FINITE ELEMENT ANALYSES OF ENHANCED CORROSION BARRIER FOR POLYMER NANOCOMPOSITES

Fuente: Zenodo
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Auteurs principaux: W.S. Sum, A.Y.L. Leong, K.H. Leong, D. Ballint
Format: Recurso digital
Publié: Zenodo 2017
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author W.S. Sum
A.Y.L. Leong
K.H. Leong
D. Ballint
author_facet W.S. Sum
A.Y.L. Leong
K.H. Leong
D. Ballint
contents A 3D FE model has been developed to predict diffusion and permeation through a uniform nanoflake-filled matrix to assess the trends and impact of changes to flake angles and slit width, as well as different levels of stress in the nanocomposite. Comparisons are also made between the current 3D models and previously developed 2D models to demonstrate the efficiency and effectiveness of the latter for quick screening of non-critical variables.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15432976
institution Zenodo
language
publishDate 2017
publisher Zenodo
record_format zenodo
spellingShingle FINITE ELEMENT ANALYSES OF ENHANCED CORROSION BARRIER FOR POLYMER NANOCOMPOSITES
W.S. Sum
A.Y.L. Leong
K.H. Leong
D. Ballint
A 3D FE model has been developed to predict diffusion and permeation through a uniform nanoflake-filled matrix to assess the trends and impact of changes to flake angles and slit width, as well as different levels of stress in the nanocomposite. Comparisons are also made between the current 3D models and previously developed 2D models to demonstrate the efficiency and effectiveness of the latter for quick screening of non-critical variables.
title FINITE ELEMENT ANALYSES OF ENHANCED CORROSION BARRIER FOR POLYMER NANOCOMPOSITES
url https://doi.org/10.5281/zenodo.15432976