Modeling the Deformation and the Failure Process of Glass Woven Fabrics Based on the Fibre-Bundle-Cells Theory

Abstract In this study, we modeled the deformation and failure behavior of different glass woven fabrics under uni-axial tension using the Fibre Bundle Cells-modeling method. The difference between the analytical, phenomenological model curve and the mean curve calculated from the measurement result...

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Published inActa materialia transylvanica Vol. 4; no. 1; pp. 58 - 63
Main Authors Virág, Ábris Dávid, Vas, László Mihály, Molnár, Kolos
Format Journal Article
LanguageEnglish
Published 01.04.2021
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Abstract Abstract In this study, we modeled the deformation and failure behavior of different glass woven fabrics under uni-axial tension using the Fibre Bundle Cells-modeling method. The difference between the analytical, phenomenological model curve and the mean curve calculated from the measurement results was classified by the relative mean squared error (RMSE), which is closely related to the coefficient of determination. This value was less than 3.6% in all the examined cases, which indicated good modeling.
AbstractList Abstract In this study, we modeled the deformation and failure behavior of different glass woven fabrics under uni-axial tension using the Fibre Bundle Cells-modeling method. The difference between the analytical, phenomenological model curve and the mean curve calculated from the measurement results was classified by the relative mean squared error (RMSE), which is closely related to the coefficient of determination. This value was less than 3.6% in all the examined cases, which indicated good modeling.
Author Molnár, Kolos
Virág, Ábris Dávid
Vas, László Mihály
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  givenname: László Mihály
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  organization: Budapest University of Technology and Economics , Faculty of Mechanical Engineering, Department of Polymer Engineering , Budapest , Hungary and MTA–BME Research Group for Composite Science and Technology , Budapest , Hungary
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