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Wear and corrosion characteristics of novel alumina coatings produced by micro arc oxidation on AZ91D magnesium alloy

机译:AZ91D镁合金微弧氧化制备新型氧化铝涂层的磨损特性

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摘要

Magnesiumalloys are attractive materials for reducing the weight of the engineering components. Despite their high strength to weight ratio, poor corrosion and wear performances limit their extensive usage. In this respect, improvement of their wear and corrosion resistance by coating processes is a necessity for magnesium alloys. In this study, thewear and corrosion performances of AZ91D magnesiumalloy have been examined aftermagnesia and alumina coatings.While micro arc oxidation (MAO) process was applied to generate a magnesia layer, cold spraying (CS) and MAO processes were combined to obtain novel alumina layer. CS was conducted to cover the substrate by depositing an aluminum layer (monolithic or composite). Afterwards, application of the MAO process produced an alumina layer on the deposited aluminum layer (monolithic or composite) forming a multilayered coating on the examined magnesium alloy. Results of the experiments revealed that the alumina layer formed on the alumina reinforced aluminum matrix composite layer ensured superior protection for AZ91D alloy against mechanical and chemical degradations as compared to the magnesia layer.
机译:镁合金是用于减轻工程部件重量的有吸引力的材料。尽管它们具有高的强度重量比,但是差的腐蚀和磨损性能限制了它们的广泛使用。在这方面,镁合金必须通过涂覆工艺来改善其耐磨性和耐腐蚀性。本研究在镁和氧化铝涂层后检查了AZ91D镁合金的磨损性能和腐蚀性能,同时采用微弧氧化(MAO)工艺生成氧化镁层,结合冷喷涂(CS)和MAO工艺获得了新型氧化铝层。通过沉积铝层(整体或复合)进行CS覆盖基底。此后,采用MAO工艺在沉积的铝层(整体或复合材料)上形成氧化铝层,从而在被检查的镁合金上形成多层涂层。实验结果表明,与氧化镁层相比,在氧化铝增强的铝基复合材料层上形成的氧化铝层确保了AZ91D合金对机械和化学降解的优异保护。

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