Zhu Man, Fa Yang, Yao Lijuan, Tao Peng, Jian Zengyun, Chang Fang'e
School of Materials Science and Chemical Engineering, Xi'an Technological University, Xi'an 710021, China.
Materials (Basel). 2018 Nov 2;11(11):2171. doi: 10.3390/ma11112171.
The soft magnetic properties of Fe-based nanocrystalline alloys are determined by their grain size. In the present article, the (FeCo)Nb₃B nanocrystalline alloys have been successfully prepared by isothermal annealing. The variation of soft magnetic properties as a function of annealing temperature and incubation time is investigated in detail. Two distinct crystallization behaviors were found for the (FeCo)Nb₃B alloys. The initial nanocrystallization products comprise a mixture of -Fe(Co), Fe₂B, and FeB₆-type crystalline metastable phases, and the final crystallization products are composed of -Fe(Co), Fe₂B, and Fe₃B crystalline phases. The grain size decreases first and then increases with the increasing annealing temperature in the range of 764⁻1151 K, and a fine grain size with mean grain size of 12.7 nm can be achieved for alloys annealed at 880 K. As the annealing temperature increases from 764 K to 1151 K, the saturation magnetization increases first and then decreases without a significant increase of the coercivity. The alloys annealed at 880 K exhibit the optimized soft magnetic properties with high of 145 emu g and low of 0.04 Oe.
铁基纳米晶合金的软磁性能由其晶粒尺寸决定。在本文中,通过等温退火成功制备了(FeCo)Nb₃B纳米晶合金。详细研究了软磁性能随退火温度和保温时间的变化。发现(FeCo)Nb₃B合金有两种不同的结晶行为。初始纳米晶化产物由α-Fe(Co)、Fe₂B和FeB₆型结晶亚稳相的混合物组成,最终结晶产物由α-Fe(Co)、Fe₂B和Fe₃B结晶相组成。在764 - 1151 K范围内,随着退火温度升高,晶粒尺寸先减小后增大,在880 K退火的合金可获得平均晶粒尺寸为12.7 nm的细晶粒尺寸。随着退火温度从764 K升高到1151 K,饱和磁化强度先增大后减小,矫顽力没有显著增加。在880 K退火的合金表现出优化的软磁性能,具有145 emu/g的高饱和磁化强度和0.04 Oe的低矫顽力。