Publication detail
Processing of medium carbon steel by hot pressing prior ECAP
ZRNÍK, J. ŠVEJCAR, J.
Czech title
Zpracování středně uhlíkové oceli metodou ECAP
English title
Processing of medium carbon steel by hot pressing prior ECAP
Type
journal article - other
Language
en
Original abstract
Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development. Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development. Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development. Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development. Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development.
Czech abstract
Štruktúra stredneuhlíkovej ocele bola spracovaná pred aplikáciou extrémnej deformácie s využitím kanálového pretláčania pomocou aplikácie temomechanického spracovania. Výsledkom a cieľom tohto spracovania bolo získanie jemnejšej štruktúry ocele s modifikovaným cementitom pred následnou aplikáciou extrémnej deformácie. Stabilita štruktúry vytvorenej ultrajemnej bola overená v podmienkach zvýšenej teplote extrémnej deformácie. Štruktúra stredneuhlíkovej ocele bola spracovaná pred aplikáciou extrémnej deformácie s využitím kanálového pretláčania pomocou aplikácie temomechanického spracovania. Výsledkom a cieľom tohto spracovania bolo získanie jemnejšej štruktúry ocele s modifikovaným cementitom pred následnou aplikáciou extrémnej deformácie. Stabilita štruktúry vytvorenej ultrajemnej bola overená v podmienkach zvýšenej teplote extrémnej deformácie.
English abstract
Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development. Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development. Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development. Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development. Medium carbon steel prior to subjecting severe plastic deformation was thermomechanically treated in order to modified the initial grain size and morphology of cementite particles. The further structure modification of the steel was obtained during the equal channel angular pressing at increased temperature using the effective strain 3. The thermal stability qnd mechanical properties of the deformed steel were related to ultrafine grained structure development.
Keywords in Czech
ECAP,středněuhlíková ocel
Keywords in English
ECAP,medium carbon steel
RIV year
2005
Released
12.02.2005
Publisher
TMS
ISSN
1047-4838
Journal
JOM
Volume
57
Number
2
Pages from–to
231–232
Pages count
2
BIBTEX
@article{BUT43863,
author="Jozef {Zrník} and Jiří {Švejcar},
title="Processing of medium carbon steel by hot pressing prior ECAP",
journal="JOM",
year="2005",
volume="57",
number="2",
month="February",
pages="231--232",
publisher="TMS",
issn="1047-4838"
}