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Energy harvesting from vibration using flexible floroethylenepropylene piezoelectret films with cross-tunnel structure

机译:使用具有交叉隧道结构的柔性氟乙烯丙烯压电驻极体薄膜从振动中收集能量

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摘要

Flexible fluoroethylenepropylene (FEP) piezoelectret films with a cross-tunnel structure were prepared using a template-based process and contact charging. Energy harvesting from the fabricated FEP films was investigated at various exciting frequencies and load resistances. The results show that the quasi-static piezoelectric d coefficients for the FEP piezoelectret samples are of the order of 1000 p at an applied pressure of 3.1 kPa. The output voltage increases with the increase in load resistance, and the output power is dependent on the load resistance and vibration frequency. At a load resistance of 0.9 MΩ and vibration frequency of 650 Hz, the output power of 3.5 μWg was obtained for the sample with an area of 3.14 cm and a seismic mass of 44.1 g. Such thin, light and flexible FEP piezoelectret films may be applied in wearable environmental energy harvesting system.
机译:使用基于模板的工艺和接触充电制备具有交叉隧道结构的柔性氟乙烯丙烯(FEP)压电驻极体薄膜。研究了在各种激发频率和负载电阻下从制成的FEP薄膜中收集的能量。结果表明,在3.1 kPa的施加压力下,FEP压电驻极体样品的准静态压电d系数约为1000 p。输出电压随负载电阻的增加而增加,输出功率取决于负载电阻和振动频率。在0.9MΩ的负载电阻和650 Hz的振动频率下,面积为3.14 cm,地震质量为44.1 g的样品的输出功率为3.5μWg。这样的薄,轻且柔性的FEP压电驻极体膜可以应用于可穿戴环境能量收集系统中。

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