Advances in Nano Research
Volume 8, Number 2, 2020, pages 169-182
DOI: 10.12989/anr.2020.8.2.169
Dynamic characteristics of hygro-magneto-thermo-electrical nanobeam with non-ideal boundary conditions
Farzad Ebrahimi, Mohammadreza Kokaba, Gholamreza Shaghaghi and Rajendran Selvamani
Abstract
This study presents the hygro-thermo-electromagnetic mechanical vibration attributes of elastically restrained piezoelectric nanobeam considering effects of beam surface for various elastic non-ideal boundary conditions. The nonlocal Eringen theory besides the surface effects containing surface stress, surface elasticity and surface density are employed to incorporate sizedependent effects in the whole of the model and the corresponding governing equations are derived using Hamilton principle. The natural frequencies are derived with the help of differential transformation method (DTM) as a semi-analytical-numerical method. Some validations are presented between differential transform method results and peer-reviewed literature to show the accuracy and the convergence of this method. Finally, the effects of spring constants, changing nonlocal parameter, imposed electric potential, temperature rise, magnetic potential and moisture concentration are explored. These results can be beneficial to design nanostructures in diverse environments.
Key Words
mechanical vibration; piezoelectric nanobeam; non-ideal boundary condition; size dependent effects
Address
(1) Farzad Ebrahimi, Mohammadreza Kokaba:
Mechanical Engineering Department, Engineering Faculty, Imam Khomeini International University, Qazvin, Iran;
(2) Gholamreza Shaghaghi:
Young Researchers and Elites Club, Science and Research Branch, Islamic Azad University, Tehran, Iran;
(3) Rajendran Selvamani:
Department of Mathematics, Karunya University, Coimbatore 641114, Tamil nadu, India.