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Evaluating the intralaminar tensile fracture behavior of composite materials under high rate loading through a combined experimental and numerical methodology

The behavior of composite materials under dynamic loading conditions has been a topic of research for the past two decades. When subjected to dynamic conditions, such as high-strain-rate loading, composite materials exhibit significant strain rate sensitivity. This could be critical when it comes to selecting appropriate material properties and model for dynamic loading cases.

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http://hdl.handle.net/10256/23109

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

Author: Artero Guerrero, José Alfonso
Date: 2023 May 31
Abstract: The behavior of composite materials under dynamic loading conditions has been a topic of research for the past two decades. When subjected to dynamic conditions, such as high-strain-rate loading, composite materials exhibit significant strain rate sensitivity. This could be critical when it comes to selecting appropriate material properties and model for dynamic loading cases.
7228.mp4 7228.mp3
9
Format: audio/mpeg
video/mp4
Document access: http://hdl.handle.net/10256.1/7228
Language: eng
Publisher: Universitat de Girona. Grup de Recerca en Anàlisi i Materials Avançats per al Disseny Estructural (AMADE)
Collection: CompTest 2023
See also: http://hdl.handle.net/10256/23109
Rights: Attribution-NonCommercial-ShareAlike 4.0 International
Rights URI: http://creativecommons.org/licenses/by-nc-sa/4.0/
Subject: Assaigs de materials -- Congressos
Materials -- Testing -- Congresses
Resistència de materials -- Congressos
Strength of materials -- Congresses
Plàstics reforçats amb fibra de carboni -- Congressos
Carbon fiber-reinforced plastics -- Congresses
Mecànica de fractura -- Congressos
Fracture mechanics -- Congresses
Materials compostos -- Fractura -- Congressos
Composite materials -- Fracture -- Congresses
Materials laminats -- Congressos
Laminated materials -- Congresses
Title: Evaluating the intralaminar tensile fracture behavior of composite materials under high rate loading through a combined experimental and numerical methodology
Type: info:eu-repo/semantics/lecture
Repository: DUGiMedia

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