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ANALYZING A BIMORPH PIEZOELECTRIC NANOSCALE ACTUATOR UNDER PRIMARY-RESONANCE EXCITATION

机译:ANALYZING A BIMORPH PIEZOELECTRIC NANOSCALE ACTUATOR UNDER PRIMARY-RESONANCE EXCITATION

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摘要

Abstract In this study, nonlinear forced vibrations of a bimorph piezoelectric nanobeam are investigated by using the nonlocal elasticity theory. This nanoactuator is modeled using the Euler–Bernoulli beam theory. The Hamilton principle is used to obtain the equations of motion. The?derived equations are discretized by applying the mode shapes of multi-span beams as test functions in?the?Galerkin decomposition method. The discretized equations are then solved using the perturbation method. A parametric study is conducted to show the significance of size effects on?the?dynamic behavior of nanoactuators. The results show that an increase in the nonlocal parameter leads to?a?decrease in the fundamental natural frequency of the nanobeam and to an increase in?the?response amplitude.

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