Experimental study and thermodynamic calculation of the Sm-Co-Fe system
Author:
Publisher
Elsevier BV
Subject
Computer Science Applications,General Chemical Engineering,General Chemistry
Reference37 articles.
1. Grain boundary modification induced magnetization reversal process and giant coercivity enhancement in 2:17 type SmCo magnets;Yan;J. Alloys Compd.,2019
2. Correlation between Fe content and z value in Sm(CobalFexCu0.06Zr0.025)(z) permanent magnets;Wang;J. Magn. Magn Mater.,2019
3. Effects of annealing and magnetic field on the structure and magnetic properties of Fe-Cr-Co alloy-doped Sm(Co0.9Cu0.1)5 ribbons;Han;J. Magn. Magn Mater.,2020
4. The formation mechanism of 1:5H phase in Sm(Co, Fe, Cu, Zr)z melt-spun ribbons with high iron content;Xu;J. Magn. Magn Mater.,2020
5. Magnetic property improvement of melt spun LaCo5-based nanocomposites with Y, Fe and C substitutions;Chang;J. Alloys Compd.,2020
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1. Experimental study of phase equilibria in Y–Co–Zr system at 600 °C and 800 °C;Calphad;2024-09
2. Experimental Determination of Phase Equilibria in the La-Co-Zr System;Journal of Phase Equilibria and Diffusion;2024-07-28
3. Phase Formation and Magnetic Properties of (Y1−xSmx)Co5 Melt-Spun Ribbons;Metals;2024-05-10
4. Correlation between hydrogen absorption capacity and microstructure of Fe-rich Sm-Co-Fe-Cu-Zr permanent magnetic alloys;Journal of Rare Earths;2024-05
5. Thermodynamic description of the La–Co–Fe and Ce–Co–Fe ternary systems;Calphad;2024-03
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