Dispersive SAWs in Layered Systems Consisting of Cubic Piezoelectrics

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This work studies propagation of different SH-SAWs treating various configurations using the cubic crystals Bi12SiO20 and Bi12GeO20, which possess strong piezoelectric effect. Possible cuts for the wave propagation are treated when an even-order symmetry axis of a crystal is perpendicular to the sagittal plane, and when some analytical solutions can be obtained studying propagation direction [101] in the crystals. Calculations of the phase velocity and the CEMC versus the layer thickness were carried out. Numerical results on propagation of the seven-partial Love type waves were also introduced for different electrical boundary conditions: metallized and non-metallized surfaces. Also, new dispersive SAW possessing single mode was discovered concerning direction [101] in various layered systems consisting of the cubic crystals. It is thought that the obtained results can be also useful in the application of inter-digital transducers for excitation of different SAWs in structural health monitoring. In addition, a theoretical study of three-layer structures consisting of widely-used weak piezoelectrics (GaAs/GaP/GaAs and GaAs/GaP/ZnTe) was also carried out.

Autorentext

ALEKSEY ANATOLIEVICH ZAKHARENKOInternational Institute of Zakharenko Waves (IIZWs, aazaaz@inbox.ru)Education:1998-Diploma Engineer-Physicist (MSc) Krasnoyarsk StateUniversity, Krasnoyarsk, Russia 2008-Certified Interior Designer (AutoCAD, 3ds max) BusinessSchool INOPROF, Krasnoyarsk, Russia.Research Experience: Creator of the IIZWs

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Weitere Informationen

  • Allgemeine Informationen
    • Sprache Englisch
    • Gewicht 125g
    • Untertitel New Dispersive Shear-Horizontal Waves and Love Type Waves in Layered Systems Consisting of Cubic Piezoelectrics
    • Autor Aleksey Zakharenko
    • Titel Dispersive SAWs in Layered Systems Consisting of Cubic Piezoelectrics
    • Veröffentlichung 16.11.2010
    • ISBN 3843375232
    • Format Kartonierter Einband
    • EAN 9783843375238
    • Jahr 2010
    • Größe H220mm x B150mm x T5mm
    • Herausgeber LAP LAMBERT Academic Publishing
    • Anzahl Seiten 72
    • GTIN 09783843375238

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