Dynamic Response and Energy Conversion of Coupled Cantilevers with Dual Piezoelectric-Triboelectric Harvesting Mechanisms

被引:0
|
作者
Alghamaz, Mohammad [1 ]
Donyaparastlivari, Leila [2 ]
Ibrahim, Alwathiqbellah [1 ]
机构
[1] Univ Texas Tyler, Dept Mech Engn, 3900 Univ Blvd, Tyler, TX 75799 USA
[2] New Jersey Inst Technol, Dept Mech Engn, 323 Dr Martin Luther King Jr Blvd, Newark, NJ 07102 USA
关键词
triboelectric; piezoelectric; vibro-impact; hybrid energy harvesting; LOW-FREQUENCY; BANDWIDTH; MASS;
D O I
10.3390/mi16020182
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This study presents a Hybrid Piezoelectric-Triboelectric Energy Harvester (HPTEH) composed of two coupled cantilever beams, designed to enhance energy generation and broaden bandwidth by combining piezoelectric and triboelectric mechanisms. A theoretical 2-DOF lumped model was developed and validated with experimental results, demonstrating good agreement. Experimental findings reveal that Beam I exhibits a softening effect, with resonance frequencies shifting to lower values and increased displacement amplitudes under higher excitation levels due to material nonlinearities and strain-induced voltage generation. Beam II, in contrast, displays a hardening effect, with resonance frequencies increasing as triboelectric interactions enhance stiffness at higher excitation levels. Coupling dynamics reveal asymmetry, with Beam I significantly influencing Beam II in the higher frequency range, while Beam II's impact on Beam I remains minimal. Phase portraits highlight the dynamic coupling and energy transfer between the beams, particularly near their natural frequencies of 18.6 Hz and 40.6 Hz, demonstrating complex interactions and energy exchange across a broad frequency range. The synergistic interplay between triboelectric and piezoelectric mechanisms allows the HPTEH to efficiently harvest energy across a wider spectrum, underscoring its potential for advanced energy applications in diverse vibrational environments.
引用
收藏
页数:18
相关论文
共 50 条
  • [1] Three-Dimensional Piezoelectric-Triboelectric Hybrid Nanogenerators for Mechanical Energy Harvesting
    Unsal, Omer Faruk
    Bedeloglu, Ayse C. elik
    ACS APPLIED NANO MATERIALS, 2023, 6 (16) : 14656 - 14668
  • [2] Hybrid Piezoelectric-Triboelectric Biomechanical Harvesting System for Wearable Applications
    Verma, Pratibha
    Naval, Sourav
    Mallick, Dhiman
    Jain, Ankesh
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, 2024, 71 (04) : 1914 - 1918
  • [3] Flexible V-shaped piezoelectric-triboelectric device for biomechanical energy harvesting and sensing
    Naval, Sourav
    Beigh, Nadeem Tariq
    Mukherjee, Dibyajyoti
    Jain, Ankesh
    Mallick, Dhiman
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2022, 55 (36)
  • [4] Recent Progress in Piezoelectric-Triboelectric Effects Coupled Nanogenerators
    Wang, Yifei
    Cao, Xia
    Wang, Ning
    NANOMATERIALS, 2023, 13 (03)
  • [5] Strongly coupled piezoelectric cantilevers for broadband vibration energy harvesting
    Gibus, David
    Gasnier, Pierre
    Morel, Adrien
    Formosa, Fabien
    Charleux, Ludovic
    Boisseau, Sebastien
    Pillonnet, Gael
    Berlitz, Carlos Augusto
    Quelen, Anthony
    Badel, Adrien
    APPLIED ENERGY, 2020, 277
  • [6] A fully encapsulated piezoelectric-triboelectric hybrid nanogenerator for energy harvesting from biomechanical and environmental sources
    Chen, C. Y.
    Tsai, C. Y.
    Xu, M. H.
    Wu, C. T.
    Huang, C. Y.
    Lee, T. H.
    Fuh, Y. K.
    EXPRESS POLYMER LETTERS, 2019, 13 (06) : 533 - 542
  • [7] Hybrid piezoelectric-triboelectric rotational energy harvester using dynamic coordinated modulation mechanism
    Zhao L.
    Zou H.
    Liu F.
    Wei K.
    Zhang W.
    1600, Chinese Society of Theoretical and Applied Mechanics (53): : 2961 - 2971
  • [8] A hybrid piezoelectric-triboelectric generator for low-frequency and broad-bandwidth energy harvesting
    Li, Zhongjie
    Saadatnia, Zia
    Yang, Zhengbao
    Naguib, Hani
    ENERGY CONVERSION AND MANAGEMENT, 2018, 174 : 188 - 197
  • [9] Jellyfish-inspired bistable piezoelectric-triboelectric hybrid generator for low-frequency vibration energy harvesting
    Cui, Yingxuan
    Yang, Tao
    Luo, Hongchun
    Li, Zhixin
    Jing, Xingjian
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2024, 279
  • [10] A high performance piezoelectric-triboelectric hybrid energy harvester by synergistic design
    Khatua, Dipak Kumar
    Kim, Sang-Jae
    ENERGY ADVANCES, 2022, 1 (09): : 613 - 622