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Moisture and electric coupling stimulated ionic polymer actuator with superior deformation behavior

机译:具有优异变形行为的湿气和电耦合刺激离子聚合物致动器

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To date, water-based ionic polymer metal composite (IPMC) is just regarded as a kind of electroactive material, whereas humidity is traditionally regarded as a disadvantageous factor, the change of which negatively influences the performance of the IPMC. However, the deformation of the IPMC is greatly sensitive to ambient humidity, and can be enhanced dramatically by changing the humidity. In this study, a novel actuation mode is proposed to control the deformation behavior of IPMC by employing moisture as an independent or collaborative incentive source together with the electric field. The deformation is continuously recorded under electric field and electric field-moisture coupling stimulus. These results are consistent with the view that the bending properties of the IPMC are a result of the balance of osmotic pressure and electrostatic stress in the membrane, which is greatly dependent on the change of humidity. Therefore, development of the coupling-drive mode is of great significance for the guidance of material design and application for the IPMC.
机译:迄今为止,水基离子聚合物金属复合材料(IPMC)被认为是一种电活性物质,而湿度传统上被认为是一种不利因素,其变化负面影响IPMC的性能。然而,IPMC的变形对环境湿度大大敏感,并且通过改变湿度可以显着提高。在该研究中,提出了一种新的致动模式,通过使用水分作为独立或协作激励源与电场一起使用水分来控制IPMC的变形行为。在电场和电场水分耦合刺激下连续记录变形。这些结果与IPMC的弯曲性能是膜中的弯曲性和膜中的静电应力的结果一致,这大大依赖于湿度的变化。因此,耦合驱动模式的开发对于IPMC的材料设计和应用的引导具有重要意义。

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