Finite element modelling of laser stitch welding joints for structural dynamic prediction

Laser stitch welding is a joining technique that has been increasingly popular in automotive industries, such as in the manufacturing and assembling of the car's body-in-white (BiW) due to its advantages over the resistance spot weld, such as low heat application and high strength weld. The dyn...

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Published in:International Journal of Automotive and Mechanical Engineering
Main Author: Shah M.A.S.A.; Yunus M.A.; Abdul Rani M.N.; Mohd Zin M.S.; Mirza W.I.I.W.I.
Format: Article
Language:English
Published: Universiti Malaysia Pahang 2019
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85072302045&doi=10.15282%2fijame.16.2.2019.7.0494&partnerID=40&md5=84d430c6b38a9a5bf98d1a83ee34368c
id 2-s2.0-85072302045
spelling 2-s2.0-85072302045
Shah M.A.S.A.; Yunus M.A.; Abdul Rani M.N.; Mohd Zin M.S.; Mirza W.I.I.W.I.
Finite element modelling of laser stitch welding joints for structural dynamic prediction
2019
International Journal of Automotive and Mechanical Engineering
16
2
10.15282/ijame.16.2.2019.7.0494
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85072302045&doi=10.15282%2fijame.16.2.2019.7.0494&partnerID=40&md5=84d430c6b38a9a5bf98d1a83ee34368c
Laser stitch welding is a joining technique that has been increasingly popular in automotive industries, such as in the manufacturing and assembling of the car's body-in-white (BiW) due to its advantages over the resistance spot weld, such as low heat application and high strength weld. The dynamic behaviour of a laser stitch welded structure is relatively difficult to predict accurately due to local parameters being induced during the laser welding process, such as heat affected zone (HAZ) and residual stress in the welded structure. This paper presents the idea of modelling the laser stitch weld by investigating different types of element connectors that can be used to represent laser stitch weld, such as rigid body element (RBE2), shell element (CQUAD4), bar element (CBAR) and area contact model (ACM2) format of element connectors. The accuracy of finite element models of laser stitch welded joints is compared in terms of natural frequencies and mode shapes with the experiment counterparts. The dynamic behaviour of the measured structure is obtained by using an impact hammer with free-free boundary conditions. It is found that the accuracy of the finite element models of the laser stitch welded structure highly depends on the involvement of residual stress and the heat affected zones that are generated from the welding process. © 2019 Universiti Malaysia Pahang, Malaysia.
Universiti Malaysia Pahang
22298649
English
Article
All Open Access; Gold Open Access
author Shah M.A.S.A.; Yunus M.A.; Abdul Rani M.N.; Mohd Zin M.S.; Mirza W.I.I.W.I.
spellingShingle Shah M.A.S.A.; Yunus M.A.; Abdul Rani M.N.; Mohd Zin M.S.; Mirza W.I.I.W.I.
Finite element modelling of laser stitch welding joints for structural dynamic prediction
author_facet Shah M.A.S.A.; Yunus M.A.; Abdul Rani M.N.; Mohd Zin M.S.; Mirza W.I.I.W.I.
author_sort Shah M.A.S.A.; Yunus M.A.; Abdul Rani M.N.; Mohd Zin M.S.; Mirza W.I.I.W.I.
title Finite element modelling of laser stitch welding joints for structural dynamic prediction
title_short Finite element modelling of laser stitch welding joints for structural dynamic prediction
title_full Finite element modelling of laser stitch welding joints for structural dynamic prediction
title_fullStr Finite element modelling of laser stitch welding joints for structural dynamic prediction
title_full_unstemmed Finite element modelling of laser stitch welding joints for structural dynamic prediction
title_sort Finite element modelling of laser stitch welding joints for structural dynamic prediction
publishDate 2019
container_title International Journal of Automotive and Mechanical Engineering
container_volume 16
container_issue 2
doi_str_mv 10.15282/ijame.16.2.2019.7.0494
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85072302045&doi=10.15282%2fijame.16.2.2019.7.0494&partnerID=40&md5=84d430c6b38a9a5bf98d1a83ee34368c
description Laser stitch welding is a joining technique that has been increasingly popular in automotive industries, such as in the manufacturing and assembling of the car's body-in-white (BiW) due to its advantages over the resistance spot weld, such as low heat application and high strength weld. The dynamic behaviour of a laser stitch welded structure is relatively difficult to predict accurately due to local parameters being induced during the laser welding process, such as heat affected zone (HAZ) and residual stress in the welded structure. This paper presents the idea of modelling the laser stitch weld by investigating different types of element connectors that can be used to represent laser stitch weld, such as rigid body element (RBE2), shell element (CQUAD4), bar element (CBAR) and area contact model (ACM2) format of element connectors. The accuracy of finite element models of laser stitch welded joints is compared in terms of natural frequencies and mode shapes with the experiment counterparts. The dynamic behaviour of the measured structure is obtained by using an impact hammer with free-free boundary conditions. It is found that the accuracy of the finite element models of the laser stitch welded structure highly depends on the involvement of residual stress and the heat affected zones that are generated from the welding process. © 2019 Universiti Malaysia Pahang, Malaysia.
publisher Universiti Malaysia Pahang
issn 22298649
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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