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Additive influence on wear and friction performance of environmentally adapted lubricants

机译:对环境适应性润滑剂的磨损和摩擦性能的附加影响

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摘要

In this paper, the influence of concentration level and chemical composition of three different additive types on friction and wear coefficient are presented for a synthetic ester base fluid and a mineral base oil. One extreme-pressure (EP), two antiwear (AW) and two yellow metal passivator (Cu-passivators) additives were used. Factorial experimental design was used as the basis for a systematic evaluation of wear rates under mixed and boundary lubrication conditions. A total of 33 different lubricant blends were tested in a Plint and Partner High Frequency Friction Machine. For the synthetic ester, the extreme-pressure (EP) additive, containing phosphorus and nitrogen, was found to be much more effective in reducing wear than either of the two antiwear (AW) additives tested. In fact, the AW and Cu-passivator additives made little or no contribution to the wear protection in most of the cases studied. A synergy effect between the three additive combinations was observed only for the reference mineral oil blend. A significant difference between the antiwear performance of the test lubricants was found. This study suggests that the traditional "AW" and "EP" labels associated with commonly used additives are poor aids when designing of ester based lubricants.
机译:本文提出了三种不同添加剂类型的浓度水平和化学组成对合成酯基础油和矿物基础油的摩擦和磨损系数的影响。使用了一种极压(EP),两种抗磨(AW)和两种黄色金属钝化剂(铜钝化剂)添加剂。析因实验设计被用作在混合和边界润滑条件下系统评估磨损率的基础。在Plint and Partner高频摩擦机中测试了总共33种不同的润滑剂混合物。对于合成酯,发现含有磷和氮的极压(EP)添加剂比两种测试的抗磨(AW)添加剂中的任一种在减少磨损方面更为有效。实际上,在大多数研究的情况下,AW和Cu钝化剂添加剂对磨损保护的贡献很小或没有贡献。仅对于参考矿物油混合物,观察到三种添加剂组合之间的协同作用。发现测试润滑剂的抗磨性能之间存在显着差异。这项研究表明,在设计酯基润滑剂时,与常用添加剂相关的传统“ AW”和“ EP”标签效果不佳。

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