Analysis of weld induced distortion of butt joint using simulation and experimental study

This paper focuses on investigation of welding distortion that occurred due to GMAW process which can adversely affect the dimensional accuracy and aesthetical value of the welded structure. Distortion can lead to production delay and costly remedial work. Based on this fact, it is necessary to pred...

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Published in:Journal of Mechanical Engineering
Main Author: Bin Sulaiman M.S.; Manurung Y.H.P.; Graf M.; Bauer A.
Format: Article
Language:English
Published: UiTM Press 2018
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85052581790&partnerID=40&md5=f42057a55d6dccb76417b5eda0238783
id 2-s2.0-85052581790
spelling 2-s2.0-85052581790
Bin Sulaiman M.S.; Manurung Y.H.P.; Graf M.; Bauer A.
Analysis of weld induced distortion of butt joint using simulation and experimental study
2018
Journal of Mechanical Engineering
5
Specialissue2

https://www.scopus.com/inward/record.uri?eid=2-s2.0-85052581790&partnerID=40&md5=f42057a55d6dccb76417b5eda0238783
This paper focuses on investigation of welding distortion that occurred due to GMAW process which can adversely affect the dimensional accuracy and aesthetical value of the welded structure. Distortion can lead to production delay and costly remedial work. Based on this fact, it is necessary to predict the welding distortion in advance in order to produce high quality welded parts and thus to reduce production cost. In this study, the welding distortion induced in butt joint with thickness of 4 mm was simulated using Finite Element Method (FEM) software Simufact.Welding Version 5. The welding deformation was computed based on non-linear thermo-elastic-plastic numerical analysis. Low carbon steel material was employed for the simulation and experimental study. A series of experiments using fully automated welding process were carried out for verification purpose in order to measure the distortion. By comparing the results between simulation and experiment, it was found out that a good agreement was achieved and fast solution analysis time was provided in predicting weld induced distortion. © 2016 Faculty of Mechanical Engineering, Universiti Teknologi MARA (UiTM), Malaysia.
UiTM Press
18235514
English
Article

author Bin Sulaiman M.S.; Manurung Y.H.P.; Graf M.; Bauer A.
spellingShingle Bin Sulaiman M.S.; Manurung Y.H.P.; Graf M.; Bauer A.
Analysis of weld induced distortion of butt joint using simulation and experimental study
author_facet Bin Sulaiman M.S.; Manurung Y.H.P.; Graf M.; Bauer A.
author_sort Bin Sulaiman M.S.; Manurung Y.H.P.; Graf M.; Bauer A.
title Analysis of weld induced distortion of butt joint using simulation and experimental study
title_short Analysis of weld induced distortion of butt joint using simulation and experimental study
title_full Analysis of weld induced distortion of butt joint using simulation and experimental study
title_fullStr Analysis of weld induced distortion of butt joint using simulation and experimental study
title_full_unstemmed Analysis of weld induced distortion of butt joint using simulation and experimental study
title_sort Analysis of weld induced distortion of butt joint using simulation and experimental study
publishDate 2018
container_title Journal of Mechanical Engineering
container_volume 5
container_issue Specialissue2
doi_str_mv
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85052581790&partnerID=40&md5=f42057a55d6dccb76417b5eda0238783
description This paper focuses on investigation of welding distortion that occurred due to GMAW process which can adversely affect the dimensional accuracy and aesthetical value of the welded structure. Distortion can lead to production delay and costly remedial work. Based on this fact, it is necessary to predict the welding distortion in advance in order to produce high quality welded parts and thus to reduce production cost. In this study, the welding distortion induced in butt joint with thickness of 4 mm was simulated using Finite Element Method (FEM) software Simufact.Welding Version 5. The welding deformation was computed based on non-linear thermo-elastic-plastic numerical analysis. Low carbon steel material was employed for the simulation and experimental study. A series of experiments using fully automated welding process were carried out for verification purpose in order to measure the distortion. By comparing the results between simulation and experiment, it was found out that a good agreement was achieved and fast solution analysis time was provided in predicting weld induced distortion. © 2016 Faculty of Mechanical Engineering, Universiti Teknologi MARA (UiTM), Malaysia.
publisher UiTM Press
issn 18235514
language English
format Article
accesstype
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