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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Effect of oil additives on the durability of hydrogenated DLC coating under boundary lubrication conditions
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Effect of oil additives on the durability of hydrogenated DLC coating under boundary lubrication conditions

机译:油添加剂对边界润滑条件下氢化DLC涂层耐久性的影响

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摘要

Diamond-like carbon (DLC) coatings have became accepted non-ferrous coatings for automotive tribo-components as they offer excellent tribological properties resulting in improved fuel economy and reduced dependence on existing lubricant additives which can be harmful to catalytic converters and ultimately to the environment. Obtaining optimum durability (wear) as well as high fuel economy (low friction) using DLC-coated parts relies in part on the compatibility between surface and lubricant additives. The objective of this study is to understand the role of friction modifiers and antiwear additives on the durability of DLC coating under boundary lubrication conditions. Experiments were performed using a pin-on-plate tribotester using plates coated by 30at.% hydrogen containing DLC (HDLC) sliding against cast iron (CI) pins. The physical observation of the wear scar, formed on the HDLC coating by low friction and/or anti-wear additives, was performed using both optical and scanning electron microscopes. X-ray photoelectron spectroscopy analysis was performed on the tribofilms to help to understand the tribochemical interactions between oil additives and the HDLC coating. Based on the physical observations and tribochemical analysis of the wear scar, the mechanisms of failure/wear of the HDLC coating are proposed and the requirement for designing optimal additive packages for the HDLC coating is discussed.
机译:类金刚石碳(DLC)涂料已成为汽车摩擦部件的有色金属涂料,因为它们具有出色的摩擦学性能,从而提高了燃油经济性,并减少了对现有润滑油添加剂的依赖,而润滑油添加剂可能会对催化转化器乃至环境产生危害。使用DLC涂层的零件获得最佳的耐久性(磨损)以及高燃油经济性(低摩擦)在某种程度上取决于表面和润滑剂添加剂之间的相容性。这项研究的目的是了解摩擦改性剂和抗磨添加剂在边界润滑条件下对DLC涂层耐久性的作用。使用销钉在板上的三硼酸酯进行实验,该板使用涂有30at。%的含氢的DLC(HDLC)相对于铸铁(CI)销滑动的板。使用光学和扫描电子显微镜对由低摩擦和/或抗磨添加剂在HDLC涂层上形成的磨损痕迹进行物理观察。对摩擦膜进行了X射线光电子能谱分析,以帮助了解油添加剂和HDLC涂层之间的摩擦化学相互作用。基于对磨损痕迹的物理观察和摩擦化学分析,提出了HDLC涂层的失效/磨损机理,并讨论了为HDLC涂层设计最佳添加剂包的要求。

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