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Recent advances in friction and lubrication of graphene and other 2D materials: Mechanisms and applications

机译:石墨烯和其他2D材料在摩擦和润滑方面的最新进展:机理和应用

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Two-dimensional materials having a layered structure comprise a monolayer or multilayers of atomic thickness and ultra-low shear strength. Their high specific surface area, in-plane strength, weak layer-layer interaction, and surface chemical stability result in remarkably low friction and wear-resisting properties. Thus, 2D materials have attracted considerable attention. In recent years, great advances have been made in the scientific research and industrial applications of anti-friction, anti-wear, and lubrication of 2D materials. In this article, the basic nanoscale friction mechanisms of 2D materials including interfacial friction and surface friction mechanisms are summarized. This paper also includes a review of reports on lubrication mechanisms based on the film-formation, self-healing, and ball bearing mechanisms and applications based on lubricant additives, nanoscale lubricating films, and space lubrication materials of 2D materials in detail. Finally, the challenges and potential applications of 2D materials in the field of lubrication were also presented.
机译:具有层状结构的二维材料包括原子厚度和超低剪切强度的单层或多层。它们的高比表面积,面内强度,薄弱的层-层相互作用和表面化学稳定性导致非常低的摩擦和耐磨性能。因此,二维材料引起了相当大的关注。近年来,在2D材料的减摩,抗磨和润滑的科学研究和工业应用中已经取得了很大的进步。本文总结了二维材料的基本纳米摩擦机理,包括界面摩擦和表面摩擦机理。本文还详细介绍了基于成膜,自愈和滚珠轴承机理的润滑机理以及基于润滑剂添加剂,纳米级润滑膜和2D材料的空间润滑材料的应用的报告。最后,还介绍了二维材料在润滑领域的挑战和潜在应用。

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