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Improved Acoustic Energy Harvester Using Tapered Neck Helmholtz Resonator and Piezoelectric Cantilever Undergoing Concurrent Bending and Twisting

机译:使用锥形颈部亥姆霍兹谐振器和压电悬臂进行了改进的声学能源收割机,经历并发弯曲和扭曲

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This work seeks to put forward an approach to enhance the voltage generated by an acoustic based piezoelectric energy harvester. When a flexible triangular foil is attached perpendicular to the PVDF cantilever beam there is an increase in strain in the beam, also there is an increment in the acoustic pressure amplification rate of the Helmholtz resonator due to the dimensional modification of its neck. The integrated effects of these modifications of the harvester on the output voltage have been investigated. When sound incident on the surface of the neck of the resonator, an oscillatory pressure is produced in the cavity, which in turns vibrates the PVDF cantilever beam and voltage generates. By amending the structure of the PVDF cantilever with a polyester foil attached perpendicular to it, the cantilever is driven into concurrent bending and twisting by the cavity pressure and therefore makes a noteworthy increase in the output voltage
机译:该工作寻求提出一种方法来提高由基于声学的压电能量收割机产生的电压。当垂直于PVDF悬臂梁的柔性三角形箔轴附接时,由于颈部的尺寸改变,梁在光束中的应变的增加,也存在亥姆霍兹谐振器的声压放大率的增量。研究了对收集者对输出电压的这些修改的综合效果。当声音入射在谐振器的颈部表面时,在腔中产生振荡压力,腔体又振动PVDF悬臂梁和电压。通过用垂直于其附接的聚酯箔修正PVDF悬臂的结构,悬臂被驱动成并发弯曲并被腔压扭曲,因此在输出电压中不值得注意地增加

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