Study on the effect of LuCl3 doping on the characteristics of titanium alloy micro-arc oxidation coatings

Xiangjie Wang, Ping Wang, Yanfei Duan, Xu Luo, Youping Zheng
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Abstract

The micro-arc oxidation of TC4 titanium alloy was carried out by adding LuCl3. The effect of LuCl3 addition on the properties of the micro-arc oxidized coatings, and the rate of weight loss by erosion under simulated oil field conditions, were analysed. The results show that the increase of oxidation voltage after the addition of LuCl3 makes the surface structure of the coatings denser. The coating is mainly composed of Rutile TiO2, Anatase TiO2, and a small amount of Lu2O3 phase. The kinetic potential polarization curves showed that the addition of LuCl3 can increase the corrosion potential and decrease the corrosion current density of TC4 titanium alloy, and at the same time reduce the rate of erosion weight loss of micro-arc oxidized coatings under simulated oilfield conditions. The overall performance of the coatings is best when the concentration of LuCl3 is 0.3 g L−1.
掺杂 LuCl3 对钛合金微弧氧化涂层特性的影响研究
通过添加 LuCl3 对 TC4 钛合金进行了微弧氧化。分析了添加 LuCl3 对微弧氧化涂层性能的影响以及模拟油田条件下侵蚀失重率。结果表明,加入 LuCl3 后,氧化电压升高,涂层表面结构更加致密。涂层主要由金红石型 TiO2、无相型 TiO2 和少量 Lu2O3 相组成。动力学电位极化曲线表明,添加 LuCl3 可以提高 TC4 钛合金的腐蚀电位,降低腐蚀电流密度,同时降低模拟油田条件下微弧氧化涂层的侵蚀失重率。当 LuCl3 的浓度为 0.3 g L-1 时,涂层的整体性能最佳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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