当前位置: X-MOL 学术Adv. Eng. Mater. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Surface Modification of Titanium and Titanium Alloys: Technologies, Developments, and Future Interests
Advanced Engineering Materials ( IF 3.4 ) Pub Date : 2020-01-09 , DOI: 10.1002/adem.201901258
Lai-Chang Zhang 1 , Liang-Yu Chen 2 , Liqiang Wang 3
Affiliation  

Thanks to a considerable number of fascinating properties, titanium (Ti) and Ti alloys play important roles in a variety of industrial sectors. However, Ti and Ti alloys could not satisfy all industrial requirements; the degradation of Ti and Ti alloys always commences on their surfaces in service, which declines the performances of Ti workpieces. Therefore, with aim to further improve their mechanical, corrosion and biological properties, surface modification is often required for Ti and Ti alloys. This article reviews the technologies and recent developments of surface‐modification methods with respect to Ti and Ti alloys, including mechanical, physical, chemical, and biochemical technologies. Conventional methods have limited improvement in the properties and/or restriction on the geometry of workpieces. Therefore, many advanced surface‐modification technologies have emerged in recent decades. New methods make Ti and Ti alloys have better performance and extended applications. With requirement of high surface properties in future. Understanding the mechanism in various surface‐modification methods, combining the advantages of current technologies and developing new coating materials with high performance are required urgently. As such, incorporation of different surface‐modification technologies with high‐performance modified layers may be the mainstream of surface modifications for Ti and Ti alloys.

中文翻译:

钛和钛合金的表面改性:技术,发展和未来的兴趣

由于具有许多令人着迷的特性,钛(Ti)和钛合金在各种工业领域中都发挥着重要作用。但是,钛和钛合金不能满足所有工业要求。在使用中,Ti和Ti合金的降解总是在其表面上开始,这会降低Ti工件的性能。因此,为了进一步改善它们的机械,腐蚀和生物学性能,经常需要对Ti和Ti合金进行表面改性。本文回顾了有关Ti和Ti合金的表面改性方法的技术和最新发展,包括机械,物理,化学和生化技术。常规方法在工件的特性和/或几何形状上的限制有限。所以,近几十年来,出现了许多先进的表面改性技术。新方法使Ti和Ti合金具有更好的性能并扩展了应用范围。随着未来对高表面性能的要求。迫切需要了解各种表面改性方法的机理,结合当前技术的优势并开发具有高性能的新型涂料。因此,将不同的表面改性技术与高性能改性层相结合可能是Ti和Ti合金表面改性的主流。迫切需要结合当前技术的优势和开发高性能的新型涂料。因此,将不同的表面改性技术与高性能改性层相结合可能是Ti和Ti合金表面改性的主流。迫切需要结合当前技术的优势和开发高性能的新型涂料。因此,将不同的表面改性技术与高性能改性层相结合可能是Ti和Ti合金表面改性的主流。
更新日期:2020-01-09
down
wechat
bug