Abstract
In this paper the nonlinear vibration of an aircraft panel structure modelled as an isotropic cracked plate and subjected to transverse harmonic excitation is considered for studying the dynamic response, both analytically and experimentally. A crack is arbitrarily located at the centre of the plate, consisting of a continuous line. This mathematical model is in the form of Duffing equation with a cubic nonlinear term. The perturbation method of multiple scales is used to solve the algebraic equation, and then investigated with the results of the direct integration within Mathematica and finite element analysis in ABAQUS for the first mode only. In addition, experimental measurements are also carried out to verify the dependence of the cracked plate's fundamental mode shape and resonance frequency on the vibration displacement amplitude. An extermely close agreement between these results is observed. © 2009 IOP Publishing Ltd.
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CITATION STYLE
Israr, A., & Atepor, L. (2009). Investigation of the nonlinear dynamics of a partially cracked plate. In Journal of Physics: Conference Series (Vol. 181). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/181/1/012087
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