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The Relative Transient Response of MR Fluids Subjected to Magnetic Fields under Constant Shear Conditions

机译:恒定剪切条件下磁场作用下MR流体的相对瞬态响应

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This paper concerns the transient response of MR fluids and factors that can influence the response performance of the material. In this study, the MR fluid is subjected to a constant shear between two parallel discs, one of which is rotating at a constant speed and the other fixed. When a step current is applied, the closed-loop controller increases the torque delivered to the rotating disc in order to maintain the speed. By examining the transient response of this delivered torque, the relative response time and rise time for the MR fluid can be determined. Results showing the relative response time dependency on five variables, (ⅰ) applied current (from 0.25 A to 2.00 A), (ⅱ) shear rate (from 50 rpm to 300 rpm), (ⅲ) particle volumetric concentration (from 10% to 40%), and (ⅳ) particle properties, are presented. It was found that the rate of shear does not have much influence on the relative response time, but the other four factors can affect the response characteristics quite significantly. For example, the relative response time increases with a decrease in concentration of the material, and using silicone oxide-coated magnetically active particle improves the response of the material.
机译:本文涉及MR流体的瞬态响应以及可能影响材料响应性能的因素。在这项研究中,MR流体在两个平行圆盘之间承受恒定的剪切力,其中一个以恒定速度旋转,另一个固定。当施加阶跃电流时,闭环控制器会增加传递到转盘的扭矩,以保持转速。通过检查此传递扭矩的瞬态响应,可以确定MR流体的相对响应时间和上升时间。结果显示相对响应时间取决于五个变量,(dependency)施加电流(从0.25 A至2.00 A),(ⅱ)剪切速率(从50 rpm至300 rpm),(ⅲ)颗粒体积浓度(从10%至给出了40%的颗粒和(ⅳ)颗粒的性能。发现剪切速率对相对响应时间没有太大的影响,但是其他四个因素可以显着影响响应特性。例如,相对响应时间随着材料浓度的降低而增加,并且使用涂覆有氧化硅的磁活性颗粒改善了材料的响应。

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