Mathematical modeling of phenomena of dynamic recrystallization during hot plastic deformation in high-carbon bainitic steel

Based on the research results, coefficients were determined in constitutive equations, describing the kinetics of dynamic recrystallization in high-carbon bainitic steel during hot deformation. The developed mathematical model takes into account the dependence of changing kinetics in the size evolut...

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Main Authors: T. Dembiczak, M. Knapinski, B. Garbarz
Format: Article
Language:English
Published: Croatian Metallurgical Society 2017-01-01
Series:Metalurgija
Subjects:
Online Access:http://hrcak.srce.hr/file/249292
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author T. Dembiczak
M. Knapinski
B. Garbarz
author_facet T. Dembiczak
M. Knapinski
B. Garbarz
author_sort T. Dembiczak
collection DOAJ
description Based on the research results, coefficients were determined in constitutive equations, describing the kinetics of dynamic recrystallization in high-carbon bainitic steel during hot deformation. The developed mathematical model takes into account the dependence of changing kinetics in the size evolution of the initial austenite grains, the value of strain, strain rate, temperature and time. Physical simulations were carried out on rectangular specimens measuring 10 × 15 × 20 mm. Compression tests with a plane state of deformation were carried out using a Gleeble 3800.
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spelling doaj.art-3c86d6ac94e2459fbda4f3bed7e262472022-12-22T00:26:29ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762017-01-01561-2107110Mathematical modeling of phenomena of dynamic recrystallization during hot plastic deformation in high-carbon bainitic steelT. DembiczakM. KnapinskiB. GarbarzBased on the research results, coefficients were determined in constitutive equations, describing the kinetics of dynamic recrystallization in high-carbon bainitic steel during hot deformation. The developed mathematical model takes into account the dependence of changing kinetics in the size evolution of the initial austenite grains, the value of strain, strain rate, temperature and time. Physical simulations were carried out on rectangular specimens measuring 10 × 15 × 20 mm. Compression tests with a plane state of deformation were carried out using a Gleeble 3800.http://hrcak.srce.hr/file/249292plastic deformationhigh - carbon bainite steelphysical modelingmathematical modelingdynamic recrystallization
spellingShingle T. Dembiczak
M. Knapinski
B. Garbarz
Mathematical modeling of phenomena of dynamic recrystallization during hot plastic deformation in high-carbon bainitic steel
Metalurgija
plastic deformation
high - carbon bainite steel
physical modeling
mathematical modeling
dynamic recrystallization
title Mathematical modeling of phenomena of dynamic recrystallization during hot plastic deformation in high-carbon bainitic steel
title_full Mathematical modeling of phenomena of dynamic recrystallization during hot plastic deformation in high-carbon bainitic steel
title_fullStr Mathematical modeling of phenomena of dynamic recrystallization during hot plastic deformation in high-carbon bainitic steel
title_full_unstemmed Mathematical modeling of phenomena of dynamic recrystallization during hot plastic deformation in high-carbon bainitic steel
title_short Mathematical modeling of phenomena of dynamic recrystallization during hot plastic deformation in high-carbon bainitic steel
title_sort mathematical modeling of phenomena of dynamic recrystallization during hot plastic deformation in high carbon bainitic steel
topic plastic deformation
high - carbon bainite steel
physical modeling
mathematical modeling
dynamic recrystallization
url http://hrcak.srce.hr/file/249292
work_keys_str_mv AT tdembiczak mathematicalmodelingofphenomenaofdynamicrecrystallizationduringhotplasticdeformationinhighcarbonbainiticsteel
AT mknapinski mathematicalmodelingofphenomenaofdynamicrecrystallizationduringhotplasticdeformationinhighcarbonbainiticsteel
AT bgarbarz mathematicalmodelingofphenomenaofdynamicrecrystallizationduringhotplasticdeformationinhighcarbonbainiticsteel