Design of a New Piezoelectric Energy Harvester Based on Secondary Impact

被引:12
|
作者
Jung, Hyun Jun [1 ]
Baek, Ki Hwan [1 ]
Hidaka, Sinichi [1 ]
Song, Daniel [1 ]
Kim, Se Bin [1 ]
Sung, Tae Hyun [1 ]
机构
[1] Hanyang Univ, Dept Elect Engn, Seoul 133791, South Korea
关键词
energy harvesting; piezoelectric; secondary; impact;
D O I
10.1080/00150193.2013.822773
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Two models for an energy harvester imparting rotational energy to piezoelectric materials are presented, in order to compare the effects of applying identical amounts of energy to a cantilever beam by changing the total displacement per unit time, and applying a secondary impact. For a piezoelectric energy harvester given a high total impulse per unit time with low total displacement per unit time, higher power outputs were generated at lower resistive loads. Conversely, for a harvester given high total displacement per unit time with low total impulse per unit time, power output was higher at high resistive loads. At matched impedance, the secondary-impact-type piezoelectric energy harvester generated higher power output than the hitting-type piezoelectric energy harvester did at low resistive load. Optimized response of secondary-impact-type piezoelectric energy harvester was obtained at a frequency of 60Hz with a low resistive load of 1 k. The generated output power was measured as 124 mW, which corresponds to power density of 140 mW/cm(3) for the entire cantilever beam, and a power density of 342 mW/cm(3) for only the piezoelectric material volume (including sliver paste volume). For a harvester without a secondary impulse at low resistive loads (1 k), the optimizing frequency was between 20 and 30Hz, with an output power of 22 mW, which corresponds to a 25 mW/cm(3) power density for entire cantilever beam and power density of 60 mW/cm(3) for only the piezoelectric material volume(including sliver paste volume).
引用
收藏
页码:83 / 93
页数:11
相关论文
共 50 条
  • [41] Optimal design of high efficiency piezoelectric energy harvester
    Aeronautic Key Laboratory for Smart Materials and Structures, Nanjing Univerisity of Aeronautics and Astronautics, Nanjing 210016, China
    Guangxue Jingmi Gongcheng, 2008, 12 (2346-2351):
  • [42] Design of Power Management ASIC for Piezoelectric Energy Harvester
    Yu, Hua
    Wu, Han
    2016 IEEE SENSORS, 2016,
  • [43] DESIGN OF A WIRELESS SENSOR POWERED BY A PIEZOELECTRIC ENERGY HARVESTER
    Milani, Damiano
    Bassetti, Marco
    Braghin, Francesco
    Tomasini, Gisella
    PROCEEDINGS OF THE ASME 12TH BIENNIAL CONFERENCE ON ENGINEERING SYSTEMS DESIGN AND ANALYSIS - 2014, VOL 3, 2014,
  • [44] Design of a broadband piezoelectric energy harvester with piecewise nonlinearity
    Zou, Donglin
    Liu, Gaoyu
    Rao, Zhushi
    Zi, Yunlong
    Liao, Wei-Hsin
    SMART MATERIALS AND STRUCTURES, 2021, 30 (08)
  • [45] Design and simulation of piezoelectric energy harvester for aerospace applications
    Muscalu, George
    Firtat, Bogdan
    Dinulescu, Silviu
    Moldovan, Carmen
    Anghelescu, Adrian
    Vasile, Ciprian
    Ciobotaru, Daniela
    Hutanu, Cristian
    CAS 2018 PROCEEDINGS: 2018 INTERNATIONAL SEMICONDUCTOR CONFERENCE, 2018, : 325 - 328
  • [46] Design and test of liquid sloshing piezoelectric energy harvester
    Jing, Dong
    Hu, Shuaizhao
    Nan, Yang
    Ma, Chicheng
    Zhang, Zhongwei
    Shao, Mingyu
    Shao, Sujuan
    ADVANCES IN MECHANICAL ENGINEERING, 2024, 16 (05)
  • [47] Design of a Bimorph Piezoelectric Energy Harvester for Railway Monitoring
    Li, Jingcheng
    Jang, Shinae
    Tang, Jiong
    JOURNAL OF THE KOREAN SOCIETY FOR NONDESTRUCTIVE TESTING, 2012, 32 (06) : 661 - 668
  • [48] Design of arc spiral piezoelectric vibration energy harvester
    Deng L.
    Tang S.
    Wang D.
    Yi Qi Yi Biao Xue Bao/Chinese Journal of Scientific Instrument, 2022, 43 (10): : 50 - 57
  • [49] Modeling and Design of a Piezoelectric Nonlinear Aeroelastic Energy Harvester
    Elahi, Hassan
    Eugeni, Marco
    Lampani, Luca
    Gaudenzi, Paolo
    INTEGRATED FERROELECTRICS, 2020, 211 (01) : 132 - 151
  • [50] Design of high output broadband piezoelectric energy harvester
    R. Usharani
    G. Uma
    M. Umapathy
    Seung-Bok Choi
    Journal of Mechanical Science and Technology, 2017, 31 : 3131 - 3142