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Tribological performance and tribochemical processes in a DLC/steel system when lubricated in a fully formulated oil and base oil

机译:在全配方油和基础油中润滑时,DLC /钢系统中的摩擦学性能和摩擦化学过程

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摘要

Diamond-like carbon (DLC) coatings show extremely good promise for a number of applications in automotive components as they exhibit excellent tribological properties such as low friction and good wear resistance. This can impact on improved fuel economy and durability of the engine components. Much work has been reported on the dry sliding of DLC coatings with less so in lubricated contacts and, as such, there is a need to further understand the tribochemistry of lubricated DLC contacts. Commercially-available oils are normally optimised to work on ferrous surfaces. Previous studies on DLC lubricated contacts have tended to use model oil systems rather than fully formulated lubricants and from this an interesting picture of lubrication mechanisms is emerging. Optimising compatibility between a surface and a set of lubricant additives may lead to excellent durability (wear) as well as increased fuel economy (low friction). In this work, the friction and wear properties of a DLC coating under boundary lubrication conditions have been investigated and the tribological performance compared with that of an uncoated steel system. A pin-on-plate tribotester was used to run the experiments using High speed steel (HSS) M2 grade plates coated with 15 at.% hydrogenated DLC (a-C:15H) sliding against cast iron pins. A Group III mineral base oil, fully synthetic Group IV PAO and four different fully formulated oils were used in this study. Furthermore optical and scanning electron microscopes (SEM) were used to observe the wear scar and to assess the durability of the coatings. Energy-Dispersive X-ray analysis (EDX), X-ray Photoelectron Spectroscopy (XPS) and Raman spectroscopy analyses were performed on the tribofilms to understand the tribochemical interactions between oil additives and the a-C:15H coating. This study show that the durability of the a-C:15H coating strongly depends on the selected additive package in the oils. In addition the effect of detergent, dispersant and antioxidants on the performance of the molybdenum-based friction modifier (Mo-FM) and ZDDP anti-wear additive was investigated and results are reported in this paper.
机译:类金刚石碳(DLC)涂层具有出色的摩擦学性能,例如低摩擦性和良好的耐磨性,在汽车零部件的许多应用中显示出极好的前景。这会影响改进的燃油经济性和发动机组件的耐用性。关于DLC涂层的干式滑动,在润滑触点中较少的报道了很多工作,因此,有必要进一步了解润滑DLC触点的摩擦化学。市售的油通常经过优化可在黑色金属表面上使用。以前对DLC润滑触点的研究倾向于使用模型油系统,而不是完全配制的润滑剂,由此产生了有趣的润滑机理图。优化表面和一组润滑剂添加剂之间的相容性可导致出色的耐久性(磨损)以及增加的燃油经济性(低摩擦)。在这项工作中,已经研究了在边界润滑条件下DLC涂层的摩擦和磨损性能,并将其摩擦性能与未涂层钢系统的摩擦性能进行了比较。使用销钉板上的三硼酸酯进行实验,使用高速钢(HSS)M2级板,该板涂覆有15 at。%的氢化DLC(a-C:15H)抵着铸铁销滑动。本研究中使用了III类矿物基础油,IV类全合成PAO和四种不同的全配方油。此外,还使用光学和扫描电子显微镜(SEM)观察磨损痕迹并评估涂层的耐久性。在摩擦膜上进行了能量色散X射线分析(EDX),X射线光电子能谱(XPS)和拉曼光谱分析,以了解油添加剂与a-C:15H涂层之间的摩擦化学相互作用。这项研究表明,a-C:15H涂层的耐用性在很大程度上取决于所选择的润滑油中的添加剂包。此外,还研究了清洁剂,分散剂和抗氧化剂对钼基摩擦改进剂(Mo-FM)和ZDDP耐磨添加剂性能的影响,并在本文中进行了报道。

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