Crashworthiness Analysis of S-Shaped Structures Under Axial Impact Loading

Abstract To mitigate shock forces in collision events, thin-walled members are used as energy absorber. In this article, crashworthiness of single-cell and multi-cell S-shaped members with various cross-sections including triangular, square, hexagonal, decagon and circular were investigated under ax...

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Main Authors: Sobhan Esmaeili-Marzdashti, Sadjad Pirmohammad, Sareh Esmaeili-Marzdashti
Format: Article
Language:English
Published: Marcílio Alves
Series:Latin American Journal of Solids and Structures
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252017000500743&lng=en&tlng=en
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spelling doaj-f00599afdbdf420ea39776d4d4cbb5312020-11-25T00:30:44ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-782514574376410.1590/1679-78253430S1679-78252017000500743Crashworthiness Analysis of S-Shaped Structures Under Axial Impact LoadingSobhan Esmaeili-MarzdashtiSadjad PirmohammadSareh Esmaeili-MarzdashtiAbstract To mitigate shock forces in collision events, thin-walled members are used as energy absorber. In this article, crashworthiness of single-cell and multi-cell S-shaped members with various cross-sections including triangular, square, hexagonal, decagon and circular were investigated under axial dynamic loading using finite element code LS-DYNA. Furthermore, crashworthiness of the S-rails with the same outer tubes and different inner ones was studied as well. The multi-cell members employed in this task were double-walled tubes with several ribs connecting the inner and outer tubes together. Modified multi criteria decision making method known as complex proportional assessment (COPRAS) was used to rank the members using three conflicting crashworthiness criteria namely specific energy absorber (SEA), peak crash force (Fmax) and crash force efficiency (CFE). Moreover, the multi-cell S-shaped members were found to perform better than single-cell ones in terms of crashworthiness. In addition, the multi-cell S-rail with decagonal cross-section was found as the best energy absorber, and also the S-rail having the same inner and outer tube with decagonal cross-section displayed desirable crashworthiness performance. Optimum geometry of this S-rail was eventually obtained from the parametric study.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252017000500743&lng=en&tlng=enMulti-cell membersS-railsaxial dynamic loadingcrashworthinessCOPRAS
collection DOAJ
language English
format Article
sources DOAJ
author Sobhan Esmaeili-Marzdashti
Sadjad Pirmohammad
Sareh Esmaeili-Marzdashti
spellingShingle Sobhan Esmaeili-Marzdashti
Sadjad Pirmohammad
Sareh Esmaeili-Marzdashti
Crashworthiness Analysis of S-Shaped Structures Under Axial Impact Loading
Latin American Journal of Solids and Structures
Multi-cell members
S-rails
axial dynamic loading
crashworthiness
COPRAS
author_facet Sobhan Esmaeili-Marzdashti
Sadjad Pirmohammad
Sareh Esmaeili-Marzdashti
author_sort Sobhan Esmaeili-Marzdashti
title Crashworthiness Analysis of S-Shaped Structures Under Axial Impact Loading
title_short Crashworthiness Analysis of S-Shaped Structures Under Axial Impact Loading
title_full Crashworthiness Analysis of S-Shaped Structures Under Axial Impact Loading
title_fullStr Crashworthiness Analysis of S-Shaped Structures Under Axial Impact Loading
title_full_unstemmed Crashworthiness Analysis of S-Shaped Structures Under Axial Impact Loading
title_sort crashworthiness analysis of s-shaped structures under axial impact loading
publisher Marcílio Alves
series Latin American Journal of Solids and Structures
issn 1679-7825
description Abstract To mitigate shock forces in collision events, thin-walled members are used as energy absorber. In this article, crashworthiness of single-cell and multi-cell S-shaped members with various cross-sections including triangular, square, hexagonal, decagon and circular were investigated under axial dynamic loading using finite element code LS-DYNA. Furthermore, crashworthiness of the S-rails with the same outer tubes and different inner ones was studied as well. The multi-cell members employed in this task were double-walled tubes with several ribs connecting the inner and outer tubes together. Modified multi criteria decision making method known as complex proportional assessment (COPRAS) was used to rank the members using three conflicting crashworthiness criteria namely specific energy absorber (SEA), peak crash force (Fmax) and crash force efficiency (CFE). Moreover, the multi-cell S-shaped members were found to perform better than single-cell ones in terms of crashworthiness. In addition, the multi-cell S-rail with decagonal cross-section was found as the best energy absorber, and also the S-rail having the same inner and outer tube with decagonal cross-section displayed desirable crashworthiness performance. Optimum geometry of this S-rail was eventually obtained from the parametric study.
topic Multi-cell members
S-rails
axial dynamic loading
crashworthiness
COPRAS
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252017000500743&lng=en&tlng=en
work_keys_str_mv AT sobhanesmaeilimarzdashti crashworthinessanalysisofsshapedstructuresunderaxialimpactloading
AT sadjadpirmohammad crashworthinessanalysisofsshapedstructuresunderaxialimpactloading
AT sarehesmaeilimarzdashti crashworthinessanalysisofsshapedstructuresunderaxialimpactloading
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