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Carbon-based solid-liquid lubricating coatings for space applications-A review

机译:太空用碳基固液润滑涂料综述

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Abstract Despite continuous improvements in machine elements over the past few decades, lubrication issues have impeded human exploration of the universe because single solid or liquid lubrication systems have been unable to satisfy the ever-increasing performance requirements of space tribology. In this study, we present an overview of the development of carbon-based films as protective coatings, with reference to their high hardness, low friction, and chemical inertness, and with a particular focus on diamond-like carbon (DLC) films. We also discuss the design of carbon-based solid-liquid synergy lubricating coatings with regards to their physicochemical properties and tribological performance. Solid-liquid composite coatings are fabricated via spinning liquid lubricants on solid lubricating films. Such duplex lubricating coatings are considered the most ideal lubrication choice for moving mechanical systems in space as they can overcome the drawback of adhesion and cold-welding associated with solid films under harsh space conditions and can minimize the crosslinking or chain scission of liquid lubricants under space irradiation. State of the art carbon-based solid-liquid synergy lubricating systems therefore holds great promise for space applications due to solid/liquid synergies resulting in superior qualities including excellent friction reduction and anti-wear properties as well as strong anti-irradiation capacities, thereby meeting the requirements of high reliability, high precision, high efficiency, and long lifetime for space drive mechanisms.
机译:摘要尽管在过去的几十年中机械部件一直在不断改进,但是润滑问题仍阻碍了人类对宇宙的探索,因为单一的固体或液体润滑系统无法满足空间摩擦学不断增长的性能要求。在这项研究中,我们概述了基于碳的薄膜作为保护性涂层的发展,涉及到它们的高硬度,低摩擦和化学惰性,并且特别关注类金刚石碳(DLC)薄膜。我们还讨论了基于碳的固液协同润滑涂层的设计,涉及其理化性质和摩擦学性能。固液复合涂料是通过在固态润滑膜上旋涂液态润滑剂制成的。这种双相润滑涂料被认为是在空间中移动机械系统的最理想的润滑选择,因为它们可以克服在恶劣的空间条件下与固体膜相关的粘附和冷焊的缺点,并可以最大程度地减少空间中液体润滑剂的交联或断链辐射。因此,最先进的碳基固液协同润滑系统具有广阔的前景,因为其固/液协同作用可产生优异的品质,包括出色的减摩和抗磨性能以及强大的抗辐照能力,从而满足对空间驱动机构的高可靠性,高精度,高效率和长寿命的要求。

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