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Effect of Nb-C addition on the microstructure and mechanical properties of CoCrFeMnNi high entropy alloys during homogenisation

机译:Nb-C添加对CoCrFeMnNi高熵合金均质化过程中显微组织和力学性能的影响

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摘要

In the present paper, CoCrFeMnNi(NbC) alloy was designed based on theoretical calculations and proposed as a novel high entropy alloy. The effect of Nb-C microalloy addition on the microstructure and mechanical properties of equiatomic CoCrFeMnNi high entropy alloys were studied during homogenisation. The chemical composition, microstructural evolution, hardness and shear deformation behaviour were analysed using XRF, Leco-combustion technique, optical microscopy, SEM-WDX, XRD, Vickers hardness and shear punch testing. Moreover, the thermal behaviour of both alloys during heating stage was studied by differential thermal analysis technique at a heating rate of 10 degrees C/min. The experimental results confirmed theoretical calculations based on Scheil-Gulliver solidification model and thermodynamic rules, suggesting a solid solution high entropy alloy with FCC-crystal structure after vacuum arc re-melting and homogenisation. SEM-WDX analysis hardly showed any Nb-containing precipitates in both as-cast and homogenised samples. It was also found that Nb-C addition considerably retarded the growth/coarsening of grain size during homogenisation. Moreover, the results suggested that the hardness and shear strength of CoCrFeMnNiNbC alloy was higher than CoCrFeMnNi alloy, mainly due to solid solution strengthening effect.
机译:本文基于理论计算设计了CoCrFeMnNi(NbC)合金,并提出了一种新型的高熵合金。研究了Nb-C微合金的添加对均质CoCrFeMnNi高熵合金等微结构和力学性能的影响。使用XRF,Leco-燃烧技术,光学显微镜,SEM-WDX,XRD,维氏硬度和剪切冲头测试分析了化学成分,微观结构演变,硬度和剪切变形行为。而且,通过差热分析技术以10℃/ min的加热速率研究了两种合金在加热阶段的热行为。实验结果证实了基于Scheil-Gulliver凝固模型和热力学规则的理论计算,表明在真空电弧重熔和均质化之后,具有FCC晶体结构的固溶高熵合金。 SEM-WDX分析几乎未显示铸态样品和均质样品中的任何含Nb沉淀物。还发现,在均质化过程中,添加Nb-C大大阻碍了晶粒尺寸的生长/粗化。此外,结果表明,CoCrFeMnNiNbC合金的硬度和剪切强度高于CoCrFeMnNi合金,这主要归因于固溶强化作用。

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