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Corrosion Behavior of AZ91D Magnesium Alloy with a Calcium–Phosphate–Vanadium Composite Conversion Coating

机译:钙-磷酸盐-钒复合转化膜的AZ91D镁合金的腐蚀行为

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A novel self-healing calcium–phosphate–vanadium (Ca–P–V) composite coating on Mg alloy was successfully fabricated through a chemical conversion method. The effects of the vanadium concentration on the anticorrosion property of the substrate were also tested. The Ca–P–V coating with the main composition of CaHPO4, Ca3(PO4)2, and Mg3(PO4)2, with some hydroxides of V(V) dispersed into it has a similar morphology to the single vanadium coating. The corrosion behaviour of the Ca–P–V coating was studied through the electrochemical tests and the scratch immersion test in 3.5 wt % NaCl solution. The results showed that the Ca–P–V coated samples not only exhibit good corrosion resistance property, but also show self-healing ability. The ions of Ca, P, and V released from the coating can migrate in the corrosion solution and form a new compound layer on the damaged zone.
机译:通过化学转化方法成功地在镁合金上制备了一种新型的自修复钙-磷酸盐-钒(Ca-P-V)复合涂层。还测试了钒浓度对基体防腐性能的影响。具有CaHPO4,Ca3(PO4)2和Mg3(PO4)2的主要成分的Ca–V–V涂层,其中分散有一些V(V)的氢氧化物,其形态与单钒涂层相似。通过在3.5 wt%NaCl溶液中的电化学测试和划痕浸渍测试研究了Ca–P–V涂层的腐蚀行为。结果表明,Ca–P–V涂层样品不仅具有良好的耐腐蚀性,而且还具有自愈能力。从涂层中释放出来的Ca,P和V离子可以在腐蚀溶液中迁移,并在受损区域上形成新的化合物层。

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