首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Experimental investigation and phase diagram of CoCrMnNi-Fe system bridging high-entropy alloys and high-alloyed steels
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Experimental investigation and phase diagram of CoCrMnNi-Fe system bridging high-entropy alloys and high-alloyed steels

机译:COCRMNI-FE系统桥接高熵合金和高合金钢的实验研究和相图

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摘要

An investigation of equiatomic and non-equiatomic high-entropy alloys (HEAs) and medium-entropy alloys (MEAs) was carried out by performing both thermodynamic calculations and experiments. The design strategy of the alloys was based on a constant valence electron concentration (VEC) of 8 while varying the content of Fe in a Fe,(CoCrMnNi)(100-x )where x = 00, 20, 40, and 60. The X-ray diffraction results showed that the alloys have a single face-centered cubic structure at 900 degrees C. The tensile test results revealed that both the yield strength and ultimate tensile strength decrease as the amount of Fe is increased but the uniform elongation increases. Additionally, the strain-hardening rate is significantly enhanced at higher Fe concentrations due to the activation of deformation twinning as an additional deformation mechanism. Interestingly, the critical twinning stress is significantly reduced as the Fe content is increased from Fe00 to Fe60. As a result, the deformation twins were easily activated in a specimen deformed up to a true strain of 20% for Fe60, unlike the other alloys, which exhibited no deformation twinning at the same true strain. Furthermore, it was revealed that the frequency of deformation twinning increases proportionally with increase in the Fe content. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过进行热力学计算和实验,进行赤脂和非赤素高熵合金(HEAS)和中等熵合金(MEAS)的研究。合金的设计策略基于8的恒定价电子浓度(VEC),同时改变Fe的Fe含量(COCRMNI)(100-x),其中x = 00,20,40和60。该X射线衍射结果表明,该合金在900℃下具有单一的朝向立方结构。拉伸试验结果显示,随着Fe的量增加但均匀的伸长率增加,屈服强度和最终拉伸强度降低。另外,由于变形孪晶作为额外变形机构,在较高的Fe浓度下显着提高了应变 - 硬化速率。有趣的是,随着Fe00至Fe60的Fe00增加,临界孪生胁迫明显减少。结果,与其他合金不同,在20%的真正应变中的样品中容易被激活,与其他合金不同,在250%的真正应变的样品中容易被激活,其在同样的真实菌株下没有变形孪晶。此外,揭示了变形孪晶的变形频率随比性含量的增加而增加。 (c)2019 Elsevier B.v.保留所有权利。

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