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Multi-Walled Carbon Nanotubes (MWCNT) as Compliant Electrodes for Dielectric Elastomer Actuators

机译:多壁碳纳米管(MWCNT)作为介电弹性体致动器的兼容电极

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A stacked dielectric elastomer actuator (DEA) consists of multiple layers of elastomeric dielectrics interleaved with compliant electrodes. It is capable of taking a tensile load if only the interleaving compliant electrodes provide a good bonding and enough elasticity. However, the stacked configuration of DEA was found to produce less actuation strain as compared to a single-layer configuration of pre-stretched membrane. It is believed the binder for compliant electrodes has a significant influence on the actuation strain. Yet, there has yet systematic study on the effect of binder. In this paper, we will study the effects of binder, solvent, and surface fictionalization on the compliant electrodes using the conductive filler of Multi-Walled Carbon Nanotube (MWCNT). Two types of binders are used, namely a soft silicone rubber (Mold Max 10T) and a soft silicone gel (Sylgard 527 gel). The present experiments show that the actuators using binders in the compliant electrodes produce a much lower areal strain as compared to the ones without binders in them. It is found that introducing a binder in the electrodes decreases the conductivity. The MWCNT compliant electrode with binder remains conductive (<1TΩ) up to a strain of 300%, whereas the one without binder remains conductive up to a strain of 800%. Changing the type of binder to a softer and less-viscous one increases the percolation ratio for MWCNT-COOH filler from 5% to 15% but this does not significantly increase the actuation strain. In addition, this study investigates the effect of MWCNT functionalization on the dielectric elastomeric actuation. The compliant electrodes using the MWCNT functionalized with (-COOH) group was also found to have a lower electrical conductivity and areal actuation strain, in comparison to the ones using the pristine MWCNT filler. In addition to binder, solvent for dispersing MWCNT-COOH was found to affect the actuation strain even though the solvent is eventually removed by evaporation from the MWCNT-COOH electrode. The actuators with MWCNT-COOHs electrodes, prepared from the solvent dispersion, produce a low actuation strain even though these electrodes have good conductivity and these solvents do not degrade the physical properties of the dielectric layer. This finding on the solvent effect has yet been clearly understood.
机译:堆叠式介电弹性体致动器(DEA)由多层弹性体介电层与顺应性电极交错而成。如果仅交错的顺从电极提供良好的结合和足够的弹性,则它能够承受拉伸载荷。然而,发现DEA的堆叠构造与预拉伸膜的单层构造相比产生较小的致动应变。据信用于顺应性电极的粘合剂对致动应变具有显着影响。然而,关于粘合剂的作用还没有系统的研究。在本文中,我们将研究使用多孔碳纳米管(MWCNT)的导电填料对粘合剂,溶剂和表面虚拟化对顺应性电极的影响。使用两种类型的粘合剂,即软硅橡胶(Mold Max 10T)和软硅凝胶(Sylgard 527凝胶)。本实验表明,与在其中没有粘合剂的致动器相比,在柔性电极中使用粘合剂的致动器产生的面应变要低得多。发现在电极中引入粘合剂会降低导电性。带有粘合剂的MWCNT顺应电极保持导电(<1TΩ)直至300%的应变,而没有粘合剂的电极保持导电高达800%的应变。将粘合剂的类型更改为较软且粘度较低的粘合剂会使MWCNT-COOH填料的渗透率从5%增至15%,但这不会显着增加驱动应变。此外,本研究调查了MWCNT功能化对介电弹性体驱动的影响。与使用原始MWCNT填料的电极相比,还发现使用被(-COOH)基团官能化的MWCNT的柔性电极具有较低的电导率和面激励应变。除了粘合剂之外,发现用于分散MWCNT-COOH的溶剂也会影响驱动应变,即使最终通过蒸发将溶剂从MWCNT-COOH电极上除去也是如此。由这些溶剂分散液制成的带有MWCNT-COOHs电极的执行器,即使这些电极具有良好的电导率且这些溶剂不会降低介电层的物理性能,其产生的驱动应变也较低。关于溶剂作用的发现尚未清楚地理解。

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