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Template-based fluoropolymer ferroelectrets with multiple layers of tubular channels

机译:具有多层管状通道的基于模板的含氟聚合物铁电驻极体

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Significant efforts are devoted to developing new ferroelectrets with well-controlled void distributions or uniform voids and with good long-term and thermal stability of the piezoelectricity. Here, we describe the concept, the fabrication, and the most relevant properties of fluoropolymer ferroelectret systems with three separate films of fluoroethylenepropylene (FEP), alternating with two polytetrafluoroethylene (PTFE) templates. The FEP films are selectively fused by means of a lamination process. Two practically identical PTFE templates are used, which have parallel rectangular openings (1.5×30 mm2) separated by PTFE ridges of 1.5 mm width. After removing the PTFE templates, a three-layer FEP-film sandwich with tubular channels is obtained. We demonstrate that such FEP-film systems exhibit significant and stable piezoelectricity after charging under a high DC voltage. The resulting piezoelectric effect may be further improved by carefully assembling and arranging the PTFE templates during preparation.
机译:致力于开发具有良好控制的空隙分布或均匀空隙并且具有良好的压电性的长期和热稳定性的新型铁电驻极体。在这里,我们介绍了氟聚合物铁电驻极体系统的概念,制造方法和最相关的性能,该系统具有三个单独的氟乙烯丙烯(FEP)膜,并交替使用两个聚四氟乙烯(PTFE)模板。 FEP膜通过层压工艺选择性地熔融。使用了两个实际上相同的PTFE模板,它们具有平行的矩形开口(1.5×30 mm 2 ),这些矩形开口由1.5 mm宽度的PTFE脊隔开。除去PTFE模板后,获得了带有管状通道的三层FEP膜三明治。我们证明了这种FEP膜系统在高DC电压下充电后展现出显着且稳定的压电性。通过在准备过程中仔细组装和布置PTFE模板,可以进一步改善所产生的压电效应。

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