NONLINEAR DYNAMICS OF POLAR-ORTHOTROPIC CIRCULAR PLATES

Author:

AKOUR SALIH N.1,NAYFEH JAMAL F.2

Affiliation:

1. Mechanical Engineering Department, Faculty of Engineering and Technology, University of Jordan, Amman 11942, Jordan

2. University of Central Florida, College of Engineering and Computer Science, Mechanical, Material & Aerospace Engineering Department, PO Box 162993, Orlando, Florida, 32816-2993, USA

Abstract

The dynamics of nonlinear polar orthotropic circular plates with simply supported boundary condition are investigated. Kirchhoff strain displacement relations for thin plates plus next higher-order nonlinear terms (von Karman type geometric nonlinearity) are considered. Lagrangian density function and Hamilton's principle are utilized to derive Lagrange's equations, from which the equations of motion and associated boundary conditions are derived. Analytical solution is obtained by the perturbation techniques and numerical solution by the Runge–Kutta method. Phase diagrams, discrete Fast Fourier Transform (FFT diagrams) and time history responses are presented for studying the forced vibration behavior. The sub-harmonic and primary resonances are studied as well as the effect of adding damping foil layers. The quadratic term in the governing equation plays a softening role on the overall behavior of the plate due to its relatively large coefficient. The increase of damping tends to smooth out the unstable region (i.e. jump phenomenon) in the system.

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,Mechanical Engineering,Ocean Engineering,Aerospace Engineering,Building and Construction,Civil and Structural Engineering

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