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Tribological performance of Graphene/Carbon nanotube hybrid reinforced Al2O3 composites

机译:石墨烯/碳纳米管混杂增强Al2O3复合材料的摩擦学性能

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摘要

Tribological performance of the hot-pressed pure Al2O3 and its composites containing various hybrid contents of graphene nanoplatelets (GNPs) and carbon nanotubes (CNTs) were investigated under different loading conditions using the ball-on-disc method. Benchmarked against the pure Al2O3, the composite reinforced with a 0.5 wt% GNP exhibited a 23% reduction in the friction coefficient along with a promising 70% wear rate reduction, and a hybrid reinforcement consisting of 0.3 wt.% GNPs + 1 wt.% CNTs resulted in even better performance, with a 86% reduction in the wear rate. The extent of damage to the reinforcement phases caused during wear was studied using Raman spectroscopy. The wear mechanisms for the composites were analysed based on the mechanical properties, brittleness index and microstructural characterizations. The excellent coordination between GNPs and CNTs contributed to the excellent wear resistance property in the hybrid GNT-reinforced composites. GNPs played the important role in the formation of a tribofilm on the worn surface by exfoliation; whereas CNTs contributed to the improvement in fracture toughness and prevented the grains from being pulled out during the tribological test.
机译:使用圆盘法研究了在不同负载条件下热压纯Al2O3及其复合材料的石墨烯纳米片(GNPs)和碳纳米管(CNTs)的混合含量的摩擦学性能。以纯Al2O3为基准,用0.5%(重量)GNP增强的复合材料的摩擦系数降低了23%,磨损率有望降低了70%,而由0.3%(重量)%的GNPs ++ 1%(重量)组成的混合增强材料碳纳米管具有更好的性能,磨损率降低了86%。使用拉曼光谱研究了磨损期间对增强相造成的破坏程度。基于力学性能,脆性指数和微观结构特征分析了复合材料的磨损机理。 GNP和CNT之间的出色配位有助于杂化GNT增强复合材料具有出色的耐磨性。 GNP在脱落的磨损表面形成摩擦膜方面起着重要作用。碳纳米管有助于提高断裂韧性,并防止在摩擦学测试中拉出晶粒。

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