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A Tri-Stable Piezoelectric Vibration Energy Harvester for Composite Shape Beam: Nonlinear Modeling and Analysis

机译:复合形状梁的三稳态压电振动能量采集器:非线性建模与分析

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摘要

To reveal the nonlinear mechanism of the tri-stable piezoelectric vibration energy harvester based on composite shape beam (TPEH-C) and its influence on the system response, the nonlinear restoring force and the nonlinear magnetic force are discussed and analyzed in this paper. The nonlinear magnetic model is acquired by using equivalent magnetizing current theory, and the nonlinear resilience model is obtained by fitting experimental data. The corresponding distributed parameter model based on generalized Hamiltonian variation principle has been established. Frequency response functions for the TPEH-C are derived according to harmonic balance expansion, and the influence of different magnet distances and different excitation accelerations on the response amplitude and bandwidth of the TPEH-C are investigated. More importantly, the correctness of the theoretical analysis is verified by experiments. The results reveal that the spectrum of composite beam shows hard characteristic and the depth of potential well is changed, which provides a new way to ameliorate the potential well of the TPEH-C. A suitable magnet distance enables the TPEH-C to improve the response amplitude and the effective frequency range. The results in this paper have a theoretical guiding significance for the optimal design and engineering application of the TPEH-C.
机译:为了揭示基于复合形状梁(TPEH-C)的三稳态压电振动能量采集器的非线性机理及其对系统响应的影响,本文对非线性恢复力和非线性磁力进行了讨论和分析。利用等效励磁电流理论获得非线性磁模型,通过拟合实验数据获得非线性弹性模型。建立了基于广义哈密顿变异原理的相应分布参数模型。根据谐波平衡的扩展推导了TPEH-C的频率响应函数,并研究了不同的磁体距离和不同的激励加速度对TPEH-C的响应幅度和带宽的影响。更重要的是,通过实验验证了理论分析的正确性。结果表明,复合束的光谱表现出坚硬的特性,势阱的深度发生了变化,为改善TPEH-C的势阱提供了一种新途径。合适的磁体距离可使TPEH-C改善响应幅度和有效频率范围。本文的结果对于TPEH-C的优化设计和工程应用具有理论指导意义。

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