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Reflection and refraction of plane quasi-longitudinal waves at an interface of two piezoelectric media under initial stresses

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TLDR
In this article, the problem of reflection and refraction of quasi-longitudinal waves under initial stresses at an interface of two anisotropic piezoelectric media with different properties was studied.
Abstract
This paper is devoted to study a problem of reflection and refraction of quasi-longitudinal waves under initial stresses at an interface of two anisotropic piezoelectric media with different properties. One of the two media is aluminum nitride, which is considered the down piezoelectric medium and the above medium is chosen as PZT-5H ceramics. The two piezoelectric media welded are assumed to be anisotropic of a type of a transversely isotropic crystals (hexagonal crystal structure, class 6 mm). The equations of motion and constitutive relations for the piezoelectric media have been written. Suitable boundary conditions are used to obtain the reflection and refraction coefficients. For an incidence of quasi-longitudinal plane waves, four independent-type amplitude ratios of elastic displacement components for plane waves, called quasi-longitudinal (qP) and quasi-shear vertical (qSV) waves, are shown to exist. Also, it is observed that there exist four dependent amplitude ratios of electric potential, which are proportional to the previous four types. Finally, it is found that the coefficients of reflection and refraction are functions of angle of incidence, elastic constants, piezoelectric potential parameters and the initial stresses. Numerical computations and the results obtained are depicted graphically. In the end, a particular case has been reduced from the present study. This investigation is considered important because the initial stresses in such practical problems are inevitable and may result in frequency shift, a change in the velocity of surface waves and controlling the selectivity of a filter compensation of the devices.

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Citations
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Journal ArticleDOI

Reflection and refraction of plane wave in piezo-thermoelastic diffusive half spaces with three phase lag memory dependent derivative and two-temperature

TL;DR: In this paper, the analysis of reflection and refraction of plane wave at the imperfect boundary of two dissimilar transversely isotropic piezo-thermoelastic (PT) solid half-spaces is presented.
Journal ArticleDOI

Effect of Initial Stress on a Fiber-Reinforced Anisotropic Thermoelastic Thick Plate

TL;DR: In this article, the problem of generalized thermoelasticity for a fiber-reinforced anisotropic thick plate under initial stress is studied in the context of the Lord and Shulman theory.
Journal Article

The Effect of the Initial Stresses on the Reflection and Transmission of Plane Quasi-Vertical Transverse Waves in Piezoelectric Materials

TL;DR: In this article, the authors derived the relations governing the reflection and transmission coefficients of these reflected waves for various suitable boundary conditions and analyzed the effect of the initial stresses on the reflection coefficients.
Journal ArticleDOI

Influence of the gravitational field on a piezothermoelastic rotating medium with G-L theory

TL;DR: In this article, two different theories (coupled theory and Green-Lindsay theory with two relaxation times) are applied to study the deformation of a generalized piezothermoelastic rotating medium under the influence of gravity.
References
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Book

Acoustic Fields and Waves in Solids

Bert A. Auld
TL;DR: In this article, the authors apply the material developed in the Volume One to various boundary value problems (reflection and refraction at plane surfaces, composite media, waveguides and resonators).
Book

Wave propagation in elastic solids

TL;DR: In this article, the linearized theory of elasticity was introduced and the elasticity of a one-dimensional motion of an elastic continuum was modeled as an unbound elastic continuum.
Journal ArticleDOI

Reflection and refraction of elastic waves on a plane interface between two generally anisotropic media

TL;DR: In this paper, a unified approach to the study of reflection and refraction of elastic waves in general anisotropic media is presented, where the Christoffel equations and boundary conditions for both anisometric media in coordinate systems formed by incident and interface planes, rather than in crystallographic coordinates, are considered.