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A novel fabrication of ionic polymer-metal composites (IPMC) actuator with silver nano-powders

机译:具有银纳米粉的离子聚合物-金属复合材料(IPMC)执行器的新型制造

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摘要

This article reports a novel approach of applying silver nano-powders to the fabrication of ionic polymer-metal composites (IPMC) actuator with good adhesion between the metal electrodes and polymer membrane without surface roughening pretreatment at low cost, high repeatability and short processing time. Micro-fabrication technologies are used for this IPMC actuator fabrication including the dissolving and casting of silver nano-particles (35 nm) in Nafion~® diluted solution, followed embossing, nontoxic electroless plating of silver, and microelectroforming of nickel. This IPMC actuator exhibits large deformation of bending curvature angle of more than 90° at lower driving voltage of 3 V. The frequency response of displacement with applied AC voltage of 2 V at 1 Hz results in a regular periodic deformations of the IPMC actuator. The elasticity modulus of the IPMC actuator can be reduced using an Ag-Nafion electrode for larger deformation than a pure Ag metal electrode. The electronic active polymer, IPMC, could be potentially used as the actuator of the active guide-wire, effective biomimetic sensor and artificial muscles.
机译:本文报道了一种新颖的方法,该方法将银纳米粉应用于离子聚合物-金属复合材料(IPMC)致动器的制造中,该致动器在金属电极和聚合物膜之间具有良好的附着力,而无需进行表面粗糙化预处理,且成本低,重复性高且处理时间短。 IPMC执行器的制造采用了微细加工技术,包括将银纳米颗粒(35 nm)溶解和浇铸在Nafion?®稀释溶液中,然后进行压印,无毒的化学镀银和微电铸镍。该IPMC执行器在3 V的较低驱动电压下表现出大于90°的弯曲曲率角大变形。施加1 V的2 V AC电压时,位移的频率响应导致IPMC执行器有规律的周期性变形。可以使用Ag-Nafion电极降低IPMC致动器的弹性模量,以实现比纯Ag金属电极更大的变形。电子活性聚合物IPMC可以潜在地用作主动导丝,有效仿生传感器和人造肌肉的致动器。

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