纳米团簇
短期订单
材料科学
中子衍射
合金
衍射
硬化(计算)
凝聚态物理
位错
中子散射
散射
电子
纳米技术
物理
冶金
复合材料
光学
图层(电子)
量子力学
作者
Haw-Wen Hsiao,Rui Feng,Haoyang Ni,Ke An,Jonathan D. Poplawsky,Peter K. Liaw,Jian‐Min Zuo
标识
DOI:10.1038/s41467-022-34335-0
摘要
The exceptional mechanical strength of medium/high-entropy alloys has been attributed to hardening in random solid solutions. Here, we evidence non-random chemical mixing in a CrCoNi alloy, resulting from short-range ordering. A data-mining approach of electron nanodiffraction enabled the study, which is assisted by neutron scattering, atom probe tomography, and diffraction simulation using first-principles theory models. Two samples, one homogenized and one heat-treated, are observed. In both samples, results reveal two types of short-range-order inside nanoclusters that minimize the Cr-Cr nearest neighbors (L12) or segregate Cr on alternating close-packed planes (L11). The L11 is predominant in the homogenized sample, while the L12 formation is promoted by heat-treatment, with the latter being accompanied by a dramatic change in dislocation-slip behavior. These findings uncover short-range order and the resulted chemical heterogeneities behind the mechanical strength in CrCoNi, providing general opportunities for atomistic-structure study in concentrated alloys for the design of strong and ductile materials.
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