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Rational Design Approach for Enhancing Higher-Mode Response of a Microcantilever in Vibro-Impacting Mode

机译:在振动冲击模式下提高微悬臂梁更高模式响应的合理设计方法

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摘要

This paper proposes an approach for designing an efficient vibration energy harvester based on a vibro-impacting piezoelectric microcantilever with a geometric shape that has been rationally modified in accordance with results of dynamic optimization. The design goal is to increase the amplitudes of higher-order vibration modes induced during the vibro-impact response of the piezoelectric transducer, thereby providing a means to improve the energy conversion efficiency and power output. A rational configuration of the energy harvester is proposed and it is demonstrated that the new design retains essential modal characteristics of the optimal microcantilever structures, further providing the added benefit of less costly fabrication. The effects of structural dynamics associated with advantageous exploitation of higher vibration modes are analyzed experimentally by means of laser vibrometry as well as numerically via transient simulations of microcantilever response to random excitation. Electrical characterization results indicate that the proposed harvester outperforms its conventional counterpart (based on the microcantilever of the constant cross-section) in terms of generated electrical output. Reported results may serve for the development of impact-type micropower generators with harvesting performance that is enhanced by virtue of self-excitation of large intensity higher-order mode responses when the piezoelectric transducer is subjected to relatively low-frequency excitation with strongly variable vibration magnitudes.
机译:本文提出了一种基于振动冲击的压电微悬臂梁设计高效振动能量收集器的方法,该悬臂梁的几何形状已经根据动态优化结果进行了合理修改。设计目标是增加在压电换能器的振动冲击响应过程中引起的高阶振动模式的振幅,从而提供一种提高能量转换效率和功率输出的手段。提出了能量收集器的合理配置,并证明了新设计保留了最佳微悬臂梁结构的基本模态特征,从而进一步提供了造价更低的额外好处。通过激光振动法以及通过微悬臂梁对瞬态激发的瞬态模拟的数值分析,对与较高振动模式的有利利用相关的结构动力学的影响进行了实验分析。电学表征结果表明,在产生的电输出方面,拟议的收割机优于常规收割机(基于恒定横截面的微悬臂梁)。报告的结果可能有助于开发具有捕集性能的冲击式微发电机,当压电换能器受到相对强烈的振动幅度的相对低频激励时,由于大强度高阶模态响应的自激而增强了捕集性能。

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