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首页> 外文期刊>Mechanical systems and signal processing >Energy harvesting from coupled bending-twisting oscillations in carbon-fibre reinforced polymer laminates
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Energy harvesting from coupled bending-twisting oscillations in carbon-fibre reinforced polymer laminates

机译:碳纤维增强聚合物层压板中弯曲-扭曲-扭曲耦合的能量收集

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摘要

The energy harvesting capability of resonant harvesting structures, such as piezoelectric cantilever beams, can be improved by utilizing coupled oscillations that generate favourable strain mode distributions. In this work, we present the first demonstration of the use of a laminated carbon fibre reinforced polymer to create cantilever beams that undergo coupled bending-twisting oscillations for energy harvesting applications. Piezoelectric layers that operate in bending and shear mode are attached to the bend-twist coupled beam surface at locations of maximum bending and torsional strains in the first mode of vibration to fully exploit the strain distribution along the beam. Modelling of this new bend-twist harvesting system is presented, which compares favourably with experimental results. It is demonstrated that the variety of bend and torsional modes of the harvesters can be utilized to create a harvester that operates over a wider range of frequencies and such multi-modal device architectures provides a unique approach to tune the frequency response of resonant harvesting systems.
机译:共振收集结构(例如压电悬臂梁)的能量收集能力可以通过利用产生有利应变模式分布的耦合振荡来提高。在这项工作中,我们首次展示了使用层压碳纤维增强聚合物来制造悬臂梁的过程,该悬臂梁会经受耦合的弯曲扭曲振动,以用于能量收集应用。在第一振动模式下,以弯曲和剪切模式工作的压电层在最大弯曲和扭转应变的位置附着到弯曲扭转耦合梁表面,以充分利用沿梁的应变分布。提出了这种新的弯扭收割系统的模型,与实验结果相比具有优势。已经证明,收割机的各种弯曲和扭转模式可用于创建在更宽的频率范围内工作的收割机,并且这种多模式设备架构提供了一种独特的方法来调整谐振收割系统的频率响应。

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