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Mechanical and tribological properties of sputtered Mo-Se-C coatings

机译:溅射的Mo-Se-C涂层的机械和摩擦学性能

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摘要

Transition metal dichalcogenides belong to the more developed class of materials for solid lubrication. However, the main limitation of these materials is the detrimental effect of air humidity causing an increase in the friction. In previous works, molybdenum diselenide has been shown to be a promising coating retaining low friction even in very humid environment. In this study, Mo-Se-C films were deposited by sputtering from a C target with pellets of MoSe{sub}2. Besides the evaluation of the chemical composition, the structure, the morphology, the hardness and the cohesion/adhesion, special attention was paid to the tribological characterization. The C content varied from 29 to 68 at.% which led to a progressive increase of the Se/Mo ratio. As a typical trend, the hardness increases with increasing C content. The coatings were tested at room temperature with different air humidity levels and at temperatures up to 500 ℃ on a pin-on-disc tribometer. The friction coefficient of Mo-Se-C coatings increased with air humidity from ~0.04 to ~0.12, while it was as low as 0.02 at temperature range 100-250 ℃. The coatings were very sensitive to the elevated temperature being worn out at 300 ℃ due to adhesion problems at coating-titanium interface.
机译:过渡金属二卤化物属于固体润滑材料中较发达的一类。但是,这些材料的主要局限性是空气湿度的有害影响,导致摩擦力增加。在以前的工作中,二硒化钼已被证明是一种很有前途的涂层,即使在非常潮湿的环境中也能保持低摩擦。在这项研究中,通过用MoSe {sub} 2的颗粒从C靶溅射沉积Mo-Se-C膜。除了评估化学成分,结构,形态,硬度和内聚/附着力外,还特别注意了摩擦学特性。 C含量从29at%至68at。%变化,这导致Se / Mo比逐渐增加。作为典型趋势,硬度随着C含量的增加而增加。在针式圆盘摩擦计上,在室温,不同的空气湿度水平和最高500℃的温度下对涂层进行了测试。 Mo-Se-C涂层的摩擦系数随空气湿度从〜0.04增加到〜0.12,而在100-250℃的温度范围内低至0.02。由于涂层与钛界面的粘附性问题,涂层对300℃的高温磨损非常敏感。

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