The effect of boron and rare earth contents on the magnetic properties of La and Cr substituted α-Fe/R2Fe14B-type nanocomposites
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.367572
Reference11 articles.
1. New nanocrystalline high-remanence Nd-Fe-B alloys by rapid solidification
2. Magnetization processes in Nd4Fe77B19 permanent magnetic materials
3. Microstructure and magnetic properties of high-remanence Nd/sub 5/Fe/sub 71.5/Co/sub 5/B/sub 18.5/M (M=Al, Si, Ga, Ag, Au) rapidly solidified and crystallized alloys for resin-bonded magnets
4. Magnetic properties and microstructural characterisation of isotropic nanocrystalline Fe-Nd-B based alloys
5. Microstructure analysis of nanocrystalline Fe-Nd-B ribbons with enhanced hard magnetic properties
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1. Compositional optimization for nanocrystalline hard magnetic MRE–Fe–B–Zr alloys via modifying RE and B contents;Journal of Magnetism and Magnetic Materials;2015-06
2. Hard-magnetic melt-spun R–Fe–B alloys on the base of light rare-earth metals (R=La, Nd);Functional materials;2013-06-25
3. 1.2.1.2 (R,R’)2(Fe,M)14B-based nanocomposites;Nanocrystalline Materials, Part A;2013
4. The role of combined addition of Ti and B in magnetic hardening of devitrified Pr2Fe14B/(Fe3B,α-Fe) nanocomposite magnets;physica status solidi (a);2008-05
5. The structures and magnetic properties of Ti-substituted Pr2(Fe,Co)14(C,B)-type nanocomposites;Journal of Applied Physics;2008-04
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