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Effects Of Acid And Alkaline Based Surface Preparations On Spray Deposited Cerium Based Conversion Coatings On Al 2024-t3

机译:酸和碱基表面处理对Al 2024-t3上喷涂沉积的铈基转化膜的影响

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摘要

Cerium based conversion coatings were spray deposited on Al 2024-T3 and characterized to determine the effect of surface preparation on the deposition rate and surface morphology. It was found that activation of the panel using a 1-wt.% sulfuric acid solution increased the coating deposition rate compared to alkaline cleaning alone. Analysis of the surface morphology of the coatings showed that the coatings deposited on the acid treated panels exhibited fewer visible cracks compared to coatings on alkaline cleaned panels. Auger electron spectroscopy depth profiling showed that the acid activation decreased the thickness of the aluminum oxide layer and the concentration of magnesium on the surface of the panels compared to the alkaline treatment. Additionally, acid activation increased the copper concentration at the surface of the aluminum substrate. Based on the results, the acid based surface treatment appeared to expose copper rich intermetallics, thus increasing the number of cathodic sites on the surface, which led to an overall increase in the deposition rate.
机译:将铈基转化涂层喷涂在Al 2024-T3上,并进行表征,以确定表面制备对沉积速率和表面形态的影响。已经发现,与单独的碱性清洁相比,使用1-wt。%的硫酸溶液活化面板增加了涂层的沉积速率。涂层表面形态的分析表明,与碱洗板上的涂料相比,酸处理板上沉积的涂料可见裂纹更少。俄歇电子能谱深度剖析表明,与碱性处理相比,酸活化可降低氧化铝层的厚度和面板表面镁的浓度。另外,酸活化增加了铝基板表面上的铜浓度。根据结果​​,基于酸的表面处理似乎会暴露出富铜的金属间化合物,从而增加了表面上阴极部位的数量,这导致了沉积速率的整体提高。

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