Microstructures and Magnetic Properties of Rapidly Solidified MnAl Alloys Modified with Indium

Y. R. Liu,K. P. Su, Y. H. Zhang, Q. X. Shang, S. L. Hu, H. O. Wang,S. Huang, D. X. Yang,D. X. Huo,J. Liu

Journal of Superconductivity and Novel Magnetism(2022)

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摘要
A ternary Mn–Al–In alloy with the nominal composition Mn 53 Al 44 In 3 were prepared by rapid solidification followed by heat treatment. Doping in MnAl alloys can improve the stability of the τ-phase when the annealing temperature is lower than 600 °C. The decomposition of τ-phase started after annealing at 500 °C for 30 min and almost completed after annealing at 650 °C for 30 min. It was found that most of the In-rich phases in as-spun alloys are generally distributed on the grain boundary of magnetic τ-MnAl. After annealing, the small ball-shaped β-phase particles were precipitated on the surface of τ-MnAl grains. The average particle size of β-phase increased sharply from about 73 nm to about 830 nm with the increasing annealing time from 10 to 30 min at 550 °C. The optimal magnetic properties of M s = 105.7 emu/g and H c = 1.094 kOe were obtained in the ribbons after annealing at 550 °C for 10 min. The highest value of the H c was 4.261 kOe achieved in the Mn 53 Al 44 In 3 ribbons after annealing at 650 °C for 30 min. However, the high coercivity was obtained at an expense of low saturation magnetization.
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关键词
Mn-Al alloys, Melt spun, Coercivity, Magnetic properties
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