Skewed modes in geometrically nonlinear forced vibrations of angle-ply laminated circular cylindrical shells are investigated in the present study by using the Amabili–Reddy higher-order shear deformation theory. An harmonic force excitation is applied in radial direction and simply supported boundary conditions are assumed. The equations of motion are obtained by using an energy approach based on Lagrange equations that retains dissipation. Numerical results are obtained by using the pseudo-arclength continuation method and bifurcation analysis
The non-linear vibration of simply supported, circular cylindrical shells is analysed. Geometric non...
In this paper, the nonlinear vibrations of functionally graded (FGM) circular cylindrical shells are...
Nonlinear bending deformations of generally laminated circular cylindrical shells subjected to an ax...
Internal resonances in geometrically nonlinear forced vibrations of laminated circular cylindrical ...
An original and consistent first-order shear deformation theory that retains all the nonlinear terms...
Nonlinear forced vibrations of laminated composite conical shells are investigated by using a higher...
Large-amplitude (geometrically nonlinear) vibrations of circular cylindrical panels with rectangular...
Nonlinear forced vibrations of water-filled, laminated circular cylindrical shells are studied by us...
This paper presents the dynamic instability and nonlinear vibration analysis of fluid-filled laminat...
International audienceA consistent higher-order shear deformation non-linear theory is developed for...
In this paper, the effect of the geometry on the nonlinear vibrations of functionally graded cy-lind...
The nonlinear vibrations of functionally graded (FGM) circular cylindrical shells are analysed. The ...
A geometrically nonlinear theory is developed for shells of generic shape allowing for third-order s...
In this article, nonlinear vibration and dynamic stability analyses of simply supported laminated co...
Geometrically non-linear forced vibrations of a shallow circular cylindrical panel with a complex sh...
The non-linear vibration of simply supported, circular cylindrical shells is analysed. Geometric non...
In this paper, the nonlinear vibrations of functionally graded (FGM) circular cylindrical shells are...
Nonlinear bending deformations of generally laminated circular cylindrical shells subjected to an ax...
Internal resonances in geometrically nonlinear forced vibrations of laminated circular cylindrical ...
An original and consistent first-order shear deformation theory that retains all the nonlinear terms...
Nonlinear forced vibrations of laminated composite conical shells are investigated by using a higher...
Large-amplitude (geometrically nonlinear) vibrations of circular cylindrical panels with rectangular...
Nonlinear forced vibrations of water-filled, laminated circular cylindrical shells are studied by us...
This paper presents the dynamic instability and nonlinear vibration analysis of fluid-filled laminat...
International audienceA consistent higher-order shear deformation non-linear theory is developed for...
In this paper, the effect of the geometry on the nonlinear vibrations of functionally graded cy-lind...
The nonlinear vibrations of functionally graded (FGM) circular cylindrical shells are analysed. The ...
A geometrically nonlinear theory is developed for shells of generic shape allowing for third-order s...
In this article, nonlinear vibration and dynamic stability analyses of simply supported laminated co...
Geometrically non-linear forced vibrations of a shallow circular cylindrical panel with a complex sh...
The non-linear vibration of simply supported, circular cylindrical shells is analysed. Geometric non...
In this paper, the nonlinear vibrations of functionally graded (FGM) circular cylindrical shells are...
Nonlinear bending deformations of generally laminated circular cylindrical shells subjected to an ax...