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Antagonist Concepts of Polypyrrole Actuators: Bending Hybrid Actuator and Mirrored Trilayer Linear Actuator

机译:Polypyrol执行器的拮抗剂概念:弯曲混合动力执行器和镜像三层线性执行器

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摘要

Following the natural muscle antagonist actuation principle, different adaptations for “artificial muscles” are introduced in this work. Polypyrrole (PPy) films of different polymerization techniques (potentiostatic and galvanostatic) were analyzed and their established responses were combined in several ways, resulting in beneficial actuation modes. A consecutive “one-pot” electrosynthesis of two layers with the different deposition regimes resulted in an all-PPy bending hybrid actuator. While in most cases the mixed-ion activity of conductive polymers has been considered a problem or a drawback, here for the first time, the nearly equal expansions upon oxidation and reduction of carefully selected conditions further allowed to fabricate a “mirrored” trilayer laminate, which behaved as a linear actuator.
机译:在天然肌肉拮抗剂的致动原理之后,在这项工作中介绍了对“人工肌肉”的不同调整。分析了不同聚合技术(PPY)不同聚合技术的滤膜(电位诱导型和辐射植物),并以几种方式合并其所建立的反应,从而产生有益的致动模式。连续的“单罐”电气合成两层,具有不同的沉积制度,导致全PPY弯曲混合动力致动器。虽然在大多数情况下,导电聚合物的混合离子活性已经被认为是一个问题或缺点,这是第一次,在氧化时几乎相等的膨胀和减少仔细选定的条件进一步允许制造“镜面”三层层压板,它表现为线性执行器。

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