Mathematical models are investigated and suggested for the calculation of the elastic stiffness of polymer nanocomposites. Particular emphasis is placed on the effect on the elastic stiffness from agglomerates and the particle interphase properties. The multiphase Mori-Tanaka model and an interphase model are considered as two relevant models. These models only include and require the designation of a few system independent parameters with a clear physical meaning. Extensions of the models are also presented. The model calculations are compared to results from other models, as well as experimental data for different nanocomposites. For nanocomposites with spherical particles and with fiber-like particles, the suggested models are found to b...
This paper presents a critical review of the current work of experiment, theory of micro-nano-mechan...
The present work presents a preliminary study on the effect of the filler distribution on the elasti...
The degradation mechanism of mechanical properties of a polymer nanocomposite consisting of agglomer...
Mathematical models are investigated and suggested for the calculation of the elastic stiffness of p...
The elastic modulus of intephase in polymer based nanocomposites is investigated. A new three-dimens...
A multiscale modeling scheme that addresses the influence of the nanoparticle size in nanocomposites...
Aligned nanoclay particles can be distributed randomly in a polymer matrix even at high volume fract...
A new model to evaluate the elastic modulus of polymer nanocomposites is developed with emphasising ...
Abstract. A review of modeling techniques for predicting the mechanical behavior of polymer nanocomp...
Based on Takayanagi's two-phase model, a three-phase model including the matrix, interfacial region,...
International audienceThis paper aims at developing a method to account for a particle size effect o...
AbstractEstablishing structure–property relationships for nanoparticle/polymer composites is a funda...
Abstract A two-step technique based on micromechanical models is suggested to determine the influenc...
Polymer nanocomposites render a range of outstanding materials from natural products such as silk, s...
This paper presents a critical review of the current work of experiment, theory of micro-nano-mechan...
The present work presents a preliminary study on the effect of the filler distribution on the elasti...
The degradation mechanism of mechanical properties of a polymer nanocomposite consisting of agglomer...
Mathematical models are investigated and suggested for the calculation of the elastic stiffness of p...
The elastic modulus of intephase in polymer based nanocomposites is investigated. A new three-dimens...
A multiscale modeling scheme that addresses the influence of the nanoparticle size in nanocomposites...
Aligned nanoclay particles can be distributed randomly in a polymer matrix even at high volume fract...
A new model to evaluate the elastic modulus of polymer nanocomposites is developed with emphasising ...
Abstract. A review of modeling techniques for predicting the mechanical behavior of polymer nanocomp...
Based on Takayanagi's two-phase model, a three-phase model including the matrix, interfacial region,...
International audienceThis paper aims at developing a method to account for a particle size effect o...
AbstractEstablishing structure–property relationships for nanoparticle/polymer composites is a funda...
Abstract A two-step technique based on micromechanical models is suggested to determine the influenc...
Polymer nanocomposites render a range of outstanding materials from natural products such as silk, s...
This paper presents a critical review of the current work of experiment, theory of micro-nano-mechan...
The present work presents a preliminary study on the effect of the filler distribution on the elasti...
The degradation mechanism of mechanical properties of a polymer nanocomposite consisting of agglomer...