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UFN, 2013 Volume 183, Number 12, Pages 1281–1322 (Mi ufn4469)

This article is cited in 74 papers

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Computer simulation of liquid metals

D. K. Belashchenko

National University of Sciences and Technology 'Moscow Institute of Steel and Alloys' (MISIS)

Abstract: Methods for and the results of the computer simulation of liquid metals are reviewed. Two basic methods, classical molecular dynamics with known interparticle potentials and the ab initio method, are considered. Most attention is given to the simulated results obtained using the embedded atom model (EAM). The thermodynamic, structural, and diffusion properties of liquid metal models under normal and extreme (shock) pressure conditions are considered. Liquid-metal simulated results for the Groups I – IV elements, a number of transition metals, and some binary systems (Fe – C, Fe – S) are examined. Possibilities for the simulation to account for the thermal contribution of delocalized electrons to energy and pressure are considered. Solidification features of supercooled metals are also discussed.

PACS: 02.70.-c, 61.25.Mv

Received: April 9, 2013
Revised: June 26, 2013
Accepted: July 1, 2013

DOI: 10.3367/UFNr.0183.201312b.1281


 English version:
Physics–Uspekhi, 2013, 56:12, 1176–1216

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