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The electrorheological performance of polyaniline-based hybrid particles suspensions in silicone oil: influence of the dispersing medium viscosity

机译:硅油中聚苯胺的杂交颗粒悬浮液的电流性能:分散介质粘度的影响

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摘要

The potential of electrorheological (ER) suspensions based on polarizable particles in simple liquids relies on the particles arrangements which turn their quasi Newtonian behavior into gel-like. However, minor attention has been paid to the effect provoked by the liquid viscosity on the ease of orientation and assembly of the particles. With this aim, a study on the ER behavior, at 25 degrees C, of 1 wt% suspensions of polyaniline (PANI)-based hybrid particles (-graphene or -tungstene oxide) in silicone oil with varying viscosities (20, 50 and 100 cSt) was carried out. The electric field effect was higher for the PANI-graphene particles suspension in the less viscous silicone oil. However, two drawbacks were observed: (a) higher leakage current flows; and (b) reduced reversibility upon the electric field was turned off. The use of silicone oil with higher viscosity solved these issues.
机译:基于简单液体中的可极化颗粒的电流(ER)悬浮液的电位依赖于颗粒布置,使其准牛顿行为转变为凝胶状。 然而,次要注意的是通过液体粘度引起的效果对颗粒的易于取向和组装的效果来支付。 通过这种目标,在硅油中,在25℃下,在25℃下,在25摄氏度的杂交颗粒(-Craphene或-tungse氧化物)中的25℃的研究(20,50和100 CST)进行了。 对于较低粘性硅油悬浮液悬浮液的电场效应较高。 但是,观察到两个缺点:(a)较高的漏电流流动; (b)在电场关闭时降低可逆性。 使用具有较高粘度的硅油解决了这些问题。

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