Simulation of microstructural evolution in directional solidification of Ti-45at.%Al alloy using cellular automaton method

The microstructural evolution of Ti-45 at.%Al alloy during directional solidification was simulated by applying a solute diffusion controlled solidification model. The obtained results have shown that under high thermal gradients the stable primary spacing can be adjusted via branching or competitiv...

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Main Authors: Wang Kuangfei, Lu Shan, Mi Guofa
Format: Article
Language:English
Published: Foundry Journal Agency 2010-02-01
Series:China Foundry
Subjects:
Online Access:http://www.foundryworld.com/uploadfile/201032960138829.pdf
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spelling doaj-0924faef2ac648f79a8af6ebd124478f2020-11-24T21:02:08ZengFoundry Journal AgencyChina Foundry1672-64212010-02-01714751Simulation of microstructural evolution in directional solidification of Ti-45at.%Al alloy using cellular automaton method Wang KuangfeiLu ShanMi GuofaThe microstructural evolution of Ti-45 at.%Al alloy during directional solidification was simulated by applying a solute diffusion controlled solidification model. The obtained results have shown that under high thermal gradients the stable primary spacing can be adjusted via branching or competitive growth. For dendritic structures formed under a high thermal gradient, the secondary dendrite arms are developed not very well in many cases due to the branching mechanism under a constrained dendritic growth condition. Furthermore, it has been observed that, with increasing pulling velocity, there exists a cell/dendrite transition region consisting of cells and dendrites, which varies with the thermal gradient in a contradicting way, i.e. increase of the thermal gradient leading to the decrease of the range of the transition region. The simulations agree reasonably well with experiment results.http://www.foundryworld.com/uploadfile/201032960138829.pdfTi-Al based alloydirectional solidificationsolute diffusion controlled modecellular automaton
collection DOAJ
language English
format Article
sources DOAJ
author Wang Kuangfei
Lu Shan
Mi Guofa
spellingShingle Wang Kuangfei
Lu Shan
Mi Guofa
Simulation of microstructural evolution in directional solidification of Ti-45at.%Al alloy using cellular automaton method
China Foundry
Ti-Al based alloy
directional solidification
solute diffusion controlled mode
cellular automaton
author_facet Wang Kuangfei
Lu Shan
Mi Guofa
author_sort Wang Kuangfei
title Simulation of microstructural evolution in directional solidification of Ti-45at.%Al alloy using cellular automaton method
title_short Simulation of microstructural evolution in directional solidification of Ti-45at.%Al alloy using cellular automaton method
title_full Simulation of microstructural evolution in directional solidification of Ti-45at.%Al alloy using cellular automaton method
title_fullStr Simulation of microstructural evolution in directional solidification of Ti-45at.%Al alloy using cellular automaton method
title_full_unstemmed Simulation of microstructural evolution in directional solidification of Ti-45at.%Al alloy using cellular automaton method
title_sort simulation of microstructural evolution in directional solidification of ti-45at.%al alloy using cellular automaton method
publisher Foundry Journal Agency
series China Foundry
issn 1672-6421
publishDate 2010-02-01
description The microstructural evolution of Ti-45 at.%Al alloy during directional solidification was simulated by applying a solute diffusion controlled solidification model. The obtained results have shown that under high thermal gradients the stable primary spacing can be adjusted via branching or competitive growth. For dendritic structures formed under a high thermal gradient, the secondary dendrite arms are developed not very well in many cases due to the branching mechanism under a constrained dendritic growth condition. Furthermore, it has been observed that, with increasing pulling velocity, there exists a cell/dendrite transition region consisting of cells and dendrites, which varies with the thermal gradient in a contradicting way, i.e. increase of the thermal gradient leading to the decrease of the range of the transition region. The simulations agree reasonably well with experiment results.
topic Ti-Al based alloy
directional solidification
solute diffusion controlled mode
cellular automaton
url http://www.foundryworld.com/uploadfile/201032960138829.pdf
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AT lushan simulationofmicrostructuralevolutionindirectionalsolidificationofti45atalalloyusingcellularautomatonmethod
AT miguofa simulationofmicrostructuralevolutionindirectionalsolidificationofti45atalalloyusingcellularautomatonmethod
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