Analysis of dynamic pull-in voltage and response time for a micro-electro-mechanical oscillator made of power-law materials
DOI10.1007/s11071-021-06653-3zbMath1537.74294MaRDI QIDQ6543274
Eduard Gennadevich Kostsov, Madi Begzhigitov, Dongming Wei, Alexei A. Sokolov, Grant Ellis, Daulet B. Nurakhmetov, Piotr Skrzypacz
Publication date: 24 May 2024
Published in: Nonlinear Dynamics (Search for Journal in Brave)
Control, switches and devices (``smart materials) in solid mechanics (74M05) Topological structure of integral curves, singular points, limit cycles of ordinary differential equations (34C05) Micromechanics of solids (74M25) Nonlinear oscillations and coupled oscillators for ordinary differential equations (34C15) Bifurcations of limit cycles and periodic orbits in dynamical systems (37G15)
Cites Work
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- On the dynamic pull-in instability in a mass-spring model of electrostatically actuated MEMS devices
- Stabilizing the pull-in instability of an electro-statically actuated micro-beam using piezoelectric actuation
- Nonlinear waves in rods and beams of power-law materials
- Large deflections of cantilever beams of non-linear elastic material under a combined loading
- Static pull-in analysis of electrostatically actuated microbeams using homotopy perturbation method
- A new analytical solution of pure bending beam in couple stress elasto-plasticity: theory and applications
- Large deflections of cantilever beams of nonlinear materials of the Ludwick type subjected to an end moment
- Anharmonic 1D actuator model including electrostatic and Casimir forces with fractional damping perturbed by an external force
- Nonlinear dynamic analysis of cantilevered piezoelectric energy harvesters under simultaneous parametric and external excitations
- Analysis of dynamic pull-in voltage of a graphene MEMS model
- Pull-in instability of a typical electrostatic MEMS resonator and its control by delayed feedback
- A study of microbend test by strain gradient plasticity
- Large deflections of nonlinearly elastic non-prismatic cantilever beams made from materials obeying the generalized Ludwick constitutive law
- Large deflection of curved elastic beams made of Ludwick type material
- Analysis of the lumped mass model for the cantilever beam subject to Grob's swelling pressure
- Exact steady states of periodically forced and essentially nonlinear and damped oscillator
- A numerical study of the pull-in instability in some free boundary models for MEMS
- Post-buckling of simply supported column made of nonlinear elastic materials obeying the generalized Ludwick constitutive law
- Strongly nonlinear oscillators. Analytical solutions
- Elemente der technologischen Mechanik.
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