A comparative study of micromorphic gradient-extensions for anisotropic damage at finite strains

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Main Authors: van der Velden, Tim, Brepols, Tim, Reese, Stefanie, Holthusen, Hagen
Format: Preprint
Published: 2023
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author van der Velden, Tim
Brepols, Tim
Reese, Stefanie
Holthusen, Hagen
author_facet van der Velden, Tim
Brepols, Tim
Reese, Stefanie
Holthusen, Hagen
contents Modern inelastic material model formulations rely on the use of tensor-valued internal variables. When inelastic phenomena include softening, simulations of the former are prone to localization. Thus, an accurate regularization of the tensor-valued internal variables is essential to obtain physically correct results. Here, we focus on the regularization of anisotropic damage at finite strains. Thus, a flexible anisotropic damage model with isotropic, kinematic, and distortional hardening is equipped with three gradient-extensions using a full and two reduced regularizations of the damage tensor. Theoretical and numerical comparisons of the three gradient-extensions yield excellent agreement between the full and the reduced regularization based on a volumetric-deviatoric regularization using only two nonlocal degrees of freedom.
format Preprint
id arxiv_https___arxiv_org_abs_2311_15918
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A comparative study of micromorphic gradient-extensions for anisotropic damage at finite strains
van der Velden, Tim
Brepols, Tim
Reese, Stefanie
Holthusen, Hagen
Computational Engineering, Finance, and Science
Modern inelastic material model formulations rely on the use of tensor-valued internal variables. When inelastic phenomena include softening, simulations of the former are prone to localization. Thus, an accurate regularization of the tensor-valued internal variables is essential to obtain physically correct results. Here, we focus on the regularization of anisotropic damage at finite strains. Thus, a flexible anisotropic damage model with isotropic, kinematic, and distortional hardening is equipped with three gradient-extensions using a full and two reduced regularizations of the damage tensor. Theoretical and numerical comparisons of the three gradient-extensions yield excellent agreement between the full and the reduced regularization based on a volumetric-deviatoric regularization using only two nonlocal degrees of freedom.
title A comparative study of micromorphic gradient-extensions for anisotropic damage at finite strains
topic Computational Engineering, Finance, and Science
url https://arxiv.org/abs/2311.15918