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首页> 外文期刊>Electrochimica Acta >Modeling fretting-corrosion wear of 316L SS against poly(methyl methacrylate) with the Point Defect Model: Fundamental theory, assessment, and outlook
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Modeling fretting-corrosion wear of 316L SS against poly(methyl methacrylate) with the Point Defect Model: Fundamental theory, assessment, and outlook

机译:用点缺陷模型对316L SS对聚甲基丙烯酸甲酯的微动腐蚀磨损进行建模:基础理论,评估和展望

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摘要

This work aims at investigating experimentally fretting corrosion, that is, corrosion induced by friction of AISI 316L SS against poly(methyl methacrylate) under small displacements. The observed wear on the stainless steel has been modeled using the Point Defect Model (PDM). The originality of this approach in applying the PDM to fretting corrosion consists of using a modified rate of the barrier layer dissolution, in the case of cyclical wear, such that the rate of destruction of the barrier layer at the barrier layer/solution interface exceeds the rate of barrier layer growth at the metal/barrier layer interface at zero barrier layer thickness, which is the condition specified by the PDM for depassivation. By optimization of the PDM on experimental electrochemical impedance data under fretting conditions, we have been able to ascertain values for various model parameters, and to calculate the steel volume loss as a function of potential.
机译:这项工作旨在研究实验性微动腐蚀,即在小位移下AISI 316L SS与聚甲基丙烯酸甲酯的摩擦引起的腐蚀。使用Point Defect Model(PDM)对不锈钢上观察到的磨损进行了建模。在周期性磨损的情况下,将PDM应用于微动腐蚀的这种方法的独创性包括使用改进的势垒层溶解速率,以使势垒层/溶液界面处的势垒层破坏速率超过阻挡层厚度为零时,金属/阻挡层界面处阻挡层生长的速率,这是PDM指定的用于钝化的条件。通过在微动条件下基于实验电化学阻抗数据对PDM进行优化,我们已经能够确定各种模型参数的值,并能够计算出作为电位函数的钢体积损失。

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