Authors
MA Martorano, C Beckermann, C -A Gandin
Publication date
2003/8/1
Journal
Metallurgical and Materials transactions A
Volume
34
Issue
8
Pages
1657-1674
Publisher
Springer Boston
Description
A multiphase/multiscale model is used to predict the columnar-to-equiaxed transition (CET) during solidification of binary alloys. The model consists of averaged energy and species conservation equations, coupled with nucleation and growth laws for dendritic structures. A new mechanism for the CET is proposed based on solutal interactions between the equiaxed grains and the advancing columnar front—as opposed to the commonly used mechanical blocking criterion. The resulting differences in the CET prediction are demonstrated for cases where a steady state can be assumed, and a revised isotherm velocity (V T ) vs temperature gradient (G) map for the CET is presented. The model is validated by predicting the CET in previously performed unsteady, unidirectional solidification experiments involving Al-Si alloys of three different compositions. Good agreement is …
Total citations
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Scholar articles
MA Martorano, C Beckermann, CA Gandin - Metallurgical and Materials Transactions A, 2003