With the aid of atomistic multiscale modelling and analytical approaches, buckling strength has been determined for carbon nanofibres/epoxy composite systems. Various nanofibres configurations considered are single walled carbon nano tube (SWCNT) and single layer graphene sheet (SLGS) and SLGS/SWCNT hybrid systems. Computationally, both eigen-value and non-linear large deformation-based methods have been employed to calculate the buckling strength. The non-linear computational model generated here takes into account of complex features such as debonding between polymer and filler (delamination under compression), nonlinearity in the polymer, strain-based damage criteria for the matrix, contact between fillers and interlocking of distorted f...
Graphene has been reported with record-breaking properties which have opened up huge potential appli...
In the present study we have investigated axial buckling characteristics of nanocomposite beams rein...
The mechanical properties of aerospace carbon fiber/graphene nanoplatelet/epoxy hybrid composites re...
With the aid of atomistic multiscale modelling and analytical approaches, buckling strength has been...
The effect of morphology, shapes and distribution of nanoscale carbon reinforcement in polymers on t...
Thesis (Ph.D.), Mechanical Engineering, Washington State UniversityCarbon based nanofillers such as ...
This study is concerned with the development of relatively more accurate numerical simulations than ...
Nanomechanics of individual carbon and boron-nitride nanotubes and their application as reinforcing ...
International audienceLoad transfer of the graphene/carbon nanotube (CNT)/polyethylene hybrid nanoco...
Graphene and graphene nanoplatelets can be used as filler materials especially for polymer reinforce...
The ability of carbon nanotubes (CNTs) to consider as the strongest and stiffest elements in nanosca...
An atomistic multiscale modelling approach is used to simulate the nonlinear pullout behaviour of in...
Graphene has been reported with record-breaking properties which have opened up huge potential appli...
Carbon nanotubes (CNT) are potentially promising fibers for ultra high strength composites. In order...
Graphene has been reported with record-breaking properties which have opened up huge potential appli...
Graphene has been reported with record-breaking properties which have opened up huge potential appli...
In the present study we have investigated axial buckling characteristics of nanocomposite beams rein...
The mechanical properties of aerospace carbon fiber/graphene nanoplatelet/epoxy hybrid composites re...
With the aid of atomistic multiscale modelling and analytical approaches, buckling strength has been...
The effect of morphology, shapes and distribution of nanoscale carbon reinforcement in polymers on t...
Thesis (Ph.D.), Mechanical Engineering, Washington State UniversityCarbon based nanofillers such as ...
This study is concerned with the development of relatively more accurate numerical simulations than ...
Nanomechanics of individual carbon and boron-nitride nanotubes and their application as reinforcing ...
International audienceLoad transfer of the graphene/carbon nanotube (CNT)/polyethylene hybrid nanoco...
Graphene and graphene nanoplatelets can be used as filler materials especially for polymer reinforce...
The ability of carbon nanotubes (CNTs) to consider as the strongest and stiffest elements in nanosca...
An atomistic multiscale modelling approach is used to simulate the nonlinear pullout behaviour of in...
Graphene has been reported with record-breaking properties which have opened up huge potential appli...
Carbon nanotubes (CNT) are potentially promising fibers for ultra high strength composites. In order...
Graphene has been reported with record-breaking properties which have opened up huge potential appli...
Graphene has been reported with record-breaking properties which have opened up huge potential appli...
In the present study we have investigated axial buckling characteristics of nanocomposite beams rein...
The mechanical properties of aerospace carbon fiber/graphene nanoplatelet/epoxy hybrid composites re...