A unique T-beam microresonator designed to operate on the principle of nonlinear modal interactions due to 1 : 2 internal resonance is introduced. Specifically, the T-structure is designed to have two flexural modes with natural frequencies in a 1 : 2 ratio, and the higher frequency mode autoparametrically excites the lower frequency mode through inertial quadratic nonlinearities. A Lagrangian formulation is used to model the electrostatically actuated T-beam resonator, and it includes inertial quadratic nonlinearities, cubic nonlinearities due to midplane stretching and curvature of the beam, electrostatic potential, and effects of thermal prestress. A nonlinear two-mode reduced-order model is derived using linear structural modes in desir...
In oscillating mechanical systems, nonlinearity is responsible for the departure from proportionalit...
In this paper, the nonlinear vibration behavior of an electrically actuated microbeam is investigate...
We present a study of the dynamic behavior of a microelectromechanical systems (MEMS) device consist...
A great majority of the micromechanical resonators in the literature are based on linear response un...
A novel microresonator operating on the principle of nonlinear modal interactions due to autoparamet...
Micromachined resonators are typically used within their linear range of operation. Recently, there ...
Dynamics of a beam-based micro-electromechanical resonator is investigated theoretically and experim...
In this paper, the nonlinear mode coupling at 2:1 internal resonance has been studied both analytica...
Tuning of linear frequency and nonlinear frequency response of microelectromechanical systems is imp...
Microbeams and microcantilevers are the main part of many MEMS. There are several body and contact f...
Nonlinear phenomena such as internal resonances have significant potential applications in micro ele...
Microelectromechanical switch has become an essential component in a wide variety of applications, r...
This paper investigates the development of a novel framework and its implementation for the nonlinea...
International audienceIn oscillating mechanical systems, nonlinearity is responsible for the departu...
This work is focussed on the nonlinear dynamic response of electrostatically actuated micro-resonat...
In oscillating mechanical systems, nonlinearity is responsible for the departure from proportionalit...
In this paper, the nonlinear vibration behavior of an electrically actuated microbeam is investigate...
We present a study of the dynamic behavior of a microelectromechanical systems (MEMS) device consist...
A great majority of the micromechanical resonators in the literature are based on linear response un...
A novel microresonator operating on the principle of nonlinear modal interactions due to autoparamet...
Micromachined resonators are typically used within their linear range of operation. Recently, there ...
Dynamics of a beam-based micro-electromechanical resonator is investigated theoretically and experim...
In this paper, the nonlinear mode coupling at 2:1 internal resonance has been studied both analytica...
Tuning of linear frequency and nonlinear frequency response of microelectromechanical systems is imp...
Microbeams and microcantilevers are the main part of many MEMS. There are several body and contact f...
Nonlinear phenomena such as internal resonances have significant potential applications in micro ele...
Microelectromechanical switch has become an essential component in a wide variety of applications, r...
This paper investigates the development of a novel framework and its implementation for the nonlinea...
International audienceIn oscillating mechanical systems, nonlinearity is responsible for the departu...
This work is focussed on the nonlinear dynamic response of electrostatically actuated micro-resonat...
In oscillating mechanical systems, nonlinearity is responsible for the departure from proportionalit...
In this paper, the nonlinear vibration behavior of an electrically actuated microbeam is investigate...
We present a study of the dynamic behavior of a microelectromechanical systems (MEMS) device consist...