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Friction properties of WS2/MoS2 multilayer films under vacuum environment

机译:真空环境下WS2 / MoS2多层膜的摩擦性能

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We fabricated WS2/MoS2 nanometer-scale multilayer films (superlattice-structured multilayer films) with dry lubricating characteristics using multitarget RF sputtering. Superlattice structures are obtained by layering two or more materials in a regular periodic structure at a thickness of several atoms or several tens of atoms. Superlattice structured film is expected to exhibit good mechanical properties, such as high hardness and high stiffness, resulting in low friction and long endurance life in comparison to those of the individual single-layer materials. In the previous study, this WS2/MoS2 multilayer film showed significantly improved tribological performance in ambient air in comparison to the single-layer MoS2 or WS2 films. To clarify the tribological properties of this multilayer further, sliding friction experiments have been conducted with WS2/MoS2 films formed on silicon substrates in contact with 440 C stainless steel balls under vacuum at room temperature and at a high temperature of 523 K. The results obtained showed clearly that the friction characteristics and friction endurance of these multilayer films were more excellent under a vacuum of 10(-5) Pa than under atmospheric conditions. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们使用多靶RF溅射技术制备了具有干润滑特性的WS2 / MoS2纳米级多层膜(超晶格结构多层膜)。超晶格结构是通过将两种或多种材料以规则的周期性结构以数个原子或数十个原子的厚度层叠而获得的。与单独的单层材料相比,超晶格结构化的薄膜有望表现出良好的机械性能,例如高硬度和高刚度,从而导致低摩擦和长寿命。在先前的研究中,与单层MoS2或WS2膜相比,这种WS2 / MoS2多层膜在环境空气中显示出显着改善的摩擦学性能。为了进一步阐明该多层膜的摩擦学性能,在室温和523 K的真空下,对与440 C不锈钢球接触的硅基板上形成的WS2 / MoS2膜进行了滑动摩擦实验。清楚地表明,这些多层膜的摩擦特性和摩擦耐久性在10(-5)Pa的真空下比在大气条件下更优异。 (C)2004 Elsevier B.V.保留所有权利。

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