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High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes
SJR: 0.137 SNIP: 0.341 CiteScore™: 0.43

ISSN Печать: 1093-3611
ISSN Онлайн: 1940-4360

Выпуски:
Том 23, 2019 Том 22, 2018 Том 21, 2017 Том 20, 2016 Том 19, 2015 Том 18, 2014 Том 17, 2013 Том 16, 2012 Том 15, 2011 Том 14, 2010 Том 13, 2009 Том 12, 2008 Том 11, 2007 Том 10, 2006 Том 9, 2005 Том 8, 2004 Том 7, 2003 Том 6, 2002 Том 5, 2001 Том 4, 2000 Том 3, 1999 Том 2, 1998 Том 1, 1997

High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes

DOI: 10.1615/HighTempMatProc.v1.i1.100
pages 125-132

NUMERICAL SOLUTION OF ONE-DIMENSIONAL MELTING AND SOLIDIFICATION OF TWO-COMPONENT CERAMICS WITH COUPLED HEAT AND DIFFUSION MASS TRANSFER

S. Konstantinov
A.A.Baikov Institute of Metallurgy, Russian Academy of Sciences, 49, Leninskiy prosp., 117911 Moscow, Russia
I. Yu. Smurov
C. N. R. S., Institut de Science et de Genie des Materiaux et Procedes B. P. 5, Odeillo, F-66125 Font-Romeu Cedex; Ecole Nationale d'Ingenieurs de Saint-Etienne, 58 rue Jean Parot, 42023 Saint -Etienne Cedex 2, France
Gilles Flamant
CNRS PROMES UPR 8521, Tecnosud, Rambla de la Thermodynamique, 66100 Perpignan, France

Краткое описание

Melting and solidification of two-component ceramics under action of concentrated energy fluxes are studied together with diffusion mass transfer. The position and temperature of phase transition front are unknown a priori and are determined from numerical solution of coupled heat and diffusion mass transfer problems. The temperature of solid/liquid interface is a function of phase-change front velocity and composition. The concentration and temperature fields are obtained.


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