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Correlation between morphology and electrochemical behavior of chromium-free conversion coatings for aluminum alloys corrosion protection

机译:用于铝合金腐蚀保护的无铬转化涂层形态与电化学行为的相关性

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摘要

Chromium(III)-based, tungstate-based and cerium(III)-based conversion coatings on AA2024-T3 are compared in terms of morphology and electrochemical behavior. The durability of coatings is studied under neutral salt spray conditions and in a weakly aggressive electrolyte composed of 0.1 mol/L Na2SO4 and 10(-3) mol/L NaCl. The use of both microscopic and electrochemical analyses such as fitting of electrochemical impedance spectroscopy diagrams allows one to have a better insight into the influence of the interfacial and conversion layers on the degradation phenomena. The role of the remaining native interfacial oxide layer is particularly highlighted, its resistance being the highest at the beginning of the exposure. The degradation of the barrier effect of this interfacial layer is demonstrated to be closely related to the performances of the conversion layer both in terms of passive protection and a reservoir of corrosion inhibitor. Finally, coupled analyses from EIS fitting and microscopic observations allow one to reach a precise interpretation of the strengths and weak points of such system. This diagnostic is an important step towards the optimization of the chromium-free systems.
机译:在形态学和电化学行为方面比较AA2024-T3上基于铬(III),基于钨酸盐和铈(III)的基转化涂层。在中性盐喷雾条件下研究涂层的耐久性,并在弱腐蚀性的电解质中由0.1mol / L Na 2 SO 4和10(-3)Mol / L NaCl组成。微观和电化学分析的使用如电化学阻抗光谱图的拟合允许一个人能够更好地了解界面和转化层对降解现象的影响。剩余的本机界面氧化物层的作用特别突出,其电阻在曝光开始时最高。该界面层的阻挡效应的降解被证明与无源保护和腐蚀抑制剂的储存器中的转化层的性能密切相关。最后,来自EIS拟合和微观观测的耦合分析允许人们达到这种系统的强度和弱点的精确解释。该诊断是朝向无铬系统优化的重要步骤。

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