Numerical Validation of Multiphysic Imperfect Interfaces Models

We investigate some mathematical and numerical methods based on asymptotic expansions for the modeling of bonding interfaces in the presence of linear coupled multiphysic phenomena. After reviewing new recently proposed imperfect contact conditions (Serpilli et al., 2019), we present some numerical...

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Main Authors: Serge Dumont, Michele Serpilli, Raffaella Rizzoni, Frédéric C. Lebon
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-06-01
Series:Frontiers in Materials
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fmats.2020.00158/full
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author Serge Dumont
Michele Serpilli
Raffaella Rizzoni
Frédéric C. Lebon
author_facet Serge Dumont
Michele Serpilli
Raffaella Rizzoni
Frédéric C. Lebon
author_sort Serge Dumont
collection DOAJ
description We investigate some mathematical and numerical methods based on asymptotic expansions for the modeling of bonding interfaces in the presence of linear coupled multiphysic phenomena. After reviewing new recently proposed imperfect contact conditions (Serpilli et al., 2019), we present some numerical examples designed to show the efficiency of the proposed methodology. The examples are framed within two different multiphysic theories, piezoelectricity and thermo-mechanical coupling. The numerical investigations are based on a finite element approach generalizing to multiphysic problems the procedure developed in Dumont et al. (2018).
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spelling doaj.art-66edf07d92de4a6885847ad136f7494a2022-12-21T22:32:13ZengFrontiers Media S.A.Frontiers in Materials2296-80162020-06-01710.3389/fmats.2020.00158514983Numerical Validation of Multiphysic Imperfect Interfaces ModelsSerge Dumont0Michele Serpilli1Raffaella Rizzoni2Frédéric C. Lebon3IMAG CNRS UMR 5149, University of Nîmes, Nîmes, FranceDepartment of Civil and Building Engineering and Architecture, Università Politecnica delle Marche, Ancona, ItalyDepartment of Engineering, University of Ferrara, Ferrara, ItalyAix-Marseille Univ, CNRS, Centrale Marseille, LMA, Marseille, FranceWe investigate some mathematical and numerical methods based on asymptotic expansions for the modeling of bonding interfaces in the presence of linear coupled multiphysic phenomena. After reviewing new recently proposed imperfect contact conditions (Serpilli et al., 2019), we present some numerical examples designed to show the efficiency of the proposed methodology. The examples are framed within two different multiphysic theories, piezoelectricity and thermo-mechanical coupling. The numerical investigations are based on a finite element approach generalizing to multiphysic problems the procedure developed in Dumont et al. (2018).https://www.frontiersin.org/article/10.3389/fmats.2020.00158/fullasymptotic analysisinterfacesmultiphysic materialsnumerical analysisfinite element analysis
spellingShingle Serge Dumont
Michele Serpilli
Raffaella Rizzoni
Frédéric C. Lebon
Numerical Validation of Multiphysic Imperfect Interfaces Models
Frontiers in Materials
asymptotic analysis
interfaces
multiphysic materials
numerical analysis
finite element analysis
title Numerical Validation of Multiphysic Imperfect Interfaces Models
title_full Numerical Validation of Multiphysic Imperfect Interfaces Models
title_fullStr Numerical Validation of Multiphysic Imperfect Interfaces Models
title_full_unstemmed Numerical Validation of Multiphysic Imperfect Interfaces Models
title_short Numerical Validation of Multiphysic Imperfect Interfaces Models
title_sort numerical validation of multiphysic imperfect interfaces models
topic asymptotic analysis
interfaces
multiphysic materials
numerical analysis
finite element analysis
url https://www.frontiersin.org/article/10.3389/fmats.2020.00158/full
work_keys_str_mv AT sergedumont numericalvalidationofmultiphysicimperfectinterfacesmodels
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AT raffaellarizzoni numericalvalidationofmultiphysicimperfectinterfacesmodels
AT fredericclebon numericalvalidationofmultiphysicimperfectinterfacesmodels