Numerical Analysis and Optimization of the Residual Stresses Distribution Induced by Cold Expansion Technique

Abstract. This paper presents a numerical investigation about the influence of mandrel shape on residual stresses induced by the cold expansion procedure. Thus, ball and tapered pin are used for cold expanding the plate. As, the entrance face presents the lowest residual stresses throughout the hole...

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Main Authors: Abdelghani BALTACH, Abdelkader Djebli, Mostefa Bendouba, El Hadj Besseghier, Abdelkrim Aid
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2018-09-01
Series:Fracture and Structural Integrity
Subjects:
Online Access:https://www.fracturae.com/index.php/fis/article/view/2072
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author Abdelghani BALTACH
Abdelkader Djebli
Mostefa Bendouba
El Hadj Besseghier
Abdelkrim Aid
author_facet Abdelghani BALTACH
Abdelkader Djebli
Mostefa Bendouba
El Hadj Besseghier
Abdelkrim Aid
author_sort Abdelghani BALTACH
collection DOAJ
description Abstract. This paper presents a numerical investigation about the influence of mandrel shape on residual stresses induced by the cold expansion procedure. Thus, ball and tapered pin are used for cold expanding the plate. As, the entrance face presents the lowest residual stresses throughout the hole thickness, we propose to solve this problem by varying the mandrel taper degree, instead of applying a double expansion.  The obtained results show that the tapered pin is more suitable for the cold expansion. More, low taper increases the residual stresses at the entrance, reaching the values generated at the exit face.
format Article
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institution Kabale University
issn 1971-8993
language English
publishDate 2018-09-01
publisher Gruppo Italiano Frattura
record_format Article
series Fracture and Structural Integrity
spelling doaj-art-d10d757ee24640f486332184092bdd152025-01-03T00:39:57ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932018-09-011246Numerical Analysis and Optimization of the Residual Stresses Distribution Induced by Cold Expansion TechniqueAbdelghani BALTACH0Abdelkader Djebli1Mostefa Bendouba2El Hadj Besseghier3Abdelkrim Aid4University of TiaretUniversity Mostapha Stambouli-Mascara, Laboratory of Quantum Physics of Matter and Mathematical Modeling (LPQ3M), Mascara 29000, Algeria.University Mostapha Stambouli-Mascara, Laboratory of Quantum Physics of Matter and Mathematical Modeling (LPQ3M), Mascara 29000, Algeria.University Mostapha Stambouli-Mascara, Laboratory of Quantum Physics of Matter and Mathematical Modeling (LPQ3M), Mascara 29000, Algeria.University Mostapha Stambouli-Mascara, Laboratory of Quantum Physics of Matter and Mathematical Modeling (LPQ3M), Mascara 29000, Algeria.Abstract. This paper presents a numerical investigation about the influence of mandrel shape on residual stresses induced by the cold expansion procedure. Thus, ball and tapered pin are used for cold expanding the plate. As, the entrance face presents the lowest residual stresses throughout the hole thickness, we propose to solve this problem by varying the mandrel taper degree, instead of applying a double expansion.  The obtained results show that the tapered pin is more suitable for the cold expansion. More, low taper increases the residual stresses at the entrance, reaching the values generated at the exit face.https://www.fracturae.com/index.php/fis/article/view/2072Cold expansionFastener holeResidual stressFEM methodTaper degree
spellingShingle Abdelghani BALTACH
Abdelkader Djebli
Mostefa Bendouba
El Hadj Besseghier
Abdelkrim Aid
Numerical Analysis and Optimization of the Residual Stresses Distribution Induced by Cold Expansion Technique
Fracture and Structural Integrity
Cold expansion
Fastener hole
Residual stress
FEM method
Taper degree
title Numerical Analysis and Optimization of the Residual Stresses Distribution Induced by Cold Expansion Technique
title_full Numerical Analysis and Optimization of the Residual Stresses Distribution Induced by Cold Expansion Technique
title_fullStr Numerical Analysis and Optimization of the Residual Stresses Distribution Induced by Cold Expansion Technique
title_full_unstemmed Numerical Analysis and Optimization of the Residual Stresses Distribution Induced by Cold Expansion Technique
title_short Numerical Analysis and Optimization of the Residual Stresses Distribution Induced by Cold Expansion Technique
title_sort numerical analysis and optimization of the residual stresses distribution induced by cold expansion technique
topic Cold expansion
Fastener hole
Residual stress
FEM method
Taper degree
url https://www.fracturae.com/index.php/fis/article/view/2072
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AT mostefabendouba numericalanalysisandoptimizationoftheresidualstressesdistributioninducedbycoldexpansiontechnique
AT elhadjbesseghier numericalanalysisandoptimizationoftheresidualstressesdistributioninducedbycoldexpansiontechnique
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