Title of article
Nonlinear vibrations of laminated circular cylindrical shells: Comparison of different shell theories
Author/Authors
Marco Amabili، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
14
From page
207
To page
220
Abstract
The geometrically nonlinear forced vibrations of laminated circular cylindrical shells are studied by using the Amabili–Reddy higher-order shear deformation theory. An energy approach based on Lagrange equations, retaining modal damping, is used in order to obtain the equations of motion. An harmonic point excitation is applied in radial direction and simply supported boundary conditions are assumed. The equations of motion are studied by using the pseudo-arclength continuation method and bifurcation analysis. A one-to-one internal resonance is always present for a complete circular cylindrical shell, giving rise to pitchfork bifurcations of the nonlinear response with appearance of a second branch with travelling wave response and quasi-periodic vibrations. The numerical results obtained by using the Amabili–Reddy shell theory are compared to those obtained by using an higher-order shear deformation theory retaining only nonlinear term of von Kármán type and the Novozhilov classical shell theory.
Keywords
Nonlinear vibrations , Shear deformation theory , Laminated shell , Forced vibrations , Comparison of nonlinear shell theories , Circular cylindrical shells
Journal title
COMPOSITE STRUCTURES
Serial Year
2012
Journal title
COMPOSITE STRUCTURES
Record number
1344470
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