考虑电极高表面和分数效应的IPMC频率相关多物理场模型

R. Caponetto, V. Luca, S. Graziani, F. Sapuppo, G. Pasquale
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引用次数: 1

摘要

离子聚合物金属复合材料(IPMCs)是一种电活性聚合物,既可以用作传感器,也可以用作致动器。IPMC白盒模型需要几个参数,并不总是可以通过理论方法或实验获得。这项工作通过利用将Nelder-Mead单纯形方法与COMSOL Multiphysics®模型集成在一起的频域模型优化程序来解决这样的问题。采用实验数据和拟合模型模拟进行微观参数辨识。该模型通过包含沿厚度变化的相对介电常数εR来综合高表面积电极的影响。此外,作为对IPMC研究的原创贡献,在白盒模型中发现了分数阶动力学,证实了先前关于IPMC灰盒模型和电活性聚合物器件的研究。该模型显示了与记录数据的一致性,确定了频率响应中的二阶动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IPMC frequency dependent multiphysics model considering electrodes high surface and fractional effects
Ionic Polymer Metal Composites (IPMCs) are electroactive polymers which can be used both as sensors and as actuators. The IPMC white box modelling requires several parameters, not always accessible via theoretical approaches or experimentation. This work addresses such an issue by exploiting a frequency domain model optimization procedure which integrates Nelder-Mead simplex method with the COMSOL Multiphysics® models. It uses experimental data and fitting model simulations for microscopic parameters' identification. The proposed model integrates the effect of the high surface area electrodes by including a varying-along-the-thickness relative permittivity εR. Moreover, as an original contribute to IPMC studies, a fractional order dynamics has been identified in the white-box model, confirming previous studies on IPMC grey box model and on electro-active polymeric devices. The model shows adherence with recorded data, identifying the second order-like dynamics in the frequency response.
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