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Thermodynamic properties prediction of Mg-Al-Zn melts based on the atom and molecule coexistence theory
- Source :
- Journal of Mining and Metallurgy. Section B: Metallurgy, Vol 55, Iss 2, Pp 135-145 (2019)
- Publication Year :
- 2019
- Publisher :
- National Library of Serbia, 2019.
-
Abstract
- A developed and verified thermodynamic model based on the atom and molecule coexistence theory (AMCT) is employed to predict activities relative to pure liquids in standard state in Mg-Al, Mg-Zn, Al-Zn and Mg-Al-Zn melts through the calculated mass action concentrations of structural units, i.e., Ni. According to AMCT, Ni can be extrapolated and calculated by the chemical equilibrium constant of a structural molecule, i.e., Ki, in the Mg-Al-Zn ternary system and binary subsystems. In this paper, the standard Gibbs free energy function, for reported activities and mixing thermodynamic properties in Mg-Al, Mg-Zn and Al-Zn melts, was regressed and optimized. The results showed that Ki and Ni were deduced by Gibbs free energy function at the studied temperature. The results of calculating thermodynamic properties in the full composition range for liquid Mg-Al-Zn from 880 to 1100 K, as well as Mg-Al from 923 to 1073 K, Mg-Zn from 880 to 973 K and Al-Zn from 1000 to 1073 K, are presented in the paper by coupling with Ni and AMCT. An excellent agreement is noticed between the calculated values of this study and measured thermodynamic data from the references, suggesting that the AMCT can be well applied to describe and predict the activities of the Mg-Al-Zn system and its subsystems.
- Subjects :
- lcsh:TN1-997
Coexistence theory
thermodynamic prediction model
Range (particle radiation)
Materials science
Ternary numeral system
Metals and Alloys
Thermodynamics
mass action concentrations
Function (mathematics)
regression and optimization
Geotechnical Engineering and Engineering Geology
atom and molecule coexistence theory
Gibbs free energy
symbols.namesake
Mechanics of Materials
Materials Chemistry
symbols
Molecule
Chemical equilibrium
lcsh:Mining engineering. Metallurgy
Mixing (physics)
the mg-al-zn system and its subsystems
Subjects
Details
- ISSN :
- 22177175 and 14505339
- Volume :
- 55
- Database :
- OpenAIRE
- Journal :
- Journal of Mining and Metallurgy, Section B: Metallurgy
- Accession number :
- edsair.doi.dedup.....0dc0eb8396f84dd99254b81fa60f801a
- Full Text :
- https://doi.org/10.2298/jmmb181126017z