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首页> 外文期刊>Sensors and Actuators, A. Physical >Flexible piezoelectric nanofiber composite membranes as high performance acoustic emission sensors
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Flexible piezoelectric nanofiber composite membranes as high performance acoustic emission sensors

机译:柔性压电纳米纤维复合膜作为高性能声发射传感器

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摘要

A flexible acoustic emission (AE) sensor based on lead zirconate titanate (PZT) nanofiber composite membrane is described. The PZT nanofibers, with diameters varying from 50 nm to 120 nm, were electrospun and aligned across interdigitated electrodes. After being packaged in a flexible polymer structure with a thickness of ~5 μm, this small scale AE sensor can bend freely to follow curved surfaces or embedded into structures. High piezoelectric voltage constant, flexibility and mechanical strength of PZT nanfibers result in a high performance of the demonstrated AE sensor. Fundamental characterization indicates a spontaneous polarization of the PZT nanofibers without any polarization treatment. The electromechanical coupling effect was increased up to 370% after 90 min of polarization under an external electric field of ~3 V/μm. The anisotropic sensitivity, which can reduce the required number of sensors to indentify the location of the AE source, was observed from the attenuation maps. The small scale, flexible and highly sensitive PZT nanofiber AE sensor opens up new applications for monitoring small scale structures, curved surfaces and even living cells.
机译:描述了一种基于锆钛酸铅(PZT)纳米纤维复合膜的柔性声发射(AE)传感器。直径从50 nm到120 nm不等的PZT纳米纤维经电纺并在交叉指状电极上排列。封装成厚度约5μm的柔性聚合物结构后,这种小型AE传感器可以自由弯曲以跟随曲面或嵌入结构中。 PZT纳米纤维具有较高的压电电压常数,柔韧性和机械强度,因此可以证明所展示的AE传感器具有高性能。基本特征表明未经任何极化处理的PZT纳米纤维的自发极化。在〜3 V /μm的外部电场下,极化90分钟后,机电耦合效应提高到370%。从衰减图中可以观察到各向异性灵敏度,该灵敏度可以减少确定AE源位置所需的传感器数量。小型,灵活且高度灵敏的PZT纳米纤维AE传感器为监视小型结构,曲面甚至活细胞提供了新的应用。

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