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On the theory of magnetoviscous effect in magnetorheological suspensions

机译:关于磁流变悬浮液中磁粘效应的理论

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A theoretical model of magnetoviscous effect in a suspension of nonBrownian linearly magnetizable particles is suggested. A simple shear flow in the presence of an external magnetic field aligned with the velocity gradient is considered. Under the action of the applied field, the particles are supposed to form dense highly elongated droplike aggregates. Two different scenarios of the aggregates' destruction under shearing forces are considered, namely, a "bulk" destruction of aggregates into pieces and an "erosive" destruction connected to the rupture of individual particles from the aggregate surface. Both models are based on a balance of forces acting either on the whole aggregate or on individual particles. The two approaches lead to qualitatively different Mason number (Ma) behaviors of the magnetic suspensions: The suspension viscosity scales as either Ma(-2/3) for the bulk destruction of aggregates or Ma(-4/5) for the erosive destruction. In any case, we do not recover Bingham behavior (Ma(-1)) often predicted by chain models of the magneto- or electrorheology. Our theoretical results are discussed in view of comparison with existing theories and experimental results in the wide range of Mason numbers. (C) 2014 The Society of Rheology.
机译:提出了非布朗线性可磁化颗粒悬浮液中磁粘性效应的理论模型。考虑在存在与速度梯度一致的外部磁场的情况下的简单剪切流。在外加磁场的作用下,颗粒应形成致密的高度伸长的液滴状聚集体。考虑了在剪切力作用下聚集体破坏的两种不同情况,即聚集体“散装”破坏成碎片和与单个颗粒从聚集体表面破裂相关的“侵蚀性”破坏。两种模型都基于作用在整个聚集体或单个颗粒上的力的平衡。两种方法导致磁悬浮液的质子数在质量上有所不同:悬浮液的粘度对聚集体的整体破坏为Ma(-2/3),对侵蚀性破坏为Ma(-4/5)。在任何情况下,我们都无法恢复通常由磁流变或电流变学链模型预测的宾厄姆行为(Ma(-1))。我们将在广泛的梅森数范围内与现有理论和实验结果进行比较,以讨论我们的理论结果。 (C)2014流变学学会。

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