High‐coercivity Sm–Fe–Ga–C compounds with Th2Zn17structure by melt spinning
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.355414
Reference10 articles.
1. Improved magnetic properties by treatment of iron-based rare earth intermetallic compounds in anmonia
2. Gas-phase carbonation of R2Fe17; R = Y, Sm
3. Magnetic properties of Er2Fe17Cx compounds by melt-spinning
4. Formation and magnetic properties of rapidly quenched R2Fe17Cx (R=Gd and Ho) compounds with higher C concentration
5. The formation and magnetic properties of Dy2Fe17Cxwith high carbon content obtained by rapid solidification
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1. Structure and magnetic properties of melt-spun Sm–Fe–Nb ribbons and their nitrides;Rare Metals;2018-03
2. Crystal structure and hard magnetic properties of TbCu7-type Sm0.98Fe9.02–xGax nitrides;Journal of Rare Earths;2014-08
3. Electron Diffraction of ThMn12/Th2Zn17-Type Structures in the Nd-Fe-Ti System;Microscopy and Microanalysis;2013-06-14
4. 1.3.3.1 Equilibrium nanocrystalline rhombohedral R . 3 ¯ . $ . \overline{3} . $ m Sm2(Fe,M)17-derived alloys Sm2Fe17–xM x X ε (x > 0, ε ≥ 0), or R1-s(Fe,M,M’)5+2s-type family (s = 0.33), or R x (Fe,M,M’)100–xX ε alloys (x = 10.5 at-% R);Nanocrystalline Materials, Part A;2013
5. A 57Fe Mössbauer study of nanostructured Sm2Fe17−xCoxC3;Journal of Alloys and Compounds;2008-05
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