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Application of third order shear deformation theory in buckling analysis of 2D-functionally graded cylindrical shell reinforced by axial stiffeners.

Authors :
Satouri, S.
Kargarnovin, M.H.
Allahkarami, F.
Asanjarani, A.
Source :
Composites: Part B, Engineering. Sep2015, Vol. 79, p236-253. 18p.
Publication Year :
2015

Abstract

This paper presents buckling analysis of a two-dimensional functionally graded cylindrical shell reinforced by axial stiffeners (stringer) under combined compressive axial and transverse uniform distributive load. The shell material properties are graded in the direction of thickness and length according to a simple power law distribution in terms of the volume fractions of the constituents. Primarily, the third order shear deformation theory (TSDT) is used to derive the equilibrium and stability equations. Since there is no closed form solution, the numerical differential quadrature method, (DQM), is applied for solving the stability equations. Initially, the obtained results for an isotropic shell using DQM were verified against those given in the literature for simply supported boundary conditions. The effects of load, geometrical and stringer parameters along with FG power index in the various boundary conditions on the critical buckling load have been studied. The study of results confirms that, stringers have significant effects on critical buckling load. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13598368
Volume :
79
Database :
Academic Search Index
Journal :
Composites: Part B, Engineering
Publication Type :
Academic Journal
Accession number :
103690253
Full Text :
https://doi.org/10.1016/j.compositesb.2015.04.036