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Investigation of tribological characteristics of nickel alloy-based solid-lubricating composites at elevated temperatures under vacuum

机译:真空升高温度下镍合金基固体润滑复合材料的摩擦学特性研究

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摘要

The development of a high-performance solid-lubricating composite with excellent self-lubricity over a broad temperature range in vacuum is significant to solve the frictional problems of spatial mechanisms. In this study, the vacuum tribological behaviors of nickel-matrix/Ag/(Ca, Ba)F2/graphite (0–2 wt%) composites were studied from 25 to 800 °C. The results show that the synergistic effects of solid lubricants can significantly improve the tribological properties of the composites in vacuum, with the graphite content contributing considerably. For 2 wt% graphite, a low friction coefficient (0.14–0.25) and the lowest wear rate ((0.12?4.78)×10~(?5)mm~(3)·N~(?1)·m~(?1)) were observed in vacuum over the entire testing temperature range. Moreover, the wear mechanisms were clarified via analysis of the chemical composition and morphologies of the sliding surfaces.
机译:在真空中具有优异的自润滑性具有优异的自润滑性的高性能固体润滑性,可以解决空间机制的摩擦问题。 在该研究中,研究了25至800℃的镍基 - 基质/ Ag /(Ca,Ba)F2 /石墨(0-2wt%)复合材料的真空摩擦学行为。 结果表明,固体润滑剂的协同作用可以显着改善复合材料的摩擦学特性,其含石墨含量大大。 对于2wt%石墨,低摩擦系数(0.14-0.25)和最低磨损率((0.12≤4.78)×10〜(?5)mm〜(3)·n〜(?1)·m〜(? 1)在整个测试温度范围内真空观察到真空。 此外,通过分析滑动表面的化学成分和形态学来阐明磨损机制。

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