Corona-induced partial discharges, internal charge separation and electromechanical transducer properties in cellular polymer films

Martin Wegener, Mika Paajanen, W. Wirges, R. Gerhard-Multhaupt
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引用次数: 41

Abstract

Recently, porous or cellular polymer films have received a lot of interest as materials for sensor and actuator applications. Films of cellular polypropylene have shown superior electromechanical thickness response when compared to conventional non-porous piezoelectric polymer materials. The electromechanical effect in cellular films originates from electrical discharges across internal gas-filled cells during preparation. The resulting charge separation is different from the charge-separation and dipole-orientation processes in non-cellular piezoelectric films. The aim of this work is to study the relationship between the partial discharges inside the cellular PP and its piezoelectric response. The focus is on the physical effects in the film at the threshold voltage that leads to a piezoelectric response. We studied the effects of charging voltage and charging time on partial discharges, surface potential and piezoelectric coefficient for a few cellular-film grades with different thicknesses. Also, the visible electroluminescence from numerous spots across the film surface during corona charging has been studied.
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电晕感应局部放电、内部电荷分离和细胞聚合物薄膜的机电换能器特性
最近,多孔或多孔聚合物薄膜作为传感器和执行器应用的材料受到了很多关注。与传统的无孔压电聚合物材料相比,多孔聚丙烯薄膜表现出优越的机电厚度响应。细胞膜中的机电效应源于制备过程中充满气体的细胞内部的放电。所产生的电荷分离不同于非细胞压电薄膜中的电荷分离和偶极取向过程。本研究的目的是研究胞状聚丙烯内部局部放电与其压电响应之间的关系。重点是在阈值电压下导致压电响应的薄膜中的物理效应。研究了充电电压和充电时间对几种不同厚度的细胞膜的局部放电、表面电位和压电系数的影响。此外,还研究了电晕充电过程中薄膜表面许多点的可见电致发光现象。
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