A SPECTRAL STIFFNESS MICROPLANE MODEL FOR UNIDIRECTIONAL COMPOSITES

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Hauptverfasser: Marco Salviato, Sean Eunsik Phenisee, Jason Tien, Gianluca Cusatis
Format: Recurso digital
Veröffentlicht: Zenodo 2017
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author Marco Salviato
Sean Eunsik Phenisee
Jason Tien
Gianluca Cusatis
author_facet Marco Salviato
Sean Eunsik Phenisee
Jason Tien
Gianluca Cusatis
contents The present contribution proposes�a general constitutive�model�for composites�able to simulate the orthotropic stiffness, prepeak nonlinearity, failure envelopes, and also the post-peak softening and fracture. The formulation is developed within the framework of the Spectral Stiffness Microplane Theory.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15433354
institution Zenodo
language
publishDate 2017
publisher Zenodo
record_format zenodo
spellingShingle A SPECTRAL STIFFNESS MICROPLANE MODEL FOR UNIDIRECTIONAL COMPOSITES
Marco Salviato
Sean Eunsik Phenisee
Jason Tien
Gianluca Cusatis
The present contribution proposes�a general constitutive�model�for composites�able to simulate the orthotropic stiffness, prepeak nonlinearity, failure envelopes, and also the post-peak softening and fracture. The formulation is developed within the framework of the Spectral Stiffness Microplane Theory.
title A SPECTRAL STIFFNESS MICROPLANE MODEL FOR UNIDIRECTIONAL COMPOSITES
url https://doi.org/10.5281/zenodo.15433354