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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >The effect of dielectric properties on the electrorheology of suspensions of silica particles coated with polyaniline
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The effect of dielectric properties on the electrorheology of suspensions of silica particles coated with polyaniline

机译:介电特性对涂有聚苯胺的二氧化硅颗粒悬浮液的流变学的影响

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The flow behaviour of silicone-oil suspensions of five types of silica particles coated with a polyaniline base in a DC electric field has been linked to their dielectric properties. The relaxation frequencies corresponding to the position of the dielectric-loss maxima in the frequency spectra identify the interfacial polarization of suspension particles as a controlling factor for a strong electrorheological effect. The yield stresses of suspensions under the influence of electric field and critical shear rates, at which the chains of polarized particles were broken by shear forces, is correlated with the difference between the limit values of dielectric constants above and below the relaxation frequency. The analysis of particle dipole coefficient beta showed that particle polarizability is the main factor affecting rigidity of the electrorheological structure. In contrast with this, particle shape and size, controlling the field-off suspension viscosity, become unimportant after the electric field has been applied. The plots of the relative viscosity of studied suspensions vs. Mason number characterizing the relation between shear and polarization forces have been discussed. While the results obtained at different shear rates and field strengths were reduced to a single dependence, for various particle suspensions these dependences differed. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 20]
机译:五种类型的涂有聚苯胺碱的二氧化硅颗粒的硅油悬浮液在直流电场中的流动行为与它们的介电性能有关。对应于频谱中介电损耗最大值的位置的弛豫频率将悬浮粒子的界面极化确定为强电流变效应的控制因素。悬浮液在电场和临界剪切速率的作用下的屈服应力与在剪切频率之上和之下的介电常数极限值之差相关,在临界剪切率下,极化颗粒的链被剪切力破坏。粒子偶极系数β的分析表明,粒子极化率是影响电流变结构刚度的主要因素。与此相反,在施加电场之后,控制场外悬浮液粘度的颗粒形状和尺寸变得不重要。讨论了研究悬浮液的相对粘度与梅森数的关系曲线,该曲线表征了剪切力和极化力之间的关系。尽管在不同的剪切速率和场强下获得的结果减少到单个相关性,但是对于各种颗粒悬浮液,这些相关性却不同。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:20]

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