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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Electromechanical performance of ionic polymer-metal composite under electrode constraint
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Electromechanical performance of ionic polymer-metal composite under electrode constraint

机译:电极约束下离子聚合物-金属复合材料的机电性能

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摘要

The electro-active performance of ionic polymer-metal composite has been widely reported to be related to the strain caused by the unbalance of local water content. In this paper, the anisotropic strain under electrode constraint in ionic polymer-metal composite during water uptake was investigated. A model was proposed to claim that existence of electrode would lead to anisotropic swelling in ionic polymer-metal composite, and the strain state was significantly affected by the electrode volume proportion as well as the elasticity ratio of the electrode and polymer. Based on Nafion-Pd ionic polymer-metal composite, experiments were carried out to measure the swelling strain during saturation process. Evaluation by the proposed model showed great agreement with the experimental observation, both of which gave the conclusion that, under the surface electrode constraint, strain in the thickness direction was much larger than that in plane directions. At last, based on a formerly-established multi-physical model, it was predicted that for ionic polymer-metal composite, the anisotropy of local swelling can lead to a 10%-15% decrease of the tip displacement.
机译:离子聚合物-金属复合材料的电活性性能已被广泛报道与局部水含量不平衡引起的应变有关。本文研究了离子聚合物-金属复合材料在吸水过程中电极约束下的各向异性应变。提出了一个模型,认为电极的存在会导致离子聚合物-金属复合材料的各向异性溶胀,应变状态受电极体积比例以及电极和聚合物的弹性比的影响很大。以Nafion-Pd离子聚合物-金属复合材料为基础,进行了饱和过程中溶胀应变的测量实验。所提出模型的评估结果与实验观察结果非常吻合,两者均得出结论,在表面电极的约束下,厚度方向的应变远大于平面方向的应变。最后,基于先前建立的多物理模型,可以预测对于离子聚合物-金属复合材料,局部溶胀的各向异性会导致尖端位移降低10%-15%。

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