Publication: The Dynamic Stability of Orthotropic Cylindrical Shells With Non-Homogenous Material Properties Under Axial Compressive Load Varying as a Parabolic Function of Time
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Abstract
In this study, the dynamic stability problem of a cylindrical shell composed of non-homogeneous orthotropic materials with Young's moduli and density varying continuously in the thickness direction under the effect of an axial compressive load varying with a parabolic function of time is considered. At first, the fundamental relations and the modified Donnell type dynamic stability equations of a non-homogeneous orthotropic cylindrical shell are set up. Applying the Galerkin method, first, and then the Ritz-type variational method, the closed-form solutions have been derived for the dynamic critical axial load and dynamic factor. Finally, carrying out some computations, the effects of the non-homogeneity of the orthotropy ratio and the axial loading parameter on the critical parameters have been studied. Comparing results with those in the literature validates the present analysis. © SAGE Publications.
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WoS Q
Q3
Scopus Q
Q2
Source
Journal of Reinforced Plastics and Composites
Volume
25
Issue
18
Start Page
1877
End Page
1886
