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Development of corrosion and wear resistant micro-arc oxidation coating on a magnesium alloy

机译:镁合金腐蚀和耐磨微弧氧化涂层的研制

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This study was initiated with the aim of extending the usage of magnesium alloys especially in corrosion and wear related engineering applications by coating their surfaces via micro arc oxidation (MAO). Considering the individual influence of phosphate-based and aluminate-based electrolytes on the corrosion and wear performances of the synthesized MAO coatings, respectively, AZ91 magnesium alloy has been subjected to MAO in aluminate-based reference electrolyte with and without additions of Na3PO4 at concentrations of 5 and 10 g/l. As opposed to dry sliding conditions, MAO coatings synthesized in the aluminate-based reference electrolyte did not provide good protection of AZ91 magnesium alloy against wear in corrosive media (0.9 wt% NaCl solution). This study revealed that, addition of 5 g/l Na3PO4 into this reference electrolyte was sufficient for enhanced resistance of MAO coating against chemical and mechanical degradations (i.e. corrosion-wear) without altering its features in terms of surface roughness and thickness.
机译:该研究是通过通过微弧氧化(MAO)涂覆它们的表面来延长镁合金的使用,特别是在腐蚀和磨损相关工程应用中。考虑到磷酸盐基和基于铝酸盐基电解质对合成的MAO涂层的腐蚀和磨损性能的各自影响,AZ91镁合金已经在基于铝酸盐的基准电解质中进行MAO,并在浓度下加入Na 3 PO 4 5和10 g / l。与干燥滑动条件相反,在基于铝酸盐的参考电解质中合成的MAO涂层在腐蚀性介质(0.9wt%NaCl溶液0.9wt%NaCl溶液0.9wt%NaCl溶液)中没有提供良好的AZ91镁合金保护。该研究表明,在该参考电解质中加入5g / L Na 3PO 4,对于化学和机械降解(即腐蚀 - 磨损)而言,可以提高Mao涂层的抗性而不改变表面粗糙度和厚度的特征。

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