In polymer nanocomposites, the interface region between the matrix and the fillers has been identified as a key interaction region that strongly determines the properties of the final material. Determining its structure is crucial from several points of view, from modeling (i.e., properties prediction) to materials science (i.e., understanding properties/structure relationships). In the presented paper, a method for characterizing the interface region of polymer nanocomposites is described using molecular dynamics (MD) simulations. In particular, the structure of the polymer within the interface region together with its dimension in terms of thickness were analyzed through density profiles. Epoxy resin nanocomposites based on diglycidyl eth...
Many thermo-mechanical properties of fiber-reinforced epoxy composites strongly depend on the condit...
This study addresses the multiscale modeling of hybrid composites composed of carbon fibers (CFs), c...
In this study, a multiscale model fully representing mechanical deformation is developed for the ide...
In polymer nanocomposites, the interface region between the matrix and the fillers has been identifi...
The nanoscale fracture behavior of epoxy-based nanocomposites reinforced with double-walled carbon n...
A multiscale modeling approach is proposed to characterize the interfacial behavior and the interpha...
The discovery of carbon nanotubes and carbon nanofibers has created a significant opportunity to dev...
The discovery of carbon nanotubes and carbon nanofibers has created a significant opportunity to dev...
The discovery of carbon nanotubes and carbon nanofibers has created a significant opportunity to dev...
A dissertation submitted to the Faculty of Engineering and the Built Environment, University of the ...
Abstract This paper presents a comprehensive molecular dynamics study on the effects of the stoichio...
A molecular dynamics (MD) approach to investigating the structural performance of thermosetting epox...
A comprehensive modeling and simulation approach using molecular dynamics (MD) is presented in this ...
A comprehensive modeling and simulation approach using molecular dynamics (MD) is presented in this ...
The current state of characterization techniques for the interface in carbon nanotube-reinforced pol...
Many thermo-mechanical properties of fiber-reinforced epoxy composites strongly depend on the condit...
This study addresses the multiscale modeling of hybrid composites composed of carbon fibers (CFs), c...
In this study, a multiscale model fully representing mechanical deformation is developed for the ide...
In polymer nanocomposites, the interface region between the matrix and the fillers has been identifi...
The nanoscale fracture behavior of epoxy-based nanocomposites reinforced with double-walled carbon n...
A multiscale modeling approach is proposed to characterize the interfacial behavior and the interpha...
The discovery of carbon nanotubes and carbon nanofibers has created a significant opportunity to dev...
The discovery of carbon nanotubes and carbon nanofibers has created a significant opportunity to dev...
The discovery of carbon nanotubes and carbon nanofibers has created a significant opportunity to dev...
A dissertation submitted to the Faculty of Engineering and the Built Environment, University of the ...
Abstract This paper presents a comprehensive molecular dynamics study on the effects of the stoichio...
A molecular dynamics (MD) approach to investigating the structural performance of thermosetting epox...
A comprehensive modeling and simulation approach using molecular dynamics (MD) is presented in this ...
A comprehensive modeling and simulation approach using molecular dynamics (MD) is presented in this ...
The current state of characterization techniques for the interface in carbon nanotube-reinforced pol...
Many thermo-mechanical properties of fiber-reinforced epoxy composites strongly depend on the condit...
This study addresses the multiscale modeling of hybrid composites composed of carbon fibers (CFs), c...
In this study, a multiscale model fully representing mechanical deformation is developed for the ide...