Finite element simulation of deformation behavior of prefabricated holes in ultra-heavy plates by gradient temperature rolling

Based on the Deform-3D finite element simulation software, the numerical analysis of prefabricated holes in the core of ultra-heavy plates is carried out in different rolling schemes. In this paper, the deformation of the hole in core under uniform temperature rolling (UTR) is compared by different...

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Main Authors: H. Fu, B. Xu, J. Xiao, S. Li, T. Kang
Format: Article
Language:English
Published: Croatian Metallurgical Society 2020-01-01
Series:Metalurgija
Subjects:
Online Access:https://hrcak.srce.hr/file/338176
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author H. Fu
B. Xu
J. Xiao
S. Li
T. Kang
author_facet H. Fu
B. Xu
J. Xiao
S. Li
T. Kang
author_sort H. Fu
collection DOAJ
description Based on the Deform-3D finite element simulation software, the numerical analysis of prefabricated holes in the core of ultra-heavy plates is carried out in different rolling schemes. In this paper, the deformation of the hole in core under uniform temperature rolling (UTR) is compared by different gradient temperature rolling (GTR) processes. The results show that the GTR can improve the core deformation compared with the UTR. The increase of the number of water cooling can accelerate the welding of the core holes and the healing of the final gap, and multi-pass watercooled GTR should be used for ultra-heavy plate rolling.
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spelling doaj.art-dc90d0c71f0740acaa71c47aae237f492022-12-21T23:27:50ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762020-01-01592175178Finite element simulation of deformation behavior of prefabricated holes in ultra-heavy plates by gradient temperature rollingH. Fu0B. Xu1J. Xiao2S. Li3T. Kang4College of Metallurgy and Energy, North China University of Science and Technology, Tangshan, Hebei, ChinaCollege of Metallurgy and Energy, North China University of Science and Technology, Tangshan, Hebei, ChinaKey Laboratory of metallurgical engineering, University of Science and Technology Liaoning, Anshan, Liaoning, ChinaKey Laboratory of metallurgical engineering, University of Science and Technology Liaoning, Anshan, Liaoning, China725 Research Institute of China Shipbuilding Heavy Industry, ChinaBased on the Deform-3D finite element simulation software, the numerical analysis of prefabricated holes in the core of ultra-heavy plates is carried out in different rolling schemes. In this paper, the deformation of the hole in core under uniform temperature rolling (UTR) is compared by different gradient temperature rolling (GTR) processes. The results show that the GTR can improve the core deformation compared with the UTR. The increase of the number of water cooling can accelerate the welding of the core holes and the healing of the final gap, and multi-pass watercooled GTR should be used for ultra-heavy plate rolling.https://hrcak.srce.hr/file/338176gradient temperature rollingprefabricated holesdeformationfinite element simulation
spellingShingle H. Fu
B. Xu
J. Xiao
S. Li
T. Kang
Finite element simulation of deformation behavior of prefabricated holes in ultra-heavy plates by gradient temperature rolling
Metalurgija
gradient temperature rolling
prefabricated holes
deformation
finite element simulation
title Finite element simulation of deformation behavior of prefabricated holes in ultra-heavy plates by gradient temperature rolling
title_full Finite element simulation of deformation behavior of prefabricated holes in ultra-heavy plates by gradient temperature rolling
title_fullStr Finite element simulation of deformation behavior of prefabricated holes in ultra-heavy plates by gradient temperature rolling
title_full_unstemmed Finite element simulation of deformation behavior of prefabricated holes in ultra-heavy plates by gradient temperature rolling
title_short Finite element simulation of deformation behavior of prefabricated holes in ultra-heavy plates by gradient temperature rolling
title_sort finite element simulation of deformation behavior of prefabricated holes in ultra heavy plates by gradient temperature rolling
topic gradient temperature rolling
prefabricated holes
deformation
finite element simulation
url https://hrcak.srce.hr/file/338176
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AT bxu finiteelementsimulationofdeformationbehaviorofprefabricatedholesinultraheavyplatesbygradienttemperaturerolling
AT jxiao finiteelementsimulationofdeformationbehaviorofprefabricatedholesinultraheavyplatesbygradienttemperaturerolling
AT sli finiteelementsimulationofdeformationbehaviorofprefabricatedholesinultraheavyplatesbygradienttemperaturerolling
AT tkang finiteelementsimulationofdeformationbehaviorofprefabricatedholesinultraheavyplatesbygradienttemperaturerolling