The dynamic properties of the IPMC polymer

H. Wiśniewski, L. Płonecki
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引用次数: 5

Abstract

IPMC is classified as one of the so-called smart materials, whose properties can be designed depending on the needs that arise. It is possible to construct complex mechanical structures using those materials. Mechanical structures include a drive, structural frame, bearings, and other components. Smart materials make it possible to integrate those functionalities to be contained within one element. An additional advantage is offered by the fact that, depending on the application design, they can operate as sensors or actuators. The matrix of IPMC is Nafion polymer membrane, plated on both sides with a 10-20 μm platinum and gold layer. The membrane contains anions, which are not capable of moving, whereas cations can freely travel within the membrane. When voltage is applied to IPMC electrodes, an electric field E is created, which makes mobile cations, together with water molecules, migrate within the membrane towards the negative electrode. As a result, pressure increases in the negative electrode area, whereas it decreases in the positive electrode area, which causes the polymer to bend. IPMC provides an interesting option for the system elements, as it makes it possible to generate low forces, of the order of 10 to 40 times of its weight (given in grams). The first part of the paper provides a description of the control measurement system. The second part investigates dynamic properties of the IPMC stripes of the two sizes: 8.47×25.48×0.34mm and 10×37.6×l.67mm.
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IPMC聚合物的动力学性质
IPMC被归类为所谓的智能材料之一,其性能可以根据出现的需求进行设计。使用这些材料可以建造复杂的机械结构。机械结构包括驱动器、结构框架、轴承和其他部件。智能材料可以将这些功能集成到一个元素中。另一个优点是,根据应用程序的设计,它们可以作为传感器或执行器工作。IPMC的基体为Nafion聚合物膜,两侧镀有10 ~ 20 μm的铂和金层。膜含有不能移动的阴离子,而阳离子可以在膜内自由移动。当对IPMC电极施加电压时,产生电场E,使可移动的阳离子与水分子一起在膜内向负极迁移。结果,负极区域的压力增加,而正极区域的压力降低,这导致聚合物弯曲。IPMC为系统元素提供了一个有趣的选择,因为它可以产生低强度的力,大约是其重量(以克为单位)的10到40倍。论文的第一部分对控制测量系统进行了描述。第二部分研究了8.47×25.48×0.34mm和10×37.6×l.67mm两种尺寸的IPMC条纹的动态特性。
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