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The mathematical model of reflection and refraction of longitudinal waves in thermo-piezoelectric materials

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TLDR
In this paper, the basic equations of motion, of Gauss and of heat conduction, together with constitutive relations for pyro- and piezoelectric media, are presented.
Abstract
In this paper, the basic equations of motion, of Gauss and of heat conduction, together with constitutive relations for pyro- and piezoelectric media, are presented. Three thermoelastic theories are considered: classical dynamical coupled theory, the Lord–Shulman theory with one relaxation time and Green and Lindsay theory with two relaxation times. For incident elastic longitudinal, potential electric and thermal waves, referred to as qP, φ-mode and T-mode waves, which impinge upon the interface between two different transversal isotropic media, reflection and refraction coefficients are obtained by solving a set of linear algebraic equations. A case study is investigated: a system formed by two semi-infinite, hexagonal symmetric, pyroelectric–piezoelectric media, namely Cadmium Selenide (CdSe) and Barium Titanate (BaTiO3). Numerical results for the reflection and refraction coefficients are obtained, and their behavior versus the incidence angle is analyzed. The interaction with the interface give rises to different kinds of reflected and refracted waves: (i) two reflected elastic waves in the first medium, one longitudinal (qP-wave) and the other transversal (qSV-wave), and a similar situation for the refracted waves in the second medium; (ii) two reflected potential electric waves and a similar situation for the refracted waves; (iii) two reflected thermal waves and a similar situation for the refracted waves. The amplitudes of the reflected and refracted waves are functions of the incident angle, of the thermal relaxation times and of the media elastic, electric, thermal constants. This study is relevant to signal processing, sound systems, wireless communications, surface acoustic wave devices and military defense equipment.

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Effects of initial stress on the reflection and transmission waves at the interface between two piezoelectric half spaces

TL;DR: In this article, the effects of initial stress on the reflection and transmission waves at the interface between two piezoelectric half spaces are studied, and the algebraic equations resulting from the interface conditions are solved to obtain the amplitude ratio of various waves and furthermore the energy reflection coefficients of different waves.
Journal ArticleDOI

Semi-inverse method à la Saint-Venant for two-dimensional linear isotropic homogeneous second-gradient elasticity:

TL;DR: In this paper, it was shown that wedge forces are necessary to maintain the body in equilibrium and that these are not an artefact of the double application of the divergence theorem in the second-gradient material derivations.
Journal ArticleDOI

Wave reflection at a free interface in an anisotropic pyroelectric medium with nonclassical thermoelasticity

TL;DR: In this paper, the reflection coefficients of plane qP waves are derived in terms of the angle of incidence, the elastic, electric and thermal parameters of the medium, as well as the thermal relaxation times.
Journal ArticleDOI

Identification of multiple open and fatigue cracks in beam-like structures using wavelets on deflection signals

TL;DR: In this article, a method for damage detection of multi-cracked beam-like structures by analyzing the static deflection is presented, which can be revealed by positions of the peaks in the continuous wavelet transform (CWT).
Journal ArticleDOI

Influences of mechanically and dielectrically imperfect interfaces on the reflection and transmission waves between two piezoelectric half spaces

TL;DR: In this paper, the influence of mechanically and dielectrically imperfect interfaces on the reflection and transmission waves between two piezoelectric half spaces is studied and the effects of these imperfect interfaces are discussed based on the numerical results.
References
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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

A generalized dynamical theory of thermoelasticity

TL;DR: In this article, a generalized dynamical theory of thermoelasticity is formulated using a form of the heat transport equation which includes the time needed for acceleration of heat flow.
Book

An Introduction to the Theory of Piezoelectricity

Jiashi Yang
TL;DR: In this paper, the authors present linear equations for small fields superposed on Finite Biasing Fields. And they describe the effects of piezoelectric devices on strong and weak fields.
BookDOI

Handbook of Advanced Dielectric, Piezoelectric and Ferroelectric Materials : Synthesis, Properties and Applications

Zuo-Guang Ye
TL;DR: In this article, the authors investigated the properties and properties of piezoelectric and ferroelectric single crystal structures and phase transitions in relaxor-based piezo-and Ferroelectric lattices.
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