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Molecular design of advanced lubricant base fluids : hydrocarbon-mimicking ionic liquids

机译:高级润滑剂基础液的分子设计:仿烃离子液体

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摘要

This paper describes the molecular design and tribological evaluation of novel room-temperature ionic liquid (RTIL) lubricants{,} abbreviated as P-SiSOs. The RTILs are designed to mimic hydrocarbons{,} in order to ensure their compatibility with existing tribosystems as well as enable use of conventional additives. Steel-on-steel ball-on-flat reciprocating tribotests performed under atmospheric conditions show that the neat P-SiSOs exhibit favorable performances{,} resulting in friction and wear significantly lower than those in the case of the perfluoropolyether lubricants used as references. Tribotests performed at elevated loads and temperatures indicate the formation of friction-reducing boundary films of the neat P-SiSOs. The tribological performance of the P-SiSO is improved further by the incorporation of additives conventionally used in hydrocarbon oils. When used in a concentration of 5 wt%{,} the additives glycerol monooleate{,} dibenzyl disulfide{,} and oleylamine improve the tribological characteristics of P-SiSO. These results indicate that molecular-designed hydrocarbon-mimicking RTIL lubricants can exhibit suitable performances in the neat form and that their performances can be improved further by using conventional additives{,} as in the case of hydrocarbon base oil-additive systems.
机译:本文介绍了缩写为P-SiSOs的新型室温离子液体(RTIL)润滑剂{,}的分子设计和摩擦学评估。 RTIL旨在模拟碳氢化合物{,},以确保其与现有摩擦系统的相容性,并能够使用常规添加剂。在大气条件下进行的钢对钢平面球往复摩擦试验表明,纯P-SiSOs表现出良好的性能{,},导致摩擦和磨损远低于使用全氟聚醚润滑剂作为参考的情况。在升高的载荷和温度下进行的摩擦试验表明,形成了纯净的P-SiSOs降低摩擦的边界膜。通过加入通常在烃油中使用的添加剂,可以进一步提高P-SiSO的摩擦学性能。当以5重量%的浓度{使用}时,添加剂甘油单油酸酯{,}二苄基二硫化物{}和油胺改善了P-SiSO的摩擦学特性。这些结果表明,分子设计的模仿烃类的RTIL润滑剂可以以纯净形式表现出合适的性能,并且通过使用常规添加剂{,}可以进一步改善其性能,就像在烃基油添加剂体系中一样。

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