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Liquid space lubricants examined by vibrational microspectroscopy

机译:通过振动光谱法检查的液态润滑剂

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Considerable effort has been expended to develop liquid lubricants for satellites and space exploration vehicles. These lubricants must often perform under a range of harsh conditions such as vacuum, radiation, and temperature extremes while in orbit or in transit and in extremely dusty environments at destinations such as the moon and Mars. Historically, oil development was guided by terrestrial application, which did not provide sufficient space lubricants. Novel fluids such as perfluorinated polyethers provided some relief but are far from ideal. With each new fluid proposed to solve one problem, other problems have arisen. Much of the work performed at National Aeronautics and Space Adminstration's (NASA) Glenn Research Center, in elucidating mechanisms by which chemical degradation of space oils occur, has been done by infrared and Raman microspectroscopy, which this review details. Fundamental lubrication studies are presented as well as actual case studies, in which vibrational spectroscopy led to millions of dollars in savings and potentially prevented loss of mission.
机译:已经花费了大量的努力来开发用于卫星和太空探索飞行器的液体润滑剂。这些润滑剂通常必须在一系列苛刻的条件下运行,例如在轨道,途中以及在月球和火星等目的地多尘的环境中,例如真空,辐射和极端温度。从历史上看,石油的开发是在地面应用的指导下进行的,而地面应用并未提供足够的太空润滑剂。诸如全氟聚醚之类的新型流体提供了一些缓解,但远非理想。为了解决一个问题提出了每种新的流体,还出现了其他问题。美国航空航天局(NASA)格伦研究中心在阐明空间油发生化学降解的机理方面所做的许多工作都是通过红外和拉曼显微光谱学完成的,本文将对此进行详细介绍。提出了基础润滑研究以及实际案例研究,其中振动光谱法节省了数百万美元,并有可能防止任务损失。

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