The interfacial sliding motion of carbon nanotubes (CNTs) within a polymeric hosting matrix gives rise to energy dissipation. By tuning the interfacial shear strength (ISS) of the CNT-matrix interface, the dissipation can take place within tunable ranges of strain amplitudes. This is the basis for conceiving new multilayered carbon nanotube nanocomposites in which different layers with tunable ISS can lead to a concurrent optimization of strength and dissipation, often seen as two conflicting targets. Such optimization is tackled by a novel meso-mechanical nonlinear inelastic model proven to effectively predict the damping capacity of CNT nanocomposites. The proposed elastoplastic, rate-independent, constitutive theory is based on the mean-...
"Modeling and Characterization of the Mechanical and Damping Response of Carbon Nanotube Nanocomposi...
Carbon matrix carbon nanotube (CNT) composites have a broad range of applications because of the exc...
peer-reviewedThe exceptional mechanical properties of carbon nanotubes (CNTs) make them highly attra...
The interfacial sliding motion of carbon nanotubes (CNTs) within a polymeric hosting matrix gives ri...
A nonlinear constitutive theory is proposed to describe and characterize the hysteretic elastoplasti...
In this work, the arising of stick-slip dissipation as well as the global mechanical response of car...
Polymer composites integrated with carbon nanotubes (CNT) have shown the virtue of exhibiting an imp...
A 3D nonlinear constitutive theory is proposed to describe the hysteretic response of non-functional...
High-performance, lightweight polymers integrated with carbon-based nanofillers, such as carbon nano...
Optimization of the storage modulus and the hysteretic damping capacity of multilayer carbon nanotub...
AbstractThe effect of interfacial shear strength (ISS) on the mechanical and damping properties of c...
The talk will summarize research efforts dealing with three-dimensional nonlinear modeling of nanoco...
Optimization of the hysteretic damping capacity of carbon nanotube (CNT) nanocomposites is carried o...
Nanocomposites reinforced with carbon nanotube fibers exhibit greater stiffness, strength and dampin...
A nonlinear 3D constitutive theory is implemented to describe the hysteresis exhibited by carbon na...
"Modeling and Characterization of the Mechanical and Damping Response of Carbon Nanotube Nanocomposi...
Carbon matrix carbon nanotube (CNT) composites have a broad range of applications because of the exc...
peer-reviewedThe exceptional mechanical properties of carbon nanotubes (CNTs) make them highly attra...
The interfacial sliding motion of carbon nanotubes (CNTs) within a polymeric hosting matrix gives ri...
A nonlinear constitutive theory is proposed to describe and characterize the hysteretic elastoplasti...
In this work, the arising of stick-slip dissipation as well as the global mechanical response of car...
Polymer composites integrated with carbon nanotubes (CNT) have shown the virtue of exhibiting an imp...
A 3D nonlinear constitutive theory is proposed to describe the hysteretic response of non-functional...
High-performance, lightweight polymers integrated with carbon-based nanofillers, such as carbon nano...
Optimization of the storage modulus and the hysteretic damping capacity of multilayer carbon nanotub...
AbstractThe effect of interfacial shear strength (ISS) on the mechanical and damping properties of c...
The talk will summarize research efforts dealing with three-dimensional nonlinear modeling of nanoco...
Optimization of the hysteretic damping capacity of carbon nanotube (CNT) nanocomposites is carried o...
Nanocomposites reinforced with carbon nanotube fibers exhibit greater stiffness, strength and dampin...
A nonlinear 3D constitutive theory is implemented to describe the hysteresis exhibited by carbon na...
"Modeling and Characterization of the Mechanical and Damping Response of Carbon Nanotube Nanocomposi...
Carbon matrix carbon nanotube (CNT) composites have a broad range of applications because of the exc...
peer-reviewedThe exceptional mechanical properties of carbon nanotubes (CNTs) make them highly attra...