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钴和钆的添加对FeSiBAlNi高熵合金微观结构及性能的影响

Effect of Co and Gd Additions on Microstructures and Properties of FeSiBAlNi High Entropy Alloys.

作者信息

Zhai Sicheng, Wang Wen, Xu Juan, Xu Shuai, Zhang Zitang, Wang Yan

机构信息

School of Materials Science and Engineering, University of Jinan, Jinan 250022, China.

出版信息

Entropy (Basel). 2018 Jun 22;20(7):487. doi: 10.3390/e20070487.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52c8/7513011/2cba61487583/entropy-20-00487-g001.jpg

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