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Published in: Metallurgical and Materials Transactions A 1/2017

20-10-2016

Dynamic Modeling of Critical Velocities for the Pushing/Engulfment Transition in the Si-SiC System Under Gravity Conditions

Authors: Julia Kundin, Henning Aufgebauer, Christian Reimann, Jan Seebeck, Jochen Friedrich, Thomas Jauss, Tina Sorgenfrei, Arne Croell

Published in: Metallurgical and Materials Transactions A | Issue 1/2017

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Abstract

An extended non-steady-state model for the interaction between a solid particle and an advancing solid/liquid interface based on the dynamic model of Catalina et al. (Metall Mater Trans A 31:2559–2568, 2000) is used to calculate the critical velocities for the pushing/engulfment transition in Si-SiC system under microgravity and under normal gravity conditions. The aim of this study was to explain the abnormal behavior of the critical velocity in experiments. The simulations were carried out for two cases of the drag force formulation. The effects of the non-spherical form of the particles as well as the cluster formation were also taken into account. It is found that in the presence of the gravity force, the particles will be engulfed when the particle size exceeds a certain limit which does not depend on the choice of the drag force formulation.

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Metadata
Title
Dynamic Modeling of Critical Velocities for the Pushing/Engulfment Transition in the Si-SiC System Under Gravity Conditions
Authors
Julia Kundin
Henning Aufgebauer
Christian Reimann
Jan Seebeck
Jochen Friedrich
Thomas Jauss
Tina Sorgenfrei
Arne Croell
Publication date
20-10-2016
Publisher
Springer US
Published in
Metallurgical and Materials Transactions A / Issue 1/2017
Print ISSN: 1073-5623
Electronic ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-016-3817-8

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