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Predictions of Energy Content in Stretched Ribbons of Segmented Polymer Piezoelectrics

机译:分段聚合物压电带拉伸丝带中能量含量的预测

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Polymer piezoelectrics such as poly vinyldene fluoride (PVDF) offer advantages such as low temperature fabrication into large area flexible sheets. A primary advantage of this is that large sheets of PVDF can be stretched into membranes to build sensors and energy harvesters that have low resonant frequencies. A key result reported recently is that when polymer piezoelectrics membranes are provided non-uniform stress, the use of segmented electrodes helps improve energy content by reducing surface currents. Using this key result in conjunction with experiments performed on stretched ribbons of PVDF, we predict energy densities obtained via electrode segmentation in this paper.
机译:聚合物压电等聚维林德氟化物(PVDF)提供低温制造等优点,进入大面积柔性板。这是其中的主要优点是,大片PVDF可以拉伸到膜中以构建具有低谐振频率的传感器和能量收割机。最近报道的一个关键结果是当聚合物压电膜提供不均匀的应力时,分段电极的使用有助于通过减少表面电流来改善能量含量。使用该键结果结合在PVDF的拉伸带上进行的实验结合,我们预测本文通过电极分段获得的能量密度。

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