This study investigates the nonlinear vibration motions of the Euler-Bernoulli microbeam on a nonlinear elastic foundation in a uniform magnetic field based on Modified Couple Stress Theory (MCST). The effect of size, foundation, and magnetic field on the nonlinear vibration motion of microbeam has been examined. The governing equations related to the nonlinear vibration motions of the microbeam are obtained by using Hamilton's Principle, and the Multiple Time Scale Method was used to obtain the solutions for the governing equations. The linear natural frequencies of microbeam are presented in the table according to nonlinear parameters and boundary conditions. The linear and nonlinear natural frequency ratio graphs are shown. The present s...
In this paper, a new magneto-electro-elastic functionally graded Timoshenko microbeam model is devel...
In recent years, the static and dynamic response of micro/nanobeams made of hyperelasticity material...
In recent years, the static and dynamic response of micro/nanobeams made of hyperelasticity material...
In this paper, post-buckling and free nonlinear vibration of microbeams resting on nonlinear elastic...
[[abstract]]In the present study, nonlinear free vibration behavior of nanobeam subjected to magneti...
In this study, the non-local Euler-Bernoulli beam theory was employed in the nonlinear free and forc...
In this paper, nonlinear vibration analysis of micro scale functionally graded material (FGM) beams ...
In this study, a non-classical approach was developed to analyze nonlinear free and forced vibration...
Microbeams are widely used in micro-electro-mechanical systems (MEMS). These systems are alternative...
In this paper, the nonlinear vibration behavior of an electrically actuated microbeam is investigate...
In this paper, the nonlinear vibration behavior of an electrically actuated microbeam is investigate...
[[abstract]]In the present study, we perform the nonlinear free vibration analysis of nanobeams unde...
The nonlinear forced vibrations of a microbeam are investigated in this paper, employing the strain ...
In this paper, the nonlinear size-dependent forced vibrations of a functionally graded extensible mi...
In this paper, the vibration of nanobeams resting on the Winkler foundation is proposed using the mo...
In this paper, a new magneto-electro-elastic functionally graded Timoshenko microbeam model is devel...
In recent years, the static and dynamic response of micro/nanobeams made of hyperelasticity material...
In recent years, the static and dynamic response of micro/nanobeams made of hyperelasticity material...
In this paper, post-buckling and free nonlinear vibration of microbeams resting on nonlinear elastic...
[[abstract]]In the present study, nonlinear free vibration behavior of nanobeam subjected to magneti...
In this study, the non-local Euler-Bernoulli beam theory was employed in the nonlinear free and forc...
In this paper, nonlinear vibration analysis of micro scale functionally graded material (FGM) beams ...
In this study, a non-classical approach was developed to analyze nonlinear free and forced vibration...
Microbeams are widely used in micro-electro-mechanical systems (MEMS). These systems are alternative...
In this paper, the nonlinear vibration behavior of an electrically actuated microbeam is investigate...
In this paper, the nonlinear vibration behavior of an electrically actuated microbeam is investigate...
[[abstract]]In the present study, we perform the nonlinear free vibration analysis of nanobeams unde...
The nonlinear forced vibrations of a microbeam are investigated in this paper, employing the strain ...
In this paper, the nonlinear size-dependent forced vibrations of a functionally graded extensible mi...
In this paper, the vibration of nanobeams resting on the Winkler foundation is proposed using the mo...
In this paper, a new magneto-electro-elastic functionally graded Timoshenko microbeam model is devel...
In recent years, the static and dynamic response of micro/nanobeams made of hyperelasticity material...
In recent years, the static and dynamic response of micro/nanobeams made of hyperelasticity material...