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Effects of electrolytic concentration on properties of micro-arc film on Ti6Al4V alloy 被引量:9

Effects of electrolytic concentration on properties of micro-arc film on Ti6Al4V alloy
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摘要 To study the effect of electrolytic concentration,bioactive ceramic films containing Ca and P on the surface of the Ti6Al4V alloy were prepared by micro-arc oxidation(MAO) in aqueous solutions of different concentrations.Composition,micro-morphology,wettability of the films and their corrosion behavior in a Hank's SBF were studied.Our experimental results show that the film is mainly composed of anatase,rutile and amorphous phases.With an increase in electrolytic concentration,the ratio of rutile in films enlarge and small amounts of calcium phosphate(Ca3(PO4)2) and hydroxyapatite(HA) appear.The number of micropores in films increases but their dimensions decrease and their porosities increase slightly.As the surface roughness of MAO film increases with concentration,the wettablility of the oxide film improves continually,while micro-hardness increases at first and then decreases.MAO treatment clearly improves the corrosion resistance of substrates in a Hank's SBF. To study the effect of electrolytic concentration, bioactive ceramic films containing Ca and P on the surface of the Ti6Al4V alloy were prepared by micro-arc oxidation (MAO) in aqueous solutions of different concentrations. Composition, micro-morphology, wettability of the films and their corrosion behavior in a Hank's SBF were studied. Our experimental results show that the film is mainly composed of anatase, rutile and amorphous phases. With an increase in electrolytic concentration, the ratio of rutile in films enlarge and small amounts of calcium phosphate (Ca3(PO4)2) and hydroxyapatite (HA) appear. The number of mi- cropores in films increases but their dimensions decrease and their porosities increase slightly. As the surface roughness of MAO film increases with concentration, the wettablility of the oxide film improves continually, while micro-hardness increases at first and then decreases. MAO treatment clearly improves the corrosion resistance of substrates in a Hank's SBF.
出处 《Mining Science and Technology》 EI CAS 2009年第2期220-224,共5页 矿业科学技术(英文版)
基金 Projects 50535050 supported by the National Natural Science Foundation of China NCET-06-0479 by the Program for New Century Excellent Talents in University of China
关键词 titanium alloy micro-arc oxidation ROUGHNESS contact angle micro-hardness anodic polarization Ti6Al4V合金 电解质浓度 耐腐蚀性能 陶瓷薄膜 表面粗糙度 模拟体液 磷酸钙 羟基磷灰石
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