首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Friction modelling of tribonlm performance in a bench tribometer for automotive engine lubricants
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Friction modelling of tribonlm performance in a bench tribometer for automotive engine lubricants

机译:汽车发动机润滑剂台式摩擦计中三键性能的摩擦模型

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摘要

Research focusing on the initial stages of the development of an empirical model to predict friction in boundary and mixed lubrication conditions accounting for additive and surface interactions is reported in this article. The regression model was constructed by applying a fractional factorial design statistical approach. The model considers a typical friction modifier, molybdenum dithiocarbamate, in a model automotive engine lubricant also containing zinc dialkyldithiophosphate in a synthetic polyalphaolefin base oil under conditions representative of the cam and follower interface in an automotive engine. Operating temperature, sliding speed, load, initial surface roughness, and the initial lambda ratio were taken as the factors affecting tribological performance. The empirical model predicts friction at 95 per cent confidence level within the specific range of parameters considered in the experiments. Not surprisingly, molybdenum dithiocarbamate is mainly responsible for the reduction of friction of the tribofilm, whereas temperature, sliding speed, and load are the other significant parameters.
机译:本文报道了研究重点在于预测边界和混合润滑条件下的摩擦的经验模型的初始阶段,这些模型考虑了添加剂和表面的相互作用。回归模型是通过应用分数阶乘设计统计方法构建的。该模型考虑了典型的摩擦改进剂二硫代氨基甲酸钼,该模型是在代表汽车发动机的凸轮和从动件界面的条件下,在合成的聚α烯烃基油中还包含二烷基二硫代磷酸锌的模型汽车发动机润滑油。工作温度,滑动速度,载荷,初始表面粗糙度和初始拉姆达比被视为影响摩擦性能的因素。该经验模型预测,在实验考虑的特定参数范围内,摩擦将在置信度为95%的水平上进行。毫不奇怪,二硫代氨基甲酸钼主要负责减少摩擦膜的摩擦,而温度,滑动速度和负载是其他重要参数。

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