International audienceA numerical model of graphene-reinforced nanocomposites taking into account the electric tunneling effect is employed to analyze the influence of microstructural parameters on the effective electric conductivity and the per-colation thresholds of the composite. The generation procedure for the random microstructures of graphene reinforced nanocomposites is described. Effects of the barrier height, of graphene aspect ratio and alignment of graphene sheets have been quantitatively evaluated. The results show that both higher graphene aspect ratio and lower barrier height can lead to smaller percola-tion threshold, and the alignment of graphene sheets results in anisotropic electrical behavior without affecting the percol...
We report on the fabrication of a novel class of lightweight materials, polyimide–graphene nanocompo...
<div><p>Percolation behavior of graphene nanoplatelet (GNP) filled electrically conductive nanocompo...
International audienceA multiscale strategy is proposed to study the role of interfacial decohesion ...
International audienceA numerical model of graphene-reinforced nanocomposites taking into account th...
International audienceA nonlinear Finite Element formulation and a numerical methodology to model th...
International audienceTunnelling effect is a possible mechanism to explain the apparent large electr...
International audienceConductive composites based on few layer graphene are of primary interests. In...
The effect of the dispersed state of graphene is studied as a factor influencing the electrical perc...
The critical volume fraction or percolation threshold of nano-fillers is a key parameter in optimisi...
An improved analytical model is developed based on the average interparticle distance (IPD) concept ...
This work contributes to developing numerical methodologies for predicting the electrical and mechan...
We report on the fabrication of a novel class of lightweight materials, polyimide–graphene nanocompo...
<div><p>Percolation behavior of graphene nanoplatelet (GNP) filled electrically conductive nanocompo...
International audienceA multiscale strategy is proposed to study the role of interfacial decohesion ...
International audienceA numerical model of graphene-reinforced nanocomposites taking into account th...
International audienceA nonlinear Finite Element formulation and a numerical methodology to model th...
International audienceTunnelling effect is a possible mechanism to explain the apparent large electr...
International audienceConductive composites based on few layer graphene are of primary interests. In...
The effect of the dispersed state of graphene is studied as a factor influencing the electrical perc...
The critical volume fraction or percolation threshold of nano-fillers is a key parameter in optimisi...
An improved analytical model is developed based on the average interparticle distance (IPD) concept ...
This work contributes to developing numerical methodologies for predicting the electrical and mechan...
We report on the fabrication of a novel class of lightweight materials, polyimide–graphene nanocompo...
<div><p>Percolation behavior of graphene nanoplatelet (GNP) filled electrically conductive nanocompo...
International audienceA multiscale strategy is proposed to study the role of interfacial decohesion ...