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Electromechanical characterization of a new synthetic rubber membrane for dielectric elastomer transducers

机译:用于介电弹性体换能器的新型合成橡胶膜的机电特性

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Dielectric Elastomers (DE) are incompressible polymeric solids that experience finite elastic deformations and are electrically non-conductive. Stacking multiple DE films separated by compliant electrodes makes a deformable capacitor transducer, namely a DE Transducer (DET), which can expand in area while shrinking in thickness and vice versa. DETs can be used as solid-state actuators, sensors and generators. The development of an effective DET requires the accurate knowledge of the constitutive behavior of the employed DE material. In this context, this paper reports the experimental results of the electromechanical characterization of a new synthetic rubber membrane (TheraBand™ Latex Free Resistance Band Yellow (P/N #11726), or TheraBand LFRB-Y in short) to be used as elastic dielectric in DETs. Comparison of the obtained results with those of the best quoted Natural Rubber membrane (OPPO BAND 8003) is also provided that shows the superior performances of TheraBand LFRB-Y both in terms of reduced mechanical hysteresis and of higher dielectric strength stability to ambient wetness conditions.
机译:介电弹性体(DE)是不可压缩的聚合物固体,会经历有限的弹性变形并且不导电。堆叠多个由顺从电极隔开的DE薄膜,就形成了一个可变形的电容器换能器,即DE换能器(DET),它可以扩大面积,同时减小厚度,反之亦然。 DET可用作固态致动器,传感器和发电机。有效DET的发展需要对所用DE材料的本构行为有准确的了解。在此背景下,本文报道了新型合成橡胶膜(TheraBand™乳胶无阻带黄(P / N#11726),或简称为TheraBand LFRB-Y)用作弹性电介质的机电特性的实验结果。在DET中。还提供了将获得的结果与引用最广的天然橡胶膜(OPPO BAND 8003)的结果进行比较的结果,该结果显示了TheraBand LFRB-Y的优异性能,既减少了机械滞后,又提高了对环境湿度条件的介电强度稳定性。

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