Effect of asymmetric rolling with cone-shaped rolls on microstructure of low-carbon steel

Effect of asymmetric rolling with cone-shaped rolls (ARCSR) on the evolution of microstructure of low-carbon steel was investigated. Steel containing 0,15 % C (wt. %) billet with initial grain size of 60 μm was deformed up to thickness of 5 mm with diameters ratio of 1,5, as well as in cylindrical r...

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Main Authors: A. D. Mekhtiev, E. M. Azbanbayev, A. Z. Isagulov, A. R. Karipbayeva, Sv. S. Kvon, N. B. Zakariya, N. Z. Yermaganbetov
Format: Article
Language:English
Published: Croatian Metallurgical Society 2015-10-01
Series:Metalurgija
Subjects:
Online Access:http://hrcak.srce.hr/file/203864
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author A. D. Mekhtiev
E. M. Azbanbayev
A. Z. Isagulov
A. R. Karipbayeva
Sv. S. Kvon
N. B. Zakariya
N. Z. Yermaganbetov
author_facet A. D. Mekhtiev
E. M. Azbanbayev
A. Z. Isagulov
A. R. Karipbayeva
Sv. S. Kvon
N. B. Zakariya
N. Z. Yermaganbetov
author_sort A. D. Mekhtiev
collection DOAJ
description Effect of asymmetric rolling with cone-shaped rolls (ARCSR) on the evolution of microstructure of low-carbon steel was investigated. Steel containing 0,15 % C (wt. %) billet with initial grain size of 60 μm was deformed up to thickness of 5 mm with diameters ratio of 1,5, as well as in cylindrical rolls. Rolling was conducted at three different temperatures: 900 °C, 1 000 °C and 1 100 °C. Final thickness is obtained through four passes of ARCSR with total reduction of 61,7 %. It has been shown during ARCSR at 900 °C grain size is relatively smaller (0,092 μm – surface layer and 0,112 μm – middle layer).
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spelling doaj.art-76c33ff1ef374aa899c13bd9275e6b462022-12-21T19:51:11ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762015-10-01544623626Effect of asymmetric rolling with cone-shaped rolls on microstructure of low-carbon steelA. D. MekhtievE. M. AzbanbayevA. Z. IsagulovA. R. KaripbayevaSv. S. KvonN. B. ZakariyaN. Z. YermaganbetovEffect of asymmetric rolling with cone-shaped rolls (ARCSR) on the evolution of microstructure of low-carbon steel was investigated. Steel containing 0,15 % C (wt. %) billet with initial grain size of 60 μm was deformed up to thickness of 5 mm with diameters ratio of 1,5, as well as in cylindrical rolls. Rolling was conducted at three different temperatures: 900 °C, 1 000 °C and 1 100 °C. Final thickness is obtained through four passes of ARCSR with total reduction of 61,7 %. It has been shown during ARCSR at 900 °C grain size is relatively smaller (0,092 μm – surface layer and 0,112 μm – middle layer).http://hrcak.srce.hr/file/203864rollingsteelmicrostructurepropertiesasymmetric
spellingShingle A. D. Mekhtiev
E. M. Azbanbayev
A. Z. Isagulov
A. R. Karipbayeva
Sv. S. Kvon
N. B. Zakariya
N. Z. Yermaganbetov
Effect of asymmetric rolling with cone-shaped rolls on microstructure of low-carbon steel
Metalurgija
rolling
steel
microstructure
properties
asymmetric
title Effect of asymmetric rolling with cone-shaped rolls on microstructure of low-carbon steel
title_full Effect of asymmetric rolling with cone-shaped rolls on microstructure of low-carbon steel
title_fullStr Effect of asymmetric rolling with cone-shaped rolls on microstructure of low-carbon steel
title_full_unstemmed Effect of asymmetric rolling with cone-shaped rolls on microstructure of low-carbon steel
title_short Effect of asymmetric rolling with cone-shaped rolls on microstructure of low-carbon steel
title_sort effect of asymmetric rolling with cone shaped rolls on microstructure of low carbon steel
topic rolling
steel
microstructure
properties
asymmetric
url http://hrcak.srce.hr/file/203864
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AT arkaripbayeva effectofasymmetricrollingwithconeshapedrollsonmicrostructureoflowcarbonsteel
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