Parametric Analysis and Optimization of Radially Layered Cylindrical Piezoceramic/Epoxy Composite Transducers
Radially layered cylindrical piezoceramic/epoxy composite transducers have been designed by integrating the excellent performance of piezoelectric/polymer composites and the radial radiation ability of cylindrical configurations, which are promising in developing novel ultrasonic and underwater soun...
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doaj-86505e267df044bdaaae323ac57847872020-11-24T20:56:25ZengMDPI AGMicromachines2072-666X2018-11-0191158510.3390/mi9110585mi9110585Parametric Analysis and Optimization of Radially Layered Cylindrical Piezoceramic/Epoxy Composite TransducersJianjun Wang0Lei Qin1Weijie Li2Weibin Song3Department of Applied Mechanics, University of Science and Technology Beijing, Beijing 100083, ChinaBeijing Key Laboratory for Sensors, Beijing Information Science & Technology University, Beijing 100101, ChinaSchool of Civil and Environmental Engineering, Harbin Institute of Technology, Shenzhen 518055, ChinaDepartment of Mechanics, Beijing Jiaotong University, Beijing 100044, ChinaRadially layered cylindrical piezoceramic/epoxy composite transducers have been designed by integrating the excellent performance of piezoelectric/polymer composites and the radial radiation ability of cylindrical configurations, which are promising in developing novel ultrasonic and underwater sound techniques. Our previous study has explored the effects of the external resistance on the electromechanical characteristics of the transducer, and obtained some valuable findings. To clearly understand the electromechanical characteristics of the transducer and to guide the device design, in this paper, parametric analysis was performed to reveal the effects of multiple key factors on the electromechanical characteristics. These factors include material parameters of epoxy layers, piezoceramic material types, and locations of piezoceramic rings. In order to better analyze the influence of these factors, a modified theoretical model, in which every layer has different geometric and material parameters, was developed based on the model given in the previous work. Furthermore, the reliability of the model was validated by the ANSYS simulation results and the experimental results. The present investigation provides some helpful guidelines to design and optimize the radially layered cylindrical piezoceramic/epoxy composite transducers.https://www.mdpi.com/2072-666X/9/11/585cylindrical compositepiezoceramic/epoxy compositeelectromechanical characteristicstransducer |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jianjun Wang Lei Qin Weijie Li Weibin Song |
spellingShingle |
Jianjun Wang Lei Qin Weijie Li Weibin Song Parametric Analysis and Optimization of Radially Layered Cylindrical Piezoceramic/Epoxy Composite Transducers Micromachines cylindrical composite piezoceramic/epoxy composite electromechanical characteristics transducer |
author_facet |
Jianjun Wang Lei Qin Weijie Li Weibin Song |
author_sort |
Jianjun Wang |
title |
Parametric Analysis and Optimization of Radially Layered Cylindrical Piezoceramic/Epoxy Composite Transducers |
title_short |
Parametric Analysis and Optimization of Radially Layered Cylindrical Piezoceramic/Epoxy Composite Transducers |
title_full |
Parametric Analysis and Optimization of Radially Layered Cylindrical Piezoceramic/Epoxy Composite Transducers |
title_fullStr |
Parametric Analysis and Optimization of Radially Layered Cylindrical Piezoceramic/Epoxy Composite Transducers |
title_full_unstemmed |
Parametric Analysis and Optimization of Radially Layered Cylindrical Piezoceramic/Epoxy Composite Transducers |
title_sort |
parametric analysis and optimization of radially layered cylindrical piezoceramic/epoxy composite transducers |
publisher |
MDPI AG |
series |
Micromachines |
issn |
2072-666X |
publishDate |
2018-11-01 |
description |
Radially layered cylindrical piezoceramic/epoxy composite transducers have been designed by integrating the excellent performance of piezoelectric/polymer composites and the radial radiation ability of cylindrical configurations, which are promising in developing novel ultrasonic and underwater sound techniques. Our previous study has explored the effects of the external resistance on the electromechanical characteristics of the transducer, and obtained some valuable findings. To clearly understand the electromechanical characteristics of the transducer and to guide the device design, in this paper, parametric analysis was performed to reveal the effects of multiple key factors on the electromechanical characteristics. These factors include material parameters of epoxy layers, piezoceramic material types, and locations of piezoceramic rings. In order to better analyze the influence of these factors, a modified theoretical model, in which every layer has different geometric and material parameters, was developed based on the model given in the previous work. Furthermore, the reliability of the model was validated by the ANSYS simulation results and the experimental results. The present investigation provides some helpful guidelines to design and optimize the radially layered cylindrical piezoceramic/epoxy composite transducers. |
topic |
cylindrical composite piezoceramic/epoxy composite electromechanical characteristics transducer |
url |
https://www.mdpi.com/2072-666X/9/11/585 |
work_keys_str_mv |
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