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A MEMS Piezoelectric Vibration Energy Harvester Based on Trapezoidal Cantilever Beam Array

机译:基于梯形悬臂梁阵列的MEMS压电振动能量采集器

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This paper reports a novel MEMS piezoelectric vibration energy harvester based on trapezoidal cantilever beam array (TCBA-PVEH), which mainly composed of a piezoelectric array beam and a mass block. The open-circuit voltage ($V_{oc}$), the optimized load voltage ($V_{opt}$) and the optimized load output power ($P_{opt}$) of the TCBA-PVEH at 0.5g acceleration can reach 10.36 V, 6.68 V and $12.51 mu mathrm{W}$, respectively. The experimental results show that the TCBA-PVEH has smaller bending stiffness and larger piezoelectric strain energy per unit area than the rectangular cantilever beam array based PVEH (RCBA-PVEH), thus having lower resonance frequency and better electrical output. We also establish and analytically solve the electromechanical coupling dynamic model of PVEHs with variable cross-section cantilever beam. The proposed model lays an important theoretical foundation for structural optimization design, performance improvement and output prediction.
机译:本文报道了一种新型的基于梯形悬臂梁阵列(TCBA-PVEH)的MEMS压电振动能量采集器,它主要由压电阵列梁和质量块组成。开路电压( $ V_ {oc} $ < / tex> ),优化的负载电压( $ V_ {opt} $ < / tex> )和优化的负载输出功率( $ P_ {opt} $ < / tex> )在0.5g加速度下的TCBA-PVEH可以达到10.36 V,6.68 V和 $ 12.51 \ \ mu \ mathrm { W} $ , 分别。实验结果表明,与基于矩形悬臂梁阵列的PVEH(RCBA-PVEH)相比,TCBA-PVEH具有较小的弯曲刚度和较大的单位面积压电应变能,因此具有较低的谐振频率和较好的电输出。我们还建立并分析求解了具有可变截面悬臂梁的PVEH的机电耦合动力学模型。该模型为结构优化设计,性能改进和产量预测奠定了重要的理论基础。

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