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The Effects of a High Magnetic Field on the Annealing of [(Fe 0.5 Co 0.5 ) 0.75 B 0.2 Si 0.05 ] 96 Nb 4 Bulk Metallic Glass

机译:强磁场对[(Fe 0.5 Co 0.5)0.75 B 0.2 Si 0.05] 96 Nb 4大块金属玻璃退火的影响

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In contrast with amorphous alloys, nanocrystalline soft magnetic materials show improved thermal stability and higher soft magnetic properties. The nanocrystalline soft magnetic composites are usually fabricated by partially crystallizing from parent amorphous alloys. This paper reports our experimental observation on the sequence of crystallization in metallic glass under a high magnetic field (HMF). An application of a HMF to bulk metallic glass (BMG) of [(Fe 0.5 Co 0.5 ) 0.75 B 0.2 Si 0.05 ] 96 Nb 4 prioritizes the precipitation of α-(Fe,Co) phase separated from the subsequent precipitation of borides, (Fe,Co) 23 B 6 , upon isothermal annealing at a glass transition temperature. Furthermore, it was observed that, through the annealing treatment under a HMF, a soft magnetic nanocomposite, in which only α-(Fe,Co) phase uniformly distributes in amorphous matrix, was achieved for boron-bearing BMG. The promotion of the α-Fe or (Fe,Co) phase and the prevention of the boride phases during the isothermal annealing process help to produce high-quality soft magnetic nanocomposite materials. The mechanism by which a HMF influences the crystallization sequence was interpreted via certain changes in Gibbs free energies for two ferromagnetic phases. This finding evidences that the annealing treatment under a HMF is suitable for enhancing the soft magnetic properties of high B content (Fe,Co)-based bulk amorphous and nanocrystalline materials.
机译:与非晶合金相比,纳米晶软磁材料显示出更高的热稳定性和更高的软磁性能。通常通过从母体非晶态合金中部分结晶来制造纳米晶态软磁复合材料。本文报告了我们在高磁场(HMF)下金属玻璃中结晶顺序的实验观察。在[[Fe 0.5 Co 0.5)0.75 B 0.2 Si 0.05] 96 Nb 4的块状金属玻璃(BMG)上应用HMF可使从随后的硼化物沉淀中分离出的α-(Fe,Co)相沉淀优先进行,( Fe,Co)23 B 6,在玻璃化转变温度下进行等温退火。此外,观察到,通过在HMF下的退火处理,获得了用于含硼BMG的仅磁性α-(Fe,Co)相均匀地分布在非晶基质中的软磁性纳米复合材料。在等温退火过程中促进α-Fe或(Fe,Co)相并防止硼化物相有助于生产高质量的软磁纳米复合材料。 HMF影响结晶顺序的机制是通过两个铁磁相的吉布斯自由能的某些变化来解释的。该发现证明在HMF下的退火处理适合于增强基于高B含量(Fe,Co)的块状非晶和纳米晶体材料的软磁性能。

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