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Ceramic coated Y1 magnesium alloy surfaces by microarc oxidation process for marine applications

机译:用于海洋的微弧氧化陶瓷涂层Y1镁合金表面

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摘要

The magnesium alloys occupy an important place in marine applications, but their poor corrosion resistance, wear resistance, hardness and so on, have limited their application. To meet these defects, some techniques are developed. Microarc oxidation is a one such recently developed surface treatment technology under anodic oxidation in which ceramic coating is directly formed on the surface of magnesium alloy, by which its surface property is greatly improved. In this paper, a dense ceramic oxide coating, ~20 μm thick, was prepared on an Y1 magnesium alloy through microarc oxidation in a Na3SiO3-Na2WO4-KOH-Na2EDTA electrolytic solution. The property of corrosion resistance of ceramic coating was studied by CS300P electrochemistry-corrosion workstation, and the main impact factor of the corrosion resistance was also analysed. Microstructure and phase composition were analysed by SEM and XRD. The microhardness of the coating was also measured. The basic mechanism of microarc coating formation is explained in brief.
机译:镁合金在海洋应用中占有重要地位,但是其差的耐腐蚀性,耐磨性,硬度等限制了它们的应用。为了解决这些缺陷,开发了一些技术。微弧氧化是在阳极氧化下最近开发的一种这样的表面处理技术,其中在镁合金的表面上直接形成陶瓷涂层,由此极大地改善了其表面性能。本文在Na3 SiO3 -Na2 WO4 -KOH中通过微弧氧化在Y1镁合金上制备了厚约20μm的致密陶瓷氧化物涂层。 -Na2 EDTA电解液。利用CS300P电化学腐蚀工作站研究了陶瓷涂层的耐蚀性能,并分析了其主要影响因素。通过SEM和XRD分析组织和相组成。还测量了涂层的显微硬度。简要解释了微弧涂层形成的基本机理。

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