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Influence of rotation on transversely isotropic piezoelectric rod coated with a thin film

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper, the influence of rotation on axisymmetric waves of a piezoelectric rod coated with a thin film is studied using the constitutive equation of linear theory of elasticity and piezoelectricity. Potential functions are introduced to uncouple the equations of motion in radial and axial directions. The surface area of the rod is coated by a perfectly conducting material. The frequency equations are obtained for longitudinal and flexural modes of vibration and are studied numerically for PZT-4 ceramics. The computed non-dimensional frequency, phase velocity, relative frequency shift, electromechanical coupling and electric displacement are presented in the form of dispersion curves. This type of study is important in the construction of rotating sensors and gyroscope.
Rocznik
Strony
211--227
Opis fizyczny
Bibliogr. 29 poz., wykr.
Twórcy
autor
  • Department of Mathematics Karunya University Coimbatore, TamilNadu, India
  • Faculty of Military Science Stellenbosch University South Africa
Bibliografia
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  • 9. Nagaya K., Dispersion of elastic waves in bars with polygonal cross-section, The Journal of the Acoustical Society of America, 70(3): 763–770, 1981.
  • 10. Ebenezer D.D., Ramesh R., Analysis of axially polarized piezoelectric cylinders with arbitrary boundary conditions on flat surfaces, The Journal of the Acoustical Society of America, 113(4): 1900–1908, 2003.
  • 11. Botta F., Cerri G., Wave propagation in Reissner-Mindlin piezoelectric coupled cylinder with non-constant electric field through the thickness, International Journal of Solids and Structures, 44(18–19): 6201–6219, 2007.
  • 12. Kim J.O., Lee J.G., Dynamic characteristics of piezoelectric cylindrical transducers with radial polarization, Journal of Sound and Vibration, 300(1–2): 241–249, 2007.
  • 13. Selvamani R., Modeling of elastic waves in a fluid-loaded and immersed piezoelectric circular fiber, International Journal of Applied and Computational Mathematics, 3(4): 3263–3277, 2017
  • 14. Rao C.K., Rao L.B., Nonlocal critical velocities of fluid conveying clamped-pinned singlewalled carbon nanotubes subjected to axial magnetic field, Engineering Transactions, 65(2): 319–333, 2017.
  • 15. Abd-Alla A.M., Bayones F.S., Effect of rotation in a generalized magneto thermo viscoelastic media, Advances in Theoretical and Applied Mechanics, 4: 15–42, 2011.
  • 16. Wauer J., Waves in rotating and conducting piezoelectric media, The Journal of the Acoustical Society of America, 106(2): 626–636, 1999.
  • 17. Roychoudhuri S.K., Mukhopadhyay S., Effect of rotation and relaxation times on plane waves in generalized thermo-visco-elasticity, International Journal of Mathematics and Mathematical Sciences, 23(7): 497–505, 2000.
  • 18. Dragomir S.C., Sinnott M.D., Eren Semercigil S., Turan Ö.F., A study of energy dissipation and critical speed of granular flow in a rotating cylinder, Journal of Sound and Vibration, 333(25): 6815–6827, 2014.
  • 19. Bayat M., Rahimi M., Saleem M., Mohazzab A.H., Wudtke I., Talebi H., Onedimensional analysis for magneto-thermo-mechanical response in a functionally graded annular variable-thickness rotating disk, Applied Mathematical Modelling, 38(19–20): 4625– 4639, 2014.
  • 20. Selvamani R., Ponnusamy P., Effect of rotation in an axisymmetric vibration of a transversely isotropic solid bar immersed in an inviscid fluid, Material Physics and Mechanics, 15: 97–106, 2012.
  • 21. Selvamani R., Ponnusamy P., Wave propagation in a generalized piezothermoelastic rotating bar of circular cross-section, Multidiscipline Modeling in Materials and Structures, 11(2): 216–237, 2015.
  • 22. Dai H.-H, Kaplunov J., Prikazchikov D.A., A long-wave model for the surface elastic wave in a coated half-space, Proceeding of Royal Society A, 466(2122): 3097–3116, 2010.
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  • 27. Barshinger J.N., Guided waves in pipes with viscoelastic coatings, Ph.D. Dissertation, The Pennsylvania State University, 2001.
  • 28. Park K.I., Xu S., Liu Y., Hwang G.T., Kang S.J., Wang Z.L., Lee K.J., Piezoelectric BaTiO3 thin film nanogenerator on plastic substrates, Nano Letters, 10(12): 4939– 4943, 2010.
  • 29. Berlincourt D.A., Curran D.R., Jaffe H., Piezoelectric and piezomagnetic materials and their function in transducers, [in:] Physical Acoustics: Principles and Methods, Warren P. Mason [Ed.], pp. 169–267, Academic Press, New York – London, 1964.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-536d3ec9-4a15-4007-9c77-74397ad67683
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