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Tribological behavior of ionic liquid-based magnetorheological fluids in steel and polymeric point contacts

机译:离子液体基磁流变液在钢和聚合物点接触中的摩擦学行为

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摘要

A range of ionic liquids (ILs)-based magnetorheological (MR) fluids are formulated and their tribological properties investigated in steel-steel, polyoxymethylene-polyoxymethylene POM-POM and polydi-methylsiloxane-polydimethylsiloxane PDMS-PDMS point contacts. The effect of particles in dispersion is investigated by measuring neat ILs in the same tribopairs. The boundary lubrication performance of neat ILs is dominated by the Lambda ratio. A correlation is found between the contact angle, wear-scar diameters and friction coefficient. In POM-POM contacts, NTf_2~- containing ILs do exhibit the largest friction meanwhile full film lubrication occurs in PDMS-PDMS contacts. MR fluid lubricated contacts operate within the boundary regime. However, friction levels are significantly lower than polyalphao-lefin PAO based conventional MR fluids. SCN~--based ILs do provide the largest friction coefficients.
机译:配制了一系列基于离子液体(ILs)的磁流变(MR)流体,并在钢,聚甲醛-聚甲醛POM-POM和聚二甲基硅氧烷-聚二甲基硅氧烷PDMS-PDMS点接触中研究了它们的摩擦学性能。通过测量相同摩擦对中纯净的IL来研究颗粒在分散液中的作用。纯净IL的边界润滑性能主要由Lambda比值决定。在接触角,磨损痕迹直径和摩擦系数之间发现相关性。在POM-POM触点中,含NTf_2〜的IL确实表现出最大的摩擦力,而在PDMS-PDMS触点中则发生了全膜润滑。 MR流体润滑触点在边界范围内运行。然而,摩擦水平明显低于基于聚α-烯烃的PAO的常规MR流体。基于SCN〜的IL确实提供了最大的摩擦系数。

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