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Electrophoretic Painting on AZ31 Mg Alloy Pretreated in Cerium Conversion Coating Solutions Prepared in Ethanol-Water Mixtures

机译:乙醇 - 水混合物中制备的铈转化涂料溶液预处理的AZ31镁合金电泳涂漆

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摘要

Electrophoretic painting (E-paint) was prepared on AZ31 Mg alloy samples pretreated in cerium conversion coating (CeCC) solutions with various ratios of ethanol and water mixture and its characteristics, adhesion and corrosion resistance were investigated. It was found that CeCC formed on AZ31 Mg alloy in a CeCC solution without ethanol was partly cracked structure and mainly consisted of Mg(OH)(2)/MgO, which exhibited weak adhesion with E-painting layer after water immersion test, and low corrosion resistance, as indicated by rapid formation of blisters and paint delamination during salt spray test. The addition of ethanol promoted the growth of a fine nano-crystalline CeO2 layer over the entire substrate surface. The E-paint on AZ31 pretreated in the CeCC solutions with addition of ethanol showed also improved corrosion resistance, as represented by the delayed time for paint delamination and blister formation. The E-paint layers on the CeCC layers formed in solutions containing 50-80 vol% ethanol showed stronger adhesion and better corrosion resistance than those formed on the samples treated in a non-ethanol containing CeCC solution.
机译:在铈转化涂层(CECC)溶液中预处理的AZ31 Mg合金样品上制备电泳涂漆(E-涂料),研究了各种乙醇和水混合物的溶液及其特性,粘附和耐腐蚀性。发现在没有乙醇的CECC溶液中形成的CECC在没有乙醇的CECC溶液中是部分裂化的结构,主要由Mg(OH)(2)/ mgO组成,其在水浸渍试验后与电子涂料层表现出弱粘附,低耐腐蚀性,如盐喷雾试验期间水疱快速形成和涂料分层所示。加入乙醇在整个基板表面上促进细纳米结晶CeO2层的生长。通过添加乙醇的CECC溶液中预处理的AZ31上的e-涂料显示出还提高了耐腐蚀性,如涂料分层和泡罩形成的延迟时间所示。在含有50-80Vol%乙醇的溶液中形成的CECC层上的E-涂料层显示出比在含有CECC溶液中的非乙醇中所处处理的样品上形成的耐腐蚀性更强的耐腐蚀性和更好的耐腐蚀性。

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