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Influence of polymethacrylate viscosity index improvers on friction and wear of lubricant formulations

机译:聚甲基丙烯酸酯粘度指数改进剂对润滑剂配方摩擦磨损的影响

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Polyalkylmethacrylates (PAMAs) are widely used as viscosity index improvers and dispersant boosters in engine, transmission and hydraulic oils. They have been shown to be able to adsorb from oil solution on to metal surfaces, to produce thick, viscous boundary films. These films enhance lubricant film formation in slow speed and high temperature conditions and thus produce a significant reduction of friction and wear. In a recent systematic study a range of dispersant and non-dispersant PAMAs has been synthesized. The influence of different functionalities, molecular weights and architectures on both boundary film formation and friction has been explored using optical interferometry and friction-speed charting. From the results, guidelines have been developed for designing PAMAs having optimal boundary lubricating properties.In the current paper the film forming, friction and wear properties of solutions of two functionalised PAMAs is first described. Then the impact of different lubricant additives on these friction and wear properties is explored. A number of components from all major classes of additives commonly used in commercial DI packages have been investigated. The results help the performance of PAMAs in fully formulated oils to be predicted and thus their design to be optimized.
机译:聚烷基甲基丙烯酸酯(PAMAS)广泛用作发动机,传动和液压油中的粘度指数改进剂和分散剂助剂。他们已被证明能够从油溶液吸入金属表面,产生厚的粘性边界膜。这些薄膜在慢速和高温条件下增强润滑剂膜形成,从而显着降低摩擦和磨损。在最近系统的研究中,已经合成了一系列分散剂和非分散疫苗。利用光学干涉测量和摩擦速​​度绘制了不同函数,分子量和架构对边界膜形成和摩擦的影响。从结果中,已经开发了指南,用于设计具有最佳边界润滑性质的PAMA。本纸首先描述了两种功能化帕玛斯溶液的成膜,摩擦和磨损性能。然后探讨了不同润滑剂添加剂对这些摩擦和磨损性质的影响。已经研究了来自商业DI封装中常用的所有主要类添加剂的许多组分。结果有助于预设完全配制的油中的PAMAS,因此它们的设计优化。

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