Author/Authors :
Mokhtari Javad نويسنده Department of Chemistry, Iran University of Science and Technology, P.O. Box 16846-13114 Tehran, I.R. IRAN Mokhtari Javad
Abstract :
The present research is devoted to theoretical study of the pull-in performance
of double-sided and paddle-type NEMS actuators fabricated from cylindrical nanowire operating in
the Casimir regime and in the presence of the centrifugal force. DʹAlembertʹs principle was used to
transform the angular velocity into an equivalent static, centrifugal force. Using the couple
stress theory, the constitutive equations of the actuators were derived. The equivalent
boundary condition technique was applied to obtain the governing equation of the paddle-type
actuator. Three distinct approaches, the Duan- Adomian Method (DAM), Finite Difference Method
(FDM), and Lumped Parameter Model (LPM), were applied to solve the equation of motion of these two
actuators. This study demonstrates the influence of various parameters, i.e., the Casimir force,
geometric characteristics, and the angular speed, on the pull-in performance.