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Production of plasma electrolytic oxide coatings on Ti6Al4V alloy in aluminate-based electrolytes

机译:基于铝酸盐电解质中Ti6Al4V合金的等离子体电解氧化物涂层的生产

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摘要

Titanium alloys have been adopted as standard materials in aviation, biomedical and chemical industries owing to their outstanding properties involving high-specific strength, high corrosion resistance and biocompatibility. But, an important shortcoming related to the application of titanium alloys is their poor wear resistance. When titanium slides against itself or other metals it tends to gall and cause adhesive wear damage. In this study, oxide coatings were produced on Ti6Al4V using plasma electrolytic oxidation technique. Different electrolyte compositions were formulated to develop hard coating with less porosity and high load bearing capacity. The nano-indentation test was carried out to determine the micromechanical properties of the coatings. The scratch test was utilised to determine the adhesion strength of coatings. Dry sliding wear tests were performed against alumina ball. Test results showed that tungstate additive increased the wear resistance of plasma electrolytic oxidation coating while the addition of pyrophosphate reduces its wear resistance.
机译:由于涉及高比强度,高耐腐蚀性和生物相容性的优异性能,钛合金已被用作航空,生物医学和化学工业中的标准材料。但是,与钛合金应用相关的重要缺点是它们耐磨性差。当钛滑动自身或其他金属时,它倾向于胆,导致粘合剂磨损损坏。在该研究中,使用等离子体电解氧化技术在Ti6Al4V上产生氧化物涂层。配制不同的电解质组合物以产生具有较少孔隙率和高承载能力的硬涂层。进行纳米缩进试验以确定涂层的微机械性能。利用划痕试验来确定涂层的粘合强度。对氧化铝球进行干滑动磨损试验。试验结果表明,钨酸酯添加剂增加了等离子体电解氧化涂层的耐磨性,同时加入焦磷酸盐降低了其耐磨性。

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