Lin Naiming, Li Dali, Zou Jiaojuan, Xie Ruizhen, Wang Zhihua, Tang Bin
Research Institute of Surface Engineering, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China.
Shanxi Key Laboratory of Material Strength and Structure Impact, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China.
Materials (Basel). 2018 Mar 24;11(4):487. doi: 10.3390/ma11040487.
Surface texture (ST) has been confirmed as an effective and economical surface treatment technique that can be applied to a great range of materials and presents growing interests in various engineering fields. Ti6Al4V which is the most frequently and successfully used titanium alloy has long been restricted in tribological-related operations due to the shortcomings of low surface hardness, high friction coefficient, and poor abrasive wear resistance. Ti6Al4V has benefited from surface texture-based surface treatments over the last decade. This review begins with a brief introduction, analysis approaches, and processing methods of surface texture. The specific applications of the surface texture-based surface treatments for improving surface performance of Ti6Al4V are thoroughly reviewed from the point of view of tribology and biology.
表面纹理(ST)已被确认为一种有效且经济的表面处理技术,可应用于多种材料,并且在各个工程领域都受到越来越多的关注。Ti6Al4V是最常用且最为成功的钛合金,长期以来,由于其表面硬度低、摩擦系数高以及耐磨性差等缺点,在与摩擦学相关的操作中受到限制。在过去十年中,Ti6Al4V受益于基于表面纹理的表面处理。本文综述首先简要介绍了表面纹理的分析方法和加工方法。从摩擦学和生物学的角度,全面综述了基于表面纹理的表面处理在改善Ti6Al4V表面性能方面的具体应用。