首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >DLC-based solid-liquid synergetic lubricating coatings for improving tribological behavior of boundary lubricated surfaces under high vacuum condition
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DLC-based solid-liquid synergetic lubricating coatings for improving tribological behavior of boundary lubricated surfaces under high vacuum condition

机译:基于DLC的固液协同润滑涂层,可改善高真空条件下边界润滑表面的摩擦学性能

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In the present study, five kinds of liquid lubricants, including MACs, IL, Zdol, PAO and silicon oil, were homogeneously spun on DLC coatings and consequently the DLC-based solid-liquid lubricating dual-layer coatings were successfully fabricated. The tribological behaviors of the DLC/steel combinations and steel/steel combinations lubricated with above five liquid lubricants were comparatively investigated using a high-vacuum tribometer simulated for space environments. The SEM, 3D surface profiler, Raman spectrum and EDS were employed to analyze the worn surfaces of the friction pairs. The analysis results showed that three kinds of solid-liquid lubricating coatings including MACs, IL, Zdol exhibited excellent tribological properties, in which DLC/steel combinations lubricated with these three liquid lubricants exhibited smoother running-in and much lower steady-state friction than steel/steel combinations, and the wear rates of DLC/steel combinations were in the range of 1-3 orders of magnitude lower than that of steel/steel combinations. But for PAO and silicon oil, they demonstrated the poorest tribological behaviors with high friction coefficients and wear rates. Such significant improvement in tribological performance of DLC-based solid-liquid lubricating dual-layer coatings under high vacuum can be attributed to the synergy lubrication mechanism by the combination of the solid lubrication effect of DLC film and the boundary lubrication of the liquid lubricants. Moreover, the differences among different liquid lubricants in tribological properties of DLC-based solid-liquid lubricating dual-layer coatings under high vacuum were possible due to the differences in viscosity and components of the five kinds of liquid lubricants.
机译:在本研究中,将五种液体润滑剂,包括MACs,IL,Zdol,PAO和硅油均匀地纺制在DLC涂层上,从而成功地制造了基于DLC的固液润滑双层涂层。使用针对空间环境模拟的高真空摩擦计,对DLC /钢组合和用以上五种液体润滑剂润滑的钢/钢组合的摩擦学性能进行了比较研究。使用SEM,3D表面轮廓仪,拉曼光谱和EDS分析摩擦副的磨损表面。分析结果表明,包括MACs,IL,Zdol在内的3种固液润滑涂层均表现出优异的摩擦学性能,其中用这3种液体润滑剂润滑的DLC /钢组合的磨合更为平稳,稳态摩擦力远低于钢。 /钢组合,并且DLC /钢组合的磨损率比钢/钢组合的磨损率低1-3个数量级。但是对于PAO和硅油,它们表现出最差的摩擦学行为,具有高摩擦系数和高磨损率。 DLC基固液润滑双层涂层在高真空下的摩擦学性能如此显着改善,可归因于DLC膜的固体润滑作用与液体润滑剂的边界润滑相结合的协同润滑机理。此外,由于五种液体润滑剂的粘度和组分的差异,在高真空下不同的液体润滑剂之间在DLC基固液润滑双层涂层的摩擦学性能上可能存在差异。

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