Nonlinear Vibration of Orthotropic Plates with Initial Stresses on a Two-parameter Elastic Foundation

Author:

Chen Chun-sheng1,Fung Chin-ping2,Chien Rean-der3

Affiliation:

1. Department of Mechanical Engineering Lunghwa University of Science and Technology Guai-Shan, Taiwan 33327

2. Department of System Engineering Chung Cheng Institute of Technology Tao-Yuan, Taiwan 33509

3. Department of Mechanical Engineering Nan Ya Institute of Technology Chung-Li, Taiwan 32034

Abstract

Nonlinear partial differential equations for vibration of an orthotropic thick plate on a two-parameter (Pasternak type) elastic foundation subjected to a nonuniform initial stress are derived. Both rotary inertia and transverse stress are considered in the derivation. The Galerkin method is used to transform the governing nonlinear partial differential equations to ordinary nonlinear differential equations and the Runge–Kutta method is used to obtain the ratio of nonlinear to linear frequency. Numerical examples are presented for the combination of pure bending stresses and extensional stresses are taken to be the initial stresses in the plane of the plate. These equations are then applied to a simply supported orthotropic plate on a Pasternak foundation to solve its motion of nonlinear vibration. The effects of the material properties, initial stress, amplitude of vibration, and foundation stiffness on frequency ratio are discussed.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

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