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首页> 外文期刊>Advanced Functional Materials >Prestrain-Free Dielectric Elastomers Based on Acrylic Thermoplastic Elastomer Gels: A Morphological and (Electro)Mechanical Property Study
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Prestrain-Free Dielectric Elastomers Based on Acrylic Thermoplastic Elastomer Gels: A Morphological and (Electro)Mechanical Property Study

机译:基于丙烯酸热塑性弹性体凝胶的无预应变介电弹性体:形态和(电)机械性能研究

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摘要

Recent efforts have established that thermoplastic elastomer gels (TPECs) composed of styrenic triblock copolymers swollen with a midblock-selective solvent exhibit remarkable electromechanical properties as high-performance dielectric elastomers. This class of electroactive polymers typically requires high electric fields for actuation, and a shortcoming that continues to thwart the widespread commercialization of such materials in general is the need to apply mechanical prestrain prior to electroactuation to decrease film thickness and, thus, the electric potential required to promote actuation. To alleviate this requirement, TPECs consisting of acrylic triblock copolymers . differing in molecular weight and composition, and swollen with a high dielectric, midblock-selective solvent are investigated. Synchrotron small-angle x-ray scattering is used to probe the nanoscale morphologies of the resultant materials, and analysis of quasi-static and cyclic tensile properties provides additional insight into both blend morphologies and electroactuation efficacy. Actuation strains measured in the absence of mechanical prestrain exceed 100% on an area basis, and electric fields capable of inducing actuation are as low as -20 kV/mm. Failure occurs by either electromechanical instability or dielectric breakdown, depending on the copolymer and TPEG composition employed. The electromechanical properties of these acrylic-based TPECs match or exceed those of skeletal muscle, in which case they constitute an attractive and unexplored alternative to existing dielectric elastomers.
机译:最近的努力已经确定,由苯乙烯中嵌段选择性溶剂溶胀的苯乙烯三嵌段共聚物组成的热塑性弹性体凝胶(TPEC)具有与高性能介电弹性体一样出色的机电性能。这类电活性聚合物通常需要高电场来致动,并且通常阻碍这种材料的广泛商业化的缺点是需要在电致动之前施加机械预应变以减小薄膜厚度,从而减小所需的电势。促进执行。为了减轻该要求,由丙烯酸三嵌段共聚物组成的TPEC。研究了不同分子量和组成的化合物,并研究了高介电,中嵌段选择性溶剂的溶胀现象。同步加速器小角度X射线散射用于探测所得材料的纳米级形貌,对准静态和循环拉伸性能的分析为共混物形貌和电致动效率提供了更多见识。在没有机械预应力的情况下测得的致动应变在面积上超过100%,并且能够引起致动的电场低至-20 kV / mm。取决于机电稳定性或电介质击穿而导致失效,具体取决于所使用的共聚物和TPEG组成。这些丙烯酸基TPEC的机电性能与骨骼肌的机电性能匹配或超过,在这种情况下,它们构成了现有介电弹性体的诱人且尚未开发的替代品。

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  • 来源
    《Advanced Functional Materials》 |2012年第10期|p.2100-2113|共14页
  • 作者单位

    Department of Chemical and Biomolecular Engineering North Carolina State University Raleigh, NC 27695, USA;

    Department of Chemical and Biomolecular Engineering North Carolina State University Raleigh, NC 27695, USA;

    Department of Textile Engineering,Chemistry and Science North Carolina State University Raleigh, NC 27695, USA;

    Department of Chemical and Biomolecular Engineering North Carolina State University Raleigh, NC 27695, USA Department of Materials Science and Engineering North Carolina State University Raleigh, NC 27695, USA;

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