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Actuating potentialities of electroactive carbon nanopowder/polyurethane composites

机译:电活性炭纳米粉/聚氨酯复合材料的致动电位

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In this paper, the electromechanical response of polyurethane (PU) films has been studied. In particular, the beneficial influence of carbon black incorporation in the polymer matrix on the electric field-induced was measured and discussed. The observed hyperelastic behaviour of both pure PU elastomer and carbon/PU composite was described using constitutive Ogden Model. Finite Element modeling was also performed in order to confirm the validity of the chosen model, assuming that actuation pressure is only due to electrostatic (Coulomb) forces at the electrodes. It also allowed to predict the strain and stress distributions in the polymer films and the influence of the electrode size. Finally, mechanical performances of pure PU and composite C/PU disk actuators are compared in terms of strain energy density and actuation pressure under quasistatic conditions (non linear actuator behaviour).
机译:本文研究了聚氨酯(PU)薄膜的机电响应。特别地,测量和讨论了炭黑掺入聚合物基质中对电场感应的有益影响。使用本构Ogden模型描述了纯PU弹性体和碳/ PU复合材料的超弹性行为。为了确认所选模型的有效性,还进行了有限元建模,假设驱动压力仅归因于电极上的静电(库仑)力。还可以预测聚合物膜中的应变和应力分布以及电极尺寸的影响。最后,在准静态条件下(非线性执行器特性),根据应变能密度和执行压力比较了纯PU和复合C / PU磁盘执行器的机械性能。

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