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Influences of Space Irradiations on the Structure and Properties of MoS2/DLC Lubricant Film

机译:空间辐照对MoS2 / DLC润滑膜结构和性能的影响

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摘要

This work aims at revealing the influences of space irradiations [including the atomic oxygen (AO) and ultraviolet (UV) irradiations] on the MoS2/DLC solid lubricating film. The changes on microstructure, mechanical and vacuum tribological properties of nanocomposite films after irradiations have been systematically investigated. It is found that the AO irradiation mainly induces the surface oxidation of the film, whereas some oxygen atoms can erode the bulk film along the defects highway; thus, the connectivity of carbon atoms is improved. In contrast, the UV irradiation may break the carbon bonds and functional groups, as well as induce a secondary radical formation, which accelerates the broken and recombination of the carbon chain scission. Specially, the films after irradiations exhibit much higher hardness (>19 GPa), lower friction coefficient (<0.02) and wear rate compared with the original one. The excellent tribological properties of the films after irradiations can be attributed to the synergistic effect of the high sp(3) C content and good crystallization of MoS2 in the film, which cause the lower carbon and higher MoS2 content in the wear debris at the contact interface.
机译:这项工作旨在揭示空间照射(包括原子氧(AO)和紫外线(UV)照射)对MoS2 / DLC固体润滑膜的影响。已经系统地研究了辐照后纳米复合薄膜的微观结构,机械和真空摩擦学性能的变化。结果表明,AO辐照主要引起薄膜的表面氧化,而一些氧原子会沿缺陷道侵蚀整个薄膜。因此,改善了碳原子的连通性。相比之下,UV辐射可能会破坏碳键和官能团,并诱导形成次级自由基,从而加速碳链断裂的断裂和重组。特别是,辐照后的薄膜与原始薄膜相比具有更高的硬度(> 19 GPa),更低的摩擦系数(<0.02)和磨损率。辐照后薄膜的优异摩擦学性能可归因于高sp(3)C含量和薄膜中MoS2的良好结晶的协同效应,这导致接触点磨损碎片中的碳含量较低和MoS2含量较高接口。

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