In this study, a three-dimensional continuum percolation model was developed based on a Monte Carlo simulation approach to investigate the percolation behavior of an electrically insulating matrix reinforced with conductive nano-platelet fillers. The conductivity behavior of composites rendered conductive by randomly dispersed conductive platelets was modeled by developing a three-dimensional finite element resistor network. Parameters related to the percolation threshold and a power-low describing the conductivity behavior were determined. The piezoresistivity behavior of conductive composites was studied employing a reoriented resistor network emulating a conductive composite subjected to mechanical strain. The effects of the governing pa...
This work presents a comparison between three piezoresistive composite materials based on nanostruct...
A methodology was developed for the prediction of the electrical properties of carbon nanotube-polym...
Structured elastomeric composites (SECs) with electrically conductive fillers display anisotropic pi...
An improved analytical model is developed based on the average interparticle distance (IPD) concept ...
The present article investigates the possibility of simulating the electrical conductivity of carbon...
International audienceThree-dimensional Modeling of Percolation Behavior of Electrical Conductivity ...
A structure aimed at modeling a polymeric nanocomposite loaded with carbon nanotubes (CNTs) is simul...
The interest in nanostructures with carbon nanotubes (CNTs) has considerably grown in recent years f...
A model for the dependence of the electrical conductance, G, with the strain induced by external mec...
Conductive composites consist of a conductive filler dispersed within an insulating matrix. These co...
Piezoresistivity in conductive polymer nanocomposites occurs because of the disturbance of particle ...
AbstractThe subject of the study described in this paper is the percolation threshold of composites ...
Conductive polymer composites are manufactured by randomly dispersing conductive particles along an ...
If the electrical resistance of a material depends upon external straining, the material exhibits ‘p...
We studied the stress-dependent piezoresistive behavior of tunneling-percolation systems. Starting f...
This work presents a comparison between three piezoresistive composite materials based on nanostruct...
A methodology was developed for the prediction of the electrical properties of carbon nanotube-polym...
Structured elastomeric composites (SECs) with electrically conductive fillers display anisotropic pi...
An improved analytical model is developed based on the average interparticle distance (IPD) concept ...
The present article investigates the possibility of simulating the electrical conductivity of carbon...
International audienceThree-dimensional Modeling of Percolation Behavior of Electrical Conductivity ...
A structure aimed at modeling a polymeric nanocomposite loaded with carbon nanotubes (CNTs) is simul...
The interest in nanostructures with carbon nanotubes (CNTs) has considerably grown in recent years f...
A model for the dependence of the electrical conductance, G, with the strain induced by external mec...
Conductive composites consist of a conductive filler dispersed within an insulating matrix. These co...
Piezoresistivity in conductive polymer nanocomposites occurs because of the disturbance of particle ...
AbstractThe subject of the study described in this paper is the percolation threshold of composites ...
Conductive polymer composites are manufactured by randomly dispersing conductive particles along an ...
If the electrical resistance of a material depends upon external straining, the material exhibits ‘p...
We studied the stress-dependent piezoresistive behavior of tunneling-percolation systems. Starting f...
This work presents a comparison between three piezoresistive composite materials based on nanostruct...
A methodology was developed for the prediction of the electrical properties of carbon nanotube-polym...
Structured elastomeric composites (SECs) with electrically conductive fillers display anisotropic pi...