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Tribological characteristics of gold films deposited on metals by ion plating and vapor deposition

机译:通过离子镀和气相沉积在金属上沉积的金膜的摩擦学特性

摘要

The graded interface between an ion-plated film and a substrate is discussed as well as the friction and wear properties of ion-plated gold. X-ray photoelectron spectroscopy (XPS) depth profiling and microhardness depth profiling were used to investigate the interface. The friction and wear properties of ion-plated and vapor-deposited gold films were studied both in an ultra high vacuum system to maximize adhesion and in oil to minimize adhesion. The results indicate that the solubility of gold on the substrate material controls the depth of the graded interface. Thermal diffusion and chemical diffusion mechanisms are thought to be involved in the formation of the gold-nickel interface. In iron-gold graded interfaces the gold was primarily dispersed in the iron and thus formed a physically bonded interface. The hardness of the gold film was influenced by its depth and was also related to the composition gradient between the gold and the substrate. The graded nickel-gold interface exhibited the highest hardness because of an alloy hardening effect. The effects of film thickness on adhesion and friction were established.
机译:讨论了离子镀膜和基材之间的渐变界面,以及离子镀金的摩擦和磨损性能。 X射线光电子能谱(XPS)深度分布图和显微硬度深度分布图被用来研究界面。在超高真空系统中使附着力最大化,在油中使附着力最小化,研究了离子镀金和气相沉积金膜的摩擦和磨损性能。结果表明,金在基底材料上的溶解度控制渐变界面的深度。热扩散和化学扩散机制被认为与金-镍界面的形成有关。在铁-金渐变界面中,金主要分散在铁中,因此形成了物理结合的界面。金膜的硬度受其深度的影响,并且还与金和基底之间的组成梯度有关。由于合金的硬化作用,分级的镍-金界面表现出最高的硬度。建立了膜厚对附着力和摩擦力的影响。

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