Prediction of geometric defects in the cold embossing of AA6061 aluminium alloy by finite element analysis
The precision of near-net shape manufacturing processes such as cold forging is crucial. Defects may affect the assembly accuracy and thus cause decreased system performance. Therefore, these defects must be predicted and minimized as early as possible before proceeding to the manufacturing stage. T...
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Academic Journals
2012
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my.upm.eprints.234722018-10-18T03:12:33Z http://psasir.upm.edu.my/id/eprint/23472/ Prediction of geometric defects in the cold embossing of AA6061 aluminium alloy by finite element analysis Abdullah, Ahmad Baharuddin Salit, Mohd Sapuan Samad, Zahurin M. Tandur, Khaleed Hussain Abdul Aziz, Nuraini The precision of near-net shape manufacturing processes such as cold forging is crucial. Defects may affect the assembly accuracy and thus cause decreased system performance. Therefore, these defects must be predicted and minimized as early as possible before proceeding to the manufacturing stage. This paper aims to study the geometric defects in the cold embossing pin head. The defects can be measured based on the incomplete filling and geometries of bulging. The effect of the distance to edge (DTE) on the defect pattern is predicted based on the material flow pattern. The DTE is found to have a significant effect on defect formation. The size of bulging is reduced and the filling ability is improved with increased DTE. Academic Journals 2012 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/23472/1/23472.pdf Abdullah, Ahmad Baharuddin and Salit, Mohd Sapuan and Samad, Zahurin and M. Tandur, Khaleed Hussain and Abdul Aziz, Nuraini (2012) Prediction of geometric defects in the cold embossing of AA6061 aluminium alloy by finite element analysis. Scientific Research and Essays, 7 (15). art. no. 8E1AAF329897. pp. 1630-1638. ISSN 1992-2248 https://academicjournals.org/journal/SRE/article-abstract/8E1AAF329897 10.5897/SRE11.2092 |
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The precision of near-net shape manufacturing processes such as cold forging is crucial. Defects may affect the assembly accuracy and thus cause decreased system performance. Therefore, these defects must be predicted and minimized as early as possible before proceeding to the manufacturing stage. This paper aims to study the geometric defects in the cold embossing pin head. The defects can be measured based on the incomplete filling and geometries of bulging. The effect of the distance to edge (DTE) on the defect pattern is predicted based on the material flow pattern. The DTE is found to have a significant effect on defect formation. The size of bulging is reduced and the filling ability is improved with increased DTE. |
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Article |
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Abdullah, Ahmad Baharuddin Salit, Mohd Sapuan Samad, Zahurin M. Tandur, Khaleed Hussain Abdul Aziz, Nuraini |
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Abdullah, Ahmad Baharuddin Salit, Mohd Sapuan Samad, Zahurin M. Tandur, Khaleed Hussain Abdul Aziz, Nuraini Prediction of geometric defects in the cold embossing of AA6061 aluminium alloy by finite element analysis |
author_facet |
Abdullah, Ahmad Baharuddin Salit, Mohd Sapuan Samad, Zahurin M. Tandur, Khaleed Hussain Abdul Aziz, Nuraini |
author_sort |
Abdullah, Ahmad Baharuddin |
title |
Prediction of geometric defects in the cold embossing of AA6061 aluminium alloy by finite element analysis |
title_short |
Prediction of geometric defects in the cold embossing of AA6061 aluminium alloy by finite element analysis |
title_full |
Prediction of geometric defects in the cold embossing of AA6061 aluminium alloy by finite element analysis |
title_fullStr |
Prediction of geometric defects in the cold embossing of AA6061 aluminium alloy by finite element analysis |
title_full_unstemmed |
Prediction of geometric defects in the cold embossing of AA6061 aluminium alloy by finite element analysis |
title_sort |
prediction of geometric defects in the cold embossing of aa6061 aluminium alloy by finite element analysis |
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Academic Journals |
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2012 |
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http://psasir.upm.edu.my/id/eprint/23472/1/23472.pdf http://psasir.upm.edu.my/id/eprint/23472/ https://academicjournals.org/journal/SRE/article-abstract/8E1AAF329897 |
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