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Electrostatically Driven Soft Polymer Actuator Based on Dielectric Elastomer

机译:基于介电弹性体的静电驱动软聚合物致动器

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摘要

ElectroActive Polymers (EAPs) are emerging as new actuating means replacing the existing technologies such as piezoelectric, electrostatic, SMA etc. The dielectric elastomer actuator is regarded as the one of the most practically applicable actuators in the near future among the EAPs. In this paper, we introduce a new material capable of being employed as the dielectric elastomer actuator. The proposed material, which is a kind of the synthetic rubber, produces larger deformation as well as higher enegy efficiency, since it has a much higher dielectric constant compared to the previous ones. Beginning with the method of material synthesis, we give the description of its basic material properties by comparing with those of the existing materials for the dielectric elastomers. Also, the advantages of the proposed material as the actuating means are discussed with the several results of the experiments.
机译:电活性聚合物(EAP)逐渐成为一种新的驱动方式,取代了诸如压电,静电,SMA等现有技术。电介质弹性体驱动器被认为是EAP中最实用的驱动器之一。在本文中,我们介绍了一种可以用作介电弹性体致动器的新材料。所提议的材料是一种合成橡胶,由于与以前的材料相比具有更高的介电常数,因此它会产生更大的变形以及更高的能量效率。从材料合成方法开始,我们通过与介电弹性体的现有材料进行比较来描述其基本材料性能。同样,通过实验的几个结果讨论了所提出的材料作为致动装置的优点。

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