C ^+ ion beam-assisted deposition was utilized to prepare deposit diamond-like carbon ( DLC ) film. With the help of a series of experiments such as Raman spectroscopy, FT-IR spectroscopy, AFM and nanoindentation , the DLC film has been recognized as hydrogenated DLC film and its tribologicul properties have been evaluated. The bull-on-disc testing results show that the hardness and the tribologicul properties of the DLC film produced by C^ + ion beam- assisted deposition are improved significantly. DLC film produced by C ^+ ion beam- assisted deposition is positive to have a prosperous tribologicul application in the near future.
通过控制销盘试验中的散热条件测定了摩擦热对UHMW PE/钢摩擦副摩擦性能的影响;利用统计学相关系数理论对摩擦系数和表层温度的相关性进行定量比较,发现不良散热条件使其相关系数显著增大;根据T ay lor Hobson轮廓仪测量试样表面形貌三维初始表面高度,尝试用元胞自动机方法进行了摩擦表面温度分布模拟计算,并结合磨损表面形貌分析探讨摩擦热对UHMW PE磨损机理的影响.结果表明:摩擦系统的热传导条件严重影响UHMW PE的摩擦性能;摩擦热效应使得局部接触表面温度超过熔点,摩擦热的积累效应使UHMW PE的磨损机理由粘着磨损变为熔融剪切磨损;在聚合物材料的摩擦试验及应用研究中必须考虑摩擦热的影响.