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On the impact of self-clearing on electroactive polymer (EAP) actuators

机译:关于自透明对电活性聚合物(EAP)执行器的影响

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摘要

Electroactive polymer (EAP)-based actuators have large potential for a wide array of applications; however, their practical implementation is still a challenge because of the requirement of high driving voltage, which most often leads to premature defect-driven electrical breakdown. Polymer-based capacitors have the ability to clear defects with partial electrical breakdown and subsequent removal of a localized electrode section near the defect. In this study, this process, which is known as self-clearing, is adopted for EAP technologies. We report a methodical approach to self-clear an EAP, more specifically P(VDF-TrFE-CTFE) terpolymer, to delay premature defect-driven electrical breakdown of the terpolymer actuators at high operating electric fields. Breakdown results show that electrical breakdown strength is improved up to 18% in comparison to a control sample after self-clearing. Furthermore, the electromechanical performance in terms of blocked force and free displacement of P(VDF-TrFE-CTFE) terpolymer-based bending actuators are examined after self-clearing and precleared samples show improved blocked force, free displacement and maximum sustainable electric field compared to control samples. The study demonstrates that controlled self-clearing of EAPs improves the breakdown limit and reliability of the EAP actuators for practical applications without impeding their electromechanical performance.
机译:基于各种应用的基于电活性聚合物(EAP)的致动器具有很大的应用;然而,由于要求高驾驶电压的要求,它们的实际实施仍然是一个挑战,这通常导致过早缺陷驱动的电击。基于聚合物的电容器能够清除具有部分电击的缺陷,并随后去除缺陷附近的局部电极部分。在这项研究中,通过EAP技术采用了该过程,称为自我清除。我们报告了一种方法方法来自我清除EAP,更具体地进行P(VDF-TRFE-CTFE)三元共聚物,以延迟高操作电场在高效电场的过早缺陷驱动的彼此致动器的电解。击穿结果表明,与自清零后的对照样品相比,电击强度高达18%。此外,在自清洁和光学样的样品中,检查了P(VDF-TRFE-CTFE)基于P(VDF-TRFE-CTFE)三元共聚物的弯曲致动器方面的机电性能,显示出改善的阻挡力,自由位移和最大可持续电场对照样品。该研究表明,IAP的受控自我清除改善了EAP执行器的击穿限制和可靠性,用于实际应用而不阻碍其机电性能。

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