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Viscosities of liquid metal alloys from nonequilibrium molecular dynamics

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TitleViscosities of liquid metal alloys from nonequilibrium molecular dynamics
Publication TypeJournal Article
Year of Publication2001
AuthorsQi, Y, Çain, T, Kimura, Y, Goddard, WA
JournalJournal of Computer-Aided Materials Design
Volume8
Pagination233–243
ISSN0928-1045
KeywordsCu-Ag Alloy, Liquid metals, Viscosity
Abstract

We have developed a nonequilibrium molecular dynamics (NEMD) approach to predict viscosity by including external shear rates directly into the Hamiltonian equations of motion. Using the quantum Sutton-Chen (Q-SC) many-body potentials for Au and Cu, we applied NEMD to predict the viscosity as a function of shear rates for AuxCU1-x alloys with x ranging from 0 to 100%. This was done for temperatures of 1500 K to 2000 K. The predicted viscosities are in reasonable agreement with experiment. In particular, we find that fixing the density and changing the temperature leads to very little change in the shear viscosity. Thus, the temperature dependence in viscosity is mainly due to the change in density with temperature.

DOI10.1023/A:1020050901614