首页> 外文会议>Conference on modeling, signal processing, and control for smart structures; 20090311-12; San Diego, CA(US) >Modeling of actuation and ion migration behavior in Electo-Active Paper actuator
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Modeling of actuation and ion migration behavior in Electo-Active Paper actuator

机译:电动电纸致动器的致动和离子迁移行为建模

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Actuation mechanism of chitosan-blended cellulose (CBC) electro-active paper (EAPap) bending actuator was studied using a theoretical model and experimental data. The model of bending displacement of EAPap is combined ion traveling model with multi-layer cantilever beam model. Also, the result of the model is compared with experimental data. From this model, we can predict actuation behavior as well as redistribution of ions inside of CBC EAPap under different humidity levels and electric fields. Therefore, the actuation model of EAPap can be applied to investigate the electro-mechanical actuation behavior of EAPap devices such like artificial muscles, micro robots and other various actuators.
机译:利用理论模型和实验数据研究了壳聚糖混合纤维素(CBC)电活性纸(EAPap)弯曲致动器的致动机理。 EAPap的弯曲位移模型是离子传播模型和多层悬臂梁模型的组合。此外,将模型的结果与实验数据进行比较。通过此模型,我们可以预测在不同湿度和电场下CBC EAPap内部离子的驱动行为以及离子的重新分布。因此,可以将EAPap的驱动模型应用于研究EAPap设备(如人造肌肉,微型机器人和其他各种执行器)的机电驱动行为。

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