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Corrosion resistance of cerium-based chemical conversion coatings on AA5083 aluminium alloy

机译:AA5083铝合金上铈基化学转化膜的耐蚀性

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摘要

In this paper the effect of several parameters, such as temperature, time of immersion, cerium ions and hydrogen peroxide concentration, pH of the conversion solution, on the composition and morphology of the conversion layer are investigated as well as on its corrosion resistance in chloride environments. The cerium-based chemical conversion coatings ennobles the corrosion potential and inhibits both the cathodic and anodic reactions rate. Using a cerium (III) chloride solution a not homogeneous coating is obtained and agglomerates with a "dry-mud" morphology of mixed cerium-aluminium oxide are deposited above the cathodic intermetallic particles, while using a cerium (III) nitrate solution the coating is more uniform but thinner than that obtained with cerium (III) chloride. Solution temperature below 50℃ and time of immersion of 10 minutes produces a coating with better corrosion resistance.
机译:本文研究了温度,浸入时间,铈离子和过氧化氢浓度,转化溶液的pH等几个参数对转化层的组成和形态及其在氯化物中的耐腐蚀性的影响。环境。铈基化学转化涂层可增强腐蚀潜能,并抑制阴极和阳极反应速率。使用氯化铈(III)溶液会得到不均匀的涂层,混合金属铈铝氧化物具有“干泥”形态的团聚体会沉积在阴极金属间化合物颗粒上方,而使用硝酸铈(III)溶液的涂层则为比用氯化铈(III)得到的更均匀但更薄。溶液温度低于50℃且浸泡时间为10分钟,则涂层具有更好的耐腐蚀性。

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