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通过不同途径制备的τ-MnAl颗粒的比较。

A comparison of τ-MnAl particulates produced via different routes.

作者信息

Chaturvedi Anurag, Yaqub Rumana, Baker Ian

出版信息

J Phys Condens Matter. 2014 Feb 12;26(6):064201. doi: 10.1088/0953-8984/26/6/064201.

Abstract

MnAl alloys are very promising rare-earth-free permanent magnets. Nanocrystalline microstructures can have beneficial effects on the properties of magnetic MnAl alloys. In the present work we examined multiple routes to process MnAl alloys and studied the effects of milling on Mn-46 at.% Al powders. Mn54Al46 was produced via gas atomization, melt spinning, and rapid solidification rate processing. It was then mechanically milled using a water-cooled Union Process attritor for times up to 20 h. X-ray diffraction patterns showed the presence of mostly the high-temperature ε-phase with significant amounts of the equilibrium γ2 and β phases in both the cast and milled particulates. The powders were annealed for various temperatures and times in order to obtain the ferromagnetic τ-phase. Magnetic measurements of the optimally annealed powders showed a coercivity of 3.62 kOe and saturation magnetization of 59.8 emu g(-1) for mechanically milled gas-atomized powder annealed at 500 °C for 30 min.

摘要

锰铝(MnAl)合金是非常有前景的无稀土永磁体。纳米晶微观结构对磁性MnAl合金的性能可能产生有益影响。在本工作中,我们研究了多种加工MnAl合金的途径,并研究了球磨对Mn-46原子百分比铝粉的影响。通过气体雾化、熔体纺丝和快速凝固速率工艺制备了Mn54Al46。然后使用水冷式联合工艺磨碎机对其进行长达20小时的机械球磨。X射线衍射图谱表明,在铸造和球磨颗粒中,主要存在高温ε相以及大量的平衡γ2和β相。为了获得铁磁τ相,对粉末进行了不同温度和时间的退火处理。对最佳退火粉末的磁性测量表明,对于在500°C下退火30分钟的机械球磨气体雾化粉末,其矫顽力为3.62 kOe,饱和磁化强度为59.8 emu g(-1)。

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