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A Journal of Russian Academy of Sciences
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IssuesArchive of Issues2024-8pp.3985-4002

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P. Venkatesan and A. Parvez, "Love-Type Waves in a Piezoelectric Layer Clamped Between a Nonlocal Elastic and a Microstructural Media Subjected to Imperfect Contacts," Mech. Solids. 59 (8), 3985-4002 (2024)
Year 2024 Volume 59 Number 8 Pages 3985-4002
DOI 10.1134/S0025654424605081
Title Love-Type Waves in a Piezoelectric Layer Clamped Between a Nonlocal Elastic and a Microstructural Media Subjected to Imperfect Contacts
Author(s) P. Venkatesan (Department of Mathematics, School of Advanced Sciences, Vellore Institute of Technology, Vellore, Tamil Nadu, 632014 India)
A. Parvez (Department of Mathematics, School of Advanced Sciences, Vellore Institute of Technology, Vellore, Tamil Nadu, 632014 India, alamparvez.amu@gmail.com)
Abstract This study investigates the propagation of Love-type waves in a piezoelectric layer and nonlocal elastic orthotropic layer resting on a microstructural couple-stressed half-space. Analytical solutions to the governing equations yield mechanical displacement and stress components. By applying relevant boundary conditions, dispersion equations for Love-type wave propagation are derived. Special cases are compared to the classical Love-type wave dispersion equation to validate the results. Numerical simulations and graphical illustrations demonstrate the significant influence of nonlocal elasticity, initial stress, piezoelectric constant, dielectric constant, thickness ratio, couple tension, and imperfection parameters on Love-type wave phase velocity, considering perfect and imperfect interfaces under electrically short conditions. This research provides valuable insights for designing efficient piezoelectric devices, sensors, and energy harvesting systems.
Keywords nonlocal elasticity, piezoelectric, microstructural couple stress, Love-type wave, imperfect bonded interface
Received 21 August 2024Revised 02 December 2024Accepted 03 December 2024
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