Title of article :
Vibration Analysis of a Rotating Nanoplate Using Nonlocal Elasticity Theory
Author/Authors :
Ghadiri, M Faculty of Engineering - Department of Mechanics - Imam Khomeini International University, Qazvin , Shafiei, N Faculty of Engineering - Department of Mechanics - Imam Khomeini International University, Qazvin , Alavi, Hossein School of Mechanical Engineering - Sharif University of Technology, Tehran
Abstract :
The nanostructures under rotation have high promising future to be used in nanomachines, nano-motors and nano-turbines. They are also one of the topics of interests and it is new in designing of rotating nano-systems. In this paper, the scaledependent vibration analysis of a nanoplate with consideration of the axial force due to the rotation has been investigated. The governing equation and boundary
conditions are derived using the Hamilton’s principle based on nonlocal elasticity
theory. The boundary conditions of the nanoplate are considered as free-free in y
direction and two clamped-free (cantilever plate) and clamped-simply (propped
cantilever) in x direction. The equations have been solved using differential
quadrature method to determine natural frequencies of the rotating nanoplate. For
validation, in special cases, it has been shown that the obtained results coincide with
literatures. The effects of the nonlocal parameter, aspect ratio, hub radius, angular
velocity and different boundary conditions on the first three frequencies have been
investigated. Results show that vibration behavior of the rotating nanoplate with
cantilever boundary condition is different from other boundary conditions.
Keywords :
Rotating nanoplate , Cantilever nanoplate , Propped cantilever nanoplate , Nonlocal elasticity theory , DQM
Journal title :
Astroparticle Physics