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Electrorheological Properties of Suspensions Prepared from Polythiophene Conductive Polymer

机译:聚噻吩导电聚合物制备的悬浮液的电流性能

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Electrorheological (ER) fluids are typically composed of polarizable particles dispersed in a non-conducting fluid. Upon the application of an electric field, chain-like or fibrillar aggregates of the suspended particles are oriented along the direction of the electric field, thereby inducing viscoelasticity and a drastic increase in viscosity. In our study, Poly(3-thiophene acetic acid), PTAA, has been developed for using as ER material. The rheological properties of this PTAA suspension upon the application of electric field were investigated under various deformations; oscillatory shear flow, steady shear, and creep. We found that PTAA based ER fluid exhibited viscoelastic behavior and showed the excellent responses under an applied electric field. Moreover, the ER response of this PTAA fluid was amplified with increases in electric field strength, particle concentration, and particle conductivity. Under the oscillatory shear, the dynamic moduli, G' and G", increased dramatically by 10 orders of magnitude, when the field strength was increased to 2 kV/mm. The suspensions exhibited a transition from fluid-like to solid-like behavior as the field strength increased. While under steady shear flow, the yield stress increased with electric field strength, E, and particle volume fraction, Φ, according to a scaling law of the form, τ_y ∝E~αΦ~γ. Furthermore, the creep curves of this ER fluid consisted of both elastic and viscous responses and this fluid exhibits partially elastic recovery after the removal of applied stress. The creep properties strongly depended on the magnitude of an applied stress.
机译:电力学(ER)流体通常由分散在非导电液中的可极化颗粒组成。在施加电场时,悬浮颗粒的链状或纤维状聚集体沿电场的方向定向,从而诱导粘弹性和粘度的急剧增加。在我们的研究中,已开发用于使用作为ER材料的聚(3-噻吩乙酸)PTAA。在各种变形下研究了该PTAA悬浮液对电场的流变性质;振荡剪切流动,稳定剪切和蠕变。我们发现基于PTAA的ER流体表现出粘弹性行为,并在施加的电场下显示出优异的响应。此外,通过电场强度,颗粒浓度和颗粒电导率的增加,扩增该PTAA流体的ER响应。在振荡剪切下,动态模量,G'和G“,当场强增加到2kV / mm时,动态模量,G'和G”增加了10个数量级。悬浮液表现出从流体状的过渡到固体状行为田间强度增加。虽然在稳定的剪切流动下,屈服应力随电场强度而增加,E和颗粒体积分数,φ,φ,根据形式的缩放规律,τ_yαe〜αφ〜γ。此外,蠕变该ER流体的曲线包括弹性和粘性反应,并且该流体在去除施加的应力之后表现出部分弹性恢复。蠕变性质强烈依赖于施加的应力的大小。

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