Title of article :
Viscous Fluid Flow-Induced Nonlocal Nonlinear Vibration of Embedded DWBNNTs
Author/Authors :
Ghorbanpour Arani, A Faculty of Mechanical Engineering - University of Kashan - Institute of Nanoscience & Nanotechnology - University of Kashan , Khoddami Maraghi, Z Faculty of Mechanical Engineering - University of Kashan , Kolahchi, R Faculty of Mechanical Engineering - University of Kashan , Mohammadimehr, M Faculty of Mechanical Engineering - University of Kashan
Abstract :
In this article, electro-thermo nonlocal nonlinear vibration and instability of
viscous-fluid-conveying double–walled boron nitride nanotubes (DWBNNTs)
embedded on Pasternak foundation are investigated. The DWBNNT is simulated as a Timoshenko beam (TB) which includes rotary inertia and transverse shear deformation in the formulation. Considering electromechanical coupling, the nonlinear governing equations are derived using Hamilton’s principle and discretized based on the differential quadrature method (DQM). The lowest four frequencies are determined for clampedclamped boundary condition. The effects of dimensionless small scale parameter, elastic medium coefficient, flow velocity, fluid viscosity and temperature change on the imaginary and real components of frequency are also taken into account. Results indicate that the electric potential increases with decreasing nonlocal parameter. It is also worth mentioning that decreasing nonlocal parameter and existence of Winkler and Pasternak foundation can enlarge the stability region of DWBNNT.
Keywords :
Nonlinear vibration , instability , DWBNNTs , Pasternak foundation , Conveying viscous fluid , Piezoelasticity theory
Journal title :
Astroparticle Physics