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采用经验点蚀起始方法的机理模型用于大气双金属腐蚀的详细高效虚拟分析

Mechanistic Model with Empirical Pitting Onset Approach for Detailed and Efficient Virtual Analysis of Atmospheric Bimetallic Corrosion.

作者信息

Zavalis Tommy G, Ström Mats, Persson Dan, Wendel Erik, Ahlström Johan, Törne Karin Beaussant, Taxén Claes, Rendahl Bo, Voltaire Joakim, Eriksson Katarina, Thierry Dominique, Tidblad Johan

机构信息

RISE Research Institutes of Sweden, Division Materials and Production, Department Corrosion, 16407 Kista, Sweden.

Volvo Car Corporation, 40531 Göteborg, Sweden.

出版信息

Materials (Basel). 2023 Jan 18;16(3):923. doi: 10.3390/ma16030923.

Abstract

A mechanistic model of atmospheric bimetallic corrosion with a simplified empirical approach to the onset of localized corrosion attacks is presented. The model was built for a typical bimetallic sample containing aluminum alloy 1050 and stainless steel 316L sheets. A strategy was developed that allowed the model to be calibrated against the measured galvanic current, geometrical corrosion attack properties, and corrosion products. The pitting-onset simplification sets all pits to be formed at a position near the nobler metal and treated all pits as being of the same shape and size. The position was based on the location of the highest pitting events and the pit attributes on an average of the deepest pits. For 5 h exposure at controlled RH (85%, 91%, and 97%) and salt load (86 μg NaCl/cm), the model was shown to be promising: both for analysis of local bimetallic corrosion chemistry, such as pH and corrosion products, and for efficient assessment of pitting damage by computing a single largest pit depth. Parametric studies indicated that the pitting-onset approximation deviated the most at the beginning of exposure and when RH was below 91%.

摘要

提出了一种大气双金属腐蚀的机理模型,该模型采用简化的经验方法来描述局部腐蚀攻击的起始。该模型是针对包含1050铝合金和316L不锈钢板的典型双金属样品构建的。开发了一种策略,使该模型能够根据测量的电偶电流、几何腐蚀攻击特性和腐蚀产物进行校准。点蚀起始简化设定所有点蚀都在较贵金属附近的位置形成,并将所有点蚀视为具有相同的形状和尺寸。该位置基于最高点蚀事件的位置以及平均最深点蚀的点蚀属性。对于在受控相对湿度(85%、9l% 和97%)和盐负载(86 μg NaCl/cm)下暴露5小时的情况,该模型显示出前景:既适用于分析局部双金属腐蚀化学,如pH值和腐蚀产物,也适用于通过计算单个最大点蚀深度来有效评估点蚀损伤。参数研究表明,点蚀起始近似在暴露开始时以及相对湿度低于91%时偏差最大。

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