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首页> 外文期刊>Tribology letters >Effect of Counterparts and Applied Load on the Tribological Behavior of the Graphene-Nickel Matrix Self-Lubricating Composite
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Effect of Counterparts and Applied Load on the Tribological Behavior of the Graphene-Nickel Matrix Self-Lubricating Composite

机译:对应对应力对石墨烯 - 镍基复合材料的摩擦学行为的影响

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摘要

Recently, an in-situ method was proposed to fabricate the graphene-nickel matrix (G-Ni) composite by direct growth of few-layer graphene in bulk nickel, achieving the uniform dispersion of graphene into metal matrix. In this paper, G-Ni composite was prepared by in-situ powder metallurgy method followed by a repressing-annealing process to improve densification of specimen. The tribological behavior of the composite sliding against GCr 15, Si3N4, and ZrO2 balls was comparatively investigated under dry friction condition. The results show that the friction coefficient and wear rate are dependent on the counterparts and the applied load. The G-Ni/ZrO2 tribo-pair exhibits the lowest friction coefficient (0.52) and wear rate (9.58x10(-5) mm(3)/Nm) than other tribo-pairs, which can be attributed to good lubrication and protection of the tribofilms formed by tribo-chemical reaction at interface. The friction coefficient for G-Ni/ZrO2 tribo-pair first decreases to a minimum (0.41) at 6N load and then increases associating quite large fluctuations with increasing load. The formation and breakdown of tribofilms are mainly responsible for the tribological behavior at different loads.
机译:最近,提出了一种原位方法,通过在块状镍中直接生长几层石墨烯来制造石墨烯 - 镍基质(G-Ni)复合材料,实现石墨烯均匀分散到金属基质中。本文通过原位粉末冶金方法制备了G-Ni复合材料,然后是抑制退火过程,以改善样品的致密化。在干摩擦条件下相对研究了对GCR 15,Si3N4和ZrO2球的复合材料滑动的摩擦学行为。结果表明,摩擦系数和磨损率取决于对应物和施加的载荷。 G-Ni / ZrO2摩擦对表现出最低的摩擦系数(0.52)和磨损率(9.58x10(-5)mm(3)/ nm),而不是其他摩擦对,这可能归因于良好的润滑和保护在界面中的摩擦化学反应形成的呋喃二呋喃。 G-Ni / ZrO2摩擦系数在6N负载下首先降低至最小(0.41),然后随着载荷的增加,增加相当大的波动。 Tricofilms的形成和分解主要负责不同载荷的摩擦学行为。

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