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Improved IPMC Sensing By Use Of Cation Through Induced Nano-to-Micro Scale Surface Cracks

机译:通过使用阳离子和通过诱导的纳米级到微米级表面裂纹来改善IPMC传感

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Ionic Polymer Metal Composite (IPMC) is a nano-scale metal deposited ionic polymer and may be used as soft actuator and sensor. Numerous researches have been conducted to study IPMC as actuator. Many other applications like energy harvesting, impact sensing and velocity sensing use IPMC as a sensor, thus making it necessary to understand sensing nature of IPMC. It has been demonstrated that production of charge under the influence of mechanical deformation in IPMC, is a combined effect of chemical, mechanical and electrical response which may be affected by nature of existing cation and, conductivity and morphology of electrodes. This paper presents a comparison between the sensing behavior of IPMC under the influence of different cations like Li~+, Na~+ and FT. In addition, experiments were also performed to study the effect of nano-to-micro scale surface cracks in IPMC. It was also discovered that inducing nano-to-micro scale surface cracks in IPMC improves the sensing characteristics of IPMC. Experiments were also performed to compare the effect of electrode surface morphology and conductivity on sensing performance of IPMC. These effects were also compared for energy harvesting applications of IPMC.
机译:离子聚合物金属复合材料(IPMC)是一种纳米级金属沉积的离子聚合物,可以用作软致动器和传感器。已经进行了许多研究来研究IPMC作为致动器。能量收集,冲击感测和速度感测等许多其他应用程序都将IPMC用作传感器,因此有必要了解IPMC的感测性质。已经证明,在IPMC中机械变形的影响下产生的电荷是化学,机械和电响应的组合效应,其可能受到现有阳离子的性质以及电极的电导率和形态的影响。本文比较了Li〜+,Na〜+和FT等阳离子对IPMC传感行为的影响。此外,还进行了实验以研究IPMC中纳米至微米级表面裂纹的影响。还发现在IPMC中引起纳米级至微米级的表面裂纹可改善IPMC的感测特性。还进行了实验以比较电极表面形态和电导率对IPMC传感性能的影响。还对IPMC的能量收集应用比较了这些影响。

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