Xu T, Pruitt L
Department of Mechanical Engineering, University of California at Berkeley, Berkeley, CA 94720, USA.
J Mater Sci Mater Med. 1999 Feb;10(2):83-90. doi: 10.1023/a:1008916903171.
A detailed investigation of the tribological behaviour of vacuum arc diamond-like carbon coated Ti-6Al-4V against a medical grade ultra-high molecular weight polyethylene is conducted in this work in order to investigate the potential use of diamond-like carbon coatings for orthopaedic appplications. Lubricated and non-lubricated wear experiments are performed using a standard pin-on-disc wear tester. The coefficient of friction is monitored continuously during testing and wear rate calculations are performed using surface profilometry measurements of worn disc surfaces. Sliding wear tests show the existence of two distinct friction and wear regimes distinguished by physically different mechanisms. In the first stages of wear, adhesion and abrasion are the dominant mechanisms of wear while fatigue processes are activated later in the tests. The effects of diamond-like carbon coating structure, surface roughness and lubrication on tribological behaviour are presented. Optimal process-structure-property design for vacuum arc plasma deposition is utilized in order to obtain strong adhesion to the titanium alloy substrate. Diamond-like carbon coatings significantly improve the friction and wear performance of the orthopaedic bearing pair and show exceptional promise for biomedical applications.
为了研究类金刚石碳涂层在骨科应用中的潜在用途,本文对真空电弧类金刚石碳涂层的Ti-6Al-4V与医用级超高分子量聚乙烯之间的摩擦学行为进行了详细研究。使用标准销盘磨损试验机进行润滑和非润滑磨损试验。在测试过程中连续监测摩擦系数,并使用磨损盘表面的表面轮廓测量法进行磨损率计算。滑动磨损试验表明存在两种不同的摩擦和磨损机制,其物理机制不同。在磨损的第一阶段,粘着和磨损是主要的磨损机制,而疲劳过程在试验后期被激活。介绍了类金刚石碳涂层结构、表面粗糙度和润滑对摩擦学行为的影响。利用真空电弧等离子体沉积的最佳工艺-结构-性能设计,以获得与钛合金基体的强附着力。类金刚石碳涂层显著改善了骨科轴承副的摩擦和磨损性能,并在生物医学应用中显示出巨大的前景。