Tomas Bata University in Zlin, Faculty of Technology, TGM Sq. 275, 762 72 Zlin, Czech Republic.
J Colloid Interface Sci. 2010 Jun 1;346(1):236-40. doi: 10.1016/j.jcis.2010.02.046. Epub 2010 Feb 23.
Electrorheological properties of suspensions are considerably affected by hydrophilicity of suspension particles. As a model material, polyaniline base powder protonated with sulfamic, tartaric, or perfluorooctanesulfonic acids provided particles of various hydrophilicity. The experiments revealed that, in the absence of electric field, due to a good compatibility of hydrophobic polyaniline particles with silicone-oil medium, their interactions were limited and the viscosity of suspension was low. When the electric field was applied, the rigidity of the polarized chain structure of the particles increased and, consequently, viscosity increased as well. In the contrast, the field-off suspension viscosity of highly interacting hydrophilic particles, which are incompatible with the oil, and where particle aggregation may set in, was high especially at low shear rates, and the material had a pseudoplastic character. Then, a relative increase in viscosity due to the polarization of the particles or their clusters in the electric field was much lower than in the former case. Due to a different primary structure of suspension, depending on the particle compatibility with the oil the field-off storage modulus of suspensions of hydrophobic particles was lower than the loss modulus, while in suspensions of hydrophilic particles the former modulus dominated. In both cases, an increase in elasticity with increasing electric field strength was higher than that in viscosity.
悬浮液的电流变性能受悬浮粒子亲水性的影响很大。作为模型材料,用氨基磺酸、酒石酸或全氟辛烷磺酸质子化的聚苯胺基粉末提供了各种亲水性的粒子。实验表明,在没有电场的情况下,由于疏水性聚苯胺粒子与硅油介质良好的相容性,它们之间的相互作用有限,悬浮液的粘度较低。当施加电场时,粒子极化链结构的刚性增加,因此粘度也增加。相比之下,高度相互作用的亲水粒子的场下悬浮液粘度较高,这些粒子与油不兼容,可能会发生粒子聚集,尤其是在低剪切速率下,这种材料具有假塑性。然后,由于粒子或其在电场中的聚集体的极化,相对于前者,粘度的相对增加要低得多。由于悬浮液的结构不同,取决于粒子与油的相容性,疏水性粒子悬浮液的场下储能模量低于损耗模量,而在亲水性粒子悬浮液中,前者的模量占主导地位。在这两种情况下,随着电场强度的增加,弹性的增加高于粘度的增加。