首页> 外文会议>Conference on Electroactive Polymer Actuators and Devices(EAPAD); 20040315-20040318; San Diego,CA; US >Verification of Micromechanical Models of Actuation of Ionic Polymer-metal Composites (IPMCs)
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Verification of Micromechanical Models of Actuation of Ionic Polymer-metal Composites (IPMCs)

机译:离子聚合物-金属复合材料(IPMC)驱动的微力学模型的验证

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Ionic Polymer-metal Composites (IPMCs) are soft actuators and sensors. They generally consist of a thin perfluorinated ionomer membrane, metal electrodes plated on both faces, and are neutralized with certain counter cations, balancing the charge of the anions covalently fixed to the membrane. Under a suddenly applied step function (1 to 3 V), the IPMC in alkali-metal cation forms exhibits a fast bending motion towards the anode, followed by a slow relaxation. For Nafion-based IPMCs, this slow relaxation is towards the cathode, whereas for Flemion-based IPMCs, the slow relaxation continues the initial fast motion towards the anode. IPMC samples in sulfonic forms having sodium as cations are prepared, their electromechanical properties are characterized, and their actuation responses to various electric stimuli are investigated. Results show that for Nafion-based IPMCs, initial motion towards the anode can be ultimately eliminated by applying a slowly increasing potential, due to very slow charge accumulation and extensive cation redistribution within a boundary layer near the cathode electrode.
机译:离子聚合物金属复合材料(IPMC)是软致动器和传感器。它们通常由薄的全氟化离聚物膜,镀在两面上的金属电极组成,并用某些抗衡阳离子中和,以平衡共价固定在膜上的阴离子的电荷。在突然施加的阶跃函数(1至3 V)下,碱金属阳离子形式的IPMC向阳极呈现出快速的弯曲运动,然后缓慢地松弛。对于基于Nafion的IPMC,这种缓慢的松弛是朝着阴极,而对于基于Flemion的IPMC,这种缓慢的松弛会继续向阳极的初始快速运动。制备具有钠作为阳离子的磺酸盐形式的IPMC样品,表征其机电性能,并研究其对各种电刺激的响应。结果表明,对于基于Nafion的IPMC,由于非常缓慢的电荷积累和靠近阴极电极的边界层中广泛的阳离子再分布,最终可以通过施加缓慢增加的电位来消除向阳极的初始运动。

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