Fang Hailiang, Cedervall Johan, Hedlund Daniel, Shafeie Samrand, Deledda Stefano, Olsson Fredrik, von Fieandt Linus, Bednarcik Jozef, Svedlindh Peter, Gunnarsson Klas, Sahlberg Martin
Department of Chemistry - Ångström Laboratory, Uppsala University, Box 538, 75121, Uppsala, Sweden.
Department of Engineering Sciences, Uppsala University, Box 534, 751 21, Uppsala, Sweden.
Sci Rep. 2018 Feb 6;8(1):2525. doi: 10.1038/s41598-018-20606-8.
The low cost, rare earth free τ-phase of MnAl has high potential to partially replace bonded NdFeB rare earth permanent magnets. However, the τ-phase is metastable and it is experimentally difficult to obtain powders suitable for the permanent magnet alignment process, which requires the fine powders to have an appropriate microstructure and high τ-phase purity. In this work, a new method to make high purity τ-phase fine powders is presented. A high purity τ-phase MnAlC alloy was synthesized by the drop synthesis method. The drop synthesized material was subjected to cryo milling and followed by a flash heating process. The crystal structure and microstructure of the drop synthesized, cryo milled and flash heated samples were studied by X-ray in situ powder diffraction, scanning electron microscopy, X-ray energy dispersive spectroscopy and electron backscatter diffraction. Magnetic properties and magnetic structure of the drop synthesized, cryo milled, flash heated samples were characterized by magnetometry and neutron powder diffraction, respectively. The results reveal that the 2 and 4 hours cryo milled and flash heated samples both exhibit high τ-phase purity and micron-sized round particle shapes. Moreover, the flash heated samples display high saturation magnetization as well as increased coercivity.
低成本、无稀土的MnAl τ相具有部分替代粘结钕铁硼稀土永磁体的巨大潜力。然而,τ相是亚稳态的,通过实验很难获得适用于永磁体取向过程的粉末,这要求细粉具有合适的微观结构和高τ相纯度。在这项工作中,提出了一种制备高纯度τ相细粉的新方法。通过滴铸合成法合成了高纯度τ相MnAlC合金。对滴铸合成的材料进行低温球磨,然后进行快速加热处理。通过X射线原位粉末衍射、扫描电子显微镜、X射线能量色散光谱和电子背散射衍射研究了滴铸合成、低温球磨和快速加热样品的晶体结构和微观结构。分别通过磁强计和中子粉末衍射对滴铸合成、低温球磨、快速加热样品的磁性能和磁结构进行了表征。结果表明,经过2小时和4小时低温球磨及快速加热的样品均表现出高τ相纯度和微米级圆形颗粒形状。此外,快速加热的样品显示出高饱和磁化强度以及矫顽力的增加。