Curve-Shaped Anchor for Durability and Efficiency Improvement of Piezoelectric MEMS Energy Harvesters

Seyedfakhreddin Nabavi, Lihong Zhang
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引用次数: 12

Abstract

In this paper we propose a new curve-shaped anchoring scheme to improve the durability and energy conversion efficiency of the piezoelectric MEMS harvesters. In this regard, a doubly clamped curve beam with a mass at its center is considered as an anchor, while a straight beam with proof mass is integrated to the center of this anchor. To the best of our knowledge, thus far no study has been done to assess the fatigue damage, which is actually critical to the micro-sized silicon-based piezoelectric harvesters. We have utilized the Coffin-Manson method and finite element modeling (FEM) to comprehensively study the fatigue lifetime of the proposed geometry. By using a micro-fabrication process, our proposed piezoelectric harvester has been fabricated and its capability in harnessing the vibration energy has been examined experimentally. It is found that the harvested energy can be enlarged by a factor of 2.66, while this improvement is gained by the resonant frequency reduction and failure force magnitude enlargement, in comparison with the conventional geometry of the piezoelectric MEMS harvesters.
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提高压电MEMS能量采集器耐用性和效率的曲线型锚
为了提高压电式MEMS收割机的耐用性和能量转换效率,本文提出了一种新的曲线型锚固方案。在这种情况下,中心有质量的双夹紧曲线梁被视为锚,而具有证明质量的直梁被集成到该锚的中心。据我们所知,到目前为止,还没有对疲劳损伤进行评估的研究,而疲劳损伤实际上是微尺寸硅基压电收割机的关键。我们利用Coffin-Manson方法和有限元建模(FEM)对所提出的几何结构的疲劳寿命进行了全面的研究。采用微加工工艺制备了压电采集器,并对其利用振动能量的能力进行了实验验证。结果表明,与传统的压电式MEMS收集器相比,通过降低谐振频率和增大失效力大小,可以将收集的能量增加2.66倍。
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