A novel mode-dependent and probabilistic semi-discrete damage model for progressive failure analysis of composite laminates - Part I: Meshing strategy and mixed-mode law

A novel semi-discrete damage model (SD2M) is proposed for the progressive failure analysis (PFA) of composite structures. The presented method utilizes a separation of fiber and matrix failure modes and introduces a material strength distribution to thin strips of matrix-splitting elements in order...

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Main Authors: Minh Hoang Nguyen, Anthony M. Waas
Format: Article
Language:English
Published: Elsevier 2020-11-01
Series:Composites Part C: Open Access
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666682020300736
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spelling doaj-d583abd0739f42a9842bff8f8b2d70622021-05-04T07:33:53ZengElsevierComposites Part C: Open Access2666-68202020-11-013100073A novel mode-dependent and probabilistic semi-discrete damage model for progressive failure analysis of composite laminates - Part I: Meshing strategy and mixed-mode lawMinh Hoang Nguyen0Anthony M. Waas1Department of Aerospace Engineering, University of Michigan, Ann Arbor, MI, United StatesCorresponding author.; Department of Aerospace Engineering, University of Michigan, Ann Arbor, MI, United StatesA novel semi-discrete damage model (SD2M) is proposed for the progressive failure analysis (PFA) of composite structures. The presented method utilizes a separation of fiber and matrix failure modes and introduces a material strength distribution to thin strips of matrix-splitting elements in order to capture the progression of transverse crack density. With the proposed meshing strategy, the discreteness is greatly enhanced, while the model remains efficient and simple by using solely continuum elements. The SD2M approach aims to unify desirable features of both smeared and discrete methods and utilizes a practical and simple mesh generation procedure. In addition, a novel mixed-mode law is proposed to capture the damage evolution of matrix cracks. The proposed mixed-mode formulation ensures smooth and simultaneous vanishing of traction components and is suitable for generic softening laws. Applications of SD2M to several examples are presented in part II [1] of this two-part paper.http://www.sciencedirect.com/science/article/pii/S2666682020300736CompositesProgressive failure analysisDamage modelMeshingMixed-mode
collection DOAJ
language English
format Article
sources DOAJ
author Minh Hoang Nguyen
Anthony M. Waas
spellingShingle Minh Hoang Nguyen
Anthony M. Waas
A novel mode-dependent and probabilistic semi-discrete damage model for progressive failure analysis of composite laminates - Part I: Meshing strategy and mixed-mode law
Composites Part C: Open Access
Composites
Progressive failure analysis
Damage model
Meshing
Mixed-mode
author_facet Minh Hoang Nguyen
Anthony M. Waas
author_sort Minh Hoang Nguyen
title A novel mode-dependent and probabilistic semi-discrete damage model for progressive failure analysis of composite laminates - Part I: Meshing strategy and mixed-mode law
title_short A novel mode-dependent and probabilistic semi-discrete damage model for progressive failure analysis of composite laminates - Part I: Meshing strategy and mixed-mode law
title_full A novel mode-dependent and probabilistic semi-discrete damage model for progressive failure analysis of composite laminates - Part I: Meshing strategy and mixed-mode law
title_fullStr A novel mode-dependent and probabilistic semi-discrete damage model for progressive failure analysis of composite laminates - Part I: Meshing strategy and mixed-mode law
title_full_unstemmed A novel mode-dependent and probabilistic semi-discrete damage model for progressive failure analysis of composite laminates - Part I: Meshing strategy and mixed-mode law
title_sort novel mode-dependent and probabilistic semi-discrete damage model for progressive failure analysis of composite laminates - part i: meshing strategy and mixed-mode law
publisher Elsevier
series Composites Part C: Open Access
issn 2666-6820
publishDate 2020-11-01
description A novel semi-discrete damage model (SD2M) is proposed for the progressive failure analysis (PFA) of composite structures. The presented method utilizes a separation of fiber and matrix failure modes and introduces a material strength distribution to thin strips of matrix-splitting elements in order to capture the progression of transverse crack density. With the proposed meshing strategy, the discreteness is greatly enhanced, while the model remains efficient and simple by using solely continuum elements. The SD2M approach aims to unify desirable features of both smeared and discrete methods and utilizes a practical and simple mesh generation procedure. In addition, a novel mixed-mode law is proposed to capture the damage evolution of matrix cracks. The proposed mixed-mode formulation ensures smooth and simultaneous vanishing of traction components and is suitable for generic softening laws. Applications of SD2M to several examples are presented in part II [1] of this two-part paper.
topic Composites
Progressive failure analysis
Damage model
Meshing
Mixed-mode
url http://www.sciencedirect.com/science/article/pii/S2666682020300736
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