Memorias de investigación
Artículos en revistas:
An analytical, numerical, and experimental study of the axisymmetric vibrations of a short cylinder
Año:2008

Áreas de investigación
  • Electrónica,
  • Ingenieria mecanica

Datos
Descripción
This article presents a study of standing axisymmetric waves in homogeneous, isotropic, linear, and elastic cylinders whose length and diameter are of the same order of magnitude. It is analytically demonstrated that only materials with a Poisson¿s ratio equal to zero can vibrate in pure radial and longitudinal axisymmetric modes and, hence, the universal frequencies, independent of Poisson¿s ratio, and the corresponding universal aspect ratios can be accurately calculated. The Ritz method is applied to numerically determine the natural frequencies and the mode shapes of finite cylinders. Vibration of a cylinder in the neighbourhood of the universal point is analysed. Both free and forced vibrations are experimentally detected by using a laser speckle interferometer that allows the determination of the natural frequencies and the mode shapes. From the numerical calculations, it is confirmed that, for materials with Poisson¿s ratio not equal to zero, no crossings occur between the curves of non-dimensional frequency versus aspect ratio, neither for antisymmetric modes themselves, nor for symmetric modes. There is good agreement between the analytical solutions, the numerical results, and the experimental measurements.
Internacional
Si
JCR del ISI
Si
Título de la revista
JOURNAL OF SOUND AND VIBRATION
ISSN
0022-460X
Factor de impacto JCR
1,024
Información de impacto
Volumen
313
DOI
Número de revista
0
Desde la página
617
Hasta la página
630
Mes
JUNIO
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Participantes
  • Autor: Francisco J. Nieves Pavón ETS Arquitectura, Universidad de Sevilla
  • Autor: Ana Isabel Bayon Rojo UPM
  • Autor: Francisco Gascón Latasa ETS Arquitectura, Universidad de Sevilla

Grupos de investigación, Departamentos, Centros e Institutos de I+D+i relacionados
  • Creador: Grupo de Investigación: Métodos no destructivos de caracterización de Materiales, Medios Geológicos y Estructuras
  • Departamento: Física Aplicada a los Recursos Naturales