In this paper, the oscillations of an actuated, simply supported microbeam are studied for which it is assumed that the electric load is composed of a small DC polarization voltage and a small, harmonic AC voltage. Bending stiffness and mid-plane stretching are taken into account as well as small viscous or structural damping. No tensile axial force is assumed to be present. By using a multiple time-scales perturbation method, approximations of the solutions of the initial-boundary value problem for the microbeam equation are constructed. This analysis is performed without truncating the infinite series representation in advance as is usually done in the existing literature. It is shown in which cases truncation is allowed for this problem....
The present study investigates the nonlinear resonant behavior of a microbeam over its buckled (non-...
This paper investigates the features of different techniques to model the dynamic behaviour of micro...
Microbeams are widely used in micro-electro-mechanical systems (MEMS). These systems are alternative...
In this paper, the oscillations of an actuated, simply supported microbeam are studied for which it ...
In this paper, the nonlinear vibration behavior of an electrically actuated microbeam is investigate...
In this research a study of the response of a simply supported microbeam subject to an electric actu...
In this study a theoretical and experimental investigation of the nonlinear response of an electrica...
An investigation into the dynamic behavior of a slightly curved resonant microbeam having nonideal b...
This paper presents an investigation of the dynamics of microbeams under multiple harmonic electrost...
The vibration analysis of an adhered S-shaped microbeam under alternating sinusoidal voltage is pres...
The nonlinear forced vibrations of a microbeam are investigated in this paper, employing the strain ...
We present a study of the dynamic behavior of a microelectromechanical systems (MEMS) device consist...
Tuning of linear frequency and nonlinear frequency response of microelectromechanical systems is imp...
Effects of non-ideal boundary conditions on the vibrations of microbeams are investigated. Stretchin...
Microbeams and microcantilevers are the main part of many MEMS. There are several body and contact f...
The present study investigates the nonlinear resonant behavior of a microbeam over its buckled (non-...
This paper investigates the features of different techniques to model the dynamic behaviour of micro...
Microbeams are widely used in micro-electro-mechanical systems (MEMS). These systems are alternative...
In this paper, the oscillations of an actuated, simply supported microbeam are studied for which it ...
In this paper, the nonlinear vibration behavior of an electrically actuated microbeam is investigate...
In this research a study of the response of a simply supported microbeam subject to an electric actu...
In this study a theoretical and experimental investigation of the nonlinear response of an electrica...
An investigation into the dynamic behavior of a slightly curved resonant microbeam having nonideal b...
This paper presents an investigation of the dynamics of microbeams under multiple harmonic electrost...
The vibration analysis of an adhered S-shaped microbeam under alternating sinusoidal voltage is pres...
The nonlinear forced vibrations of a microbeam are investigated in this paper, employing the strain ...
We present a study of the dynamic behavior of a microelectromechanical systems (MEMS) device consist...
Tuning of linear frequency and nonlinear frequency response of microelectromechanical systems is imp...
Effects of non-ideal boundary conditions on the vibrations of microbeams are investigated. Stretchin...
Microbeams and microcantilevers are the main part of many MEMS. There are several body and contact f...
The present study investigates the nonlinear resonant behavior of a microbeam over its buckled (non-...
This paper investigates the features of different techniques to model the dynamic behaviour of micro...
Microbeams are widely used in micro-electro-mechanical systems (MEMS). These systems are alternative...