In this paper, the effect of the geometry on the nonlinear vibrations of functionally graded cy-lindrical shells is analyzed. The Sanders-Koiter theory is applied to model nonlinear dynamics of the system in the case of finite amplitude of vibration. Shell deformation is described in terms of longitudinal, circumferential and radial displacement fields. Simply supported boundary conditions are considered. Numerical analyses are carried out in order to characterize the nonlinear response when the shell is subjected to an harmonic external load; different geometries and material distribu-tions are considered. A convergence analysis is carried out in order to determine the correct number of the modes to be used; the role of the axisymmetric and asymmetric modes is carefully analyzed. The analysis is focused on determining the nonlinear character of the response as the geometry (thickness, radius, length) and material properties (power-law exponent N and configurations of the constituent materials) vary. The effect of the constituent volume fractions and the configurations of the constituent materials on the natural frequencies and nonlinear response are studied.

Nonlinear vibrations of functionally graded circular cylindrical shells / Strozzi, Matteo; Francesco, Pellicano; Antonio, Zippo. - STAMPA. - (2011), pp. 1-8. (Intervento presentato al convegno 18th International Congress on Sound and Vibration 2011 (ICSV 18) tenutosi a Rio de Janeiro (Brasile) nel 10-14 Luglio 2011).

Nonlinear vibrations of functionally graded circular cylindrical shells

Matteo Strozzi
Membro del Collaboration Group
;
2011

Abstract

In this paper, the effect of the geometry on the nonlinear vibrations of functionally graded cy-lindrical shells is analyzed. The Sanders-Koiter theory is applied to model nonlinear dynamics of the system in the case of finite amplitude of vibration. Shell deformation is described in terms of longitudinal, circumferential and radial displacement fields. Simply supported boundary conditions are considered. Numerical analyses are carried out in order to characterize the nonlinear response when the shell is subjected to an harmonic external load; different geometries and material distribu-tions are considered. A convergence analysis is carried out in order to determine the correct number of the modes to be used; the role of the axisymmetric and asymmetric modes is carefully analyzed. The analysis is focused on determining the nonlinear character of the response as the geometry (thickness, radius, length) and material properties (power-law exponent N and configurations of the constituent materials) vary. The effect of the constituent volume fractions and the configurations of the constituent materials on the natural frequencies and nonlinear response are studied.
2011
Proceedings of the 18th International Congress on Sound and Vibration 2011 (ICSV 18)
1
8
Nonlinear vibrations of functionally graded circular cylindrical shells / Strozzi, Matteo; Francesco, Pellicano; Antonio, Zippo. - STAMPA. - (2011), pp. 1-8. (Intervento presentato al convegno 18th International Congress on Sound and Vibration 2011 (ICSV 18) tenutosi a Rio de Janeiro (Brasile) nel 10-14 Luglio 2011).
Strozzi, Matteo; Francesco, Pellicano; Antonio, Zippo
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/610242
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