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Critical Evaluation and Thermodynamic Optimization of the Cu-Zn, Cu-Se and Zn-Se Binary Systems

Yu Tang, Jie Ma, Dong Han, Jian Wang, Haiying Qi and Liling Jin

Article (2022)

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Abstract

In our study, a complete review of the literature, critical evaluation and thermodynamic assessment of the Cu-Zn, Cu-Se and Zn-Se binary systems were carried out. The modified quasi-chemical model (MQM) was applied to describe the Gibbs energy of the liquid phase. The Gibbs energies of all intermetallic compounds and terminal solid solutions were described using the compound energy formalism (CEF) model. The re-optimization of the Cu-Zn binary system was carried out by considering the ordered bcc_B2 crystal structure of the β’ phase. Moreover, the β and δ phases in the Cu-Zn binary system with the same bcc_A2 crystal structure were modeled as one single phase in the present work. A self-consistent thermodynamic database was constructed for the Cu-Zn, Cu-Se and Zn-Se binary systems, work that formed part of a comprehensive thermodynamic database development project researching zinc-based biodegradable materials.

Uncontrolled Keywords

thermodynamics; CALPHAD; Cu-Zn system; Cu-Se system; Zn-Se system

Subjects: 1800 Chemical engineering > 1800 Chemical engineering
1800 Chemical engineering > 1803 Thermodynamics
Department: Department of Chemical Engineering
Research Center: CRCT - Centre for Research in Computational Thermochemistry
Funders: Natural Science Foundation of Anhui Province
Grant number: 2108085QE213
PolyPublie URL: https://publications.polymtl.ca/54322/
Journal Title: Metals (vol. 12, no. 9)
Publisher: Multidisciplinary Digital Publishing Institute
DOI: 10.3390/met12091401
Official URL: https://doi.org/10.3390/met12091401
Date Deposited: 02 Nov 2023 14:36
Last Modified: 02 Oct 2024 18:17
Cite in APA 7: Tang, Y., Ma, J., Han, D., Wang, J., Qi, H., & Jin, L. (2022). Critical Evaluation and Thermodynamic Optimization of the Cu-Zn, Cu-Se and Zn-Se Binary Systems. Metals, 12(9), 1401 (32 pages). https://doi.org/10.3390/met12091401

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