Smart Structures and Systems
Volume 25, Number 2, 2020, pages 219-228
DOI: 10.12989/sss.2020.25.2.219
Mechanical behaviors of piezoelectric nonlocal nanobeam with cutouts
Mohamed A. Eltaher, Fatema-Alzahraa Omar, Azza M. Abdraboh, Waleed S. Abdalla and Amal E. Alshorbagy
Abstract
This work presents a modified continuum model to explore and investigate static and vibration behaviors of perforated piezoelectric NEMS structure. The perforated nanostructure is modeled as a thin perforated nanobeam element with Euler.Bernoulli kinematic assumptions. A size scale effect is considered by included a nonlocal constitutive equation of Eringen in differential form. Modifications of geometrical parameters of perforated nanobeams are presented in simplified forms. To satisfy the Maxwell's equation, the distribution of electric potential for the piezoelectric nanobeam model is assumed to be varied as a combination of a cosine and linear functions. Hamilton's principle is exploited to develop mathematical governing equations. Modified numerical finite model is adopted to solve the equation of motion and equilibrium equation. The proposed model is validated with previous respectable work. Numerical investigations are presented to illustrate effects of the number of perforated holes, perforation size, nonlocal parameter, boundary conditions, and external electric voltage on the electro-mechanical behaviors of piezoelectric nanobeams.
Key Words
perforated piezoelectric nanobeams; nonlocal elasticity; finite element method; static and dynamic behaviors; NEMS
Address
(1) Mohamed A. Eltaher:
Mechanical Engineering Department, Faculty of Engineering, King Abdulaziz University, P.O. Box 80204, Jeddah 21589, Saudi Arabia;
(2) Mohamed A. Eltaher, Fatema-Alzahraa Omar, Waleed S. Abdalla, Amal E. Alshorbagy:
Mechanical Design and Production Department, Faculty of Engineering, Zagazig University, Zagazig, 44519, Egypt;
(3) Azza M. Abdraboh:
Physics Department, Faculty of Science, Banha University, Banha, Egypt.