Zhai Sicheng, Wang Wen, Xu Juan, Xu Shuai, Zhang Zitang, Wang Yan
School of Materials Science and Engineering, University of Jinan, Jinan 250022, China.
Entropy (Basel). 2018 Jun 22;20(7):487. doi: 10.3390/e20070487.
FeSiBAlNi (W5), FeSiBAlNiCo (W6-Co), and FeSiBAlNiGd (W6-Gd) high entropy alloys (HEAs) were prepared using a copper-mold casting method. Effects of Co and Gd additions combined with subsequent annealing on microstructures and magnetism were investigated. The as-cast W5 consists of BCC solid solution and FeSi-rich phase. The Gd addition induces the formation of body-centered cubic (BCC) and face-centered cubic (FCC) solid solutions for W6-Gd HEAs. Whereas, the as-cast W6-Co is composed of the FeSi-rich phase. During annealing, no new phases arise in the W6-Co HEA, indicating a good phase stability. The as-cast W5 has the highest hardness (1210 HV), which is mainly attributed to the strengthening effect of FeSi-rich phase evenly distributed in the solid solution matrix. The tested FeSiBAlNi-based HEAs possess soft magnetism. The saturated magnetization and remanence ratio of W6-Gd are distinctly enhanced from 10.93 emu/g to 62.78 emu/g and from 1.44% to 15.50% after the annealing treatment, respectively. The good magnetism of the as-annealed W6-Gd can be ascribed to the formation of Gd-oxides.
采用铜模铸造法制备了FeSiBAlNi(W5)、FeSiBAlNiCo(W6-Co)和FeSiBAlNiGd(W6-Gd)高熵合金(HEA)。研究了添加Co和Gd并随后进行退火对微观结构和磁性的影响。铸态W5由体心立方(BCC)固溶体和富FeSi相组成。添加Gd促使W6-Gd高熵合金形成体心立方(BCC)和面心立方(FCC)固溶体。而铸态W6-Co由富FeSi相组成。在退火过程中,W6-Co高熵合金未出现新相,表明其具有良好的相稳定性。铸态W5具有最高硬度(1210 HV),这主要归因于均匀分布在固溶体基体中的富FeSi相的强化作用。所测试的FeSiBAlNi基高熵合金具有软磁性。退火处理后,W6-Gd的饱和磁化强度和剩磁比分别从10.93 emu/g显著提高到62.78 emu/g,从1.44%提高到15.50%。退火态W6-Gd良好的磁性可归因于Gd氧化物的形成。