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首页> 外文期刊>Colloid and polymer science >Structure changes of electrorheological fluids based on poly aniline particles with various hydrophilicities and time dependence of shear stress and conductivity during flow
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Structure changes of electrorheological fluids based on poly aniline particles with various hydrophilicities and time dependence of shear stress and conductivity during flow

机译:基于具有不同亲水性的聚苯胺颗粒的电流变流体的结构变化以及流动过程中剪切应力和电导率的时间依赖性

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摘要

Particles of polyaniline protonated with perfluorooctanesulfonic acid provided a material with hydrophobic surface. This property enabled its perfect dispersion in silicone oil due to its good compatibility with the hydrophobic medium. In contrast, in a suspension of hydrophilic polyaniline particles doped with sulfamic acid, strong interactions of particles prevailed, which led to the formation of entangled chains of aggregated particles in suspension. The difference in structural properties of suspensions exists already in the absence of electric field and significantly influences their electrorheological behavior after application of electric field. The formation of electrorheological structure has been monitored by recording time dependences of the shear stress and the electric current passing through the flowing suspensions.
机译:用全氟辛烷磺酸质子化的聚苯胺颗粒提供具有疏水表面的材料。由于其与疏水介质的良好相容性,该性能使其能够完美分散在硅油中。相反,在掺杂有氨基磺酸的亲水性聚苯胺颗粒的悬浮液中,颗粒之间的强相互作用占主导,这导致在悬浮液中形成聚集颗粒的缠结链。在没有电场的情况下,悬浮液的结构性能差异已经存在,并且在施加电场后会显着影响其电流变特性。通过记录剪切应力和流经悬浮液的电流的时间依赖性,可以监测电流变结构的形成。

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