The effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys

The cross rolling is the one of most perspective method of refinement microstructure metals by severe plastic deformation method. This method gives ability to get the long length billets. However, deformation and trajectories of the metal is very heterogeneous across the section of the rolled piece....

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Main Authors: A. B. Naizabekov, S. N. Lezhnev, H. Dyja, T. Bajor, K.Tsay, A. Arbuz, N. Gusseynov, R. Nemkaeva
Format: Article
Language:English
Published: Croatian Metallurgical Society 2017-01-01
Series:Metalurgija
Subjects:
Online Access:http://hrcak.srce.hr/file/249331
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spelling doaj-d3929b4f3e754de6a40c91122f73eae32020-11-24T23:45:48ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762017-01-01561-2199202The effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys A. B. NaizabekovS. N. LezhnevH. DyjaT. BajorK.TsayA. ArbuzN. GusseynovR. NemkaevaThe cross rolling is the one of most perspective method of refinement microstructure metals by severe plastic deformation method. This method gives ability to get the long length billets. However, deformation and trajectories of the metal is very heterogeneous across the section of the rolled piece. This paper presents the finite element method (FEM) simulation of hot cross rolling and experimental study of the effect of the cross rolling on a different threeroll mills on the microstructure of ordinary structural alloy steel, stainless steel and technical copper in different zones of the bar. Analysis showed significant structure refinement in all cases. The best result was achieved on the stainless steel, and shown the formation of equal-axis ultra-fine-grain structure on the bar periphery.http://hrcak.srce.hr/file/249331steelcoopercross rollingsevere plastic deformationultrafine grain structure
collection DOAJ
language English
format Article
sources DOAJ
author A. B. Naizabekov
S. N. Lezhnev
H. Dyja
T. Bajor
K.Tsay
A. Arbuz
N. Gusseynov
R. Nemkaeva
spellingShingle A. B. Naizabekov
S. N. Lezhnev
H. Dyja
T. Bajor
K.Tsay
A. Arbuz
N. Gusseynov
R. Nemkaeva
The effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys
Metalurgija
steel
cooper
cross rolling
severe plastic deformation
ultrafine grain structure
author_facet A. B. Naizabekov
S. N. Lezhnev
H. Dyja
T. Bajor
K.Tsay
A. Arbuz
N. Gusseynov
R. Nemkaeva
author_sort A. B. Naizabekov
title The effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys
title_short The effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys
title_full The effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys
title_fullStr The effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys
title_full_unstemmed The effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys
title_sort effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys
publisher Croatian Metallurgical Society
series Metalurgija
issn 0543-5846
1334-2576
publishDate 2017-01-01
description The cross rolling is the one of most perspective method of refinement microstructure metals by severe plastic deformation method. This method gives ability to get the long length billets. However, deformation and trajectories of the metal is very heterogeneous across the section of the rolled piece. This paper presents the finite element method (FEM) simulation of hot cross rolling and experimental study of the effect of the cross rolling on a different threeroll mills on the microstructure of ordinary structural alloy steel, stainless steel and technical copper in different zones of the bar. Analysis showed significant structure refinement in all cases. The best result was achieved on the stainless steel, and shown the formation of equal-axis ultra-fine-grain structure on the bar periphery.
topic steel
cooper
cross rolling
severe plastic deformation
ultrafine grain structure
url http://hrcak.srce.hr/file/249331
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