International audienceIn this work, we proposed a multiscale numerical model to estimate the electric conductivity and dielectric constants of the CNT/polymer nanocom-posites, taking into account the tunneling effect between neighbouring CNTs separated at nanoscale and the frequency-dependent dielectric properties of each components. Finite element method was employed to solve the formulations , and the CNTs were modeled by highly conductive line segments in order to avoid the mesh problems. Experiments have been carried out in carbon nanotubes/epoxy nanocomposites in order to compare to the simulation results. The numerical estimations of the electric conductivity are in good agreement with the experimental measurement by network analyzers...
A study is presented of the electrical properties of a series of nanocomposites based on high densit...
It is well known that the addition of conducting fillers to a polymeric matrix can result in a signi...
A method is proposed for determining electrical percolation thresholds in carbon nanotube (CNT) netw...
International audienceIn this work, we proposed a multiscale numerical model to estimate the electri...
International audienceTunneling effect plays a significant part in the extremely low electric percol...
International audienceIn this work, two simulations models have been developed to study the electric...
The electrical properties of polymer nanocomposites containing a small amount of carbon\ud nanotube ...
In order to predict the electrical properties of carbon nanotubes-filled composites, a 3dimensional ...
In this research, we propose a 3 dimensional (3D) numerical model to predict the electrical properti...
A mixed micromechanics model was developed to predict the overall electrical conductivity of carbon ...
In the present study, a novel modelling approach based on electrical properties was proposed to repl...
A structure aimed at modeling a polymeric nanocomposite loaded with carbon nanotubes (CNTs) is simul...
A study is presented of the electrical properties of a series of nanocomposites based on high densit...
It is well known that the addition of conducting fillers to a polymeric matrix can result in a signi...
A method is proposed for determining electrical percolation thresholds in carbon nanotube (CNT) netw...
International audienceIn this work, we proposed a multiscale numerical model to estimate the electri...
International audienceTunneling effect plays a significant part in the extremely low electric percol...
International audienceIn this work, two simulations models have been developed to study the electric...
The electrical properties of polymer nanocomposites containing a small amount of carbon\ud nanotube ...
In order to predict the electrical properties of carbon nanotubes-filled composites, a 3dimensional ...
In this research, we propose a 3 dimensional (3D) numerical model to predict the electrical properti...
A mixed micromechanics model was developed to predict the overall electrical conductivity of carbon ...
In the present study, a novel modelling approach based on electrical properties was proposed to repl...
A structure aimed at modeling a polymeric nanocomposite loaded with carbon nanotubes (CNTs) is simul...
A study is presented of the electrical properties of a series of nanocomposites based on high densit...
It is well known that the addition of conducting fillers to a polymeric matrix can result in a signi...
A method is proposed for determining electrical percolation thresholds in carbon nanotube (CNT) netw...