Torsional buckling of cross-ply laminated orthotropic composite cylindrical shells subject to dynamic loading
β Scribed by A.H. Sofiyev
- Publisher
- Elsevier Science
- Year
- 2003
- Tongue
- English
- Weight
- 240 KB
- Volume
- 22
- Category
- Article
- ISSN
- 0997-7538
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β¦ Synopsis
This study considers torsional buckling of cross-ply laminated orthotropic composite cylindrical thin shells under loads, which is a power function of time. The modified Donnell type dynamic stability and compatibility equations are obtained first. These equations are subsequently reduced to a time dependent differential equation with variable coefficients by using Galerkin's method. The critical parameters are found analytically by applying the Ritz type variational method. According to theoretical solutions, numerical analyses are done.
π SIMILAR VOLUMES
A simple and accurate finite cylindrical element method was formulated by the authors to determine stresses and deformations in laminated thick-walled cylindrical composite shells. This method reduces the overall problem to a one-dimensional one. In the previous study it was found that significant t
This paper is presented to solve the nonlinear dynamic buckling problem of a new type of composite cylindrical shells, made of ceram/metal functionally graded materials. The material properties vary smoothly through the shell thickness according to a power law distribution of the volume fraction of