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Double-layered manganese phosphate conversion coating on magnesium alloy AZ91D: Insights into coating formation, growth and corrosion resistance

机译:镁合金AZ91D上的双层磷酸锰转化膜:洞察涂层的形成,生长和耐腐蚀性

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摘要

A double-layered conversion coating system, consisting of magnesium hydroxide-magnesium/manganese phosphate, was applied to magnesium alloy AZ91D using an acidic manganese nitrate and ammonium dihydrogen phosphate solution. The coating structure, composition and morphology were characterised by SEM, EDX, XRD and XPS. A coating formation mechanism is proposed, and the effect of operating parameters, i.e. pH and temperature, on coating formation was systematically investigated, with optimised conditions able to produce coatings of high corrosion resistance. Corrosion resistance of the coating was evaluated by electrochemical and salt spray testing. The double-layered coating system develops in three stages: initial substrate dissolution, formation of a dense magnesium hydroxide layer, and then co-deposition of magnesium and manganese phosphate film.
机译:使用酸性硝酸锰和磷酸二氢铵溶液,将由氢氧化镁-镁/磷酸锰组成的双层转化涂层系统应用于镁合金AZ91D。用SEM,EDX,XRD和XPS对涂层的结构,组成和形貌进行了表征。提出了涂层形成机理,并系统地研究了操作参数即pH和温度对涂层形成的影响,并以能够产生高耐蚀性涂层的最佳条件为条件。通过电化学和盐雾测试来评估涂层的耐腐蚀性。双层涂层系统的开发分为三个阶段:初始基材溶解,形成致密的氢氧化镁层,然后共沉积镁和磷酸锰膜。

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