Specific Energy Absorbed Study of Aluminum (2024-351T) Tubes Alloy under Lateral Crush

This paper aims to find SEA (Specific Energy Absorber) for lateral crushing (statically) behavior for Aluminum (2024-T351) alloy with difference lengths (10, 20, and 30 mm). An experimental, finite element simulation, and theoretical models present to find force-deformation curves and then find SEA...

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Main Author: Ayad Arab Ghaidan
Format: Article
Language:English
Published: Tikrit University 2011-09-01
Series:Tikrit Journal of Engineering Sciences
Subjects:
Online Access:https://tj-es.com/ojs/index.php/tjes/article/view/512
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author Ayad Arab Ghaidan
author_facet Ayad Arab Ghaidan
author_sort Ayad Arab Ghaidan
collection DOAJ
description This paper aims to find SEA (Specific Energy Absorber) for lateral crushing (statically) behavior for Aluminum (2024-T351) alloy with difference lengths (10, 20, and 30 mm). An experimental, finite element simulation, and theoretical models present to find force-deformation curves and then find SEA for difference lengths. Experimental results more agreements with finite elements simulation and theoretical when length of tubes is increase for load deformation curve, because when the length increases the plastic region increase with initial plastic collapse load (Pc). The experimental, ANSYS simulation and theoretical results have plotted and it has seen that the theory also underestimates the ANSYS results because in theoretical model, is customary to assume that the material is perfectly plastic; therefore, the finite element simulation might predict the experimental results better than the theoretical one. The results show that light density Aluminum alloy is suitable for SEA
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spelling doaj.art-f7c0ea9ba59b4d94af7fb01169f1365f2023-07-12T12:55:16ZengTikrit UniversityTikrit Journal of Engineering Sciences1813-162X2312-75892011-09-0118310.25130/tjes.18.3.06Specific Energy Absorbed Study of Aluminum (2024-351T) Tubes Alloy under Lateral CrushAyad Arab Ghaidan0Civil Engineering Department, Kirkuk University, IraqThis paper aims to find SEA (Specific Energy Absorber) for lateral crushing (statically) behavior for Aluminum (2024-T351) alloy with difference lengths (10, 20, and 30 mm). An experimental, finite element simulation, and theoretical models present to find force-deformation curves and then find SEA for difference lengths. Experimental results more agreements with finite elements simulation and theoretical when length of tubes is increase for load deformation curve, because when the length increases the plastic region increase with initial plastic collapse load (Pc). The experimental, ANSYS simulation and theoretical results have plotted and it has seen that the theory also underestimates the ANSYS results because in theoretical model, is customary to assume that the material is perfectly plastic; therefore, the finite element simulation might predict the experimental results better than the theoretical one. The results show that light density Aluminum alloy is suitable for SEA https://tj-es.com/ojs/index.php/tjes/article/view/512SEALateral crushingFinite element method by Ansys
spellingShingle Ayad Arab Ghaidan
Specific Energy Absorbed Study of Aluminum (2024-351T) Tubes Alloy under Lateral Crush
Tikrit Journal of Engineering Sciences
SEA
Lateral crushing
Finite element method by Ansys
title Specific Energy Absorbed Study of Aluminum (2024-351T) Tubes Alloy under Lateral Crush
title_full Specific Energy Absorbed Study of Aluminum (2024-351T) Tubes Alloy under Lateral Crush
title_fullStr Specific Energy Absorbed Study of Aluminum (2024-351T) Tubes Alloy under Lateral Crush
title_full_unstemmed Specific Energy Absorbed Study of Aluminum (2024-351T) Tubes Alloy under Lateral Crush
title_short Specific Energy Absorbed Study of Aluminum (2024-351T) Tubes Alloy under Lateral Crush
title_sort specific energy absorbed study of aluminum 2024 351t tubes alloy under lateral crush
topic SEA
Lateral crushing
Finite element method by Ansys
url https://tj-es.com/ojs/index.php/tjes/article/view/512
work_keys_str_mv AT ayadarabghaidan specificenergyabsorbedstudyofaluminum2024351ttubesalloyunderlateralcrush