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Self-lubrication and Wear Behavior of TiC/a-C:H Nanocomposite Coatings

机译:TiC / a-C:H纳米复合涂层的自润滑和磨损行为

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Advanced TiC/a-C:H nanocomposite coatings have been produced via reactive deposition in a closed-field unbalanced magnetron sputtering system. In this paper, we report on the tribological behavior of TiC/a-C:H nanocomposite coatings in which ultra-low friction is tailored with superior wear resistance, being two properties often difficult to achieve simultaneously. In-situ monitoring the wear depth at nanometer scale reveals that the self-lubricating effects are induced by the formation of transfer films on the surface of ball counterpart. In addition, the CoF of TiC/a-C:H nanocomposite coatings decreases with decreasing relative humidity. This phenomenon can be interpreted in terms of water molecule interactions with the wear track. The influence of the volume fraction and grain size of TiC nanocrystallites on the coating properties has been examined. A superior wear resistance at a level of 10~(-17) m~3/(N m lap) has been achieved under the condition of super-low friction and high toughness, both of which require fine TiC nano-particles (e.g. 2 nm) and a wide matrix separation that must be comparable to the dimensions of the nano-particles.
机译:先进的TiC / a-C:H纳米复合材料涂层是通过在封闭场不平衡磁控溅射系统中进行反应性沉积制备的。在本文中,我们报道了TiC / a-C:H纳米复合涂层的摩擦学行为,其中超低摩擦被定制为具有优异的耐磨性,这是经常难以同时实现的两个特性。原位监测纳米级的磨损深度表明,自润滑作用是由在球配对件表面上形成转移膜引起的。另外,TiC / a-C:H纳米复合涂层的CoF随着相对湿度的降低而降低。这种现象可以用水分子与磨损轨迹的相互作用来解释。研究了TiC纳米微晶的体积分数和晶粒尺寸对涂层性能的影响。在超低摩擦和高韧性的条件下,已经获得了10〜(-17)m〜3 /(N m lap)的优异耐磨性,这两者都需要精细的TiC纳米颗粒(例如2纳米)和宽的基质分离度,必须与纳米颗粒的尺寸相当。

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