Nonlinear energy harvesting based on a modified snap-through mechanism

被引:0
|
作者
Zeqi Lu
Ke Li
Hu Ding
Liqun Chen
机构
[1] Shanghai University,Shanghai Institute of Applied Mathematics and Mechanics
[2] Shanghai University,Shanghai Key Laboratory of Mechanics in Energy Engineering
[3] Shanghai University,Department of Mechanics, College of Sciences
来源
关键词
energy harvesting; nonlinear stiffness; snap-through; random excitation; O322; 34E13;
D O I
暂无
中图分类号
学科分类号
摘要
A modified snap-through mechanism is used in an electromagnetic energy harvester to improve its effectiveness. It mainly comprises three springs that are configured so that the potential energy of the system has two stable equilibrium points. In particular, the small vibration behavior of the harvester around one of the equilibriums is of interest. A multi-scale method (MSM) is used to analyze the frequency response curve. Two snap-through mechanisms are considered. One has both horizontal and vertical springs. The other has only horizontal springs. The frequency response curves of these two classes are compared under the same excitation and electric loading conditions. The latter exhibits more bending of the frequency response curve than the former one. The results are also validated by some numerical work. The averaged power subject to the Gaussian white noise is calculated numerically, and the results demonstrate that bi-stable energy harvesting with only horizontal springs can outperform the mechanism with both horizontal and vertical springs for the same distance between two equilibriums.
引用
收藏
页码:167 / 180
页数:13
相关论文
共 50 条
  • [31] Towards a Bio-mimetic Flytrap Robot Based on a Snap-Through Mechanism
    Kim, Seung-Won
    Koh, Je-Sung
    Cho, Maenghyo
    Cho, Kyu-Jin
    2010 3RD IEEE RAS AND EMBS INTERNATIONAL CONFERENCE ON BIOMEDICAL ROBOTICS AND BIOMECHATRONICS, 2010, : 534 - 539
  • [32] Study on Dynamic Snap-Through and Nonlinear Vibrations of an Energy Harvester Based on an Asymmetric Bistable Composite Laminated Shell
    Dong, Ting
    Chen, Xinhua
    Zhang, Jun
    SYMMETRY-BASEL, 2021, 13 (12):
  • [33] A WIDEBAND ENERGY HARVESTING DEVICE USING SNAP-THROUGH BUCKLING FOR MECHANICAL FREQUENCY-UP CONVERSION
    Jung, Seok-Min
    Yun, Kwang-Seok
    MEMS 2010: 23RD IEEE INTERNATIONAL CONFERENCE ON MICRO ELECTRO MECHANICAL SYSTEMS, TECHNICAL DIGEST, 2010, : 1207 - 1210
  • [34] Nonlinear dynamic snap-through of composite laminated spherical caps
    Yang, YQ
    Zhang, D
    Zhou, HY
    Ma, HZ
    Wang, TK
    ICVE'98: PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON VIBRATION ENGINEERING, VOL I, 1998, : 278 - 280
  • [35] Snap-through mechanism of an elastic bimetal ring for rotary actuation
    Yang, Pengfei
    Liu, Hong
    Li, Xuefeng
    Xin, Shiwei
    Dang, Fei
    COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION, 2025, 140
  • [36] Dynamics of viscoelastic snap-through
    Gomez, Michael
    Moulton, Derek E.
    Vella, Dominic
    JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2019, 124 : 781 - 813
  • [37] The Nonlinear Dynamics Characteristics and Snap-Through of an SD Oscillator with Nonlinear Fractional Damping
    Wang, Minghao
    Chen, Enli
    Tian, Ruilan
    Wang, Cuiyan
    FRACTAL AND FRACTIONAL, 2022, 6 (09)
  • [38] Snap-through mechanism of a thin beam confined in a curved constraint
    Yang, Pengfei
    Li, Xuefeng
    Xin, Shiwei
    Mao, Yuqing
    Gao, Luyu
    Dang, Fei
    THIN-WALLED STRUCTURES, 2025, 207
  • [39] On Euler Buckling and Snap-Through
    Wiebe, Richard
    Nistor, Mihaela
    Stanciulescu, Ilinca
    NONLINEAR DYNAMICS, VOL 1, 2019, : 171 - 174
  • [40] Nonlinear Snap-Through-Buckling Devices for Energy Harvesting from Vibrations
    Ando', Bruno
    Baglio, Salvatore
    Marletta, Vincenzo
    Pergolizzi, Elisa
    Ferrari, Vittorio
    Ferrari, Marco
    Bulsara, Adi R.
    SENSORS, 2015, 319 : 409 - 413