Center for Alloy Innovation and Design, State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, China.
School of Nuclear Science and Technology, Xi'an Jiaotong University, Xi'an 710049, China.
Proc Natl Acad Sci U S A. 2023 Apr 11;120(15):e2218673120. doi: 10.1073/pnas.2218673120. Epub 2023 Apr 4.
High- (and medium-) entropy alloys have emerged as potentially suitable structural materials for nuclear applications, particularly as they appear to show promising irradiation resistance. Recent studies have provided evidence of the presence of local chemical order (LCO) as a salient feature of these complex concentrated solid-solution alloys. However, the influence of such LCO on their irradiation response has remained uncertain thus far. In this work, we combine ion irradiation experiments with large-scale atomistic simulations to reveal that the presence of chemical short-range order, developed as an early stage of LCO, slows down the formation and evolution of point defects in the equiatomic medium-entropy alloy CrCoNi during irradiation. In particular, the irradiation-induced vacancies and interstitials exhibit a smaller difference in their mobility, arising from a stronger effect of LCO in localizing interstitial diffusion. This effect promotes their recombination as the LCO serves to tune the migration energy barriers of these point defects, thereby delaying the initiation of damage. These findings imply that local chemical ordering may provide a variable in the design space to enhance the resistance of multi-principal element alloys to irradiation damage.
高(中)熵合金作为一种潜在的适用于核应用的结构材料已经出现,特别是因为它们似乎显示出了有希望的抗辐照能力。最近的研究已经提供了证据表明,局部化学有序(LCO)是这些复杂的浓溶固态合金的一个显著特征。然而,到目前为止,这种 LCO 对其辐照响应的影响仍然不确定。在这项工作中,我们结合离子辐照实验和大规模原子模拟,揭示了化学短程有序(LCO 的早期阶段)的存在,减缓了等原子中熵合金 CrCoNi 中辐照过程中点缺陷的形成和演化。特别是,辐照诱导的空位和间隙原子的迁移率差异较小,这是由于 LCO 在局部化间隙扩散方面的影响更强。这种效应促进了它们的复合,因为 LCO 可以调整这些点缺陷的迁移能垒,从而延迟损伤的开始。这些发现意味着局部化学有序可能为设计空间提供了一个变量,以提高多元主元合金对辐照损伤的抵抗力。