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An experimental study of vibration based energy harvesting in dynamically tailored structures with embedded acoustic black holes

机译:具有嵌入式声黑洞的动态定制结构中基于振动的能量收集的实验研究

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In this paper, we present an experimental investigation on the energy harvesting performance of dynamically tailored structures based on the concept of embedded acoustic black holes (ABHs). Embedded ABHs allow tailoring the wave propagation characteristics of the host structure creating structural areas with extreme levels of energy density. Experiments are conducted on a tapered plate-like aluminum structure with multiple embedded ABH features. The dynamic response of the structure is tested via laser vibrometry in order to confirm the vibration localization and the passive wavelength sweep characteristic of ABH embedded tapers. Vibrational energy is extracted from the host structure and converted into electrical energy by using ceramic piezoelectric discs bonded on the ABHs and shunted on an external electric circuit. The energy harvesting performance is investigated both under steady state and transient excitation. The experimental results confirm that the dynamic tailoring produces a drastic increase in the harvested energy independently from the nature of the excitation input.
机译:在本文中,我们基于嵌入式声黑洞(ABHs)概念对动态定制结构的能量收集性能进行了实验研究。嵌入式ABH允许定制主体结构的波传播特性,从而创建具有极高能量密度水平的结构区域。实验是在具有多个嵌入式ABH功能的锥形板状铝结构上进行的。结构的动态响应通过激光振动法进行测试,以确认ABH嵌入锥度的振动定位和无源波长扫描特性。振动能量从主体结构中提取出来,并通过使用粘结在ABH上并在外部电路上分流的陶瓷压电盘转换为电能。研究了稳态和瞬态激励下的能量收集性能。实验结果证实,动态调整可独立于激励输入的性质而大幅增加所收获的能量。

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