Multi objective optimization of foam-filled circular tubes for quasi-static and dynamic responses
AbstractFuel consumption and safety are currently key aspects in automobile design. The foam-filled thin-walled aluminium tube represents a potentially effective material for use in the automotive industry, due to its energy absorption capability and light weight. Multi-objective crashworthiness des...
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Marcílio Alves
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doaj-0d09fcd8c6364b528a81f56f37e1988e2020-11-25T00:30:44ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-78251261126114310.1590/1679-78251638S1679-78252015000601126Multi objective optimization of foam-filled circular tubes for quasi-static and dynamic responsesFauzan DjamaluddinShahrum AbdullahAhmad K. AriffinZulkifli M. NopiahAbstractFuel consumption and safety are currently key aspects in automobile design. The foam-filled thin-walled aluminium tube represents a potentially effective material for use in the automotive industry, due to its energy absorption capability and light weight. Multi-objective crashworthiness design optimization for foam-filled double cylindrical tubes is presented in this paper. The double structures are impacted by a rigid wall simulating quasi-static and dynamic loadings. The optimal parameters under consideration are the minimum peak crushing force and maximum specific energy absorption, using the non-dominated sorting genetic algorithm-II (NSGA-II) technique. Radial basis functions (RBF) and D-Optimal are adopted to determine the more complex crashworthiness functional objectives. The comparison is performed by finite element analysis of the impact crashworthiness characteristics in tubes under static and dynamic loads. Finally, the optimum crashworthiness performance of empty and foam-filled double tubes is investigated and compared to the traditional single foam-filled tube. The results indicate that the foam-filled double aluminium circular tube can be recommended for crashworthy structures.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000601126&lng=en&tlng=enCrashworthinesscylindrical tubeoptimizationaxial impactNSGA-II |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Fauzan Djamaluddin Shahrum Abdullah Ahmad K. Ariffin Zulkifli M. Nopiah |
spellingShingle |
Fauzan Djamaluddin Shahrum Abdullah Ahmad K. Ariffin Zulkifli M. Nopiah Multi objective optimization of foam-filled circular tubes for quasi-static and dynamic responses Latin American Journal of Solids and Structures Crashworthiness cylindrical tube optimization axial impact NSGA-II |
author_facet |
Fauzan Djamaluddin Shahrum Abdullah Ahmad K. Ariffin Zulkifli M. Nopiah |
author_sort |
Fauzan Djamaluddin |
title |
Multi objective optimization of foam-filled circular tubes for quasi-static and dynamic responses |
title_short |
Multi objective optimization of foam-filled circular tubes for quasi-static and dynamic responses |
title_full |
Multi objective optimization of foam-filled circular tubes for quasi-static and dynamic responses |
title_fullStr |
Multi objective optimization of foam-filled circular tubes for quasi-static and dynamic responses |
title_full_unstemmed |
Multi objective optimization of foam-filled circular tubes for quasi-static and dynamic responses |
title_sort |
multi objective optimization of foam-filled circular tubes for quasi-static and dynamic responses |
publisher |
Marcílio Alves |
series |
Latin American Journal of Solids and Structures |
issn |
1679-7825 |
description |
AbstractFuel consumption and safety are currently key aspects in automobile design. The foam-filled thin-walled aluminium tube represents a potentially effective material for use in the automotive industry, due to its energy absorption capability and light weight. Multi-objective crashworthiness design optimization for foam-filled double cylindrical tubes is presented in this paper. The double structures are impacted by a rigid wall simulating quasi-static and dynamic loadings. The optimal parameters under consideration are the minimum peak crushing force and maximum specific energy absorption, using the non-dominated sorting genetic algorithm-II (NSGA-II) technique. Radial basis functions (RBF) and D-Optimal are adopted to determine the more complex crashworthiness functional objectives. The comparison is performed by finite element analysis of the impact crashworthiness characteristics in tubes under static and dynamic loads. Finally, the optimum crashworthiness performance of empty and foam-filled double tubes is investigated and compared to the traditional single foam-filled tube. The results indicate that the foam-filled double aluminium circular tube can be recommended for crashworthy structures. |
topic |
Crashworthiness cylindrical tube optimization axial impact NSGA-II |
url |
http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000601126&lng=en&tlng=en |
work_keys_str_mv |
AT fauzandjamaluddin multiobjectiveoptimizationoffoamfilledcirculartubesforquasistaticanddynamicresponses AT shahrumabdullah multiobjectiveoptimizationoffoamfilledcirculartubesforquasistaticanddynamicresponses AT ahmadkariffin multiobjectiveoptimizationoffoamfilledcirculartubesforquasistaticanddynamicresponses AT zulkiflimnopiah multiobjectiveoptimizationoffoamfilledcirculartubesforquasistaticanddynamicresponses |
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1725325326718861312 |