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Electrochemical investigations on crevice corrosion of a martensitic stainless steel in a thin-layer cell

机译:薄层电池中马氏体不锈钢缝隙腐蚀的电化学研究

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摘要

This paper focuses on crevice corrosion resistance of a martensitic stainless steel. First, electrochemical measurements were performed in deaerated bulk electrolytes for different chloride concentrations and different values of the pH to determine the critical parameters leading to dissolution or breakdown of the passive film. Then, a thin-layer cell was designed to confine the electrolyte between two parallel stainless steel planes. Impedance measurements obtained for different immersion times and electrolyte thicknesses clearly showed the influence of these two parameters on the crevice corrosion rate. A significant decrease of the corrosion resistance when the medium is increasingly confined was observed. The data obtained in the bulk electrolytes were used to determine the critical conditions in the thin-layer cell which impede the repassivation of the stainless steel (pH and [Cl−]).
机译:本文着重研究马氏体不锈钢的耐缝隙腐蚀性能。首先,在脱气的本体电解质中针对不同的氯化物浓度和不同的pH值进行电化学测量,以确定导致钝化膜溶解或分解的关键参数。然后,设计了一个薄层电池,将电解质限制在两个平行的不锈钢平面之间。针对不同的浸入时间和电解质厚度获得的阻抗测量结果清楚地表明了这两个参数对缝隙腐蚀速率的影响。当介质越来越密闭时,观察到耐腐蚀性显着下降。散装电解质中获得的数据用于确定薄层电池中的关键条件,这些条件会阻碍不锈钢的再钝化(pH和[Cl-])。

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