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Brownian dynamics simulations with spin Brownian motion on the negative magneto-rheological effect of a rod-like hematite particle suspension

机译:自旋布朗运动对棒状赤铁矿颗粒悬浮液负磁流变效应的布朗动力学模拟

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We have investigated the behaviour of a suspension of magnetic rod-like hematite particles in a simple shear flow with the addition of an applied magnetic field. A significant feature of the present hematite particle suspension is the fact that the magnetic moment of the hematite particle lies normal to the particle-axis direction. From simulations, we have attempted to clarify the dependence of the negative magneto-rheological effect on the particle aggregation and orientational distribution of particles. The present Brownian dynamics method has a significant advantage in that it takes into account the spin rotational Brownian motion about the particle axis in addition to the ordinary translational and rotational Brownian motion. The net viscosity is decomposed into three components and discussed at a deeper level and in detail: these three viscosity components arise from (1) the torque due to the magnetic particle-field interaction, (2) the torque and (3) the force due to the interaction between particles. It is found that a slight change in the orientational distribution has a significant influence on the negative magneto-rheological effect. In a relatively dense suspension, the viscosity components arising from an applied magnetic field and the interaction between particles come to change rapidly for a certain strength of the magnetic particle-particle interaction, which is due to the onset of the formation of raft-like clusters.
机译:我们已经研究了磁棒状赤铁矿颗粒在施加剪切磁场的情况下在简单剪切流中的悬浮行为。本赤铁矿颗粒悬浮液的显着特征是赤铁矿颗粒的磁矩垂直于颗粒轴方向的事实。通过模拟,我们试图阐明负磁流变效应对颗粒聚集和颗粒定向分布的依赖性。当前的布朗动力学方法具有显着的优点,因为除了普通的平移和旋转布朗运动之外,它还考虑了围绕粒子轴的自旋旋转布朗运动。净粘度被分解为三个成分,并在更深层次上进行了详细讨论:这三个粘度成分来自(1)由于磁粒子-场相互作用而产生的转矩,(2)转矩和(3)产生的力粒子之间的相互作用。发现取向分布的轻微变化对负磁流变效应具有显着影响。在相对致密的悬浮液中,由于一定的磁性粒子-粒子相互作用强度,由施加的磁场和粒子之间的相互作用引起的粘度成分会迅速变化,这是由于形成了筏状团簇所致。

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