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The sequential static fatigue algorithm: a fast approach to predict composites delamination growth under fatigue loadings

Delamination is among the most common and dangerous forms of damage in composite laminates [1]. Considering the widespread use of these materials in industrial sectors like aeronautics or automotive, predicting their propagation under fatigue loads is of extreme importance. Cohesive Zone Models (CZMs) and Virtual Crack Closure Techniques (VCCT) are generally the most adopted techniques for this purpose

Universitat de Girona. Grup de Recerca en Anàlisi i Materials Avançats per al Disseny Estructural (AMADE)

Author: Martulli, Luca M.
Bernasconi, Andrea
Date: 2023 May 31
Abstract: Delamination is among the most common and dangerous forms of damage in composite laminates [1]. Considering the widespread use of these materials in industrial sectors like aeronautics or automotive, predicting their propagation under fatigue loads is of extreme importance. Cohesive Zone Models (CZMs) and Virtual Crack Closure Techniques (VCCT) are generally the most adopted techniques for this purpose
Format: application/pdf
Citation: info:eu-repo/semantics/reference/hdl/10256.1/7284
Document access: http://hdl.handle.net/10256/23139
Language: eng
Publisher: Universitat de Girona. Grup de Recerca en Anàlisi i Materials Avançats per al Disseny Estructural (AMADE)
Rights: Tots els drets reservats
Subject: Resistència de materials -- Congressos
Strength of materials -- Congresses
Materials laminats -- Fatiga -- Congressos
Laminated materials -- Fatigue -- Congresses
Materials compostos -- Deslaminatge -- Congresses
Composite materials -- Delamination -- Congresses
Elements finits, Mètode dels -- Congressos
Finite element method -- Congresses
Title: The sequential static fatigue algorithm: a fast approach to predict composites delamination growth under fatigue loadings
Type: slide
Repository: DUGiDocs

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