Effect of Rotation on the Piezoelectric Wave Impedance Characteristics

The dependence of piezoelectric wave impedance on the rotation speed is investigated theoretically and numerically. The Coriolis force due to rotation is introduced into the piezoelectric motion equations, which is solved by the harmonic plane wave solution. It is shown that the wave impedance varia...

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Main Authors: Xiaoguang Yuan, Chaoyu Hao, Quan Jiang
Format: Article
Language:English
Published: Institute of Fundamental Technological Research Polish Academy of Sciences 2023-05-01
Series:Archives of Acoustics
Subjects:
Online Access:https://journals.pan.pl/Content/127340/PDF/aoa.2023.145228.pdf
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author Xiaoguang Yuan
Chaoyu Hao
Quan Jiang
author_facet Xiaoguang Yuan
Chaoyu Hao
Quan Jiang
author_sort Xiaoguang Yuan
collection DOAJ
description The dependence of piezoelectric wave impedance on the rotation speed is investigated theoretically and numerically. The Coriolis force due to rotation is introduced into the piezoelectric motion equations, which is solved by the harmonic plane wave solution. It is shown that the wave impedance variations of longitudinal and transverse waves due to rotation are clearly different. The longitudinal wave impedance continuously increases with a small rotation ratio and one transverse wave impedance is almost irrespective of a rotation ratio. In contrast, the rotation applies a big impact on the other transversal wave impedances in the piezoelectric crystal which decreases monotonically with the rotation speed. Such characteristics are significant in piezoelectric transducers and sensors.
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institution Kabale University
issn 0137-5075
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language English
publishDate 2023-05-01
publisher Institute of Fundamental Technological Research Polish Academy of Sciences
record_format Article
series Archives of Acoustics
spelling doaj-art-6578abf6d2af4e12888b8cbf8f70a7e72025-08-20T03:33:57ZengInstitute of Fundamental Technological Research Polish Academy of SciencesArchives of Acoustics0137-50752300-262X2023-05-01vol. 48No 2231234https://doi.org/10.24425/aoa.2023.145228Effect of Rotation on the Piezoelectric Wave Impedance CharacteristicsXiaoguang Yuan0Chaoyu Hao1Quan Jiang2School of Transportation and Civil Engineering, Nantong University, Nantong, ChinaSchool of Transportation and Civil Engineering, Nantong University, Nantong, ChinaSchool of Transportation and Civil Engineering, Nantong University, Nantong, ChinaThe dependence of piezoelectric wave impedance on the rotation speed is investigated theoretically and numerically. The Coriolis force due to rotation is introduced into the piezoelectric motion equations, which is solved by the harmonic plane wave solution. It is shown that the wave impedance variations of longitudinal and transverse waves due to rotation are clearly different. The longitudinal wave impedance continuously increases with a small rotation ratio and one transverse wave impedance is almost irrespective of a rotation ratio. In contrast, the rotation applies a big impact on the other transversal wave impedances in the piezoelectric crystal which decreases monotonically with the rotation speed. Such characteristics are significant in piezoelectric transducers and sensors.https://journals.pan.pl/Content/127340/PDF/aoa.2023.145228.pdfwave impedancecoriolis accelerationpiezoelectric crystalwave velocity
spellingShingle Xiaoguang Yuan
Chaoyu Hao
Quan Jiang
Effect of Rotation on the Piezoelectric Wave Impedance Characteristics
Archives of Acoustics
wave impedance
coriolis acceleration
piezoelectric crystal
wave velocity
title Effect of Rotation on the Piezoelectric Wave Impedance Characteristics
title_full Effect of Rotation on the Piezoelectric Wave Impedance Characteristics
title_fullStr Effect of Rotation on the Piezoelectric Wave Impedance Characteristics
title_full_unstemmed Effect of Rotation on the Piezoelectric Wave Impedance Characteristics
title_short Effect of Rotation on the Piezoelectric Wave Impedance Characteristics
title_sort effect of rotation on the piezoelectric wave impedance characteristics
topic wave impedance
coriolis acceleration
piezoelectric crystal
wave velocity
url https://journals.pan.pl/Content/127340/PDF/aoa.2023.145228.pdf
work_keys_str_mv AT xiaoguangyuan effectofrotationonthepiezoelectricwaveimpedancecharacteristics
AT chaoyuhao effectofrotationonthepiezoelectricwaveimpedancecharacteristics
AT quanjiang effectofrotationonthepiezoelectricwaveimpedancecharacteristics