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Template-based fluoroethylenepropylene piezoelectrets with tubular channels for transducer applications

机译:具有换能器应用的管状通道的基于模板的氟乙烯丙烯压电驻极体

摘要

We describe the concept, the fabrication, and the most relevant properties of a piezoelectric-polymer system: Two fluoroethylenepropylene (FEP) films with good electret properties are laminated around a specifically designed and prepared polytetrafluoroethylene (PTFE) template at 300 degrees C. After removing the PTFE template, a two-layer FEP film with open tubular channels is obtained. For electric charging, the two-layer FEP system is subjected to a high electric field. The resulting dielectric barrier discharges inside the tubular channels yield a ferroelectret with high piezoelectricity. d(33) coefficients of up to 160 pC/N have already been achieved on the ferroelectret films. After charging at suitable elevated temperatures, the piezoelectricity is stable at temperatures of at least 130 degrees C. Advantages of the transducer films include ease of fabrication at laboratory or industrial scales, a wide range of possible geometrical and processing parameters, straightforward control of the uniformity of the polymer system, flexibility, and versatility of the soft ferroelectrets, and a large potential for device applications e.g., in the areas of biomedicine, communications, production engineering, sensor systems, environmental monitoring, etc.
机译:我们描述了压电聚合物系统的概念,制造和最相关的性能:在300摄氏度下,将两层具有良好驻极体性能的氟乙烯丙烯(FEP)膜层压在专门设计和制备的聚四氟乙烯(PTFE)模板周围。在PTFE模板上,获得了具有开放管状通道的两层FEP膜。为了充电,两层FEP系统要承受高电场。管状通道内部产生的介电势垒放电产生具有高压电性的铁电驻极体。在铁电驻极体薄膜上已经实现了高达160 pC / N的d(33)系数。在合适的高温下充电后,压电性在至少130摄氏度的温度下稳定。换能器膜的优点包括易于在实验室或工业规模上制造,范围广泛的可能的几何和加工参数,直接控制均匀性聚合物系统的特性,柔软的铁电驻极体的柔韧性和多功能性,以及在生物医学,通信,生产工程,传感器系统,环境监测等领域的设备应用的巨大潜力。

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