions and at a high applied current, although the salt film was initially present, its effect diminished as the chemistry inside the pit became diluted and the pit growth transitioned into active dissolution near the repassivation current. This effect is attributed to the limited resources to support the enlargement of a corrosion pit under constant applied current. As a result, the pit morphology in galvanostatic conditions is likely to be hemispherical and can transition into complex morphology, as discussed in a previous paper.
用于研究盐膜影响下矿坑形态的二维反应-传输模型
本文采用相场法的二维反应传输模型模拟了不锈钢在氯化物环境中腐蚀点蚀的扩展阶段。盐膜对点蚀溶解动力学的影响被纳入模型,以研究其在不同环境下对凹坑形态的影响。在恒电位条件下,由于腐蚀坑内存在盐膜,坑的形态趋向于碟形。这导致在凹坑底部出现扩散控制型溶解,而在凹坑口附近出现活性溶解。相反,在电静电条件和大电流下,虽然盐膜最初存在,但随着凹坑内化学物质的稀释,其作用逐渐减弱,凹坑的生长过渡到再钝化电流附近的活性溶解。造成这种效果的原因是,在恒定的外加电流下,支持腐蚀坑扩大的资源有限。因此,电静电条件下的凹坑形态很可能是半球形的,并可能过渡到复杂的形态,这在之前的一篇论文中有过讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
12.80%
发文量
1369
审稿时长
1.5 months
期刊介绍: The Journal of The Electrochemical Society (JES) is the leader in the field of solid-state and electrochemical science and technology. This peer-reviewed journal publishes an average of 450 pages of 70 articles each month. Articles are posted online, with a monthly paper edition following electronic publication. The ECS membership benefits package includes access to the electronic edition of this journal.
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