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Influence of surface preparation on performance of chromate conversion coatings on Alclad 2024 aluminium alloy Part II: EIS investigation

机译:表面处理对Alclad 2024铝合金铬酸盐转化膜性能的影响第二部分:EIS研究

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摘要

Chromate conversion layers, formed on Alclad 2024- T3 aluminium alloy after different surface preparation procedures, were investigated by means of EIS measurements performed in aggressive and middle aggressive electrolytes. The morphology of the chromate layer varies depending on the type of solution and on the time of duration due to deposition of corrosion products inside the defects and deterioration of the layer. Therefore, three slightly different equivalent circuits have been used to model the chromate film in the two electrolytes and for different times of exposure. The proposed equivalent circuits enable the study of the effect of variation in the aluminium surface microstructure, caused by different surface pretreatment, on the performance of the deposited chromate conversion coating. The removal of galvanic couples, mainly caused by precipitates, from the aluminium surface appears to be a necessary condition for the formation of a chromate layer with good corrosion resistance. Besides, the properties {)f the surface of the aluminium substrate largely influence the morphology and composition not only of the chromate film but also of the corrosion products formed at weak locations, which seem to play an important role in the protection provided by the chromate conversion coating.
机译:通过在侵蚀性和中等侵蚀性电解质中进行的EIS测量,研究了在经过不同的表面制备程序后在Alclad 2024-T3铝合金上形成的铬酸盐转化层。铬酸盐层的形态根据溶液的类型以及由于腐蚀产物在缺陷内部的沉积和层的劣化而导致的持续时间而变化。因此,已经使用了三个略有不同的等效电路来模拟两种电解质中铬酸盐薄膜的形成以及曝光时间的不同。提出的等效电路能够研究由于表面预处理不同而导致的铝表面微观结构变化对沉积的铬酸盐转化膜性能的影响。从铝表面去除主要由沉淀物引起的电偶似乎是形成具有良好耐腐蚀性的铬酸盐层的必要条件。此外,铝基材表面的特性不仅影响铬酸盐膜的形貌和组成,而且还影响在弱处形成的腐蚀产物的形貌和组成,这似乎在铬酸盐提供的保护中起着重要作用。转化膜。

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