Nonlinear mechanical systems promise broadband resonance and instantaneous hysteretic switching that can be used for high sensitivity sensing. However, to introduce nonlinear resonances in widely used microcantilever systems, such as AFM probes, requires driving the cantilever to an amplitude that is too large for any practical applications. We introduce a novel design for a microcantilever with a strong nonlinearity at small cantilever oscillation amplitude arising from the geometrical integration of a single BN nanotube. The dynamics of the system was modeled theoretically and confirmed experimentally. The system, besides providing a practical design of a nonlinear microcantilever-based probe, demonstrates also an effective method of stud...
The nonlinear dynamic response of carbon nanotube (CNT) nanocomposite cantilevers is experimentally ...
The nonlinear dynamics of an atomic force microcantilever (AFM) with an attached multi-walled carbon...
Over the past several decades, the development of ultra-sensitive nano/micromechanical sensor techno...
AbstractMicro/nanomechanical resonators often exhibit nonlinear behaviors due to their small size an...
Micro/nanomechanical resonators have been actively studied in the last decade in designs of highly s...
During the last decade, we have witnessed that micro/nanomechanical resonators have revolutionized f...
AbstractMicro/nanomechanical resonators often exhibit nonlinear behaviors due to their small size an...
This thesis examines the nonlinear dynamic behavior of two different nanomechanical systems. The fir...
Understanding and controlling nonlinear coupling between vibrational modes is critical for the devel...
The nonlinear dynamic response of carbon nanotube (CNT) nanocomposite cantilevers is experimentally ...
The nonlinear dynamic response of carbon nanotube (CNT) nanocomposite cantilevers is experimentally ...
Microcantilevers are widely used in micro-/nanoscale mechanics studies. The nonlinear response of a ...
The nonlinear dynamic behavior of nanocomposite microbeams excited near the primary resonance of the...
The nonlinear dynamic behavior of nanocomposite microbeams excited near the primary resonance of the...
This study analyzes numerically the nonlinear static and dynamic behaviours as well as the mass dete...
The nonlinear dynamic response of carbon nanotube (CNT) nanocomposite cantilevers is experimentally ...
The nonlinear dynamics of an atomic force microcantilever (AFM) with an attached multi-walled carbon...
Over the past several decades, the development of ultra-sensitive nano/micromechanical sensor techno...
AbstractMicro/nanomechanical resonators often exhibit nonlinear behaviors due to their small size an...
Micro/nanomechanical resonators have been actively studied in the last decade in designs of highly s...
During the last decade, we have witnessed that micro/nanomechanical resonators have revolutionized f...
AbstractMicro/nanomechanical resonators often exhibit nonlinear behaviors due to their small size an...
This thesis examines the nonlinear dynamic behavior of two different nanomechanical systems. The fir...
Understanding and controlling nonlinear coupling between vibrational modes is critical for the devel...
The nonlinear dynamic response of carbon nanotube (CNT) nanocomposite cantilevers is experimentally ...
The nonlinear dynamic response of carbon nanotube (CNT) nanocomposite cantilevers is experimentally ...
Microcantilevers are widely used in micro-/nanoscale mechanics studies. The nonlinear response of a ...
The nonlinear dynamic behavior of nanocomposite microbeams excited near the primary resonance of the...
The nonlinear dynamic behavior of nanocomposite microbeams excited near the primary resonance of the...
This study analyzes numerically the nonlinear static and dynamic behaviours as well as the mass dete...
The nonlinear dynamic response of carbon nanotube (CNT) nanocomposite cantilevers is experimentally ...
The nonlinear dynamics of an atomic force microcantilever (AFM) with an attached multi-walled carbon...
Over the past several decades, the development of ultra-sensitive nano/micromechanical sensor techno...