In this research, a modeling and experimental study was conducted to explore the effects of nanoparticle type (alumi-num nanoparticles and carbon nanotubes), filler concentration and interactions between the nanoparticle and reinforcing fibers on through-thickness conductivity of nanoparticle/epoxy nanocomposites and nanoparticle/fiber-reinforced mul-tiscale composites. Multiple, notable micromechanical models were evaluated to predict through-thickness thermal conductivity of both composite systems, and then compared to the experimental results. The results showed that filler volume fraction ranges and thermal conductivity differences of the constituent materials for the thermal conductivity ratio (km/kf or kf/km) used in the models can af...
In this paper the thermal conductivity of epoxy-based composite materials is analysed. Two and three...
Adding dual kinds of nanoparticle fillers with higher thermal conductivity (TC) into matrix material...
The high thermal conductivity and structural strength of carbon nanotubes (CNTs) make them promising...
An effective analytical modeling method to predict the thermal conductivity of a multiscale hybrid c...
Because of the excellent physical properties, Carbon nanomaterials have received great attention as ...
Because of the excellent physical properties, Carbon nanomaterials have received great attention as ...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
Polymer nanocomposites have opened a new path for multifunctional materials. In particular, carbon n...
The high thermal conductivity and structural strength of carbon nanotubes (CNTs) make them promising...
Atomistic models of epoxy polymers were built in order to assess the effect of structure at the nano...
The present study attempts to investigate the influence of multiwalled carbon nanotubes (MWCNTs) and...
In this paper the thermal conductivity of epoxy-based composite materials is analysed. Two and three...
Adding dual kinds of nanoparticle fillers with higher thermal conductivity (TC) into matrix material...
The high thermal conductivity and structural strength of carbon nanotubes (CNTs) make them promising...
An effective analytical modeling method to predict the thermal conductivity of a multiscale hybrid c...
Because of the excellent physical properties, Carbon nanomaterials have received great attention as ...
Because of the excellent physical properties, Carbon nanomaterials have received great attention as ...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
This study attempts to investigate the thermal conductivity behavior of epoxy nanocomposites contai...
Polymer nanocomposites have opened a new path for multifunctional materials. In particular, carbon n...
The high thermal conductivity and structural strength of carbon nanotubes (CNTs) make them promising...
Atomistic models of epoxy polymers were built in order to assess the effect of structure at the nano...
The present study attempts to investigate the influence of multiwalled carbon nanotubes (MWCNTs) and...
In this paper the thermal conductivity of epoxy-based composite materials is analysed. Two and three...
Adding dual kinds of nanoparticle fillers with higher thermal conductivity (TC) into matrix material...
The high thermal conductivity and structural strength of carbon nanotubes (CNTs) make them promising...