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ASM Handbook

Cast Iron Science and Technology

Edited by
Doru M. Stefanescu
Doru M. Stefanescu
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ASM International
Volume
1A
ISBN electronic:
978-1-62708-179-5
Publication date:
2017
Book Chapter

Computational Models for Prediction of Solidification Microstructure

By
A.V. Catalina
A.V. Catalina
Caterpillar Inc.
,
USA
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A.A. Burbelko
A.A. Burbelko
AGH University of Science and Technology
,
Krakow
,
Poland
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W. Kapturkiewicz
W. Kapturkiewicz
AGH University of Science and Technology
,
Krakow
,
Poland
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M. Zhu
M. Zhu
School of Materials Science and Engineering, Southeast University
,
China
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Published:
2017
Page range:
94 - 105
Publication history
August 28, 2017

Abstract

The microstructure that develops during the solidification stage of cast iron largely influences the subsequent solid-state transformations and mechanical properties of the cast components. This article provides a brief introduction of methods that can be used for simulating the solidification microstructure of cast iron. Analytical as well as numerical models describing solidification phenomena at both macroscopic and microscopic scales are presented. The article introduces macroscopic transport equations and presents analytical microscopic models for solidification. These models include the dendrite growth models and the cooperative eutectic growth models. The article provides some solutions using numerical models to simulate the kinetics of microstructure formation in cast iron. It concludes with a discussion on cellular automaton (CA) technique that can handle complex topology changes and reproduce most of the solidification microstructure features observed experimentally.

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A.V. Catalina, A.A. Burbelko, W. Kapturkiewicz, M. Zhu, 2017. "Computational Models for Prediction of Solidification Microstructure", Cast Iron Science and Technology, Doru M. Stefanescu

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