Hysteresis is discussed as a multi-scale material feature that can strongly affect the dynamic performance of a structure. It is shown that the hysteresis exhibited by assemblies of short wire ropes can be tailored via a synergistic use of different dissipation mechanisms (inter-wire frictional sliding, phase transformations) combined with geometric nonlinearities. The blend of material and geometric nonlinearities is a powerful and promising way to design new advantageous types of hysteretic responses in macro- or micro-scale devices and structures. Indeed, moving from macro-scale structures towards much smaller material scales, carbon nanotubes in nanocomposites are shown to dissipate energy through stick-slip with the polymer chains. The...
Optimization of the storage modulus and the hysteretic damping capacity of multilayer carbon nanotub...
A 3D nonlinear constitutive theory is proposed to describe the hysteretic response of non-functional...
We assembled novel periodic structures by alternating aligned carbon nanotube (CNT) discs and polyca...
Nanocomposites made of a hosting polymer matrix integrated with carbon nanotubes as nanofillers exhi...
Hysteresis due to stick-slip energy dissipation in carbon nanotube (CNT) nanocomposites is experimen...
Hysteresis due to stick-slip energy dissipation in carbon nanotube (CNT) nanocomposites is experimen...
High-performance, lightweight polymers integrated with carbon-based nanofillers, such as carbon nano...
Polymer composites integrated with carbon nanotubes (CNT) have shown the virtue of exhibiting an imp...
The nonlinear dynamic response of carbon nanotube (CNT) nanocomposite cantilevers is experimentally ...
The nonlinear dynamic response of carbon nanotube (CNT)/polymer nanocomposite beams to harmonic base...
Optimization of the hysteretic damping capacity of carbon nanotube (CNT) nanocomposites is carried o...
The nonlinear dynamic response of carbon nanotube (CNT)/polymer nanostructured hysteretic beams is i...
The talk will summarize research efforts dealing with three-dimensional nonlinear modeling of nanoco...
Optimization of the storage modulus and the hysteretic damping capacity of multilayer carbon nanotub...
A 3D nonlinear constitutive theory is proposed to describe the hysteretic response of non-functional...
We assembled novel periodic structures by alternating aligned carbon nanotube (CNT) discs and polyca...
Nanocomposites made of a hosting polymer matrix integrated with carbon nanotubes as nanofillers exhi...
Hysteresis due to stick-slip energy dissipation in carbon nanotube (CNT) nanocomposites is experimen...
Hysteresis due to stick-slip energy dissipation in carbon nanotube (CNT) nanocomposites is experimen...
High-performance, lightweight polymers integrated with carbon-based nanofillers, such as carbon nano...
Polymer composites integrated with carbon nanotubes (CNT) have shown the virtue of exhibiting an imp...
The nonlinear dynamic response of carbon nanotube (CNT) nanocomposite cantilevers is experimentally ...
The nonlinear dynamic response of carbon nanotube (CNT)/polymer nanocomposite beams to harmonic base...
Optimization of the hysteretic damping capacity of carbon nanotube (CNT) nanocomposites is carried o...
The nonlinear dynamic response of carbon nanotube (CNT)/polymer nanostructured hysteretic beams is i...
The talk will summarize research efforts dealing with three-dimensional nonlinear modeling of nanoco...
Optimization of the storage modulus and the hysteretic damping capacity of multilayer carbon nanotub...
A 3D nonlinear constitutive theory is proposed to describe the hysteretic response of non-functional...
We assembled novel periodic structures by alternating aligned carbon nanotube (CNT) discs and polyca...