高熵合金辐照损伤行为的多尺度模拟

Fusheng Tan , Li Li , Jia Li , Bin Liu , Peter K. Liaw , Qihong Fang
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引用次数: 3

摘要

核反应堆日益恶劣的环境和在役材料难以克服的缺陷,迫切需要开发全新的合金。在过去的十年里,高熵合金作为一种新的成分设计策略,因其在核领域的前景而受到广泛关注。多尺度建模的应用是探索HEAs的辐照性能和潜在机制。丰富的结果和数据加深了对辐照反应的理解,并加速了先进的耐辐照HEAs的开发。这篇综述介绍了用于研究HEAs辐照特性的最新多尺度建模技术。总结了具有代表性的辐照诱导的微观结构和性能,以及损伤。通过加强多尺度建模的应用,有望合理设计高抗辐照HEAs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiscale modelling of irradiation damage behavior in high entropy alloys

The increasingly harsh environment of the nuclear reactors and the insurmountable flaws of in-service materials have created an urgent need for the development of the brand-new alloys. For last decade, the high-entropy alloys (HEAs), a novel composition-design strategy, have received much attention due to their promise for the nuclear fields. The application of the multiscale modelling is to explore the irradiation performance and underlying mechanisms of HEAs. Abundant results and data deepen the understanding of the irradiation response, and accelerate the development of advanced irradiation-resistant HEAs. This review introduces the state-of-art multiscale modelling used for studying the irradiated properties of HEAs. Representative irradiation-induced microstructures and properties, as well as damage, are summarized. By strengthening the application of multiscale modelling, a rational design of high irradiation-resistant HEAs is expected.

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