Novel Applications of Ferroalloys for Manufacturing of High Entropy Alloy

Shengzhi Duan, Wangzhong Mu, J. Park, Jingjuan Kang
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Abstract

Ferroalloys serve important functions during the steelmaking process and impart distinctive qualities to steel. High entropy alloy can be also produced by mixing ferroalloy elements in an equimolar ratio because of it has the advantage of low cost compared with using high purity metals. However, fundamental studies about the preparation of the high entropy alloy by using ferroalloy are scarce. Therefore, the CoCrFeMnNi high-entropy alloys (HEAs) were prepared by using ferroalloys as raw material and refined in an induction furnace with magnesia or alumina refractory under pure Ar atmosphere at 1773 K in the current study. The two different CaO-Al2O3-MgO slags saturated with MgO or Al2O3 were designed to investigate the effect of slag composition on the types of inclusions in the HEAs. The results showed that the complex inclusions MnAl2O4-MnS and Al2O3 were formed when the alloys melted in an alumina refractory, whereas MnAl2O4-MnS, MnCr2O4-MnS, as well as MgAl2O4, were found when the alloys melted in a magnesia refractory.
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铁合金在高熵合金制造中的新应用
铁合金在炼钢过程中起着重要的作用,赋予钢独特的品质。与使用高纯度金属相比,将铁合金元素按等摩尔比混合也可以制备高熵合金,因为它具有成本低的优点。然而,利用铁合金制备高熵合金的基础研究却很少。因此,本研究以铁合金为原料,在1773 K纯Ar气氛下,用氧化镁或氧化铝耐火材料在感应炉中精炼制备CoCrFeMnNi高熵合金(HEAs)。设计了两种不同的饱和CaO-Al2O3-MgO炉渣,研究了炉渣成分对HEAs中夹杂物类型的影响。结果表明:合金在氧化铝耐火材料中熔化时形成MnAl2O4-MnS和Al2O3复合夹杂物,而在镁质耐火材料中熔化时形成MnAl2O4-MnS、MnCr2O4-MnS和MgAl2O4复合夹杂物。
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