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Free vibrations of simply supported layered and multiphase magneto-electro-elastic cylindrical shells

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TLDR
The free vibrations of simply supported magneto-electro-elastic cylindrical shells are studied in this article, where a series solution is assumed in the circumferential and axial directions of the shell to preserve the three-dimensional character of the structure.
Abstract
The free vibrations of simply supported magneto-electro-elastic cylindrical shells are studied. A series solution is assumed in the circumferential and axial directions of the shell to preserve the three-dimensional character of the structure. The constitutive equations of the magneto-electro-elastic medium involving mechanical, electrical and magnetic fields are used to derive the finite element model for the system. The influence of the piezomagnetic effect on the structural frequencies of the cylindrical shell is studied. A comparison is made between a shell with a layered configuration and one with a multiphase system. The study is carried out for a typical shell with simply supported boundary conditions for different ratios of length to radius and radius to thickness to analyse the frequency behaviour.

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Citations
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On the static analysis of inhomogeneous magneto-electro-elastic plates in thermal environment via element-free Galerkin method

TL;DR: In this article , the authors proposed the inhomogeneous magneto-electro-elastic (MEE) coupling element-free Galerkin method (IMC-EFGM) for solving static behaviors of MEE structures.
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An accurate model for free vibration of porous magneto-electro-thermo-elastic functionally graded cylindrical shells subjected to multi-field coupled loadings

TL;DR: An accurate model for vibration of a porous magneto-electro-thermo-elastic functionally graded (METE-FG) cylindrical shell made of barium titanate (BaTiO3) and cobalt diiron tetraoxide (CoFe2O4) is presented in this article.
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Investigation of SH-Wave Fundamental Modes in Piezoelectromagnetic Plate: Electrically Closed and Magnetically Closed Boundary Conditions

TL;DR: Zakharenko et al. as discussed by the authors theoretically considered the propagation (first evidence) of new dispersive shear-horizontal (SH) acoustic waves in the piezoelectromagnetic (PM) composite plates.
Journal ArticleDOI

Closed-form solutions for vibrations of a magneto-electro-elastic beam with variable cross section by means of Green’s functions:

TL;DR: In this article, closed-form solutions are obtained for vibrations of a magneto-electro-elastic beam with variable cross-section, based on Timoshenko beam assumptions.
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Buckling and free vibration analysis of magnetic constrained layer damping (MCLD) beam

TL;DR: In this article, the buckling, free vibration and damping analysis of viscoelastic sandwich beam with constrained magnetostrictive layer with eight node plane stress element is used for the analysis.
References
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Journal ArticleDOI

Exact Solution for Simply Supported and Multilayered Magneto-Electro-Elastic Plates

TL;DR: In this paper, exact solutions for three-dimensional, anisotropic, linearly magneto-electroelastic, simply-supported, and multilayered rectangular plates under static loadings are derived.
Journal ArticleDOI

Free vibrations of simply supported and multilayered magneto-electro-elastic plates

TL;DR: In this paper, the dispersion equation that characterizes the relationship between the natural frequency and the wavenumber can be obtained in a simple form for multilayered rectangular plates, and the present solution includes all previous solutions, such as piezoelectric, piezomagnetic and purely elastic solutions as special cases.
Journal ArticleDOI

Micromechanical analysis of fully coupled electro-magneto-thermo-elastic multiphase composites

TL;DR: In this paper, a homogenization micromechanical method is employed for the prediction of the effective moduli of electro-magneto-thermo-elastic composites.
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State vector approach to analysis of multilayered magneto-electro-elastic plates

TL;DR: In this article, the state vector equations for three dimensional, orthotropic and linearly magneto-electro-elastic media are derived from the governing equations by eliminating σ x, σ y · τ xy, B x, B y, D x and D y.
Journal ArticleDOI

Layerwise partial mixed finite element analysis of magneto-electro-elastic plates

TL;DR: In this paper, a partial mixed layerwise finite element model for adaptive plate structures is presented by considering a Reissner mixed variational principle, and the mixed functional is formulated using transverse stresses, displacement components and electric and magnetic potentials as primary variables.
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