Thermodynamic Calculation of Phase Equilibria in the C-Mo-Zr System
The C-Mo-Zr system was assessed by means of the CALPHAD approach. All of the phase equilibria available from the literature were critically reviewed. The liquid was modeled as substitutional solution phase, while the carbides including fcc-(Mo,Zr)C 1− x , bcc-(Mo), bcc-(Zr), hcp-Mo 2 C, hcp-(Zr) and...
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Veröffentlicht in: | Journal of phase equilibria and diffusion 2018-12, Vol.39 (6), p.766-777 |
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Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
Schlagworte: | |
Online-Zugang: | Volltext |
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Zusammenfassung: | The C-Mo-Zr system was assessed by means of the CALPHAD approach. All of the phase equilibria available from the literature were critically reviewed. The liquid was modeled as substitutional solution phase, while the carbides including fcc-(Mo,Zr)C
1−
x
, bcc-(Mo), bcc-(Zr), hcp-Mo
2
C, hcp-(Zr) and η-MoC were described by using corresponding sublattice models. The laves-Mo
2
Zr and shp-MoC phases were considered as binary compounds with no solubility for the third component. The existence of ternary phase was not reported in this system. The modeling of C-Mo-Zr ternary system covers the entire composition and temperature ranges, and a set of self-consistent thermodynamic parameters for the C-Mo-Zr system was systematically optimized. Comprehensive comparisons between the calculated and reported phase diagram data show that the reliable information is satisfactorily accounted for by the present modeling. The liquidus projection and reaction scheme of the C-Mo-Zr system were also generated based on the present thermodynamic assessment. |
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ISSN: | 1547-7037 1863-7345 1934-7243 |
DOI: | 10.1007/s11669-018-0664-x |