THE USE OF 3D GRAPHENE NETWORKS FOR THE CREATION OF BIO-INSPIRED SELF-MONITORING TOUGH CERAMIC NANOCOMPOSITES

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Hauptverfasser: Olivier T. Picot, Victoria G. Rocha, Claudio Ferraro, Na Ni, Eleonora D�Elia, Sylvain Meille, Jerome Chevalier, Theo Saunders, Mike J. Reece, Ton Peijs
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Veröffentlicht: Zenodo 2017
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author Olivier T. Picot
Victoria G. Rocha
Claudio Ferraro
Na Ni
Eleonora D�Elia
Sylvain Meille
Jerome Chevalier
Theo Saunders
Mike J. Reece
Ton Peijs
author_facet Olivier T. Picot
Victoria G. Rocha
Claudio Ferraro
Na Ni
Eleonora D�Elia
Sylvain Meille
Jerome Chevalier
Theo Saunders
Mike J. Reece
Ton Peijs
contents Bioinspired�design concepts have been employed to promote�toughness in ceramic-based composites using graphene�as a means to engineer a fine 3D�network of weak interfaces that provide fracture resistance�throug mechanisms such a crack deflection, electrical conductivity, and damage sensing capability.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15431349
institution Zenodo
language
publishDate 2017
publisher Zenodo
record_format zenodo
spellingShingle THE USE OF 3D GRAPHENE NETWORKS FOR THE CREATION OF BIO-INSPIRED SELF-MONITORING TOUGH CERAMIC NANOCOMPOSITES
Olivier T. Picot
Victoria G. Rocha
Claudio Ferraro
Na Ni
Eleonora D�Elia
Sylvain Meille
Jerome Chevalier
Theo Saunders
Mike J. Reece
Ton Peijs
Bioinspired�design concepts have been employed to promote�toughness in ceramic-based composites using graphene�as a means to engineer a fine 3D�network of weak interfaces that provide fracture resistance�throug mechanisms such a crack deflection, electrical conductivity, and damage sensing capability.
title THE USE OF 3D GRAPHENE NETWORKS FOR THE CREATION OF BIO-INSPIRED SELF-MONITORING TOUGH CERAMIC NANOCOMPOSITES
url https://doi.org/10.5281/zenodo.15431349