首页|Fabrication and application prospects of Pr-Fe-B/Alnico nanocomposite alloys

Fabrication and application prospects of Pr-Fe-B/Alnico nanocomposite alloys

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The potentials of rare earth-based nanocomposite alloys have never been realized due to strict micro-structural constraints.Owing to the easy demagnetization it is challenging to increase the soft magnetic phase content.To avoid the easy demagnetization,Pr-Fe-B/Alnico magnets were fabricated and re-ported in this manuscript.The content of the Alnico phase is increased from 0 to 25 wt%,while the content of Pr element is reduced to below the sub-stoichiometry of the 2:14:1 main phase.The maximum magnetic energy product,which is the figure-of-merit for permanent magnets,is increased from 122 kJ/m3 for the standard alloy to 146 kJ/m3 for the alloy with 15 wt%Alnico which shows a significant improvement considering the fact that the Curie point of the magnet is also increased by~66 K.The special microstructure contains distinctly and heterogeneously distributed 2:14:1 and Alnico phases.The dimensions of neither the 2:14:1 nor the Alnico phases meet the dimensional requirements of the nanocomposite magnets,but still the smooth demagnetization curves are noted for the alloys.The behavior of effective anisotropy,the performance of the magnets in applied magnetic field and the magnetic interactions among the various constituent grains were quantitatively studied by reversible susceptibility,irreversible susceptibility and recoil loop openness.This study may provide some guiding principles for the development of nanocomposite magnetic alloys with excellent magnetic properties by using much less RE elements.

Composite alloysHigh performance magnetsMagnetic propertiesAlnico alloysRare earth magnets

Hui Liang、Sajjad Ur Rehman、Ruibiao Zhang、Yongqiang Deng、Haihua Liu、Munan Yang

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National Rare Earth Functional Materials Innovation Center,College of Rare Earths,Jiangxi University of Science and Technology,Ganzhou,341000,China

Zhejiang Tiantong Electronic Information Materials Research Institute Co.,Ltd.,Haining,314400,China

National Natural Science Foundation of ChinaNational Natural Science Foundation of China

204302100596205200100538

2024

稀土学报(英文版)
中国稀土学会

稀土学报(英文版)

CSTPCDEI
影响因子:1.3
ISSN:1002-0721
年,卷(期):2024.42(9)