Title of article
Micromechanical simulations of biaxial yield, hardening and plastic flow in short glass fiber reinforced polyamide
Author/Authors
Selmi، نويسنده , , A. and Doghri، نويسنده , , I. and Adam، نويسنده , , L.، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2011
Pages
11
From page
696
To page
706
Abstract
Mean-field homogenization (MFH) is used to predict the biaxial yield behavior, hardening and plastic flow of composite materials made of an elasto-plastic matrix reinforced with misaligned short fibers. The procedure is applied to short glass fiber reinforced polyamide, which represents an important industrial application of those composites. First, MFH is verified against full-field accurate finite element simulations of representative volume elements with multiple fibers. Next, a parametric study is carried out with MFH in order to predict the biaxial plastic behavior of numerous microstructures corresponding to various values of volume fraction, aspect ratio and second-rank orientation tensor components of the glass fibers. Results demonstrate the loss of both isotropic hardening and plastic flow normality, except for 2D random orientation. For illustration, a fit of Hillʹs orthotropic plasticity criterion is conducted for several orientation tensors.
Keywords
Micromechanics , Composites , homogenization , plasticity , polyamide , Glass fibres
Journal title
International Journal of Mechanical Sciences
Serial Year
2011
Journal title
International Journal of Mechanical Sciences
Record number
1419638
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