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Synergistic lubricating effect of graphene/ionic liquid composite material used as an additive

机译:用作添加剂的石墨烯/离子液体复合材料的协同润滑效应

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We prepared a graphene/ionic liquid (G/IL) composite material by the hybridization of G and an IL for use as a lubricating oil additive. The friction coefficient and wear volume of a base oil containing 0.04 wt% of the G/IL composite was reduced by 45% and 90%, respectively. Furthermore, the base oil containing the G/IL composite exhibited better lubricating properties than the base oil containing G, IL, or a mixture of IL and G at the same mass fraction. A synergistic lubrication mechanism was also revealed. The G/IL composite was adsorbed and deposited on the wear surface, forming a more ordered protective film and a unique tribochemical reaction film during rubbing. Therefore, the G/IL composite exhibited the synergistic lubricating effects of G and IL, which significantly improved the lubricating performance of the base oil. This study also suggested a way to limit the out-of-plane puckering of G at the macroscale.
机译:我们通过G和IL的杂交制备了石墨烯/离子液体(G / IL)复合材料,以用作润滑油添加剂。 含有0.04wt%的G / II复合材料的基础油的摩擦系数和磨损分别降低了45%和90%。 此外,含有G / IL复合材料的基础油表现出比含有G,IL或IL和G在相同质量级分的含量的基础油的润滑性质更好。 还揭示了协同润滑机制。 将G / IL复合材料吸附并沉积在磨损表面上,在摩擦过程中形成更有序的保护膜和独特的培养膜。 因此,G / IL复合材料表现出G和IL的协同润滑效应,其显着提高了基础油的润滑性能。 这项研究还建议了一种方法来限制在宏观上的平面外褶皱。

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