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Low cost electrostatic vibration energy harvesters based on negatively-charged polypropylene cellular films with a folded structure

机译:基于带折叠结构的带负电荷的聚丙烯细胞膜的低成本静电振动能量收割机

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Low cost electrostatic vibration energy harvesters based on negatively-charged polypropylene cellular films with a folded structure were designed in this study. Strips of such energy harvesters were excited by applying mechanical stress in length direction. A current in a terminating resistor was generated due to the capacitance variation of the samples. For a typical double-periodic folded-structure electrostatic vibration energy harvester sample whose effective length and width were 30 mm and 10 mm, respectively, the generated power across a matching resistor at a resonance frequency of 36 Hz amounts to 641 mu W for a seismic mass of 4 g and an acceleration of 1 g (g is the gravity of the Earth). Similar structures which were designed and fabricated in this study were also tested for energy harvesting and high output power in the order of a few hundred microwatt was gained. Following the presentation of a theoretical model allowing for the calculation of the power generated in a load resistance at the resonance frequency of the harvesters, experimental results are shown and compared to theoretical prediction. It turns out that the experiment results accord well with the theoretical predictions.
机译:在本研究中设计了基于带有折叠结构的带负电的聚丙烯细胞膜的低成本静电振动能量。通过在长度方向上施加机械应力,激发这种能量收割机的条带。由于样品的电容变化,产生终端电阻中的电流。对于典型的双周期折叠结构静电振动能量收割机,其有效长度和宽度分别为30mm和10mm,在匹配电阻中以36Hz的共振频率的产生功率为641μW的地震4克的质量和1g的加速度(g是地球的重力)。在本研究中设计和制造的类似结构也被测试用于能量收集和高输出功率,从而获得了几百微型微型。在允许在收割机的共振频率下施加负载电阻中产生的电力的理论模型之后,与理论预测相比,示出了实验结果。事实证明,实验结果与理论预测相吻合。

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