Shear electro-elasticity normal waves in the piezoelectric-conductor two-layered waveguide

Abstract

In this paper, the existence and behavior of electro-elastic shear waves propagating in a two-layer waveguide consisting of a piezoelectric (tetragonal class 4mm or hexagonal class 6mm) and conductive layers that have different thicknesses - h 1 , h 2 are investigated. The mathematical boundary-value problem is formulated. Distribution of the electro-elastic wave fields across the thickness of the waveguide, as well as, the characteristic equation of electro-elastic shear waves in respect to the phase velocity are obtained. In depending both of the physical-mechanical characteristics of foreign materials and the relative thickness of layers in layered system, the existence of localization of a short electro-elastic shear waves in a layered waveguide is analyses. The structure and phase behavior of localized surface or volumetric surface waves are studied. The numerical and graphical dispersion analysis of wave propagation is realized.

Authors and Affiliations

Surik Mkrtchyan

Keywords

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  • EP ID EP596369
  • DOI -
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How To Cite

Surik Mkrtchyan (2017). Shear electro-elasticity normal waves in the piezoelectric-conductor two-layered waveguide. Հայաստանի գիտությունների ազգային ակադեմիայի տեղեկագիր․ Մեխանիկա, 70(3), -. https://europub.co.uk/articles/-A-596369