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首页> 外文期刊>Tribology Online >Comparing Tribochemical Film Formation and Durability at Steel and CrN Coating Interface in Boundary Lubrication
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Comparing Tribochemical Film Formation and Durability at Steel and CrN Coating Interface in Boundary Lubrication

机译:在边界润滑中比较钢和CrN涂层界面上的摩擦化学膜形成和耐久性

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摘要

One of the main challenges that engine oil manufacturers are now facing is to reduce friction losses while at the same time increasing the durability of engine components. New materials are being used for engine components, alongside and to replace conventional ferrous materials. More components are being coated with low friction and highly durable coatings. Lubricants are required to lubricate these surfaces as effectively as conventional materials, with no environmental impact. Knowing that the additive package in today’s lubricants is optimised for lubricating conventional ferrous materials it is of paramount importance to understand how effective the current additives are in lubricating non-ferrous materials.The aim of the current paper is to understand the formation and durability of tribofilms on a Chromium Nitride (CrN) coating formed from two conventional additives; Zinc Dialkyldithiophosphate (ZDDP) and Molybdenum Dialkyl Dithiocarbamate (MoDTC) additives. Tribofilm formation was studied by testing model lubricants containing ZDDP and MoDTC additives on the CrN coating in boundary lubrication, taking the performance on a ferrous system as a reference. The durability was assessed by assessing the tribocouple friction performance in base oil once the tribofilm was formed. Wear scars were fully chemically characterised using X-ray Photoelectron Spectroscopy (XPS). The study shows that the chemical nature of the tribofilms formed on steel and CrN is similar. In both materials, tribofilms were shown to have comparable durability. The factors which affect tribofilm durability and formation, and the reason why ferrous systems and CrN show similarities are discussed.
机译:机油制造商现在面临的主要挑战之一是减少摩擦损失,同时提高发动机部件的耐用性。新材料被用于发动机部件,并代替传统的黑色材料。更多的组件正在使用低摩擦和高度耐用的涂层进行涂覆。与传统材料一样,在不影响环境的情况下,需要润滑剂来润滑这些表面。知道当今润滑剂中的添加剂包已经过优化,可以润滑常规黑色金属材料,因此了解当前添加剂在润滑有色金属材料方面的有效性至关重要。本文旨在了解摩擦膜的形成和耐久性。由两种常规添加剂形成的氮化铬(CrN)涂层;二烷基二硫代磷酸锌(ZDDP)和二烷基二硫代氨基甲酸钼(MoDTC)添加剂。通过在边界润滑中在CrN涂层上测试包含ZDDP和MoDTC添加剂的模型润滑剂来研究摩擦膜的形成,并以在黑色金属系统上的性能为参考。形成摩擦膜后,通过评估基础油中的摩擦偶摩擦性能来评估耐久性。磨损痕迹使用X射线光电子能谱(XPS)进行了完全化学表征。研究表明,在钢和CrN上形成的摩擦膜的化学性质相似。在两种材料中,摩擦膜均显示出相当的耐久性。讨论了影响摩擦膜耐久性和形成的因素,以及铁系统和CrN表现出相似性的原因。

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