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Fabrication and Characterization of a Micromachined Swirl-Shaped Ionic Polymer Metal Composite Actuator with Electrodes Exhibiting Asymmetric Resistance

机译:具有不对称电阻电极的微加工旋流形离子聚合物金属复合执行器的制作与表征

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摘要

This paper presents a swirl-shaped microfeatured ionic polymer-metal composite (IPMC) actuator. A novel micromachining process was developed to fabricate an array of IPMC actuators on a glass substrate and to ensure that no shortcircuits occur between the electrodes of the actuator. We demonstrated a microfluidic scheme in which surface tension was used to construct swirl-shaped planar IPMC devices of microfeature size and investigated the flow velocity of Nafion solutions, which formed the backbone polymer of the actuator, within the microchannel. The unique fabrication process yielded top and bottom electrodes that exhibited asymmetric surface resistance. A tool for measuring surface resistance was developed and used to characterize the resistances of the electrodes for the fabricated IPMC device. The actuator, which featured asymmetric electrode resistance, caused a nonzero-bias current when the device was driven using a zero-bias square wave, and we propose a circuit model to describe this phenomenon. Moreover, we discovered and characterized a bending and rotating motion when the IPMC actuator was driven using a square wave. We observed a strain rate of 14.6% and a displacement of 700 μm in the direction perpendicular to the electrode surfaces during 4.5-V actuation.
机译:本文介绍了一种涡流形微特征离子聚合物金属复合材料(IPMC)促动器。开发了一种新颖的微加工工艺,以在玻璃基板上制造IPMC致动器阵列,并确保致动器电极之间不会发生短路。我们展示了一种微流体方案,其中表面张力用于构造具有微特征尺寸的漩涡状平面IPMC装置,并研究了在微通道内形成致动器主链聚合物的Nafion溶液的流速。独特的制造工艺产生了具有不对称表面电阻的顶部和底部电极。开发了一种用于测量表面电阻的工具,并将其用于表征所制造的IPMC器件的电极电阻。该执行器具有不对称的电极电阻,当使用零偏方波驱动该设备时会产生非零偏电流,因此我们提出了一种电路模型来描述这种现象。此外,我们发现并表征了使用方波驱动IPMC执行器时的弯曲和旋转运动。我们观察到在4.5V激励期间垂直于电极表面的方向的应变率为14.6%,位移为700μm。

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