基于 PVD 技术制备抗辐照涂层的研究进展

Sijia Fan, Baosen Mi, Jingjing Wang, Ping Liu, Xun Ma, Tianju Chen, Wei Li
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摘要

核能对各国的未来发展至关重要。然而,核电设备的结构件和功能件在经历辐照增长和辐照蠕变后,都面临着核辐照损伤的严峻挑战。如何避免核电设备的辐照损伤已成为国际表面防护技术研发的热点。在底层物体表面或块状材料中沉积保护涂层被认为是增强功能部件的近期解决方案。根据反应器内的其他使用条件选择不同的基底材料。合适的材料选择与相关优化相结合,可显著提高材料的使用寿命。本综述总结了目前工业应用中通过物理气相沉积技术制备的几类抗辐照涂层的最新研究成果。这些涂层包括金属涂层、陶瓷涂层、复合涂层和高熵合金涂层。从基底材料的基本特性到在不同环境中的实际应用,本综述致力于传授对这些选定的抗辐照涂层特性的透彻理解。它不仅探讨了当前的研究进展,还探讨了未来发展的潜在途径。此外,本文还阐明了涂层配方、涂层抗辐照性能及其在各种环境中的最终性能之间错综复杂的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research progress on the preparation of irradiation-resistant coating based on PVD technology
Nuclear energy is essential for the future development of countries. However, both structural and functional components of nuclear power equipment are facing severe challenges of nuclear irradiation damage after experiencing irradiation growth and irradiation creep. How to avoid irradiation damage to nuclear power equipment has become a hotspot in international research and development of surface protection technology. Deposition of protective coatings on the underlying object surface or in bulk materials has been considered as a near-term solution to enhanc functional components. Different substrate materials are selected according to other service conditions within the reactor. Suitable material selection combined with relevant optimization can significantly increase the service life of materials. This review summarizes recent research on several categories of anti-irradiation coatings prepared by physical vapor deposition technology for current industrial applications. These includes metallic, ceramic, composite and high entropy alloy coatings. The review endeavors to impart a thorough understanding of the properties of these selected anti-irradiation coatings, from the fundamental aspects of their substrate materials to their practical applications across diverse settings. It explores not only the current research progress but also the potential avenues for future advancements. Additionally, the intricate relationships between coating formulations, their resistance to irradiation, and their ultimate performance in various environments are illuminated in this paper.
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