Cellular Automaton Simulation For Volume Changes Of Solidifying Nodular Cast Iron

Volume changes of the binary Fe-C alloy with nodular graphite were forecast by means of the Cellular Automaton Finite Differences (CA-FD) model of solidification. Simulations were performed in 2D space for differing carbon content. Dependences of phase density on temperature were considered in the c...

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Main Authors: Burbelko A., Gurgul D., Guzik E., Kapturkiewicz W.
Format: Article
Language:English
Published: Polish Academy of Sciences 2015-09-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:http://www.degruyter.com/view/j/amm.2015.60.issue-3/amm-2015-0388/amm-2015-0388.xml?format=INT
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author Burbelko A.
Gurgul D.
Guzik E.
Kapturkiewicz W.
author_facet Burbelko A.
Gurgul D.
Guzik E.
Kapturkiewicz W.
author_sort Burbelko A.
collection DOAJ
description Volume changes of the binary Fe-C alloy with nodular graphite were forecast by means of the Cellular Automaton Finite Differences (CA-FD) model of solidification. Simulations were performed in 2D space for differing carbon content. Dependences of phase density on temperature were considered in the computations; additionally density of the liquid phase and austenite were deemed as a function of carbon concentration. Changes of the specific volume were forecast on the base of the phase volume fractions and changes of phase density. Density of modeled material was calculated as weighted average of densities of each phase.
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spelling doaj.art-56038875d6a348039a7970611896c2e52022-12-22T00:39:19ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092015-09-016032379238410.1515/amm-2015-0388amm-2015-0388Cellular Automaton Simulation For Volume Changes Of Solidifying Nodular Cast IronBurbelko A.0Gurgul D.1Guzik E.2Kapturkiewicz W.3 AGH UNIVERSITY OF SCIENCE AND TECHNOLOGY, AL. A. MICKIEWICZA 30, 30-059 KRAKOW, POLAND AGH UNIVERSITY OF SCIENCE AND TECHNOLOGY, AL. A. MICKIEWICZA 30, 30-059 KRAKOW, POLAND AGH UNIVERSITY OF SCIENCE AND TECHNOLOGY, AL. A. MICKIEWICZA 30, 30-059 KRAKOW, POLAND AGH UNIVERSITY OF SCIENCE AND TECHNOLOGY, AL. A. MICKIEWICZA 30, 30-059 KRAKOW, POLANDVolume changes of the binary Fe-C alloy with nodular graphite were forecast by means of the Cellular Automaton Finite Differences (CA-FD) model of solidification. Simulations were performed in 2D space for differing carbon content. Dependences of phase density on temperature were considered in the computations; additionally density of the liquid phase and austenite were deemed as a function of carbon concentration. Changes of the specific volume were forecast on the base of the phase volume fractions and changes of phase density. Density of modeled material was calculated as weighted average of densities of each phase.http://www.degruyter.com/view/j/amm.2015.60.issue-3/amm-2015-0388/amm-2015-0388.xml?format=INTductile ironsolidification modelingspecific volume change
spellingShingle Burbelko A.
Gurgul D.
Guzik E.
Kapturkiewicz W.
Cellular Automaton Simulation For Volume Changes Of Solidifying Nodular Cast Iron
Archives of Metallurgy and Materials
ductile iron
solidification modeling
specific volume change
title Cellular Automaton Simulation For Volume Changes Of Solidifying Nodular Cast Iron
title_full Cellular Automaton Simulation For Volume Changes Of Solidifying Nodular Cast Iron
title_fullStr Cellular Automaton Simulation For Volume Changes Of Solidifying Nodular Cast Iron
title_full_unstemmed Cellular Automaton Simulation For Volume Changes Of Solidifying Nodular Cast Iron
title_short Cellular Automaton Simulation For Volume Changes Of Solidifying Nodular Cast Iron
title_sort cellular automaton simulation for volume changes of solidifying nodular cast iron
topic ductile iron
solidification modeling
specific volume change
url http://www.degruyter.com/view/j/amm.2015.60.issue-3/amm-2015-0388/amm-2015-0388.xml?format=INT
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AT guzike cellularautomatonsimulationforvolumechangesofsolidifyingnodularcastiron
AT kapturkiewiczw cellularautomatonsimulationforvolumechangesofsolidifyingnodularcastiron