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离子液体作为空间润滑剂中的性能成分。

Ionic Liquids as Performance Ingredients in Space Lubricants.

作者信息

Nyberg Erik, Schneidhofer Christoph, Pisarova Lucia, Dörr Nicole, Minami Ichiro

机构信息

Department of Engineering Sciences and Mathematics, Division of Machine Elements, Luleå University of Technology, SE-97187 Luleå, Sweden.

AC2T Research GmbH, AT-2700 Wiener Neustadt, Austria.

出版信息

Molecules. 2021 Feb 14;26(4):1013. doi: 10.3390/molecules26041013.

Abstract

Low vapor pressure and several other outstanding properties make room-temperature ionic liquids attractive candidates as lubricants for machine elements in space applications. Ensuring sufficient liquid lubricant supply under space conditions is challenging, and consequently, such tribological systems may operate in boundary lubrication conditions. Under such circumstances, effective lubrication requires the formation of adsorbed or chemically reacted boundary films to prevent excessive friction and wear. In this work, we evaluated hydrocarbon-mimicking ionic liquids, designated P-SiSO, as performance ingredients in multiply alkylated cyclopentane (MAC). The tribological properties under vacuum or various atmospheres (air, nitrogen, carbon dioxide) were measured and analyzed. Thermal vacuum outgassing and electric conductivity were meas- ured to evaluate 'MAC & P-SiSO' compatibility to the space environment, including the secondary effects of radiation. Heritage space lubricants-MAC and perfluoroalkyl polyethers (PFPE)-were employed as references. The results corroborate the beneficial lubricating performance of incorporating P-SiSO in MAC, under vacuum as well as under various atmospheres, and demonstrates the feasibility for use as a multifunctional additive in hydrocarbon base oils, for use in space exploration applications.

摘要

低蒸气压和其他一些优异性能使室温离子液体成为空间应用中机器部件润滑剂的有吸引力的候选材料。在空间条件下确保足够的液体润滑剂供应具有挑战性,因此,此类摩擦学系统可能在边界润滑条件下运行。在这种情况下,有效的润滑需要形成吸附或化学反应的边界膜,以防止过度摩擦和磨损。在这项工作中,我们评估了模拟烃类的离子液体(称为P-SiSO)作为多元烷基化环戊烷(MAC)中的性能成分。测量并分析了在真空或各种气氛(空气、氮气、二氧化碳)下的摩擦学性能。测量了热真空除气和电导率,以评估“MAC&P-SiSO”与空间环境的兼容性,包括辐射的二次效应。传统的空间润滑剂——MAC和全氟烷基聚醚(PFPE)——用作参考。结果证实了在MAC中加入P-SiSO在真空以及各种气氛下的有益润滑性能,并证明了其作为烃类基础油中的多功能添加剂用于太空探索应用的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24e4/7918859/1e15d31ea8d3/molecules-26-01013-g001.jpg

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