Title of article
Comparison of Various Shell Theories for Vibrating Functionally Graded Cylindrical Shells
Author/Authors
Javadinejad، M نويسنده Department of Mechanical Engineering ,
Issue Information
فصلنامه با شماره پیاپی 0 سال 2009
Pages
11
From page
73
To page
83
Abstract
The classical shell theory, first-order shear deformation theory, and third-order shear deformation theory are employed to study the natural frequencies of functionally graded cylindrical shells. The governing equations of motion describing the vibration behavior of functionally graded cylindrical shells are derived by Hamilton’s principle. Resulting equations are solved using the Navier-type solution method for a functionally graded cylindrical shell with simply supported edges. The effects of transverse shear deformation, geometric size, and configurations of the constituent materials on the natural frequencies of the shell are investigated. Validity of present formulation was checked by comparing the numerical results with the Love’s shell theory.
Journal title
Journal of Solid Mechanics(JSM)
Serial Year
2009
Journal title
Journal of Solid Mechanics(JSM)
Record number
658862
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