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Controlled inflation of voids in cellular polymer ferroelectrets: Optimizing electromechanical transducer properties

机译:控制多孔聚合物铁电驻极体中空隙的膨胀:优化机电换能器性能

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When exposed to sufficiently high electric fields, polymer-foam electret materials with closed cells exhibit ferroelectric-like behavior and may therefore be called ferroelectrets. In cellular ferroelectrets, the influence of the cell size and shape distributions on the application-relevant properties is not yet understood. Therefore, controlled inflation experiments were carried out on cellular polypropylene films, and the resulting elastical and electromechanical parameters were determined. The elastic modulus in the thickness direction shows a minimum with a corresponding maximum in the electromechanical transducer coefficient. The resonance frequency shifts as a function of the elastic modulus and the relative density of the inflated cellular films. Therefore, the transducer properties of cellular ferroelectrets can be optimized by means of controlled inflation.
机译:当暴露于足够高的电场时,具有闭孔的聚合物泡沫驻极体材料表现出类似铁电的行为,因此可以称为铁电驻极体。在细胞铁电驻极体中,细胞大小和形状分布对与应用相关的性质的影响尚不清楚。因此,在多孔聚丙烯薄膜上进行了受控的充气实验,并确定了所得的弹性和机电参数。厚度方向上的弹性模量显示最小值,而机电换能器系数显示相应的最大值。共振频率根据膨胀的蜂窝状膜的弹性模量和相对密度而变化。因此,蜂窝状铁电驻极体的换能器特性可以通过控制膨胀来优化。

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