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Compositional Approach to Designing Fcc High-Entropy Alloys that Have an Enlarged Equiaxed Zone

机译:具有扩大的等轴区的Fcc高熵合金的成分设计方法

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A compositional approach to designing alloys that have an enlarged equiaxed zone is suggested in this study. The partitioning of elements during the solidification of CoCrFeMnNi high-entropy alloy (HEA) was confirmed through a directional solidification quenching experiment. Several HEAs were designed to maximize the effects of constitutional and thermal undercooling by considering factors including solute enrichment at the columnar front and the melting temperatures and thermal conductivities of the individual elements. The newly designed HEAs were shown to have successfully enlarged equiaxed zones, and improved anisotropic properties.
机译:在这项研究中,提出了一种设计具有更大等轴区的合金的组成方法。通过定向凝固淬火实验确定了CoCrFeMnNi高熵合金(HEA)凝固过程中的元素分配。通过考虑多种因素(包括柱状前部的溶质富集以及各个元素的熔融温度和热导率),设计了几种HEA,以最大程度地提高组织和热过冷的影响。新设计的HEA已成功扩大了等轴区,并改善了各向异性。

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