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钛合金表面类金刚石碳梯度薄膜的摩擦磨损性能研究
引用本文:蒋书文,尹光福,郑昌琼,张利,孟永刚,杨文言.钛合金表面类金刚石碳梯度薄膜的摩擦磨损性能研究[J].摩擦学学报,2001,21(3):167-171.
作者姓名:蒋书文  尹光福  郑昌琼  张利  孟永刚  杨文言
作者单位:1. 四川大学无机材料系,
2. 清华大学
基金项目:国家自然科学基金资助! (39870 2 32 ),清华大学摩擦学国家重点实验室基金资助! (98-0 4)
摘    要:与Ti6Al4V合金/超高分子量聚乙烯摩擦副对比,考察了Ti6Al4V合金表面类金刚石碳梯度薄膜/超高分子量聚乙烯摩擦副在干摩擦以及Hank’s溶液和生理盐水润滑下的摩擦磨损性能,采用扫描电子显微镜观察试样磨损表面形貌,并进而分析磨损机理。结果表明,类金刚石碳梯度薄膜具有良好的减摩抗磨性能,其体积磨损率约为相同条件下Ti6Al4V合金体积磨损率的50%,相应的超高分子量聚乙烯偶件的磨损率亦较低,类金刚石碳梯度薄膜的磨损呈现轻微磨粒磨损特征,而超高分子量聚乙烯可抑制类金刚石碳梯度薄膜的磨粒磨损。

关 键 词:类金刚石碳薄膜  钛合金  超高分子量聚乙烯  摩擦磨损性能  关节头材料  人工关节
文章编号:1004-0595(2001)03-0167-05
修稿时间:2000年9月19日

Friction and Wear Behavior of DLC Gradient Film on Ti6Al4V Alloy Substrate in Sliding Against Ultra-high Molecular Weight Polyethylene
JIANG Shu wen,YIN Guang fu,ZHENG Chang qiong,ZHANG Li,MENG Yong gang,YANG Wen yan.Friction and Wear Behavior of DLC Gradient Film on Ti6Al4V Alloy Substrate in Sliding Against Ultra-high Molecular Weight Polyethylene[J].Tribology,2001,21(3):167-171.
Authors:JIANG Shu wen  YIN Guang fu  ZHENG Chang qiong  ZHANG Li  MENG Yong gang  YANG Wen yan
Abstract:The friction and wear behavior of diamond carbon like gradient film on Ti6Al4V alloy substrate sliding against ultra high molecular weight polyethylene was investigated under dry sliding and lubrication of Hank's solution and 0.9% NaCl solution, by comparing with that of Ti6Al4V alloy against the same counterpart under the same testing conditions. The worn surfaces of the tested samples were observed with a scanning electron microscope, as an effort to analyze the wear mechanisms. It has been found that the diamond carbon like gradient film has good friction reduction and wear resistant behavior in sliding against the polymer counterpart. Especially, it also registers a lower wear rate of the polymer counterpart as compared with Ti6Al4V alloy. The wear of the diamond carbon like gradient film is characterized by slight abrasive wear which is able to be refrained by the polymer counterpart.
Keywords:diamond  like carbon film  Ti6Al4V alloy  ultrahigh molecular weight polyethylene  friction and wear behavior
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