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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >A study on the relation between flow characteristics and cluster formation of electrorheological fluid using visualization
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A study on the relation between flow characteristics and cluster formation of electrorheological fluid using visualization

机译:可视化研究流变流体流动特性与团簇形成的关系

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Electrorheological (ER) fluids show a rapid and reversible increase in viscosity when an electric field is applied. This is called the ER effect. The reason for the ER effect is the induction of an electric dipole in each particle, leading to the formation of clusters in the direction of the field, which resist fluid flow. Generally, the behavior of ER fluids has been modeled on those of Bingham plastics. However, there are some differences between Bingham plastics and ER fluids. The visualization of ER fluids is presented and ER effects of forming, growing, and breaking clusters are discussed. In the low-shear-rate area, the pressure drop is measured by two pressure sensors and the formation of ER particles is recorded with a video camera. The reason for the nonlinear behavior of ER fluids at low shear rate is explained through the results of the recording. As results, the behavior of ER fluids is nonlinear at low shear rate with an overshoot area because the strength of electric field causes clusters to form differently. The gap between electrodes becomes narrow because of the cluster layer occurrence near the electrodes under any conditions. [References: 15]
机译:当施加电场时,电流变(ER)流体的粘度迅速且可逆地增加。这称为ER效应。 ER效应的原因是在每个粒子中感应出一个电偶极子,从而导致在电场方向上形成簇,从而阻止了流体的流动。通常,ER流体的行为已根据Bingham塑料的行为建模。但是,宾厄姆塑料和ER流体之间存在一些差异。介绍了ER流体的可视化,并讨论了形成,生长和破坏团簇的ER效应。在低剪切率区域,通过两个压力传感器测量压降,并用摄像机记录ER颗粒的形成。通过记录结果解释了在低剪切速率下ER流体非线性行为的原因。结果,由于电场强度导致团簇形成不同,因此ER流体的行为在低剪切速率下具有超调区域是非线性的。由于在任何条件下都在电极附近出现簇层,因此电极之间的间隙变窄。 [参考:15]

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