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Performance enhancement of an ionic polymer metal composite actuator using a microcellular foaming process

机译:使用微孔发泡工艺增强离子聚合物金属复合致动器的性能

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Recently, the study of electroactive polymers that can be operated by electrical energy has attracted a great deal of attention. One type of electroactive polymer consisting of ionic polymer metal composites (IPMCs) is important because of its low driving voltage and fast response time, but the driving force gives limitations to the characteristics of IPMCs. In this research, we developed a high-performance IPMC using a new manufacturing process through a microcellular foaming process. Nafion (ionic polymer) films, foamed using a microcellular foaming batch process, and un-foamed Nafion films had a uniform thickness of platinum (Pt) deposited on them by electroless plating. To evaluate performance of the fabricated IPMCs, we tested changes in blocked force and free bending displacement of an IPMC actuator according to changes in applied voltage, water content and thickness of the sample. The foamed IPMC (fIPMC) actuator demonstrated 50% increased free bending displacement and twice larger blocked force than the normal (non-foamed) IPMC actuator. This result shows that the feasibility of attaining the same performance as a non-foamed IPMC with a lower applied voltage and of developing higher-performance IPMC actuators. Thus, we show the possibility of high-performance fIPMC actuators that may be useful in various fields.
机译:最近,对可通过电能操作的电活性聚合物的研究引起了极大的关注。一种类型的由离子聚合物金属复合材料(IPMC)组成的电活性聚合物很重要,因为它的驱动电压低且响应时间快,但是驱动力限制了IPMC的特性。在这项研究中,我们通过微孔发泡工艺使用新的制造工艺开发了高性能IPMC。使用微孔发泡间歇法发泡的Nafion(离子聚合物)膜和未发泡的Nafion膜通过化学镀沉积在其上的铂(Pt)厚度均匀。为了评估所制造的IPMC的性能,我们根据施加的电压,水含量和样品厚度的变化测试了IPMC执行器的受力和自由弯曲位移的变化。发泡IPMC(fIPMC)执行器的自由弯曲位移增加了50%,阻塞力是普通(非发泡)IPMC执行器的两倍。该结果表明,在较低的施加电压下获得与非发泡IPMC相同的性能以及开发更高性能的IPMC执行器的可行性。因此,我们展示了高性能fIPMC执行器在各种领域中有用的可能性。

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