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A Twistable Ionic Polymer-Metal Composite Artificial Muscle for Marine Applications

机译:适用于海洋应用的可扭曲离子聚合物金属复合人工肌肉

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摘要

Ionic polymer-metal composite (IPMC) artificial muscles (AMs), due to their low driving voltage (<5 V), large strain, soft and flexible structure, and ability to operate in an aqueous environment, are suited for creating artificial fish-like propulsors that can mimic the undulatory, flapping, and complex motions of fish fins. Herein, a newly developed IPMC AM fin with patterned electrodes is introduced for realizing multiple degrees-of-freedom motion, such as bending and twisting. Also, by carefully creating isolated patterns of electrodes on the surface of the polymer-metal composite, sections of the composite can function as an actuator, while other areas can be used for sensing fin deformation and responses to external stimulation. The manufacturing, modeling, and characterization of a twistable AM fin are discussed. The sectored electrode pattern on the AM fin is created using two techniques: masking and surface machining. Using first principles, detailed models are developed to describe the electromechanical transduction for the IPMC AM fin. These models can be used to guide the development of more complex AM fin geometries and electrode patterns. The bending and twisting performance of a prototype twistable AM fin is evaluated and compared to the models. Experimental results demonstrate good twisting response for a prototype fin. Technical design challenges and performance limitations are also discussed.
机译:离子聚合物-金属复合材料(IPMC)人造肌肉(AMs)由于其低驱动电压(<5 V),大应变,柔软灵活的结构以及在水性环境中的操作能力而非常适合制作人造鱼-例如可以模仿鱼鳍起伏,拍打和复杂运动的推进器。这里,引入了新开发的具有图案化电极的IPMC AM鳍片,以实现多种自由度运动,例如弯曲和扭曲。同样,通过在聚合物-金属复合材料的表面上仔细创建隔离的电极图案,复合材料的各个部分可以用作致动器,而其他区域可以用于感测鳍片变形和对外部刺激的响应。讨论了可扭曲AM鳍片的制造,建模和表征。 AM鳍上的扇形电极图案是使用两种技术创建的:掩膜和表面加工。使用第一原理,开发了详细的模型来描述IPMC AM鳍片的机电转换。这些模型可用于指导更复杂的AM鳍几何形状和电极图案的开发。评估了原型可扭曲AM鳍片的弯曲和扭曲性能,并将其与模型进行了比较。实验结果表明原型翅片具有良好的扭转响应。还讨论了技术设计挑战和性能限制。

著录项

  • 来源
    《Marine Technology Society journal 》 |2011年第4期| p.83-98| 共16页
  • 作者单位

    Active Materials and Processing Laboratory, Department of Mechanical Engineering,University of Nevada-Reno;

    Active Materials and Processing Laboratory, Department of Mechanical Engineering,University of Nevada-Reno;

    Electroactive Systems and Controls Laboratory, Department of Mechanical Engineering,University of Nevada-Reno;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ionic polymer-metal composites; underwater propulsion; robotics;

    机译:离子聚合物-金属复合材料;水下推进;机器人技术;

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