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Improving the tribological properties of NiAl matrix composites via hybrid lubricants of silver and graphene nano platelets

机译:通过银和石墨烯纳米片的混合润滑剂改善NiAl基复合材料的摩擦学性能

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摘要

This work presents a comprehensive study of the synergistic tribological effect of combined solid lubricants of silver and graphene nano platelets (GNPs). Moreover, it presents a comparative study of the tribological characteristics of NiAl (NA), NiAl-10 wt% silver (NAS), NiAl-1.5 wt% GNPs (NAG), NiAl-1.5 wt% GNPs-10 wt% silver (NAGS10) and NiAl-1.5 wt% GNPs-15 wt% silver (NAGS15) composites based on tribological and microstructural tests. The NAGS10 composite shows the lowest friction coefficients and the highest wear resistance among the whole composites at different sliding velocities and applied loads, while NA exhibits the highest friction coefficients and wear rates at the same sliding conditions. The microstructural tests of NAGS10 and NAGS15 composites reveal the formation of GNPs and silver enriched islands which act as the bearing areas and play the major role in loading transition. Furthermore, those islands ease the slipping of the graphene layers over the NiAl substrate.
机译:这项工作提出了综合研究银和石墨烯纳米血小板(GNPs)的组合固体润滑剂的协同摩擦作用。此外,它提供了对NiAl(NA),NiAl-10 wt%银(NAS),NiAl-1.5 wt%GNPs(NAG),NiAl-1.5 wt%GNPs-10 wt%银(NAGS10)的摩擦学特性的比较研究。 )和NiAl-1.5 wt%GNPs-15 wt%银(NAGS15)复合材料基于摩擦学和微观结构测试。在不同的滑动速度和施加的载荷下,NAGS10复合材料在整个复合材料中表现出最低的摩擦系数和最高的耐磨性,而在相同的滑动条件下,NA显示出最高的摩擦系数和磨损率。 NAGS10和NAGS15复合材料的微结构测试表明,形成了GNP和富银岛,它们充当了承载区域并在载荷转变中起着主要作用。此外,这些岛减轻了石墨烯层在NiAl衬底上的滑动。

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