Investigation of resonant and energy harvesting characteristics of piezoelectric fiber composite bimorphs
This study investigates the resonant and energy harvesting characteristics of a piezoelectric fiber composite bimorph by using theoretical and experimental techniques, including the full-field optical technique, for the purpose of getting a new perspective on the mechanical and electrical energy tra...
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doaj-af8827f5493d43a79d6a15b2273234c82020-11-26T13:32:09ZengElsevierMaterials & Design0264-12752021-01-01197109267Investigation of resonant and energy harvesting characteristics of piezoelectric fiber composite bimorphsYu-Chih Lin0Kuo-Shun Tseng1Chien-Ching Ma2Department of Mechanical and Mechatronic Engineering, National Taiwan Ocean University, No.2 Pei-Ning Road, Keelung 20224, Taiwan, ROCDepartment of Mechanical Engineering, National Taiwan University, No. 1, Section 4. Roosevelt Rd., Taipei 10617, Taiwan, ROCDepartment of Mechanical Engineering, National Taiwan University, No. 1, Section 4. Roosevelt Rd., Taipei 10617, Taiwan, ROC; Corresponding author.This study investigates the resonant and energy harvesting characteristics of a piezoelectric fiber composite bimorph by using theoretical and experimental techniques, including the full-field optical technique, for the purpose of getting a new perspective on the mechanical and electrical energy transformation ability of piezoelectric composites. A laser Doppler vibrometer, impedance analysis, fotonic sensor, and polyvinylidene fluoride sensor are used in the experiments. Furthermore, an full-field optical technique is also used to measure the resonant frequencies and mode shapes of in-plane and out-of-plane vibrations. Finally, the electrical voltage of the piezoelectric fiber composite bimorph with shaker excitation is measured and used for a light-emitting diode. The shaker input voltage, output voltage of the piezoelectric structure, and light intensity are all measured to find out the power generation capacity of piezoelectric composite. The relationship between the energy harvesting ability and excitation methods, the input voltage value, and frequency are obtained through analyses. From the experiment results, it is indicated that the most efficient modes are affected by the excitation method and the location of an excitation point of the shaker. This study helps in understanding the resonant characteristics as well as the energy harvesting capability of piezoelectric composite.http://www.sciencedirect.com/science/article/pii/S0264127520308029Piezoelectric fiber composite bimorphAmplitude-fluctuation electronic speckle pattern interferometryImpedance analysisFinite element methodEnergy harvesting |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yu-Chih Lin Kuo-Shun Tseng Chien-Ching Ma |
spellingShingle |
Yu-Chih Lin Kuo-Shun Tseng Chien-Ching Ma Investigation of resonant and energy harvesting characteristics of piezoelectric fiber composite bimorphs Materials & Design Piezoelectric fiber composite bimorph Amplitude-fluctuation electronic speckle pattern interferometry Impedance analysis Finite element method Energy harvesting |
author_facet |
Yu-Chih Lin Kuo-Shun Tseng Chien-Ching Ma |
author_sort |
Yu-Chih Lin |
title |
Investigation of resonant and energy harvesting characteristics of piezoelectric fiber composite bimorphs |
title_short |
Investigation of resonant and energy harvesting characteristics of piezoelectric fiber composite bimorphs |
title_full |
Investigation of resonant and energy harvesting characteristics of piezoelectric fiber composite bimorphs |
title_fullStr |
Investigation of resonant and energy harvesting characteristics of piezoelectric fiber composite bimorphs |
title_full_unstemmed |
Investigation of resonant and energy harvesting characteristics of piezoelectric fiber composite bimorphs |
title_sort |
investigation of resonant and energy harvesting characteristics of piezoelectric fiber composite bimorphs |
publisher |
Elsevier |
series |
Materials & Design |
issn |
0264-1275 |
publishDate |
2021-01-01 |
description |
This study investigates the resonant and energy harvesting characteristics of a piezoelectric fiber composite bimorph by using theoretical and experimental techniques, including the full-field optical technique, for the purpose of getting a new perspective on the mechanical and electrical energy transformation ability of piezoelectric composites. A laser Doppler vibrometer, impedance analysis, fotonic sensor, and polyvinylidene fluoride sensor are used in the experiments. Furthermore, an full-field optical technique is also used to measure the resonant frequencies and mode shapes of in-plane and out-of-plane vibrations. Finally, the electrical voltage of the piezoelectric fiber composite bimorph with shaker excitation is measured and used for a light-emitting diode. The shaker input voltage, output voltage of the piezoelectric structure, and light intensity are all measured to find out the power generation capacity of piezoelectric composite. The relationship between the energy harvesting ability and excitation methods, the input voltage value, and frequency are obtained through analyses. From the experiment results, it is indicated that the most efficient modes are affected by the excitation method and the location of an excitation point of the shaker. This study helps in understanding the resonant characteristics as well as the energy harvesting capability of piezoelectric composite. |
topic |
Piezoelectric fiber composite bimorph Amplitude-fluctuation electronic speckle pattern interferometry Impedance analysis Finite element method Energy harvesting |
url |
http://www.sciencedirect.com/science/article/pii/S0264127520308029 |
work_keys_str_mv |
AT yuchihlin investigationofresonantandenergyharvestingcharacteristicsofpiezoelectricfibercompositebimorphs AT kuoshuntseng investigationofresonantandenergyharvestingcharacteristicsofpiezoelectricfibercompositebimorphs AT chienchingma investigationofresonantandenergyharvestingcharacteristicsofpiezoelectricfibercompositebimorphs |
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