Thermodynamic re-assessment of the Fe-Gd and Fe-Sm binary systems

The Fe-Gd and Fe-Sm binary systems were re-assessed thermodynamically using the CALPHAD method based on the critical evaluation of previous optimizations and available experimental information in the published literature. The solution phases including liquid, fcc-Fe, bcc-Fe, bcc-Gd, hcp-Gd, bcc-Sm,...

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Veröffentlicht in:Calphad 2017-09, Vol.58, p.151-159
Hauptverfasser: Chen, X.L., Wang, J., Chen, T.L., Lin, X.D., Rong, M.H., Rao, G.H., Zhou, H.Y.
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Sprache:eng
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Zusammenfassung:The Fe-Gd and Fe-Sm binary systems were re-assessed thermodynamically using the CALPHAD method based on the critical evaluation of previous optimizations and available experimental information in the published literature. The solution phases including liquid, fcc-Fe, bcc-Fe, bcc-Gd, hcp-Gd, bcc-Sm, hcp-Sm and rhombohedral-Sm, were described by the substitutional solution model and their excess Gibbs energies were expressed with the Redlich-Kister polynomial. The intermetallic compounds, α-Fe17Gd2, β-Fe17Gd2, Fe23Gd6, Fe3Gd, Fe2Gd, Fe17Sm2, Fe3Sm and Fe2Sm, were modeled as stoichiometric compounds due to their narrow homogeneity ranges. Self-consistent thermodynamic parameters to describe Gibbs energies of various phases in the Fe-Gd and Fe-Sm binary systems were obtained finally. The calculated results in this work are in good agreement with the reported phase equilibria and thermodynamic properties. •The Fe-Gd and Fe-Sm binary systems were assessed using CALPHAD method.•Self-consistent thermodynamic parameters of these two binary systems were obtained.•The calculation results agree well with phase equilibria and thermodynamic data.
ISSN:0364-5916
1873-2984
DOI:10.1016/j.calphad.2017.07.005