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The Effect of Phosphate Source on the Post-treatment of Cerium Based Conversion Coatings on Al 2024-T3 and its Correlation to Corrosion Performance

机译:磷酸盐源对Al 2024-T3对铈基转化涂层后处理的影响及其与腐蚀性能的相关性

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The surface morphology, electrochemical characteristics, and salt spray corrosion performance were studied for cerium-based conversion coatings (CeCCs) that were post-treated in heated aqueous solutions of orthophosphate, pyrophosphate, and polyphosphate compounds. Phosphate post-treatment reduced cracking in the coatings, which resulted in better corrosion protection compared to coatings that were highly cracked or contained other defects. In addition, post-treatment in orthophosphate solutions converted the as-deposited hydrated cerium oxide to hydrated CePO_4, which further improved corrosion protection. Electrochemical analyses showed that CeCCs that contained hydrated CePO_4 after post-treatment had the highest resistance (~100 kΩ-cm~2), most noble pitting potentials (~ -270 mV), and best corrosion protection of the post-treatments that were tested. While pyrophosphate and polyphosphate post-treatments reduced cracks in the film, they did not promote formation of CePO_4·H_2O. The results suggest that the corrosion protection of CeCCs on Al 2024-T3 is dependent on both the surface morphology and phase of the coating.
机译:表面形态,电化学特性,和盐雾腐蚀性能进行了研究针对在正磷酸盐,焦磷酸盐,和多​​磷酸盐的化合物的加热的水溶液进行后处理的基于铈的转化涂层(CeCCs)。磷酸盐治疗后减少了涂料,这就造成了更好的防腐蚀保护相比,被高度破裂或含有其它缺陷的涂层开裂。此外,在正磷酸盐溶液后处理转换的如此沉积的水合氧化铈水合CePO_4,其进一步改善的防腐蚀保护。电化学分析表明,后处理后其包含水合CePO_4 CeCCs具有最高的电阻(〜100kΩ的厘米〜2),最高贵的点蚀电位(〜-270毫伏),和进行了测试,所述的后处理,最好的腐蚀保护。尽管焦磷酸盐和多磷酸盐的后处理,减少了膜的裂缝,他们没有促进形成CePO_4的·H_2O。结果表明,CeCCs对Al 2024-T3的腐蚀保护依赖于涂层的表面形态和相位两者。

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