钛
涂层
陶瓷
制作
合金
表面粗糙度
冶金
扫描电子显微镜
摩擦学
作者
Shuo Yuan,Naiming Lin,Jiaojuan Zou,Xiuzhou Lin,Zhiqi Liu,Yuan Yu,Zhenxia Wang,Qunfeng Zeng,Wengang Chen,Linhai Tian,Lin Qin,Ruizhen Xie,Boqiong Li,Hongxia Zhang,Zhihua Wang,Bin Tang,Yucheng Wu
出处
期刊:Vacuum
[Elsevier]
日期:2020-06-01
卷期号:176: 109327-
被引量:15
标识
DOI:10.1016/j.vacuum.2020.109327
摘要
Abstract In this work, a duplex treatment of laser surface texturing (LST)-thermal oxidation (TO) was conducted on Ti6Al4V alloy to improve its mechanical property and wear performance. Microstructure, bonding strength, microhardness and nanoindentation behavior of the TO-Ti6Al4V were characterized. A comparative appraisal of wear performance for related samples of original Ti6Al4V, LST-Ti6Al4V, TO-Ti6Al4V and duplex treated-Ti6Al4V (DT-Ti6Al4V) were performed under dry sliding condition. The results revealed that gradient titanium oxide coatings with a thickness of 17 μm were in situ fabricated on the surface of Ti6Al4V and textured Ti6Al4V. The content of O displayed a gradient distribution across the TO-coating. TO treatment has improved the surface hardness and elasticity modulus of the Ti6Al4V. The specific wear rate of the samples was sorted in the following sequence: DT-Ti6Al4V
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