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Investigation on the Mechanical and Electrical Behavior of a Tuning Fork-Shaped Ionic Polymer Metal Composite Actuator with a Continuous Water Supply Mechanism

机译:具有连续供水机构的音叉形离子聚合物金属复合执行机构的机械和电气性能研究

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This paper presents an innovative tuning fork-shaped ionic polymer metal composite (IPMC) actuator. With an integrated soft strain gauge and water supply mechanism (WSM), the surface strain of the actuator can be sensed in situ , and providing a continuous water supply maintains the water content inside the IPMC for long-term operation in air. The actuator was fabricated using a micromachining technique and plated with a nickel electrode. The device performance was experimentally characterized and compared with an actuator without a WSM. A large displacement of 1.5 mm was achieved for a 6 mm-long prong with 7-V dc actuation applied for 30 s. The measured current was analyzed using an electrochemical model. The results revealed that the faradaic current plays a crucial role during operation, particularly after 10 s. The measured strain confirms both the bending and axial strain generation during the open-and-close motion of the actuator prongs. Most of the water loss during device operation was due to evaporation rather than hydrolysis. The constructed WSM effectively maintained the water content inside the IPMC for long-term continuous operation.
机译:本文介绍了一种创新的音叉形离子聚合物金属复合材料(IPMC)执行器。借助集成的软应变仪和供水机构(WSM),可就地检测执行器的表面应变,并且连续不断的供水可保持IPMC内部的水分,从而在空气中长期运行。使用微机械加工技术制造执行器,并镀镍电极。通过实验对设备性能进行了表征,并与没有WSM的执行器进行了比较。对于6毫米长的插脚,在施加7 V直流驱动30 s的情况下,实现了1.5毫米的大位移。使用电化学模型分析测得的电流。结果表明,法拉第电流在运行过程中起着至关重要的作用,尤其是在10 s之后。测得的应变确认了执行器插脚打开和关闭运动期间产生的弯曲和轴向应变。设备运行过程中的大部分水分流失是由于蒸发而不是水解引起的。建造的WSM可有效保持IPMC内的水分含量,以便长期连续运行。

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