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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author Diamantopoulou Evangelia
Labergere Carl
Badreddine Houssem
Saanouni Khemais
author_facet Diamantopoulou Evangelia
Labergere Carl
Badreddine Houssem
Saanouni Khemais
author_sort Diamantopoulou Evangelia
collection DOAJ
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.
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spelling doaj.art-5a4ca39dc5a542d89559468d2592e47d2022-12-21T19:43:38ZengEDP 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
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
title 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_short 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
url http://dx.doi.org/10.1051/matecconf/20168001001
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AT saanounikhemais advancednumericalsimulationbasedonanonlocalmicromorphicmodelformetalformingprocesses