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Structure and Growth Kinetics Features of Ceramic Coatings Produced on Ti-6Al-4V Alloy by Plasma Arc Oxidation

机译:等离子弧氧化制备Ti-6Al-4V合金陶瓷涂层的结构和生长动力学特征

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Ceramic coatings were fabricated by plasma arc oxidation on Ti-6Al-4V alloy in phosphate -containing solution. The growth rate, microstructure and phase composition of ceramic coatings were investigated using coating thickness gauge, scanning electron microscope (SEM) and X-Ray diffraction (XRD). After plasma arc oxidation treatment, the microstructure of the remained Ti-6Al-4V alloy substrate remains unchanged and no hardening zone in the substrate is found. Ceramic coating formed on Ti-6Al-4V alloy surface by alternating-current plasma arc oxidation contains two layers: an outer layer and an inner layer. The outer layer coating consists of a large amount of rutile and a little anatase. But in the inner layer, anatase becomes a main phase while the rutile fraction obviously decreases, which indicates that phase transformation of anatase into rutile occurs in the duration of oxidizing process. In the mean time, with increasing treatment duration, coating growth varies from rapidness to tardiness accompanied by gradually roughening in appearance.
机译:通过在含磷酸盐溶液中的Ti-6Al-4V合金上进行等离子弧氧化制备陶瓷涂层。利用涂层测厚仪,扫描电子显微镜(SEM)和X射线衍射仪(XRD)研究了陶瓷涂层的生长速率,微观结构和相组成。经过等离子弧氧化处理后,剩余的Ti-6Al-4V合金基底的微观结构保持不变,并且在基底中未发现硬化区。通过交流等离子弧氧化在Ti-6Al-4V合金表面形成的陶瓷涂层包含两层:外层和内层。外层涂层由大量金红石和少量锐钛矿组成。但是在内层中,锐钛矿成为主相,而金红石部分明显减少,这表明在氧化过程中锐钛矿向金红石的相变发生了。同时,随着处理时间的增加,涂层的生长速度从快到慢,随着外观的逐渐变粗糙而变化。

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