AbstractEstablishing structure–property relationships for nanoparticle/polymer composites is a fundamental task for a reliable design of such new systems. A micromechanical analytical model is proposed in the present work, in order to address the problem of stiffness and yield stress prediction in the case of nanocomposites consisting of silica nanoparticles embedded in a polymer matrix. It takes into account an interphase corresponding to a perturbed region of the polymer matrix around the nanoparticles. Its modulus is continuously graded from that of the silica nanoparticle to that of the polymer matrix. Considering the thickness of the third phase as a characteristic length scale, the influence of particle size on the overall nanocomposi...
In this work, the mechanical properties of polymer matrix-ceramic fillers nanocomposites were invest...
A recently developed hybrid method is employed to study the mechanical behavior of silica-polystyren...
The elastic modulus of interphase in polymer based nanocomposites is investigated. A new three-dimen...
AbstractEstablishing structure–property relationships for nanoparticle/polymer composites is a funda...
A three-dimensional micromechanics-based analytical model is developed to study thermo-mechanical pr...
AbstractIn this work, a micromechanical model is proposed in order to predict the yield stress of po...
This contribution investigates, based on molecular dynamics (MD), the mechanical deformation behavio...
Mathematical models are investigated and suggested for the calculation of the elastic stiffness of p...
A continuum-based elastic micromechanics model is developed for silica nanoparticle/polyimide compos...
International audienceThis paper aims at developing a method to account for a particle size effect o...
Based on Takayanagi's two-phase model, a three-phase model including the matrix, interfacial region,...
In this work, the mechanical properties of polymer matrix-ceramic fillers nanocomposites were invest...
A recently developed hybrid method is employed to study the mechanical behavior of silica-polystyren...
The elastic modulus of interphase in polymer based nanocomposites is investigated. A new three-dimen...
AbstractEstablishing structure–property relationships for nanoparticle/polymer composites is a funda...
A three-dimensional micromechanics-based analytical model is developed to study thermo-mechanical pr...
AbstractIn this work, a micromechanical model is proposed in order to predict the yield stress of po...
This contribution investigates, based on molecular dynamics (MD), the mechanical deformation behavio...
Mathematical models are investigated and suggested for the calculation of the elastic stiffness of p...
A continuum-based elastic micromechanics model is developed for silica nanoparticle/polyimide compos...
International audienceThis paper aims at developing a method to account for a particle size effect o...
Based on Takayanagi's two-phase model, a three-phase model including the matrix, interfacial region,...
In this work, the mechanical properties of polymer matrix-ceramic fillers nanocomposites were invest...
A recently developed hybrid method is employed to study the mechanical behavior of silica-polystyren...
The elastic modulus of interphase in polymer based nanocomposites is investigated. A new three-dimen...