Macha Michal, Senajova Dominika, Giles Tim, Calviani Marco, Girard Sylvain, Ferrari Matteo
CERN, CH-1211 Geneva 23, Switzerland.
Imperial College London, SW7 2AZ London, United Kingdom.
ACS Appl Mater Interfaces. 2025 Mar 12;17(10):14773-14800. doi: 10.1021/acsami.4c21220. Epub 2025 Feb 27.
One of the key priorities in modern mechanical engineering is to ensure the safe, long-lasting operation of systems while maximizing energy efficiency and withstanding extreme and damaging conditions. This is especially relevant in environments subject to radiation, in which materials, depending on their chemical and elemental composition, exhibit specific limitations. In this review, we summarize the current state of the art in research and development regarding the performance of lubricants in radiation fields and the effectiveness of radiation-tolerant lubricated systems. We discuss the current understanding of radiation-damage mechanisms in dry-film lubricants, oils, and greases, and we summarize the experimental results of the irradiation studies performed to date. We compile and compare the established performance of various material types and chemistries in intense ionizing radiation fields. Finally, we provide an overview of future research directions, highlighting the challenges faced in irradiation studies, considerations relating to the selection of materials, new facilities and experiments aimed at advancing the field, and other issues related to the safe application and use of lubricant materials in radiation environments.
现代机械工程的关键优先事项之一是确保系统安全、持久运行,同时实现能源效率最大化并抵御极端和有害条件。这在受辐射环境中尤为重要,在这种环境中,材料根据其化学和元素组成会表现出特定的局限性。在本综述中,我们总结了关于辐射场中润滑剂性能以及耐辐射润滑系统有效性的研发现状。我们讨论了目前对干膜润滑剂、油和润滑脂中辐射损伤机制的理解,并总结了迄今为止进行的辐照研究的实验结果。我们汇编并比较了各种材料类型和化学组成在强电离辐射场中的既定性能。最后,我们概述了未来的研究方向,强调了辐照研究面临的挑战、与材料选择相关的考虑因素、旨在推动该领域发展的新设施和实验,以及与润滑材料在辐射环境中的安全应用和使用相关的其他问题。