Structural Engineering and Mechanics

Volume 35, Number 4, 2010, pages 493-510

DOI: 10.12989/sem.2010.35.4.493

Effects of anisotropy and curvature on free vibration characteristics of laminated composite cylindrical shallow shells

Ali Dogan, H. Murat Arslan and Huseyin R. Yerli

Abstract

This paper presents effects of anisotropy and curvature on free vibration characteristics of cross-ply laminated composite cylindrical shallow shells. Shallow shells have been considered for different lamination thickness, radius of curvature and elasticity ratio. First, kinematic relations of strains and deformation have been showed. Then, using Hamilton\'s principle, governing differential equations have been obtained for a general curved shell. In the next step, stress-strain relation for laminated, cross-ply composite shells has been given. By using some simplifications and assuming Fourier series as a displacement field, differential equations are solved by matrix algebra for shallow shells. The results obtained by this solution have been given tables and graphs. The comparisons made with the literature and finite element program (ANSYS).

Key Words

structural composites; vibration; anisotropy; shell theory; finite element method (FEM).

Address

Ali Dogan: Department of Civil Engineering, Cukurova University, 01330 Adana, Turkey H. Murat Arslan: Department of Civil Engineering, Cukurova University, 01330 Adana, Turkey Huseyin R. Yerli: Department of Civil Engineering, Cukurova University, 01330 Adana, Turkey