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Microstructural refinement and anomalous eutectic structure induced by containerless solidification for high-entropy Fe-Co-Ni-Si-B alloys

机译:高熵Fe-Co-Ni-Si-B合金容器凝固诱导的微观结构细化和异常共晶结构

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摘要

The mechanical properties of high-entropy alloys (HEAs) strongly depend on their microstructural features. In this work, the phase formation and morphologies of Fe26.7Co26.7Ni26.7Si8.9B11.0 HEAs fabricated under different undercooling levels by the drop tube technique together with subsequent quenching were investigated in detail. It was found when the droplet size decreases (i.e. the increase of the undercooling level), the grain refinement is easily achieved without any phase transformation for the present hypoeutectic HEA which is composed of the fcc dendrites and eutectic structure. After quenching under large undercooling levels, the liquid should be deeply undercooled into an asymmetric couple zone, leading to the primary formation of eutectic structure and the subsequent precipitation of the fcc dendrites. The direct product of rapid solidification after deep undercooling and subsequent recalescence may induce the decoupled eutectic growth, resulting in a transition from the regular into anomalous eutectic structures. Furthermore, the volume fractions of the eutectic structures and the fcc dendrites increase and decrease with decreasing droplet size, respectively. As a result, the Vickers hardness gradually increases with decreasing droplet size, which exhibits a linear relationship with the volume fraction of eutectic matrix. The present study may provide a simple way to tailor microstructures and mechanical properties of HEAs.
机译:高熵合金(HEAS)的力学性能强烈取决于它们的微观结构特征。在这项工作中,通过下降管技术在不同过冷水平下制造的Fe26.7CO26.7NI26.7SI8.7B11.0 HEA的相形成和形态。详细研究了随后的猝灭。当液滴尺寸减小时(即,过冷水平的增加)发现,谷物细化容易实现,而无需任何相变的对本发明的低分解HEA的任何相变,其由FCC树枝状和共晶结构组成。在大过冷水平下淬火后,应将液体深入过冷却到不对称的耦合区域中,导致初级形成的共晶结构和随后的FCC树枝状曲线沉淀。在深过冷却后快速凝固的直接产物和随后的次倒晶后可以诱导去耦的共晶生长,从规则中转变为异常的共晶结构。此外,共晶结构的体积分数和FCC树枝状曲线分别随着液滴尺寸的降低而增加和降低。结果,维氏硬度随着液滴尺寸的降低而逐渐增加,这与共晶基质的体积分数表现出直线关系。本研究可以提供一种定制遗传微观结构和机械性能的简单方法。

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