EFFECT OF ROLL BENDING FORCE ON HOT ROLLING FORMING OF Q345R/316L STAINLESS STEEL CLAD PLATE

Aimed at the presetting problems of the roll bending force during vacuum hot rolling of Q345 R/316 L stainless steel clad plates, a three dimensional thermo-mechanical finite element model of rolling for stainless steel clad plates was proposed by using the FE software MSC.MARC. Four boundary condit...

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Main Authors: JIN HeRong, DAI Chao, HAN MinFeng
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2019-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2019.05.020
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author JIN HeRong
DAI Chao
HAN MinFeng
author_facet JIN HeRong
DAI Chao
HAN MinFeng
author_sort JIN HeRong
collection DOAJ
description Aimed at the presetting problems of the roll bending force during vacuum hot rolling of Q345 R/316 L stainless steel clad plates, a three dimensional thermo-mechanical finite element model of rolling for stainless steel clad plates was proposed by using the FE software MSC.MARC. Four boundary conditions of model bending roll force are set 0 kN, 300 kN, 500 kN and 800 kN respectively. The distribution law of reduction of the base plate, the bending deformation of the roll system and semi-loaded roll gap in the width direction of the clad plate under different bending roll forces were studied by numerical simulation. The distribution law of interfacial stress and strain under different bending roll forces was analyzed. According to the judgment condition of interface bonding condition, the optimum bending force was set. The simulation results show that the shape of plate appears high in the middle and low at the edge without bending force. When the roll bending force is applied, the shape of plate is obviously improved, and the optimum setting value of the bending force is 500 kN. Under the condition that the total deformation is constant, the increase of bending force will promote the deformation of the base metal and the cladding metal. Thus uniform stress-strain distribution and good coordinating deformation can be realized, which is beneficial to the interfacial bonding of clad plates.
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id doaj-art-ae85e4012cde4a9b8a4405d37dbf8eaf
institution Kabale University
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publishDate 2019-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-ae85e4012cde4a9b8a4405d37dbf8eaf2025-01-15T02:29:23ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692019-01-01411138114430606146EFFECT OF ROLL BENDING FORCE ON HOT ROLLING FORMING OF Q345R/316L STAINLESS STEEL CLAD PLATEJIN HeRongDAI ChaoHAN MinFengAimed at the presetting problems of the roll bending force during vacuum hot rolling of Q345 R/316 L stainless steel clad plates, a three dimensional thermo-mechanical finite element model of rolling for stainless steel clad plates was proposed by using the FE software MSC.MARC. Four boundary conditions of model bending roll force are set 0 kN, 300 kN, 500 kN and 800 kN respectively. The distribution law of reduction of the base plate, the bending deformation of the roll system and semi-loaded roll gap in the width direction of the clad plate under different bending roll forces were studied by numerical simulation. The distribution law of interfacial stress and strain under different bending roll forces was analyzed. According to the judgment condition of interface bonding condition, the optimum bending force was set. The simulation results show that the shape of plate appears high in the middle and low at the edge without bending force. When the roll bending force is applied, the shape of plate is obviously improved, and the optimum setting value of the bending force is 500 kN. Under the condition that the total deformation is constant, the increase of bending force will promote the deformation of the base metal and the cladding metal. Thus uniform stress-strain distribution and good coordinating deformation can be realized, which is beneficial to the interfacial bonding of clad plates.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2019.05.020Stainless steel clad plateFinite element modelEelastic deformation of rollsBending forceInterface combination
spellingShingle JIN HeRong
DAI Chao
HAN MinFeng
EFFECT OF ROLL BENDING FORCE ON HOT ROLLING FORMING OF Q345R/316L STAINLESS STEEL CLAD PLATE
Jixie qiangdu
Stainless steel clad plate
Finite element model
Eelastic deformation of rolls
Bending force
Interface combination
title EFFECT OF ROLL BENDING FORCE ON HOT ROLLING FORMING OF Q345R/316L STAINLESS STEEL CLAD PLATE
title_full EFFECT OF ROLL BENDING FORCE ON HOT ROLLING FORMING OF Q345R/316L STAINLESS STEEL CLAD PLATE
title_fullStr EFFECT OF ROLL BENDING FORCE ON HOT ROLLING FORMING OF Q345R/316L STAINLESS STEEL CLAD PLATE
title_full_unstemmed EFFECT OF ROLL BENDING FORCE ON HOT ROLLING FORMING OF Q345R/316L STAINLESS STEEL CLAD PLATE
title_short EFFECT OF ROLL BENDING FORCE ON HOT ROLLING FORMING OF Q345R/316L STAINLESS STEEL CLAD PLATE
title_sort effect of roll bending force on hot rolling forming of q345r 316l stainless steel clad plate
topic Stainless steel clad plate
Finite element model
Eelastic deformation of rolls
Bending force
Interface combination
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2019.05.020
work_keys_str_mv AT jinherong effectofrollbendingforceonhotrollingformingofq345r316lstainlesssteelcladplate
AT daichao effectofrollbendingforceonhotrollingformingofq345r316lstainlesssteelcladplate
AT hanminfeng effectofrollbendingforceonhotrollingformingofq345r316lstainlesssteelcladplate