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Comparative tribological behaviors of TiN-, CrN- and MoN-Cu nanocomposite coatings

机译:TiN-,CrN-和MoN-Cu纳米复合涂层的比较摩擦学行为

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摘要

The purpose of this study is to investigate comparative tribological behaviors of Cu-doped TiN, CrN, and MoN coatings under a wide range of dry sliding conditions. TiN and CrN coatings have been developed and used by industry in numerous tribological applications including, machining, manufacturing and transportation. In contrast, MoN has attracted very little attention as a tribological coating in the past, despite being much harder than both TiN and CrN. In this paper, we will mainly concentrate on the Cu-doped versions of these coatings whose tribological properties have not yet been fully explored. The results of this study have confirmed that the addition of Cu into TiN, CrN and MoN coatings has indeed modified the grain size and morphology, but had a beneficial effect only on the friction and wear behavior of MoN. The tribological behavior of CrN did not change much with the addition of Cu but that of TiN became worse after Cu additions. Raman spectroscopy technique was used to elucidate the structural and chemical natures of the oxide films forming on sliding surfaces of Cu-doped TiN, CrN and MoN films. The differences in the friction and wear behavior of Cu-doped TiN, CrN, and MoN is fully considered and a mechanistic explanation has been provided using the principles of a crystal chemical model that can relate the lubricity of complex oxides to their ionic potentials.
机译:这项研究的目的是研究在宽范围的干滑条件下掺Cu的TiN,CrN和MoN涂层的比较摩擦学行为。 TiN和CrN涂层已被工业界开发并用于许多摩擦学应用中,包括机械加工,制造和运输。相反,尽管MoN比TiN和CrN都坚硬得多,但MoN过去作为摩擦学涂层一直很少受到关注。在本文中,我们将主要集中于这些涂层的铜掺杂版本,其摩擦学性能尚未得到充分研究。这项研究的结果证实,在TiN,CrN和MoN涂层中添加Cu确实改变了晶粒尺寸和形态,但仅对MoN的摩擦和磨损行为具有有益作用。 Cr的摩擦学行为随添加Cu的变化不大,但TiN在添加Cu后变差。拉曼光谱技术用于阐明在掺杂Cu的TiN,CrN和MoN薄膜的滑动表面上形成的氧化膜的结构和化学性质。充分考虑了掺杂Cu的TiN,CrN和MoN的摩擦和磨损行为的差异,并使用晶体化学模型的原理提供了机理解释,该原理可以将复杂氧化物的润滑性与其离子电势相关联。

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