Local nonlinear dynamics of MEMS arches actuated by fringing-field electrostatic actuation
DOI10.1007/S11071-018-4731-YzbMath1437.74014OpenAlexW2907011619WikidataQ128643882 ScholiaQ128643882MaRDI QIDQ783370
Hassen M. Ouakad, Hussain Alqahtani, Mohammad Tausiff, Abdurahman Alofi
Publication date: 4 August 2020
Published in: Nonlinear Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11071-018-4731-y
method of multiple scalesresonance frequencyhardeningperturbationsofteningnonlinear dynamicsMEMSfringing field
Rods (beams, columns, shafts, arches, rings, etc.) (74K10) Singular perturbations, turning point theory, WKB methods for ordinary differential equations (34E20) Multiple scale methods for ordinary differential equations (34E13)
Related Items (2)
Cites Work
- Unnamed Item
- Unnamed Item
- Static pull-in analysis of electrostatically actuated microbeams using homotopy perturbation method
- Application of homotopy analysis method in studying dynamic pull-in instability of microsystems
- A study of the nonlinear response of a resonant microbeam to an electric actuation
This page was built for publication: Local nonlinear dynamics of MEMS arches actuated by fringing-field electrostatic actuation