Nanoscale carbon-based fillers are known to significantly alter the mechanical and electrical properties of polymers even at relatively low loadings. We report results from extensive molecular-dynamics simulations of mechanical testing of model polymer (high-density polyethylene) nanocomposites reinforced by nanocarbon fillers consisting of graphene flakes and fullerenes. By systematically varying filler concentration, morphology, and size, we identify clear trends in composite stiffness with reinforcement. To within statistical error, spherical fullerenes provide a nearly size-independent level of reinforcement. In contrast, two-dimensional graphene flakes induce a strongly size-dependent response: we find that flakes with radii in the 2–4...
Inspired by the hierarchical structure and outstanding mechanical performance of biological nacre, w...
The reinforcing ability of the fillers results in significant improvements in properties of polymer ...
In this paper, a multiscale method is developed to predict Young's modulus of fullerene-reinforced p...
Graphene and graphene nanoplatelets can be used as filler materials especially for polymer reinforce...
In this paper, the elastic properties of polymer nanocomposites reinforced with C60 fullerene and C6...
The mechanical properties of graphene–cellulose (GC) nanocomposites are investigated using molecular...
Graphene has been regarded as the next-generation carbon nanofiller for polymer nanocomposites. Owin...
Carbon nanostructures including carbon black, carbon nanotubes, graphite or graphene have attracted ...
This paper investigates the mechanical properties of graphene/PMMA nanocomposite system by using the...
Local mechanical properties of modified-graphene high-density polyethylene nanocomposites are invest...
We report measurements of linear and nonlinear elastic properties of polystyrene-based nanocomposite...
Graphene has unique mechanical, electronic, and thermal properties, which enable a broad range of te...
This work investigates efficient ways of lightweighting vehicles structures based on Graphene-relate...
The performance of graphene/epoxy nanocomposites strongly depends on the interfacial interaction bet...
International audienceThis article tackles the problem of identification of elastic continuum model ...
Inspired by the hierarchical structure and outstanding mechanical performance of biological nacre, w...
The reinforcing ability of the fillers results in significant improvements in properties of polymer ...
In this paper, a multiscale method is developed to predict Young's modulus of fullerene-reinforced p...
Graphene and graphene nanoplatelets can be used as filler materials especially for polymer reinforce...
In this paper, the elastic properties of polymer nanocomposites reinforced with C60 fullerene and C6...
The mechanical properties of graphene–cellulose (GC) nanocomposites are investigated using molecular...
Graphene has been regarded as the next-generation carbon nanofiller for polymer nanocomposites. Owin...
Carbon nanostructures including carbon black, carbon nanotubes, graphite or graphene have attracted ...
This paper investigates the mechanical properties of graphene/PMMA nanocomposite system by using the...
Local mechanical properties of modified-graphene high-density polyethylene nanocomposites are invest...
We report measurements of linear and nonlinear elastic properties of polystyrene-based nanocomposite...
Graphene has unique mechanical, electronic, and thermal properties, which enable a broad range of te...
This work investigates efficient ways of lightweighting vehicles structures based on Graphene-relate...
The performance of graphene/epoxy nanocomposites strongly depends on the interfacial interaction bet...
International audienceThis article tackles the problem of identification of elastic continuum model ...
Inspired by the hierarchical structure and outstanding mechanical performance of biological nacre, w...
The reinforcing ability of the fillers results in significant improvements in properties of polymer ...
In this paper, a multiscale method is developed to predict Young's modulus of fullerene-reinforced p...