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首页> 外文期刊>Journal of Rheology >A jamming-like mechanism of yield-stress increase caused by addition of nonmagnetizable particles to magnetorheological suspensions
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A jamming-like mechanism of yield-stress increase caused by addition of nonmagnetizable particles to magnetorheological suspensions

机译:通过向磁流变悬浮液添加非可磁化颗粒引起的屈服应力增加的干扰机制

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摘要

Particle-level simulations are employed to investigate the mechanism by which nonmagnetizable particles enhance the field-induced shear stress in magnetorheological fluids. Large amplitude oscillatory shear reveals that nonmagnetizable spheres increase the suspension stiffness; the transition to nonlinear deformation remains unaffected suggesting that the nonmagnetizable spheres do not alter the stability of the clusters of magnetizable spheres. Snapshots reveal that nonmagnetizable spheres participate in stress transfer via repulsive-force clusters in a mechanism similar to jamming in hard-sphere suspensions. Partial stresses, number of repulsive-force clusters, and transient rheological behavior further support that nonmagnetizable spheres directly enhance the stress via repulsive-force clusters. The repulsive-force clusters contain both magnetizable and nonmagnetizable spheres, which likely explains the observation that nonmagnetizable spheres enhance the magnetic field-induced stress, even though they are not magnetizable. (C) 2017 The Society of Rheology.
机译:采用颗粒级模拟来研究非可磁化颗粒在磁流变液中提高现场感应剪切应力的机制。大振幅振荡剪切显示,不可磁通的球体增加了悬浮刚度;向非线性变形的过渡仍未受到影响,表明非可磁性球体不会改变可磁化球体簇的稳定性。快照揭示了不可磁的球体通过在类似于硬球悬浮液中的干扰的机制中通过排斥力簇参与应力传递。部分应力,排斥力簇的数量,以及瞬态流变行为进一步支持,不可磁性球体通过排斥力簇直接增强应力。排斥力簇包含可磁化和不可磁化的球体,这可能解释了不可磁场球增强磁场引起的应力的观察,即使它们不是磁化的。 (c)2017年流变学会。

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