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{ "DOI": "10.1134/S003602442103002X", "abstract": "<p>Abstract—In the present work, using mixing Gibbs free energies and Chou’s general solution model (GSM),<br>\nby considering the excess activation energies from the binary subsystems, the viscosities of the simple ternary<br>\nAu–Ag–Cu, Al–Cu–Si, and Fe–Ni–Co and liquid alloys of binary subsystems have been evaluated via well<br>\nknown Chou model and physical models, such as Kaptay, Kozlov–Romanov–Petrov (KRP), and Schick<br>\net al. at temperatures 1373, 1375, and 1873 K. A comparison between the evaluated results and experimental<br>\nvalues of the Au–Ag–Cu, Al–Cu–Si, and Fe–Ni–Co ternary alloys was carried out. In this study, the success<br>\nof the application of the aforementioned geometric and physical models to the viscosity calculations of<br>\nthe alloys discussed and the viscosite data are presented to the literature. In order to determine the applicability<br>\nsuccess, the mean square deviation analysis was performed. According to the values in this table, Schick<br>\net al. and KRP models which are derived from the physical quantities among the models discussed provide<br>\nbest description of the viscosity for the Al–Cu–Si and Au–Ag–Cu alloys, respectivel</p>", "author": [ { "family": "H\u00fcseyin ARSLAN" } ], "id": "263680", "issued": { "date-parts": [ [ 2019, 8, 27 ] ] }, "language": "eng", "title": "Estimation of Viscosity of Alloys Using Gibbs Free Energy of Mixing and Geometric Model", "type": "article-journal" }
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