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Effect of Dehydration on the Mechanical and Physicochemical Properties of Gold- and Palladium -Ionomeric Polymer-Metal Composite (IPMC) Actuators

机译:脱水对金和钯-离聚物聚合物-金属复合材料(IPMC)作动器的机械和物理化学性能的影响

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摘要

In this paper, we investigated the effect of dehydration on mechanical and physicochemical properties of Au (Gold) - and Pd (Palladium) -IPMC using water as solvent. By comparison, the difference of the water content of two types of IPMCs mainly depends on the morphology of surface electrodes bonded both sides of IPMC. During the dehydration process, we find that the tip deformation increases at the early stage of actuation, and then they gradually decrease with weight loss of water. And the Au-IPMC generates larger deformation than Pd-IPMC in each stage due to lower resistance of electrode layers, the maximum of which reach up to 17.4 mm and 13.1 mm for long strips with the same free dimensions (35 mm × 5 mm), respectively. Their mechanical and physicochemical parameters, such as stiffness, surface resistance, capacitance and cyclic voltammograms (CVs), were examined as a function of the time, whose increase or decrease are intensely dependent on water content. The specific deformations of IPMCs are decided by combined effects of various parameters.
机译:在本文中,我们研究了脱水对以水为溶剂的Au(金)-和Pd(钯)-IPMC的机械和物理化学性能的影响。相比之下,两种类型IPMC的含水量差异主要取决于IPMC两侧键合的表面电极的形态。在脱水过程中,我们发现尖端变形在驱动的早期阶段增加,然后随着水的重量损失而逐渐减小。由于电极层的电阻较低,Au-IPMC在每个阶段都比Pd-IPMC产生更大的变形,对于相同自由尺寸(35 mm×5 mm)的长条,其最大电阻分别达到17.4 mm和13.1 mm。 , 分别。检验了它们的机械和物理化学参数(例如刚度,表面电阻,电容和循环伏安图(CV))随时间的变化,其增加或减少强烈取决于水含量。 IPMC的具体变形取决于各种参数的综合作用。

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