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The influence of solid-phase concentration on the performance of electrorheological fluids in dynamic squeeze flow

机译:固相浓度对动态挤压流动电流变液性能的影响

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The yield stress of electrorheological (ER) fluids increases by orders of magnitude when electric field is applied across them. In the absence of the field, ER fluids behave as Newtonian fluids. This paper is concerned with an experimental investigation to determine the Theological performance of ER fluids, consisting of a dielectric liquid carrier with a range of solid-phase concentration. The ER fluid was contained in a squeeze cell, which during motion subjects the fluid to both compressive and tensile loading. The results were analysed in terms of the capacity for the transmission of imposed forces across the fluid and showed a great dependence on the applied D.C voltage and the weight fraction of the dispersed solid-phase. In addition, the implications of the results to vibration control, where the ER fluid is employed in an engine mount, are discussed.
机译:当流变(ER)流体施加电场时,屈服应力会增加几个数量级。在没有该领域的情况下,ER流体的行为就像牛顿流体。本文涉及确定ER流体的神学性能的实验研究,该流体由具有一定固相浓度范围的介电液体载体组成。 ER流体包含在挤压室中,挤压室在运动过程中使流体承受压缩和拉伸载荷。根据施加的力在流体中的传递能力对结果进行了分析,结果显示出对所施加的直流电压和分散固相重量分数的极大依赖。此外,还讨论了结果对振动控制的影响,在发动机控制中采用了ER流体的情况。

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