Predicting Welding Deformation of Exposed Forged-and-welded Gear by the Integrated Computational Approach

In the current study, a large exposed forged-and-welded gear with a diameter of 7 160 mm is taken as the research object. An integrated computational approach is employed to predict the total welding deformation of the gear during welding process. Based on software MSC. Marc, three typical welded jo...

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Main Authors: Qu Tie, Xin Wen, Luo Wenze, Wang Chongyang, Hu Long, Huang Zhiquan, Deng Dean
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2023-03-01
Series:Jixie chuandong
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Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2023.03.018
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author Qu Tie
Xin Wen
Luo Wenze
Wang Chongyang
Hu Long
Huang Zhiquan
Deng Dean
author_facet Qu Tie
Xin Wen
Luo Wenze
Wang Chongyang
Hu Long
Huang Zhiquan
Deng Dean
author_sort Qu Tie
collection DOAJ
description In the current study, a large exposed forged-and-welded gear with a diameter of 7 160 mm is taken as the research object. An integrated computational approach is employed to predict the total welding deformation of the gear during welding process. Based on software MSC. Marc, three typical welded joints are extracted from the large forged-and-welded gear structures, and the inherent deformations of each joint under multi-pass welding conditions, are calculated by the thermo-elastic-plastic finite element method. The inherent deformations of each welded joint are converted into the corresponding inherent strains, and the total welding deformation of the welded gear is calculated using the elastic finite element method based on inherent strain theory. The numerical simulation results show that the radial shrinkage of the large forged-and-welded gear is about 11 mm after welding, and the amount of contraction in the circumference direction is about 3 mm.
format Article
id doaj-art-f913dea8679348a29a6f5157942af4ea
institution Kabale University
issn 1004-2539
language zho
publishDate 2023-03-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-f913dea8679348a29a6f5157942af4ea2025-01-10T14:57:18ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392023-03-014712413235810366Predicting Welding Deformation of Exposed Forged-and-welded Gear by the Integrated Computational ApproachQu TieXin WenLuo WenzeWang ChongyangHu LongHuang ZhiquanDeng DeanIn the current study, a large exposed forged-and-welded gear with a diameter of 7 160 mm is taken as the research object. An integrated computational approach is employed to predict the total welding deformation of the gear during welding process. Based on software MSC. Marc, three typical welded joints are extracted from the large forged-and-welded gear structures, and the inherent deformations of each joint under multi-pass welding conditions, are calculated by the thermo-elastic-plastic finite element method. The inherent deformations of each welded joint are converted into the corresponding inherent strains, and the total welding deformation of the welded gear is calculated using the elastic finite element method based on inherent strain theory. The numerical simulation results show that the radial shrinkage of the large forged-and-welded gear is about 11 mm after welding, and the amount of contraction in the circumference direction is about 3 mm.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2023.03.018Exposed forged-and-welded gearMulti-pass weldingWelding deformationInherent strainNumerical simulation
spellingShingle Qu Tie
Xin Wen
Luo Wenze
Wang Chongyang
Hu Long
Huang Zhiquan
Deng Dean
Predicting Welding Deformation of Exposed Forged-and-welded Gear by the Integrated Computational Approach
Jixie chuandong
Exposed forged-and-welded gear
Multi-pass welding
Welding deformation
Inherent strain
Numerical simulation
title Predicting Welding Deformation of Exposed Forged-and-welded Gear by the Integrated Computational Approach
title_full Predicting Welding Deformation of Exposed Forged-and-welded Gear by the Integrated Computational Approach
title_fullStr Predicting Welding Deformation of Exposed Forged-and-welded Gear by the Integrated Computational Approach
title_full_unstemmed Predicting Welding Deformation of Exposed Forged-and-welded Gear by the Integrated Computational Approach
title_short Predicting Welding Deformation of Exposed Forged-and-welded Gear by the Integrated Computational Approach
title_sort predicting welding deformation of exposed forged and welded gear by the integrated computational approach
topic Exposed forged-and-welded gear
Multi-pass welding
Welding deformation
Inherent strain
Numerical simulation
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2023.03.018
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AT luowenze predictingweldingdeformationofexposedforgedandweldedgearbytheintegratedcomputationalapproach
AT wangchongyang predictingweldingdeformationofexposedforgedandweldedgearbytheintegratedcomputationalapproach
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