AbstractThe influence of van der Waals (vdW) force on the stability of electrostatic torsional nano-electro-mechanical systems (NEMS) actuators is analyzed in the paper. The dependence of the critical tilting angle and voltage is investigated on the sizes of structure with the consideration of vdW effects. The pull-in phenomenon without the electrostatic torque is studied, and a critical pull-in gap is derived. A dimensionless equation of motion is presented, and the qualitative analysis of it shows that the equilibrium points of the corresponding autonomous system include center points, stable focus points, and unstable saddle points. The Hopf bifurcation points and fork bifurcation points also exist in the system. The phase portraits conn...
U-shape nanoelectromechanical systems (NEMS) are potential for developing miniature sensors. While t...
In the present paper, we analyze the influence of surface energy on the pull-in instability of a can...
The problem of pull-in instability of a cantilever micro- or nano-switch under electrostatic forces ...
AbstractThe influence of van der Waals (vdW) force on the stability of electrostatic torsional nano-...
The influence of van der Waals (vdW) and Casimir forces on the stability of the electrostatic torsio...
The influences of Casimir and van der Waals forces on the nano-electromechanical systems (NEMS) elec...
The influences of Casimir and van der Waals forces on the nano-electromechanical systems (NEMS) elec...
The dynamic behaviour for nanoscale electrostatic actuators is studied. A two Parameter mass-spring ...
The influence of damping on the dynamical behavior of the electrostaticparallel-plate and torsional ...
The presence of van der Waals (vdW) force can lead to mechanical instability in freestanding nano-sc...
It is well established that the mechanical behavior of ultra-small elements is size-dependent. In th...
Here, we investigate the dynamical sensitivity of electrostatic torsional type microelectromechanica...
We investigate the influence of Casimir and electrostatic torques on double-beam torsional microelec...
In this paper, the influence of van der Waals, as well as electrostatic forces on the structural beh...
AbstractWhen the dimensions decrease to nano-scale, many essential phenomena appear which are not im...
U-shape nanoelectromechanical systems (NEMS) are potential for developing miniature sensors. While t...
In the present paper, we analyze the influence of surface energy on the pull-in instability of a can...
The problem of pull-in instability of a cantilever micro- or nano-switch under electrostatic forces ...
AbstractThe influence of van der Waals (vdW) force on the stability of electrostatic torsional nano-...
The influence of van der Waals (vdW) and Casimir forces on the stability of the electrostatic torsio...
The influences of Casimir and van der Waals forces on the nano-electromechanical systems (NEMS) elec...
The influences of Casimir and van der Waals forces on the nano-electromechanical systems (NEMS) elec...
The dynamic behaviour for nanoscale electrostatic actuators is studied. A two Parameter mass-spring ...
The influence of damping on the dynamical behavior of the electrostaticparallel-plate and torsional ...
The presence of van der Waals (vdW) force can lead to mechanical instability in freestanding nano-sc...
It is well established that the mechanical behavior of ultra-small elements is size-dependent. In th...
Here, we investigate the dynamical sensitivity of electrostatic torsional type microelectromechanica...
We investigate the influence of Casimir and electrostatic torques on double-beam torsional microelec...
In this paper, the influence of van der Waals, as well as electrostatic forces on the structural beh...
AbstractWhen the dimensions decrease to nano-scale, many essential phenomena appear which are not im...
U-shape nanoelectromechanical systems (NEMS) are potential for developing miniature sensors. While t...
In the present paper, we analyze the influence of surface energy on the pull-in instability of a can...
The problem of pull-in instability of a cantilever micro- or nano-switch under electrostatic forces ...