Using XFEM Techniques to Predict the Damage of aluminum 2024T3 notched under tensile load

The objective of this work is to analyze some geometrical effect to predict the damage of aluminum 2024T3 structure after validate numerical model by experimental test. The mechanical of damage behaviour under tensile tests of several plates with notches of various forms are investigated using an XF...

Full description

Bibliographic Details
Main Authors: Benzaama Abdallah, Mokhtari Mohamed, Benzaama Habib, Abdelouahed Elamine, Tamine Tawfik, Madani Kouider, Slamen Amir, Ilies Mrabet
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2019-10-01
Series:Frattura ed Integrità Strutturale
Subjects:
Online Access:https://www.fracturae.com/index.php/fis/article/view/2498/2693
id doaj-087c4050afee4e5a9bcb6a2941bc43d7
record_format Article
spelling doaj-087c4050afee4e5a9bcb6a2941bc43d72020-11-24T21:54:19ZengGruppo Italiano FratturaFrattura ed Integrità Strutturale1971-89932019-10-01135018419310.3221/IGF-ESIS.50.1610.3221/IGF-ESIS.50.16Using XFEM Techniques to Predict the Damage of aluminum 2024T3 notched under tensile loadBenzaama AbdallahMokhtari MohamedBenzaama HabibAbdelouahed ElamineTamine TawfikMadani KouiderSlamen AmirIlies MrabetThe objective of this work is to analyze some geometrical effect to predict the damage of aluminum 2024T3 structure after validate numerical model by experimental test. The mechanical of damage behaviour under tensile tests of several plates with notches of various forms are investigated using an XFEM technique. The finite element analysis is performed to determine the failure load of these plates. Four different form of notched plates in another part of this work are reinforced by a thickness augmentation with different shapes around the notch. The results of the tensile analysis show that the reinforcements gives the best increase in failure load of each plates.https://www.fracturae.com/index.php/fis/article/view/2498/2693failure loaddamagenotchxfem
collection DOAJ
language English
format Article
sources DOAJ
author Benzaama Abdallah
Mokhtari Mohamed
Benzaama Habib
Abdelouahed Elamine
Tamine Tawfik
Madani Kouider
Slamen Amir
Ilies Mrabet
spellingShingle Benzaama Abdallah
Mokhtari Mohamed
Benzaama Habib
Abdelouahed Elamine
Tamine Tawfik
Madani Kouider
Slamen Amir
Ilies Mrabet
Using XFEM Techniques to Predict the Damage of aluminum 2024T3 notched under tensile load
Frattura ed Integrità Strutturale
failure load
damage
notch
xfem
author_facet Benzaama Abdallah
Mokhtari Mohamed
Benzaama Habib
Abdelouahed Elamine
Tamine Tawfik
Madani Kouider
Slamen Amir
Ilies Mrabet
author_sort Benzaama Abdallah
title Using XFEM Techniques to Predict the Damage of aluminum 2024T3 notched under tensile load
title_short Using XFEM Techniques to Predict the Damage of aluminum 2024T3 notched under tensile load
title_full Using XFEM Techniques to Predict the Damage of aluminum 2024T3 notched under tensile load
title_fullStr Using XFEM Techniques to Predict the Damage of aluminum 2024T3 notched under tensile load
title_full_unstemmed Using XFEM Techniques to Predict the Damage of aluminum 2024T3 notched under tensile load
title_sort using xfem techniques to predict the damage of aluminum 2024t3 notched under tensile load
publisher Gruppo Italiano Frattura
series Frattura ed Integrità Strutturale
issn 1971-8993
publishDate 2019-10-01
description The objective of this work is to analyze some geometrical effect to predict the damage of aluminum 2024T3 structure after validate numerical model by experimental test. The mechanical of damage behaviour under tensile tests of several plates with notches of various forms are investigated using an XFEM technique. The finite element analysis is performed to determine the failure load of these plates. Four different form of notched plates in another part of this work are reinforced by a thickness augmentation with different shapes around the notch. The results of the tensile analysis show that the reinforcements gives the best increase in failure load of each plates.
topic failure load
damage
notch
xfem
url https://www.fracturae.com/index.php/fis/article/view/2498/2693
work_keys_str_mv AT benzaamaabdallah usingxfemtechniquestopredictthedamageofaluminum2024t3notchedundertensileload
AT mokhtarimohamed usingxfemtechniquestopredictthedamageofaluminum2024t3notchedundertensileload
AT benzaamahabib usingxfemtechniquestopredictthedamageofaluminum2024t3notchedundertensileload
AT abdelouahedelamine usingxfemtechniquestopredictthedamageofaluminum2024t3notchedundertensileload
AT taminetawfik usingxfemtechniquestopredictthedamageofaluminum2024t3notchedundertensileload
AT madanikouider usingxfemtechniquestopredictthedamageofaluminum2024t3notchedundertensileload
AT slamenamir usingxfemtechniquestopredictthedamageofaluminum2024t3notchedundertensileload
AT iliesmrabet usingxfemtechniquestopredictthedamageofaluminum2024t3notchedundertensileload
_version_ 1725867652214161408