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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Fluctuations in stacking fault energies improve irradiation tolerance of concentrated solid-solution alloys
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Fluctuations in stacking fault energies improve irradiation tolerance of concentrated solid-solution alloys

机译:堆叠故障能量的波动改善了浓缩固溶合金的辐照耐受性

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摘要

Concentrated solid-solution alloys (CSAs) have stimulated great interest over recent years because of their excellent mechanical properties and irradiation tolerance. However, since their compositional space can be tuned vastly by varying elemental species and concentrations, it is of great significance to explore the relationship between their mechanical and irradiation performance with their intrinsic properties. In this work, we show that there is a link between the irradiation resistance of CSAs and the fluctuations in their intrinsic stacking fault energies (SFEs). Based on four CSA systems with distinct SFE properties, we find that large fluctuations in SFE distributions, together with the unique heterogeneity of defect diffusion process, can effectively suppress defect number and defect cluster growth under accumulated cascade conditions. We further demonstrate that the reason responsible for the enhanced damage tolerance is that the fluctuations in SFE distributions can effectively impede dislocation movement by increasing the onset stress required for dislocation motion. Our results thus provide evidence that the improved mechanical and irradiation properties of CSAs can be predicted by monitoring their intrinsic SFE characteristics. (C) 2019 Elsevier B.V. All rights reserved.
机译:浓缩固溶合金(CSA)近年来刺激了近年来的兴趣,因为它们的机械性能和照射耐受性。然而,由于可以通过改变元素物种和浓度来大大调节它们的组成空间,因此探讨其机械和辐射性能之间的关系具有重要意义。在这项工作中,我们表明CSA的辐照阻力与其内在堆叠故障能量(SFE)的波动之间存在联系。基于具有不同SFE性质的四个CSA系统,我们发现SFE分布中的大波动以及缺陷扩散过程的独特异质性,可以有效地抑制累积级联条件下的缺陷数和缺陷集群增长。我们进一步证明负责增强损伤容差的原因是SFE分布的波动可以通过增加位错运动所需的发作应力来有效地阻碍位错运动。因此,我们的结果提供了证据表明,通过监测其内在的SFE特性,可以预测CSA的改善的机械和辐射性能。 (c)2019 Elsevier B.v.保留所有权利。

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