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用于先进核应用的高熵合金。

High-Entropy Alloys for Advanced Nuclear Applications.

作者信息

Pickering Ed J, Carruthers Alexander W, Barron Paul J, Middleburgh Simon C, Armstrong David E J, Gandy Amy S

机构信息

Department of Materials, University of Manchester, Manchester M13 9PL, UK.

Henry Royce Institute, Manchester Hub Building, Manchester M13 9PL, UK.

出版信息

Entropy (Basel). 2021 Jan 11;23(1):98. doi: 10.3390/e23010098.

Abstract

The expanded compositional freedom afforded by high-entropy alloys (HEAs) represents a unique opportunity for the design of alloys for advanced nuclear applications, in particular for applications where current engineering alloys fall short. This review assesses the work done to date in the field of HEAs for nuclear applications, provides critical insight into the conclusions drawn, and highlights possibilities and challenges for future study. It is found that our understanding of the irradiation responses of HEAs remains in its infancy, and much work is needed in order for our knowledge of any single HEA system to match our understanding of conventional alloys such as austenitic steels. A number of studies have suggested that HEAs possess `special' irradiation damage resistance, although some of the proposed mechanisms, such as those based on sluggish diffusion and lattice distortion, remain somewhat unconvincing (certainly in terms of being universally applicable to all HEAs). Nevertheless, there may be some mechanisms and effects that are uniquely different in HEAs when compared to more conventional alloys, such as the effect that their poor thermal conductivities have on the displacement cascade. Furthermore, the opportunity to tune the compositions of HEAs over a large range to optimise particular irradiation responses could be very powerful, even if the design process remains challenging.

摘要

高熵合金(HEA)所提供的更大的成分自由度为先进核应用合金的设计带来了独特机遇,特别是在当前工程合金无法满足需求的应用中。本综述评估了迄今为止在用于核应用的高熵合金领域所开展的工作,对所得出的结论提供了关键见解,并突出了未来研究的可能性和挑战。研究发现,我们对高熵合金辐照响应的理解仍处于起步阶段,为使我们对任何单一高熵合金体系的了解能与我们对诸如奥氏体钢等传统合金的理解相匹配,仍需开展大量工作。一些研究表明,高熵合金具有“特殊”的抗辐照损伤能力,尽管一些提出的机制,如基于扩散缓慢和晶格畸变的机制,仍有些难以令人信服(当然,就普遍适用于所有高熵合金而言)。然而,与更传统的合金相比,高熵合金可能存在一些独特的机制和效应,比如其低导热率对位移级联的影响。此外,即使设计过程仍具有挑战性,但在很大范围内调整高熵合金的成分以优化特定辐照响应的机会可能非常强大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f872/7827623/f236c3b4dce6/entropy-23-00098-g001.jpg

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