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Surface Modifications Induced By The Friction Of Graphites Against Steel

机译:石墨对钢的摩擦引起的表面改性

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摘要

Graphite is a well-known, multipurpose material used in many applications including tribology, electrochemistry and metallurgy. In this study, we focused our attention on the modifications of the surfaces of graphite pins, one natural and two synthetic, in dynamic contact against steel. Specifically, we explored the effect of the normal load applied to the contact, on the friction behaviour of graphites. The results of the series of tests under "low" loads indicated that the friction coefficient and the transfer film forming tendency increased with increasing load, due to the modification of the morphology of the contact area. Whereas experiments under "high" loads revealed the existence of a critical load at which a sudden decrease of both the coefficient of friction and the transfer film forming tendency is observed. The reorientation of the graphitic planes is supposed to be at the origin of this phenomenon.
机译:石墨是一种众所周知的多用途材料,可用于许多应用,包括摩擦学,电化学和冶金学。在这项研究中,我们将注意力集中在与钢进行动态接触的石墨针(一种天然和两种合成)表面的改性上。具体来说,我们探讨了施加在接触件上的法向载荷对石墨摩擦性能的影响。在“低”负荷下的一系列试验的结果表明,由于接触区域形态的改变,摩擦系数和转移膜的形成趋势随着负荷的增加而增加。而在“高”负荷下的实验表明存在临界负荷,在该临界负荷下观察到摩擦系数和转移膜形成趋势突然降低。石墨平面的重新取向被认为是这种现象的根源。

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