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Investigation on Electromechanical Properties of Solid Silicone Rubber Composites with Conductive Carbon Filler

机译:用导电碳填料的固体硅橡胶复合材料电机电性能研究

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摘要

Dielectric elastomers belonging to the class of electroactive polymers are promising materials for electromechanical transduction. They are used as actuators, capacitive sensors and energy harvesters. In the present study solid silicone rubber-super conducting carbon black composites are prepared through compression moulding process and evaluated for their mechanical and dielectric properties. Electromechanical sensitivity is estimated and discussed using Taguchi orthogonal arrays for the factors, such as content of active filler and curing agent, mixing time in roll mill, curing temperature. Permittivity of the composites increased 6 times when compared with the sample without active filler. Electromechanical sensitivity of the composite improved 2 times, thus highlighting that this approach could lead to development of newer dielectric elastomer transducer materials.
机译:属于电活性聚合物类的介电弹性体是用于机电转导的有希望的材料。它们用作致动器,电容传感器和能量收割机。在本研究中,通过压缩成型工艺制备固体硅橡胶 - 超导炭黑复合材料,并评估其机械和介电性能。使用Taguchi正交阵列估计和讨论机电敏感性,例如有源填料和固化剂的含量,辊磨机中的混合时间,固化温度。与没有活性填料的样品相比,复合材料的介电常数增加了6次。复合材料的机电敏感性改善了2次,因此突出显示该方法可能导致新介电弹性体换能器材料的发展。

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