Vibration analysis of FGM truncated and complete conical shells resting on elastic foundations under various boundary conditions


Sofiyev A., Kuruoglu N.

Journal of Engineering Mathematics, vol.77, no.1, pp.131-145, 2012 (SCI-Expanded) identifier

  • Nəşrin Növü: Article / Article
  • Cild: 77 Say: 1
  • Nəşr tarixi: 2012
  • Doi nömrəsi: 10.1007/s10665-012-9535-3
  • jurnalın adı: Journal of Engineering Mathematics
  • Jurnalın baxıldığı indekslər: Science Citation Index Expanded (SCI-EXPANDED), Scopus
  • Səhifə sayı: pp.131-145
  • Açar sözlər: Conical shells, Elastic foundations, FGMs, Frequency, Various boundary conditions, Vibration
  • Açıq Arxiv Kolleksiyası: Məqalə
  • Adres: Yox

Qısa məlumat

This article deals with vibration analysis of clamped (C-C) and freely supported (Fs-Fs), truncated and complete conical shells on elastic foundations with continuously graded volume fraction. The functionally graded material (FGM) properties are assumed to vary continuously through the thickness of the conical shell. First, the basic relations, i. e., the dynamic stability and compatibility equations, of FGM truncated conical shells on the Pasternak-type elastic foundation are obtained. The displacement and Airy stress function are sought depending on a new parameter λ. The parameter λ depends on the geometry of the shell and the loading and boundary conditions. By applying the Galerkin method to the foregoing equations, the dimensionless frequency parameters of FGM conical shells on the Pasternak-type elastic foundation for two boundary conditions are obtained. Furthermore, the parameter λ which is included in the formulae is obtained from the minimization of the dimensionless frequency parameters. Finally, the effects of the stiffness of the foundation, boundary conditions, variations of the conical shell characteristics, and composition profiles on the values of the dimensionless frequency parameters are studied. The results are validated through comparison of obtained values with those in the literature. © 2012 Springer Science+Business Media B.V.