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Stick-slip behavior of magnetorheological fluids in simple linear shearing mode

机译:简单线性剪切模式下磁流变液的粘滑行为

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The stick-slip motion of magnetorheological (MR) fluids under a simple linear shear mode has been experimentally reported. The critical shear strain for the onset of the stick-slip motion decreases logarithmically with the magnetic flux intensity applied. The rate of energy accumulation and releasing during stick-slip motion changed in a power law of the viscosity of the continuous phase in a range of 0.01 similar to 1000 mPa S. Different carrier fluids led to different stick-slip characteristics. The stick-slip motion can be fully suppressed with certain carrier fluids. When the MR fluids are in a shear-thickening state, the critical shear strain of the onset of the stick-slip motion is larger than a normal state. But, the relative spike amplitude of the stick-slip remains similar.
机译:磁流变(MR)流体在简单的线性剪切模式下的粘滑运动已通过实验报道。粘滑运动开始时的临界剪切应变与所施加的磁通强度成对数减小。粘滑运动过程中能量的积累和释放速率在连续相粘度的幂律中在类似于1000 mPa S的0.01范围内变化。不同的载液导致不同的粘滑特性。某些载液可以完全抑制粘滑运动。当MR流体处于剪切增稠状态时,粘滑运动开始时的临界剪切应变大于正常状态。但是,粘滑的相对尖峰幅度保持相似。

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