Effects of shear stresses and rotary inertia on the stability and vibration of sandwich cylindrical shells with FGM core surrounded by elastic medium

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TAYLOR & FRANCIS INC

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info:eu-repo/semantics/embargoedAccess

Özet

The vibration and stability of axially loaded sandwich cylindrical shells with the functionally graded (FG) core with and without shear stresses and rotary inertia resting Pasternak foundation are investigated. The dynamic stability is derived based on the first order shear deformation theory (FSDT) including shear stresses. The axial load and dimensionless fundamental frequency for FG sandwich shell with shear stresses and rotary inertia and resting on the Pasternak foundation. Finally, the influences of variations of FG core, elastic foundations, shear stresses and rotary inertia on the fundamental frequencies and critical axial loads are investigated.

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Anahtar Kelimeler

Dental implant, elastic foundation, functionally graded sandwich shells, rotary inertia, shear stresses, stability, vibration

Kaynak

MECHANICS BASED DESIGN OF STRUCTURES AND MACHINES

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Cilt

44

Sayı

4

Künye

Sofiyev, A. H., Hui, D., Valiyev, A. A., Kadioglu, F., Turkaslan, S., Yuan, G. Q., Kalpakci, V., ... Özdemir, A. (October 01, 2016). Effects of shear stresses and rotary inertia on the stability and vibration of sandwich cylindrical shells with FGM core surrounded by elastic medium. Mechanics Based Design of Structures and Machines, 44, 4, 384-404.

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