CoCrFeMnNi高熵合金位错环辐照诱导偏析

Wei-Ying Chen, J. Poplawsky, Yiren Chen, W. Guo, J. Yeh
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引用次数: 14

摘要

摘要:为了了解高熵合金中合金元素在辐照下的再分布情况,采用1 MeV氪离子在室温和500℃下辐照CoCrFeMnNi合金,并用原子探针断层扫描和透射电镜对其进行了表征。在500℃时,Co和Ni富集在离子辐照形成的间隙、断裂和完美位错环周围。相反,在室温下没有观察到偏析。通过空位通量的逆Kirkendall效应,而不是间隙结合机制,是导致所观察到的分离的主要潜在过程。此外,在错位环处观察到环状偏析模式,表明CoCrFeMnNi在高温辐照下的缺陷聚类和溶质偏析过程具有非平衡性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Irradiation-Induced Segregation at Dislocation Loops in CoCrFeMnNi High Entropy Alloy
Abstract To understand the redistribution of alloying elements in high entropy alloys under irradiation, a CoCrFeMnNi alloy was irradiated with 1 MeV Kr ions at room temperature and at 500°C, and characterized with atom probe tomography and transmission electron microscopy. At 500°C, Co and Ni were enriched around the interstitial, faulted and perfect, dislocation loops resulted from the ion irradiation. In contrast, no segregation was observed at room temperature. The inverse Kirkendall effect through vacancy flux, as opposed to the interstitial binding mechanism, was the primary underlying process attributing to the observed segregation. In addition, a ring-shaped segregation pattern was observed at the faulted dislocation loops, indicating a non-equilibrium nature of the defect clustering and solute segregation process in CoCrFeMnNi under irradiation at high temperature.
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