Performance of pre-deformed flexible piezoelectric cantilever in energy harvesting

This paper proposes a novel structure for pre-rolled flexible piezoelectric cantilevers that use wind energy to power a submunition electrical device. Owing to the particular installation position and working environment, the submunition piezoelectric cantilever should be rolled when not working, bu...

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Main Authors: Pengyingkai Wang, Li Sui, Gengchen Shi, Guohua Liu
Format: Article
Language:English
Published: AIP Publishing LLC 2016-05-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4948697
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spelling doaj-8bf14144efc446d989e3b066b73c3eb02020-11-25T00:39:50ZengAIP Publishing LLCAIP Advances2158-32262016-05-0165055002055002-910.1063/1.4948697002605ADVPerformance of pre-deformed flexible piezoelectric cantilever in energy harvestingPengyingkai Wang0Li Sui1Gengchen Shi2Guohua Liu3School of Mechanical Engineering, Beijing Institute of Technology, 5 South Zhongguancun Street, Haidian District, Beijing 100081, ChinaSchool of Mechanical Engineering, Beijing Institute of Technology, 5 South Zhongguancun Street, Haidian District, Beijing 100081, ChinaSchool of Mechanical Engineering, Beijing Institute of Technology, 5 South Zhongguancun Street, Haidian District, Beijing 100081, ChinaSchool of Mechanical Engineering, Beijing Institute of Technology, 5 South Zhongguancun Street, Haidian District, Beijing 100081, ChinaThis paper proposes a novel structure for pre-rolled flexible piezoelectric cantilevers that use wind energy to power a submunition electrical device. Owing to the particular installation position and working environment, the submunition piezoelectric cantilever should be rolled when not working, but this pre-rolled state can alter the energy harvesting performance. Herein, a working principle and installation method for piezoelectric cantilevers used in submunitions are introduced. To study the influence of the pre-rolled state, pre-rolled piezoelectric cantilevers of different sizes were fabricated and their performances were studied using finite element analysis simulations and experiments. The simulation results show that the resonance frequency and stiffness of the pre-rolled structure is higher than that of a flat structure. Results show that, (1) for both the pre-rolled and flat cantilever, the peak voltage will increase with the wind speed. (2) The pre-rolled cantilever has a higher critical wind speed than the flat cantilever. (3) For identical wind speeds and cantilever sizes, the peak voltage of the flat cantilever (45 V) is less than that of the pre-rolled cantilever (56 V). (4) Using a full-bridge rectifier, the output of the pre-rolled cantilever can sufficiently supply a 10 μF capacitor, whose output voltage may be up to 23 V after 10 s. These results demonstrate that the pre-rolled piezoelectric cantilever and its installation position used in this work are more suitable for submunition, and its output sufficiently meets submunition requirements.http://dx.doi.org/10.1063/1.4948697
collection DOAJ
language English
format Article
sources DOAJ
author Pengyingkai Wang
Li Sui
Gengchen Shi
Guohua Liu
spellingShingle Pengyingkai Wang
Li Sui
Gengchen Shi
Guohua Liu
Performance of pre-deformed flexible piezoelectric cantilever in energy harvesting
AIP Advances
author_facet Pengyingkai Wang
Li Sui
Gengchen Shi
Guohua Liu
author_sort Pengyingkai Wang
title Performance of pre-deformed flexible piezoelectric cantilever in energy harvesting
title_short Performance of pre-deformed flexible piezoelectric cantilever in energy harvesting
title_full Performance of pre-deformed flexible piezoelectric cantilever in energy harvesting
title_fullStr Performance of pre-deformed flexible piezoelectric cantilever in energy harvesting
title_full_unstemmed Performance of pre-deformed flexible piezoelectric cantilever in energy harvesting
title_sort performance of pre-deformed flexible piezoelectric cantilever in energy harvesting
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2016-05-01
description This paper proposes a novel structure for pre-rolled flexible piezoelectric cantilevers that use wind energy to power a submunition electrical device. Owing to the particular installation position and working environment, the submunition piezoelectric cantilever should be rolled when not working, but this pre-rolled state can alter the energy harvesting performance. Herein, a working principle and installation method for piezoelectric cantilevers used in submunitions are introduced. To study the influence of the pre-rolled state, pre-rolled piezoelectric cantilevers of different sizes were fabricated and their performances were studied using finite element analysis simulations and experiments. The simulation results show that the resonance frequency and stiffness of the pre-rolled structure is higher than that of a flat structure. Results show that, (1) for both the pre-rolled and flat cantilever, the peak voltage will increase with the wind speed. (2) The pre-rolled cantilever has a higher critical wind speed than the flat cantilever. (3) For identical wind speeds and cantilever sizes, the peak voltage of the flat cantilever (45 V) is less than that of the pre-rolled cantilever (56 V). (4) Using a full-bridge rectifier, the output of the pre-rolled cantilever can sufficiently supply a 10 μF capacitor, whose output voltage may be up to 23 V after 10 s. These results demonstrate that the pre-rolled piezoelectric cantilever and its installation position used in this work are more suitable for submunition, and its output sufficiently meets submunition requirements.
url http://dx.doi.org/10.1063/1.4948697
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AT lisui performanceofpredeformedflexiblepiezoelectriccantileverinenergyharvesting
AT gengchenshi performanceofpredeformedflexiblepiezoelectriccantileverinenergyharvesting
AT guohualiu performanceofpredeformedflexiblepiezoelectriccantileverinenergyharvesting
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