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首页> 外文期刊>Sensors Journal, IEEE >A Low-Cost Snap-Through-Buckling Inkjet-Printed Device for Vibrational Energy Harvesting
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A Low-Cost Snap-Through-Buckling Inkjet-Printed Device for Vibrational Energy Harvesting

机译:一种用于振动能量收集的低成本快速折皱喷墨打印设备

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摘要

This paper covers a novel methodology for the realization of devices that are able to harvest energy from background mechanical vibrations. The novelties reside in the nonlinear mechanism ruling the harvester behavior and the printed technology used to realize the lab-scale prototype. The nonlinearity of the harvester is desirable, because vibrational energy is usually distributed in a band at low frequency and does not, therefore, lend itself to harvesting through a (linear) resonant device. Printed technology has the advantage of being ultracheap and, hence, suitable for proof-of-concept and rapid laboratory prototyping. In particular, inkjet printing technology affords the realization of low-cost electrodes with high resolution and multiple functional layers. This paper covers the mechanical properties of a snap-through buckling beam and details the results of experiments aimed at investigating the (nonlinear) mechanical properties as well as a theoretical fit to the experimental observations. Moreover, the electrical response of the device and, hence, its suitability for energy-harvesting applications are addressed. Powers on the order of 100 nW have been experimentally estimated by a lab-scale prototype with the aim of demonstrating the proof-of-concept of the snap-through buckling mechanism for energy harvesting.
机译:本文介绍了一种新颖的方法,用于实现能够从背景机械振动中收集能量的设备。新奇之处在于控制收割机性能的非线性机制以及用于实现实验室规模原型的印刷技术。收集器的非线性是理想的,因为振动能量通常以低频分布在一个频带中,因此不会通过(线性)谐振设备进行收集。印刷技术具有超便宜的优势,因此适合概念验证和快速的实验室原型制作。特别地,喷墨印刷技术提供了具有高分辨率和多功能层的低成本电极的实现。本文介绍了快速弯曲屈曲梁的机械性能,并详细介绍了旨在研究(非线性)机械性能的实验结果以及与实验观测值的理论拟合。此外,还解决了该设备的电响应以及因此其在能量收集应用中的适用性。实验室规模的原型已通过实验估计了约100 nW的功率,目的是演示用于能量收集的快速屈曲机构的概念验证。

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