Study of pressing energy harvesting technology based on PZT cantilever beam

Based on the positive piezoelectric effect of piezoelectric ceramic(PZT), an energy harvesting device with cantilever beam is designed for the single pressing energy harvesting, which can be used for wireless switches and so on. The mathematical analysis of the response of PZT cantilever beam is car...

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Main Authors: Wang Zhihua, Chen Dongyang, Yao Tao, Lv Dianli, Zhang Huijuan
Format: Article
Language:zho
Published: National Computer System Engineering Research Institute of China 2018-10-01
Series:Dianzi Jishu Yingyong
Subjects:
Online Access:http://www.chinaaet.com/article/3000092956
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author Wang Zhihua
Chen Dongyang
Yao Tao
Lv Dianli
Zhang Huijuan
author_facet Wang Zhihua
Chen Dongyang
Yao Tao
Lv Dianli
Zhang Huijuan
author_sort Wang Zhihua
collection DOAJ
description Based on the positive piezoelectric effect of piezoelectric ceramic(PZT), an energy harvesting device with cantilever beam is designed for the single pressing energy harvesting, which can be used for wireless switches and so on. The mathematical analysis of the response of PZT cantilever beam is carried out on the condition of single pressing. Through comparison of the performances, a cantilever beam is made of the selected P-81 piezoelectric plates which are superimposed on the both sides of the copper alloy sheet. Finite element analysis shows that the double piezoelectric plates connected in parallel can export higher power than that connected in series. However, the natural frequency has no relation with their connecting forms. It indicates that the connecting forms of the double piezoelectric plates have no effect on its strain. The harvester is simulated and tested under the single pressing condition with 10 kΩ resistance load. The calculated and tested maximum instantaneous powers are 28.93 mW and 27.46 mW, respectively. The energy harvesting circuit is designed according to the high impedance characteristic of the PZT at low frequency. A threshold switch circuit is used to control the discharge voltage. The experimental results show that the output electric energy of the energy harvesting circuit can reach 5.05 mJ. The energy can meet the requirements of driving LED, RF transmitter and so on.
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spelling doaj.art-011cf75aec0e4c7a93710238547f3ce82022-12-22T00:47:46ZzhoNational Computer System Engineering Research Institute of ChinaDianzi Jishu Yingyong0258-79982018-10-01441015816110.16157/j.issn.0258-7998.1743893000092956Study of pressing energy harvesting technology based on PZT cantilever beamWang Zhihua0Chen Dongyang1Yao Tao2Lv Dianli3Zhang Huijuan4State Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology,Tianjin 300130,ChinaState Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology,Tianjin 300130,ChinaSchool of Mechanical Engineering,Hebei University of Technology,Tianjin 300130,ChinaState Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology,Tianjin 300130,ChinaState Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology,Tianjin 300130,ChinaBased on the positive piezoelectric effect of piezoelectric ceramic(PZT), an energy harvesting device with cantilever beam is designed for the single pressing energy harvesting, which can be used for wireless switches and so on. The mathematical analysis of the response of PZT cantilever beam is carried out on the condition of single pressing. Through comparison of the performances, a cantilever beam is made of the selected P-81 piezoelectric plates which are superimposed on the both sides of the copper alloy sheet. Finite element analysis shows that the double piezoelectric plates connected in parallel can export higher power than that connected in series. However, the natural frequency has no relation with their connecting forms. It indicates that the connecting forms of the double piezoelectric plates have no effect on its strain. The harvester is simulated and tested under the single pressing condition with 10 kΩ resistance load. The calculated and tested maximum instantaneous powers are 28.93 mW and 27.46 mW, respectively. The energy harvesting circuit is designed according to the high impedance characteristic of the PZT at low frequency. A threshold switch circuit is used to control the discharge voltage. The experimental results show that the output electric energy of the energy harvesting circuit can reach 5.05 mJ. The energy can meet the requirements of driving LED, RF transmitter and so on.http://www.chinaaet.com/article/3000092956pztcantilever beamenergy harvestingfinite element analysiscircuit design
spellingShingle Wang Zhihua
Chen Dongyang
Yao Tao
Lv Dianli
Zhang Huijuan
Study of pressing energy harvesting technology based on PZT cantilever beam
Dianzi Jishu Yingyong
pzt
cantilever beam
energy harvesting
finite element analysis
circuit design
title Study of pressing energy harvesting technology based on PZT cantilever beam
title_full Study of pressing energy harvesting technology based on PZT cantilever beam
title_fullStr Study of pressing energy harvesting technology based on PZT cantilever beam
title_full_unstemmed Study of pressing energy harvesting technology based on PZT cantilever beam
title_short Study of pressing energy harvesting technology based on PZT cantilever beam
title_sort study of pressing energy harvesting technology based on pzt cantilever beam
topic pzt
cantilever beam
energy harvesting
finite element analysis
circuit design
url http://www.chinaaet.com/article/3000092956
work_keys_str_mv AT wangzhihua studyofpressingenergyharvestingtechnologybasedonpztcantileverbeam
AT chendongyang studyofpressingenergyharvestingtechnologybasedonpztcantileverbeam
AT yaotao studyofpressingenergyharvestingtechnologybasedonpztcantileverbeam
AT lvdianli studyofpressingenergyharvestingtechnologybasedonpztcantileverbeam
AT zhanghuijuan studyofpressingenergyharvestingtechnologybasedonpztcantileverbeam