Analysis of Electrically Shorted and Open Cases on Love Waves Propagating in Piezoelectric Layer Embedded over a Fiber-Reinforced Substrate

The article incisively analyzes the impact of piezoelectricity on Love wave transmission in an inhomogeneous bi-layered structure consisting of smoothly embedded thin piezoelectric material bonded to a semi-infinite fiber-reinforced medium. By applying the variable-separable method, a general form o...

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Main Authors: Suparna Roychowdhury, Abhijit Pramanik, Mostaid Ahmed
Format: Article
Language:English
Published: Semnan University 2025-04-01
Series:Mechanics of Advanced Composite Structures
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Online Access:https://macs.semnan.ac.ir/article_8711_eaab63053db886932dd91da2ca3f847b.pdf
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author Suparna Roychowdhury
Abhijit Pramanik
Mostaid Ahmed
author_facet Suparna Roychowdhury
Abhijit Pramanik
Mostaid Ahmed
author_sort Suparna Roychowdhury
collection DOAJ
description The article incisively analyzes the impact of piezoelectricity on Love wave transmission in an inhomogeneous bi-layered structure consisting of smoothly embedded thin piezoelectric material bonded to a semi-infinite fiber-reinforced medium. By applying the variable-separable method, a general form of dispersion equations, analyzing the Love waves’ characteristics in electrically open and shorted cases of the piezoelectric material has been derived. The crux of the study lies in the fact that the presence of the prestresses in the upper layer and lower half-space along with elastic, piezoelectric, and permittivity coefficients lead the derived frequency relation to merge with the classical form of equations of the Love waves. The procured dispersion relation substantiates that the depth of the upper layer prestresses, and piezoelectricity coefficients play a guiding role in the transmission of Love waves. The numerical discussions and findings carry wider applications and may imply guidance of additive manufacturing of varied composite multi-materials for pre-stressed and microstructural configurations with partial and global dispersion properties
format Article
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institution Kabale University
issn 2423-4826
2423-7043
language English
publishDate 2025-04-01
publisher Semnan University
record_format Article
series Mechanics of Advanced Composite Structures
spelling doaj-art-6dd049cb6cf34bed8a93fe6476681a222025-01-20T11:30:30ZengSemnan UniversityMechanics of Advanced Composite Structures2423-48262423-70432025-04-0112111210.22075/macs.2024.27346.14098711Analysis of Electrically Shorted and Open Cases on Love Waves Propagating in Piezoelectric Layer Embedded over a Fiber-Reinforced SubstrateSuparna Roychowdhury0Abhijit Pramanik1Mostaid Ahmed2School of Science and Technology, The Neotia University, Sarisha, West Bengal, 743368, IndiaDepartment of Basic Science, MCKV Institute of Engineering, Howrah, West Bengal, 711204, IndiaSchool of Science and Technology, The Neotia University, Sarisha, West Bengal, 743368, IndiaThe article incisively analyzes the impact of piezoelectricity on Love wave transmission in an inhomogeneous bi-layered structure consisting of smoothly embedded thin piezoelectric material bonded to a semi-infinite fiber-reinforced medium. By applying the variable-separable method, a general form of dispersion equations, analyzing the Love waves’ characteristics in electrically open and shorted cases of the piezoelectric material has been derived. The crux of the study lies in the fact that the presence of the prestresses in the upper layer and lower half-space along with elastic, piezoelectric, and permittivity coefficients lead the derived frequency relation to merge with the classical form of equations of the Love waves. The procured dispersion relation substantiates that the depth of the upper layer prestresses, and piezoelectricity coefficients play a guiding role in the transmission of Love waves. The numerical discussions and findings carry wider applications and may imply guidance of additive manufacturing of varied composite multi-materials for pre-stressed and microstructural configurations with partial and global dispersion propertieshttps://macs.semnan.ac.ir/article_8711_eaab63053db886932dd91da2ca3f847b.pdflove wavespiezoelectricityfiber-reinforcedelectrically short caseelectrically open case
spellingShingle Suparna Roychowdhury
Abhijit Pramanik
Mostaid Ahmed
Analysis of Electrically Shorted and Open Cases on Love Waves Propagating in Piezoelectric Layer Embedded over a Fiber-Reinforced Substrate
Mechanics of Advanced Composite Structures
love waves
piezoelectricity
fiber-reinforced
electrically short case
electrically open case
title Analysis of Electrically Shorted and Open Cases on Love Waves Propagating in Piezoelectric Layer Embedded over a Fiber-Reinforced Substrate
title_full Analysis of Electrically Shorted and Open Cases on Love Waves Propagating in Piezoelectric Layer Embedded over a Fiber-Reinforced Substrate
title_fullStr Analysis of Electrically Shorted and Open Cases on Love Waves Propagating in Piezoelectric Layer Embedded over a Fiber-Reinforced Substrate
title_full_unstemmed Analysis of Electrically Shorted and Open Cases on Love Waves Propagating in Piezoelectric Layer Embedded over a Fiber-Reinforced Substrate
title_short Analysis of Electrically Shorted and Open Cases on Love Waves Propagating in Piezoelectric Layer Embedded over a Fiber-Reinforced Substrate
title_sort analysis of electrically shorted and open cases on love waves propagating in piezoelectric layer embedded over a fiber reinforced substrate
topic love waves
piezoelectricity
fiber-reinforced
electrically short case
electrically open case
url https://macs.semnan.ac.ir/article_8711_eaab63053db886932dd91da2ca3f847b.pdf
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AT abhijitpramanik analysisofelectricallyshortedandopencasesonlovewavespropagatinginpiezoelectriclayerembeddedoverafiberreinforcedsubstrate
AT mostaidahmed analysisofelectricallyshortedandopencasesonlovewavespropagatinginpiezoelectriclayerembeddedoverafiberreinforcedsubstrate