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Ionic and viscoelastic mechanisms of a bucky-gel actuator

机译:Bucky-gel执行器的离子和粘弹性机理

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摘要

Ionic electromechanically active polymers (IEAPs) are considered attractive candidates for soft, miniature, and lightweight actuators. The bucky-gel actuator is a carbonaceous subtype of IEAP that due to its structure (i.e. two highly porous electrodes sandwiching a thin ion-permeable electrolyte layer) and composition (i.e. being composed of soft porous polymer, carbon nanotubes, and ionic liquid) is very similar to an electric double-layer capacitor. In response to the voltage applied between the electrodes of a bucky-gel actuator, the laminar structure bends. The time domain behavior exhibits, however, a phenomenon called the back-relaxation, i.e., after some time the direction of bending is reversed even though voltage remains constant. In spite of the working mechanism of IEAP actuators being generally attributed to the transport of ions within the soft multilayer system, the specific details remain unclear. A so-called two-carrier model proposes that the bending and subsequent back-relaxation are caused by the relocation of two ionic species having different mobilities as they enter and exit the electrode layers. By adopting the two-carrier model for bucky-gel actuators, we see very good agreement between the mathematical representation and the experimental data of the electromechanical behavior. Furthermore, since the bucky-gel actuator is viscoelastic, we propose to use the time domain response of a blocking force as the key parameter related to the inner ionic mechanism. We also introduce a method to estimate the viscoelastic creep compliance function from the time domain responses for curvature and blocking force. This analysis includes four types of bucky-gel actuators of varying composition and structure.
机译:离子机电活性聚合物(IEAP)被认为是软,微型和轻型致动器的有吸引力的候选材料。 bucky-gel致动器是IEAP的碳质亚型,由于其结构(即,两个高度多孔的电极将薄薄的离子渗透性电解质层夹在中间)和成分(即,由柔软的多孔聚合物,碳纳米管和离子液体组成)与双电层电容器非常相似。响应于在布基凝胶致动器的电极之间施加的电压,层状结构弯曲。然而,时域行为表现出一种称为反向松弛的现象,即,在一段时间后,即使电压保持恒定,弯曲的方向也相反。尽管IEAP执行器的工作机制通常归因于软多层系统中离子的传输,但具体细节仍不清楚。所谓的双载流子模型提出,弯曲和随后的后松弛是由具有不同迁移率的两种离子物质在进入和离开电极层时的迁移所引起的。通过将两载体模型用于Bucky-gel执行器,我们看到了数学表示与机电行为的实验数据之间的很好的一致性。此外,由于布基凝胶致动器是粘弹性的,我们建议使用阻滞力的时域响应作为与内部离子机理相关的关键参数。我们还介绍了一种方法,可以从时域对曲率和阻挡力的响应中估算粘弹性蠕变柔度函数。该分析包括四种类型的组成和结构各异的Bucky-gel执行器。

著录项

  • 来源
    《Journal of Applied Physics 》 |2015年第1期| 014502.1-014502.7| 共7页
  • 作者单位

    National Institute of Advanced Industrial Science and Technology (AIST), 1-8-31 Midorigaoka, Ikeda, Osaka 563-8577, Japan;

    National Institute of Advanced Industrial Science and Technology (AIST), 1-8-31 Midorigaoka, Ikeda, Osaka 563-8577, Japan;

    National Institute of Advanced Industrial Science and Technology (AIST), 1-8-31 Midorigaoka, Ikeda, Osaka 563-8577, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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