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Journal ArticleDOI

Studies on dynamic behavior of composite and isotropic cylindrical shells with PZT layers under axisymmetric temperature variation

Ravikiran Kadoli, +1 more
- 22 Mar 2004 - 
- Vol. 271, Iss: 1, pp 103-130
TLDR
In this paper, a comparative study on the vibratory characteristics of isotropic and orthotropic cylindrical shells with perfectly bonded piezoelectric material on the inner and outer surface of the shell lamina is presented.
About
This article is published in Journal of Sound and Vibration.The article was published on 2004-03-22. It has received 11 citations till now. The article focuses on the topics: Isotropy & Shell (structure).

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Citations
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Journal ArticleDOI

Wave propagation characteristics in piezoelectric cylindrical laminated shells under large deformation

TL;DR: In this paper, an analytical method for wave propagation in piezoelectric cylindrical laminated shells under large deformations is presented based on the minimum potential energy variational method (Hamilton's principle).
Journal ArticleDOI

Influences of large deformation and rotary inertia on wave propagation in piezoelectric cylindrically laminated shells in thermal environment

TL;DR: In this article, the effect of large deformation, rotary inertia and thermal load on wave propagation in the piezoelectric cylindrically laminated shells is discussed by comparing with the result from the small deformation (geometrical linear shell theory).
Journal ArticleDOI

On dispersion relations in smart laminated fiber-reinforced composite membranes considering different piezoelectric coupling effects:

TL;DR: In this paper, the propagation characteristics of smart laminated fiber-reinforced composite cylindrical membrane shells with different piezoelectric coupling effects are determined for smart laminear fiber reinforced composites.
Journal ArticleDOI

Guide to the Literature of Piezoelectricity and Pyroelectricity. 25

TL;DR: A bibliography is given containing 1527 references published during 2003 and 2004 on piezoelectric and pyroelectric properties of materials and their applications as mentioned in this paper, which contains listings of journal articles and patents with complete bibliographic citations.
Journal ArticleDOI

The Effect of Transverse Shear, Rotary Inertia on Wave Propagation in Laminated Piezoelectric Cylindrical Shells in Thermal Environment:

TL;DR: In this article, the effects of transverse shear, rotary inertia and thermal loads on wave propagation in orthotropic laminated piezoelectric cylindrical shells are studied.
References
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Journal ArticleDOI

A mixed multi-field finite element formulation for thermopiezoelectric composite shells

TL;DR: In this article, a mixed multi-field laminate theory is developed which combines single layer assumptions for the displacements along with layerwise fields for the electric potential and temperature of piezoelectric composite shell structures.
Journal ArticleDOI

Effects of FGM materials on the parametric resonance of plate structures

TL;DR: In this paper, the parametric resonance of functionally graded rectangular plates under harmonic inplane loading is studied, where the material properties are graded in the thickness direction according to a material volume fraction power law distribution.
Journal ArticleDOI

Nonlinear Piezothermoelasticity and Multi-Field Actuations, Part 2: Control of Nonlinear Deflection, Buckling and Dynamics

TL;DR: In this article, a nonlinear piezoelectric laminated circular plate with an initial large deformation is considered, where the von Karman type geometrical nonlinear component is much more prominent than the other two in-plane components.
Journal ArticleDOI

Three-dimensional analytical solutions for coupled thermoelectroelastic response of multilayered cylindrical shells

TL;DR: In this article, an analytical three-dimensional solution for the coupled thermoelectroelastic response of multilayered hybrid composite cylindrical shells is presented, where the sensitivity coefficients measure the sensitivity of the response to variations in the different mechanical, thermal, and piezoelectric material properties of the shells.
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