材料科学
润滑油
润滑
涂层
钽
二硫化钼
空格(标点符号)
超高真空
干润滑剂
沉积(地质)
空间环境
机械工程
航天器
复合材料
纳米技术
冶金
航空航天工程
计算机科学
工程类
物理
古生物学
沉积物
操作系统
生物
地球物理学
作者
Peter Serles,Eric Nicholson,Jason Tam,Nima Barri,Jean‐Baptiste Chemin,Guorui Wang,Yann Michel,Chandra Veer Singh,Patrick Choquet,Aurélien Saulot,Tobin Filleter,Guillaume Colas
标识
DOI:10.1002/adfm.202110429
摘要
Abstract Molybdenum disulfide coatings have been employed as lubricants for spacecraft since the 1950s but continue to face major engineering challenges including performance in both terrestrial air and deep space vacuum environments and service lifetimes on the order of decades without maintenance. Co‐deposition of MoS 2 with additive compounds provide enhancements in some circumstances but a lubricant which can perform in all space‐facing environments with long lifetimes remains an ongoing problem. Herein, it is demonstrated the multi‐environment adaptable performance of a novel MoS 2 + tantalum lubricant coating, which excels as a lubricant in both terrestrial and space environments while the benchmark space‐qualified commercial MoS 2 lubricants do not. It is noted that the 10% tantalum additive exhibits preferential oxidation in air to preserve the lubricating ability of MoS 2 while forming phases of TaS 2 , which aid in the exceptional lubrication of MoS 2 in ultra‐high vacuum. Additionally, completely different tribofilms of small particles and compact sheets are noted for air and vacuum environments, respectively, which allows for adaptable lubricating mechanisms from a single coating depending on the environment. This novel coating sets the benchmark as the first demonstrated instance of a fully versatile space lubricant which offers high‐performance in both terrestrial and deep space environments.
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