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Coating Formation on Ti-6Al-4V Alloy by Micro Arc Oxidation in Molten Salt

机译:熔融盐中微弧氧化在Ti-6Al-4V合金上形成涂层

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摘要

Micro Arc Oxidation (MAO) is an electrochemical surface treatment process to produce oxide protective coatings on some metals. MAO is usually conducted in an aqueous electrolyte, which requires an intensive bath cooling and leads to the formation of a coating containing impurities that originate in the electrolyte. In the current work, we applied an alternative ceramic coating to the Ti-6Al-4V alloy using the MAO process in molten nitrate salt at a temperature of 280 °C. The obtained coating morphology, chemical and phase composition, and corrosion resistance were investigated and described. The obtained results showed that a coating of 2.5 µm was formed after 10 min of treatment, containing titanium oxide and titanium‒aluminum intermetallic phases. Morphological examination indicated that the coating is free of cracks and contains round, homogeneously distributed pores. Corrosion resistance testing indicated that the protective oxide coating on Ti alloy is 20 times more resistive than the untreated alloy.
机译:微弧氧化(MAO)是一种电化学表面处理工艺,用于在某些金属上产生氧化物保护涂层。 MAO通常在水性电解质中进行,这需要进行大量的浴液冷却,并导致形成包含源自电解质的杂质的涂层。在当前的工作中,我们使用MAO工艺在280°C的熔融硝酸盐中对Ti-6Al-4V合金施加了替代性陶瓷涂层。研究并描述了获得的涂层形态,化学和相组成以及耐腐蚀性。得到的结果表明,在处理10分钟后,形成了一个2.5 µm的涂层,该涂层含有氧化钛和钛铝金属间相。形态学检查表明该涂层无裂纹,并包含圆形,均匀分布的孔。耐腐蚀性测试表明,Ti合金上的保护性氧化物涂层的电阻是未经处理的合金的20倍。

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