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Effect of Electrospun PVDF-Fibers Orientation for Vibration Sensing

机译:电纺PVDF纤维取向对振动感应的影响

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Advanced Structural Health Monitoring (SHM) systems require the use of high performing, ultra-thin and light weight flexible sensing devices to reduce impact in a hosting material or structure. In this paper piezoelectric polyvinylidene difluoride (PVDF) electrospun fibers were investigated to realize advanced vibration sensors. The microscale structure of the fabricated sensors is of a porous nature and consists of an aggregation of microfibers that are either randomly distributed or oriented. Being piezoelectric these fibers are capable to detect mechanical stress or strain over time in terms of a voltage signal. To investigate the reliability of piezoelectric fibers as vibration sensors, tests of a dynamic nature were conducted. It is found that the developed sensors are capable to detect a cantilever vibration over time with great accuracy and that the microfibers orientation is an important factor to maximize the sensor performance.
机译:先进的结构健康监测(SHM)系统需要使用高性能,超薄和轻质的柔性感测装置,以减少托管材料或结构的影响。在本文中,研究了压电聚偏二丙烯(PVDF)电纺纤维,实现了先进的振动传感器。制造的传感器的微观结构是多孔性质,并且由随机分布或定向的微纤维的聚集组成。压电这些纤维能够在电压信号方面能够随时间检测机械应力或应变。为了研究压电纤维作为振动传感器的可靠性,进行了动态性的测试。结果发现,发达的传感器能​​够以极高的准确度随时间检测悬臂振动​​,并且微纤维方向是最大化传感器性能的重要因素。

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