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A finite element-based assessment of free vibration behaviour of circular and annular magneto-electro-elastic plates using higher order shear deformation theory

Vinyas, M and Sandeep, AS and Nguyen-Thoi, T and Ebrahimi, F and Duc, DN (2019) A finite element-based assessment of free vibration behaviour of circular and annular magneto-electro-elastic plates using higher order shear deformation theory. In: JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 30 (16).

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Official URL: https://doi.org/10.1177/1045389X19862386

Abstract

In this article, the free vibration behaviour of circular and annular magneto-electro-elastic plates has been investigated under the framework of higher order shear deformation theory. The three-dimensional finite element formulation has been derived with the aid of Hamilton's principle by taking into account the coupling between elastic, electric and magnetic properties. The equations of motion are solved using condensation technique. Furthermore, the credibility of proposed finite element formulation has been validated using COMSOL software and also by comparing the results with previously published articles. Special attention has also been paid to assess the influence of parameters such as coupling effect, stacking sequences and inner-to-outer diameter ratio. The numerical results reveal that the coupled natural frequencies of the annular magneto-electro-elastic plates vary significantly with the circular hole dimensions incorporated. The circular and annular plates are considered as one of the prominent structural components in various engineering and industrial application. Therefore, the proposed finite element formulation and the results presented in this article can serve as benchmark solutions for the design and analysis of smart sensors and actuators.

Item Type: Journal Article
Publication: JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES
Publisher: SAGE PUBLICATIONS LTD
Additional Information: Copyright of this article belongs to SAGE PUBLICATIONS LTD
Department/Centre: Division of Mechanical Sciences > Aerospace Engineering(Formerly Aeronautical Engineering)
Date Deposited: 10 Feb 2020 11:31
Last Modified: 10 Feb 2020 11:31
URI: http://eprints.iisc.ac.in/id/eprint/63458

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