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Influence of fiber characteristics on directed electroactuation of anisotropic dielectric electroactive polymers with tunability

机译:纤维特性对具有可调性的各向异性介电电活性聚合物的定向电致动的影响

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摘要

Dielectric elastomers constitute a technologically important class of stimuli-responsive polymers due primarily to their unique ability to achieve large strains (300 area%) upon exposure to an external electric field. In most reported cases, actuation strains are measured as dielectric elastomers constrained to a circular test configuration essentially waste energy by undergoing isotropic, rather than directional, electroactuation. Recent independent studies have demonstrated, however, that the addition of relatively stiff fibers to a soft dielectric elastomer matrix promotes more energy-efficient anisotropic mechanical behavior and electroactuation response. In this work, we investigate the effects of fiber strain and mechanical properties on electroactuation in anisotropic dielectric electroactive polymers with tunability (ADEPT) fabricated from an acrylic dielectric elastomer. Increases in fiber loading level and stiffness are observed to enhance both mechanical and electroactuation properties to different extents, and we introduce an electroactuation anisotropic enhancement factor to quantify the ratio of electroactuation to mechanical anisotropy. This factor is determined to vary linearly with fiber concentration for nearly all the different ADEPT composites examined in this study. (C) 2017 Elsevier Ltd. All rights reserved.
机译:介电弹性体构成技术上重要的一类刺激响应性聚合物,这主要是由于它们在暴露于外部电场时具有实现大应变(> 300面积%)的独特能力。在大多数报道的情况下,测量驱动应变是将电介质弹性体限制在圆形测试结构中,通过进行各向同性而不是定向的电激励来实质上浪费能量。然而,最近的独立研究表明,将相对较硬的纤维添加到柔软的介电弹性体基体中,可以提高能源效率的各向异性机械性能和电致动响应。在这项工作中,我们研究了由丙烯酸介电弹性体制造的具有可调性(ADEPT)的各向异性介电电活性聚合物中纤维应变和机械性能对电致动的影响。观察到纤维负载水平和刚度的增加在不同程度上增强了机械和电致动特性,我们引入了电致动各向异性增强因子来量化电致动与机械各向异性的比率。对于该研究中研究的几乎所有不同的ADEPT复合材料,确定该因子随纤维浓度线性变化。 (C)2017 Elsevier Ltd.保留所有权利。

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  • 来源
    《Composites Science and Technology》 |2018年第18期|187-193|共7页
  • 作者单位

    North Carolina State Univ, Dept Text Engn Chem & Sci, Raleigh, NC 27695 USA;

    North Carolina State Univ, Dept Chem & Biomol Engn, Raleigh, NC 27695 USA;

    North Carolina State Univ, Dept Text Engn Chem & Sci, Raleigh, NC 27695 USA;

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