首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Er properties and flow-induced microstructures of an ER fluid between two parallel disk electrodes in squeeze flow mode
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Er properties and flow-induced microstructures of an ER fluid between two parallel disk electrodes in squeeze flow mode

机译:挤压流动模式下两个平行圆盘电极之间的ER流体的Er性质和流致微观结构

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摘要

When an electrorheological fluid between two parallel disk electrodes is subjected to squeeze mode excitation, the microstructural flow behavior of the ER fluid has been investigated in close relation to the measured electrorheological properties. A dilute anhydrous ER fluid made of 10 vol% carbonaceous particles dispersed in silicone oil and two ITO glass disk electrodes are used to visualize the microstructural flow behavior. The squeeze tests are carried out on a mechanical testing machine in tensile, compression and oscillatory squeeze modes. The ER properties and the associated flow-induced microstructures are measured and visualized for different initial DC electric field strengths and initial gap h(i)=0.5 mm between the electrodes in two different configurations: (a) the fluid is placed only between the electrodes (conf-1) and (b) the two electrodes are immersed in the ERF (conf-2). [References: 10]
机译:当两个平行的圆盘电极之间的电流变流体受到挤压模式激发时,已研究了ER流体的微观结构流动行为,并与测得的电流变特性密切相关。使用由分散在硅油中的10%(体积)碳质颗粒和两个ITO玻璃圆盘电极制成的稀无水ER流体来观察微观结构的流动行为。挤压试验是在机械试验机上以拉伸,压缩和摆动挤压模式进行的。对于两种不同配置的电极之间的不同初始DC电场强度和初始间隙h(i)= 0.5 mm,对ER特性和相关的流动诱发的微结构进行了测量和可视化:(a)仅将流体置于电极之间(conf-1)和(b),两个电极浸入ERF(conf-2)中。 [参考:10]

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