Magnetic properties and phase evolution of nanocomposite Nd10Febal.MCB10.5 (M=Ti, Nb, V, Cr and Mo) melt-spun ribbons
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference8 articles.
1. New nanocrystalline high-remanence Nd-Fe-B alloys by rapid solidification
2. Magnetization processes in Nd4Fe77B19 permanent magnetic materials
3. The effects of boron content on the microstructure and exchange coupling effect of Nd/sub 9.5/Fe/sub 85.5-x/B/sub 5+x/ melt spun ribbons
4. High performance α-Fe/Nd2Fe14B-type nanocomposites
5. Magnetic and microstructure studies of boron-enriched (Nd/sub 0.95/La/sub 0.05/)/sub 11/Fe/sub 76.5$/ -/sub x/Co/sub x/Ti/sub 2/B/sub 10.5/ (x=0-15) melt-spun ribbons
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1. Effect of doping Al-Cu-Fe alloy on the microstructure and magnetic properties of annealed Nd-Fe-Co-B ribbons;Physica B: Condensed Matter;2022-12
2. Anisotropic nanocomposite Nd-Fe-B magnets produced by hot deformation with assistance of Nd-Cu;Journal of Magnetism and Magnetic Materials;2019-11
3. Nanocrystalline and nanocomposite permanent magnets by melt spinning technique;Chinese Physics B;2018-11
4. Influence of Nb, Mo, and Ti as doping metals on structure and magnetic response in NdFeB based melt spun ribbons;Journal of Magnetism and Magnetic Materials;2018-09
5. Effect of element substitution on nanostructure and hard magnetism of rapidly quenched Nd2Fe14B;Philosophical Magazine;2016-08-05
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