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Investigating the energy harvesting capabilities of a hybrid ZnO nanowires/carbon fiber polymer composite beam

机译:研究混合ZnO纳米线/碳纤维聚合物复合材料束的能量收集能力

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摘要

Hybrid piezoelectric composite structures that are able to convert mechanical energy into electricity have gained growing attention in the past few years. In this work, an energy harvesting composite beam is developed by growing piezoelectric zinc oxide nanowires on the surface of carbon fiber prior to forming structural composites. The piezoelectric behavior of the composite beam was demonstrated under different vibration sources such as water bath sonicator and permanent magnet vibration shaker. The beam was excited at its fundamental natural frequency (43.2 Hz) and the open circuit voltage and the short circuit current were measured to be 3.1 mV and 23 nA, respectively. Upon connecting an optimal resistor (1.2 k Omega) in series with the beam a maximum power output 2.5 nW was achieved.
机译:能够将机械能转化为电能的混合压电复合结构在过去几年中受到越来越多的关注。在这项工作中,在形成结构复合材料之前,通过在碳纤维表面上生长压电氧化锌纳米线来开发能量收集复合材料束。在水浴超声仪和永磁振动器等不同振动源下,证明了复合梁的压电性能。光束以其基本固有频率(43.2 Hz)被激发,开路电压和短路电流分别测量为3.1 mV和23 nA。通过将最佳电阻器(1.2 k Omega)与电子束串联,可获得2.5 nW的最大功率输出。

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