Finite Element Analysis on Dissimilar Thickness Joining of The Tailor-Welded Blank Process
Tailor welded blanks are defined as a joining process for two or more pieces of flat material with dissimilar material types or thickness, and or mechanical properties. TWBs in automotive parts manufacturing will increase with the improvement in welding technology and development of newer light mate...
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ump-57462018-08-28T07:13:53Z http://umpir.ump.edu.my/id/eprint/5746/ Finite Element Analysis on Dissimilar Thickness Joining of The Tailor-Welded Blank Process Mohd Zaidi, Sidek Anas Basri, Musthafa Jasri, Mohamad Muhamad Rozikin, Kamaluddin TJ Mechanical engineering and machinery Tailor welded blanks are defined as a joining process for two or more pieces of flat material with dissimilar material types or thickness, and or mechanical properties. TWBs in automotive parts manufacturing will increase with the improvement in welding technology and development of newer light materials available (Das, 2000). Tailored blanks are usually produced by laser welding and it is not possible to use standard tests to determine mechanical properties of the weld zone in tailor-welded blanks (Rojek et al., 2012). As heat is main contribution factor, it is important to determine correct positioning of the heating in setting up the TWB process; it must be balanced and optimized. In this study, the finite element analysis has been adopted to determine optimum heating arrangement for joining the different aluminum thickness. 2013 Conference or Workshop Item PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/5746/1/MME-002.pdf Mohd Zaidi, Sidek and Anas Basri, Musthafa and Jasri, Mohamad and Muhamad Rozikin, Kamaluddin (2013) Finite Element Analysis on Dissimilar Thickness Joining of The Tailor-Welded Blank Process. In: Malaysian Technical Universities Conference on Engineering & Technology (MUCET 2013), 3-4 December 2013 , Kuantan, Pahang. pp. 1-2.. |
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TJ Mechanical engineering and machinery Mohd Zaidi, Sidek Anas Basri, Musthafa Jasri, Mohamad Muhamad Rozikin, Kamaluddin Finite Element Analysis on Dissimilar Thickness Joining of The Tailor-Welded Blank Process |
description |
Tailor welded blanks are defined as a joining process for two or more pieces of flat material with dissimilar material types or thickness, and or mechanical properties. TWBs in automotive parts manufacturing will increase with the improvement in welding technology and development of newer light materials available (Das, 2000). Tailored blanks are usually produced by laser welding and it is not possible to use standard tests to determine mechanical properties of the weld zone in tailor-welded blanks (Rojek et al., 2012). As heat is main contribution factor, it is important to determine correct positioning of the heating in setting up the TWB process; it must be balanced and optimized. In this study, the finite element analysis has been adopted to determine optimum heating arrangement for joining the different aluminum thickness. |
format |
Conference or Workshop Item |
author |
Mohd Zaidi, Sidek Anas Basri, Musthafa Jasri, Mohamad Muhamad Rozikin, Kamaluddin |
author_facet |
Mohd Zaidi, Sidek Anas Basri, Musthafa Jasri, Mohamad Muhamad Rozikin, Kamaluddin |
author_sort |
Mohd Zaidi, Sidek |
title |
Finite Element Analysis on Dissimilar Thickness Joining of The Tailor-Welded Blank Process |
title_short |
Finite Element Analysis on Dissimilar Thickness Joining of The Tailor-Welded Blank Process |
title_full |
Finite Element Analysis on Dissimilar Thickness Joining of The Tailor-Welded Blank Process |
title_fullStr |
Finite Element Analysis on Dissimilar Thickness Joining of The Tailor-Welded Blank Process |
title_full_unstemmed |
Finite Element Analysis on Dissimilar Thickness Joining of The Tailor-Welded Blank Process |
title_sort |
finite element analysis on dissimilar thickness joining of the tailor-welded blank process |
publishDate |
2013 |
url |
http://umpir.ump.edu.my/id/eprint/5746/ http://umpir.ump.edu.my/id/eprint/5746/1/MME-002.pdf |
first_indexed |
2023-09-18T22:01:08Z |
last_indexed |
2023-09-18T22:01:08Z |
_version_ |
1777414405883953152 |