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Graphene: An Effective Lubricant for Tribological Applications

机译:石墨烯:摩擦学应用的有效润滑剂

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The objective of this review paper is to investigate the basic tribological behavior of graphene, the first existing 2D material and to enhance its performance as a self-lubricating material. The significant and prospective impact of this new class of material was first acknowledged in 2004 by Geim and Konstantin Novoselov who were awarded Noble prize for their discovery and development of graphene in 2010. In previous decades, reducing friction coefficient and wear-related failures in mechanical systems has gained serious attention due to friction's adverse impacts on effective life and durability of the mechanical systems. To reduce the friction and wear mechanism in the moving mechanical systems, the research proceeds in the development of novel materials, coatings, and lubricants (both liquid and solid) which have the potential of reducing friction and wear in materials. Despite intense research and development efforts on graphene for numerous existing as well as future applications, its tribological potential as a lubricant is still relatively uncharted. In this review, we provide relevant research of recent tribological studies on graphene especially, its use as a self-lubricating solid or as an additive for lubricating oils. A comprehensive review is provided with the aim to analyze such properties of graphene.
机译:本文的目的是探讨石墨烯,首款现有2D材料的基本摩擦学行为,并提高其作为自润滑材​​料的性能。这类新的材料的重大和预期影响是在2010年被授予他们的发现和开发石墨烯的崇高奖励的2004年的重要和预期影响。在过去几十年中,减少了机械中的摩擦系数和与磨损相关的失败由于摩擦对机械系统的有效寿命和耐用性的影响,系统由于摩擦的不利影响而受到严重的关注。为了减少移动机械系统中的摩擦和磨损机制,研究在新型材料,涂料和润滑剂(液体和固体)的开发中进行了,这具有减少摩擦和材料的磨损。尽管在Graphene上进行了激烈的研究和开发工作,但对于许多现有的和未来的应用,其润滑剂的摩擦学潜力仍然相对明确。在本综述中,我们提供对最近石墨烯的摩擦学研究的相关研究,特别是其用作自润滑固体或作为润滑油的添加剂。提供全面审查,旨在分析石墨烯的这种性质。

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