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Real contact temperatures as the criteria for the reactivity of diamond-like-carbon coatings with oil additives

机译:实际接触温度是类金刚石碳涂料与油添加剂反应性的标准

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摘要

The operating conditions under which chemical reactions between diamond-like-carbon (DLC) coatings and oil additives occur and the main driving forces, i.e., the "activation criteria" for these chemical reactions, have not yet been defined. In order to clarify the difference between the "test" temperature and "real" contact temperature, and to determine the effect of the real contact temperature for these reactions, we have calculated the contact temperatures using two well-known models and compare them with results of tribological experiments and some state-of-the-art analyses of worn surfaces. The results suggest that the actual surface temperatures are 100-130 ℃ higher than the test temperatures. A contact temperature of about 250-260 ℃ was found to be the required key activation criterion for chemical reactions between the dialkyl dithiophosphate extreme-pressure (EP) additive and the DLC coating. Gradual formation of a tribochemical protective film from phosphates and organic sulphur/sulphates suggests a lower chemical reactivity and slower formation of the "optimal" tribochemical protective layer on DLC coatings than on steels. No tribological effect of anti-wear (AW) or EP additives could be found on the DLC coatings when the surface temperatures were below 120-140 ℃. The temperature-induced graphitisation of the DLC that occurred in the contacts with the base oils, however, require about 250 ℃ of contact temperature. Lower surface temperatures or the use of additives suppressed this graphitisation.
机译:尚未定义类金刚石碳(DLC)涂层和油添加剂之间发生化学反应的操作条件以及这些化学反应的主要驱动力,即“活化标准”。为了弄清“测试”温度和“实际”接触温度之间的差异,并确定实际接触温度对这些反应的影响,我们使用两种众所周知的模型计算了接触温度并将它们与结果进行比较摩擦学实验和磨损表面的一些最新分析。结果表明,实际表面温度比测试温度高100-130℃。发现约250-260℃的接触温度是二烷基二硫代磷酸盐极压(EP)添加剂与DLC涂层之间化学反应的关键激活标准。由磷酸盐和有机硫/硫酸盐逐渐形成的摩擦化学保护膜表明,与钢相比,DLC涂层的化学反应性较低,“最佳”摩擦化学保护层的形成较慢。当表面温度低于120-140℃时,在DLC涂层上没有发现抗磨(AW)或EP添加剂的摩擦学作用。与基础油接触时,温度引起的DLC石墨化反应需要约250℃的接触温度。较低的表面温度或使用添加剂抑制了这种石墨化作用。

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  • 来源
    《Thin Solid Films》 |2010年第8期|2029-2036|共8页
  • 作者

    M. Kalin; J. Vizintin;

  • 作者单位

    Center for Tribology and Technical Diagnostics, University of Ljubljana, Bogisiceva 8, 1000 Ljubljana, Slovenia;

    rnCenter for Tribology and Technical Diagnostics, University of Ljubljana, Bogisiceva 8, 1000 Ljubljana, Slovenia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    diamond like carbon; contact temperature; lubrication; additives; oil;

    机译:钻石状碳接触温度润滑添加剂;油;

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