Advanced numerical simulation based on a non-local micromorphic model for metal forming processes

An advanced numerical methodology is developed for metal forming simulation based on thermodynamically-consistent nonlocal constitutive equations accounting for various fully coupled mechanical phenomena under finite strain in the framework of micromorphic continua. The numerical implementation into...

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Main Authors: Diamantopoulou Evangelia, Labergere Carl, Badreddine Houssem, Saanouni Khemais
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20168001001
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spelling doaj-5a4ca39dc5a542d89559468d2592e47d2021-02-02T05:02:36ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01800100110.1051/matecconf/20168001001matecconf_numi2016_01001Advanced numerical simulation based on a non-local micromorphic model for metal forming processesDiamantopoulou Evangelia0Labergere Carl1Badreddine Houssem2Saanouni Khemais3University of Technology of Troyes, ICD/LASMIS UMR-CNRS 6281University of Technology of Troyes, ICD/LASMIS UMR-CNRS 6281University of Technology of Troyes, ICD/LASMIS UMR-CNRS 6281University of Technology of Troyes, ICD/LASMIS UMR-CNRS 6281An advanced numerical methodology is developed for metal forming simulation based on thermodynamically-consistent nonlocal constitutive equations accounting for various fully coupled mechanical phenomena under finite strain in the framework of micromorphic continua. The numerical implementation into ABAQUS/Explicit is made for 2D quadrangular elements thanks to the VUEL users’ subroutine. Simple examples with presence of a damaged area are made in order to show the ability of the proposed methodology to describe the independence of the solution from the space discretization.http://dx.doi.org/10.1051/matecconf/20168001001
collection DOAJ
language English
format Article
sources DOAJ
author Diamantopoulou Evangelia
Labergere Carl
Badreddine Houssem
Saanouni Khemais
spellingShingle Diamantopoulou Evangelia
Labergere Carl
Badreddine Houssem
Saanouni Khemais
Advanced numerical simulation based on a non-local micromorphic model for metal forming processes
MATEC Web of Conferences
author_facet Diamantopoulou Evangelia
Labergere Carl
Badreddine Houssem
Saanouni Khemais
author_sort Diamantopoulou Evangelia
title Advanced numerical simulation based on a non-local micromorphic model for metal forming processes
title_short Advanced numerical simulation based on a non-local micromorphic model for metal forming processes
title_full Advanced numerical simulation based on a non-local micromorphic model for metal forming processes
title_fullStr Advanced numerical simulation based on a non-local micromorphic model for metal forming processes
title_full_unstemmed Advanced numerical simulation based on a non-local micromorphic model for metal forming processes
title_sort advanced numerical simulation based on a non-local micromorphic model for metal forming processes
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description An advanced numerical methodology is developed for metal forming simulation based on thermodynamically-consistent nonlocal constitutive equations accounting for various fully coupled mechanical phenomena under finite strain in the framework of micromorphic continua. The numerical implementation into ABAQUS/Explicit is made for 2D quadrangular elements thanks to the VUEL users’ subroutine. Simple examples with presence of a damaged area are made in order to show the ability of the proposed methodology to describe the independence of the solution from the space discretization.
url http://dx.doi.org/10.1051/matecconf/20168001001
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AT badreddinehoussem advancednumericalsimulationbasedonanonlocalmicromorphicmodelformetalformingprocesses
AT saanounikhemais advancednumericalsimulationbasedonanonlocalmicromorphicmodelformetalformingprocesses
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