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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Simulation of the formation of nonequilibrium structures in magnetorheological fluids subject to an external magnetic field
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Simulation of the formation of nonequilibrium structures in magnetorheological fluids subject to an external magnetic field

机译:受到外部磁场影响的磁流变流体中非平衡结构形成的模拟

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We developed a computer model to understand the nonequilibrium structures induced in a magnetorheological (MR) fluid by rapidly applying an external magnetic field. MR fluids consist of particles suspended in a liquid where particles interact through dipole moments induced by the external magnetic field. We have simulated these induced structures in both directions, parallel and perpendicular to the field, in the limit of fastest response, by neglecting thermal motion and applying the field instantaneously. Our results show that the process of structure formation starts with particles forming chains aligned with the external field. The chains then coalesce to form columns and wall-like structures (''worms'' as viewed from the top). The complexity of this pattern is found to depend on the concentration of particles and the confinement of the cell in the direction of the external field. These results are consistent with experimental observations [G.A. Flores et al., in Proceedings of the Fifth International Conference on ER Fluids, MR Suspensions, and Associated Technology, University of Sheffield, Sheffield, July 1995, edited by W. Bullough (World Scientific, Singapore, 1996), p. 140]. We have also used this model to study the interaction of two chains. The results of this study help in the understanding of the connection between the thickness of the sample and the increased complexity of the observed lateral pattern.
机译:我们开发了一种计算机模型,以了解通过快速施加外部磁场在磁流变(MR)流体中感应的非平衡结构。 MR流体由悬浮在液体中的颗粒组成,其中颗粒通过外部磁场感应的偶极矩相互作用。我们通过忽略热运动并立即施加磁场,在最快响应的范围内模拟了平行于和垂直于磁场的两个方向上的感应结构。我们的结果表明,结构形成的过程始于与外部场对齐的形成链的颗粒。然后,这些链聚结形成柱子和类似墙壁的结构(从顶部看为“蠕虫”)。发现这种图案的复杂性取决于颗粒的浓度和细胞在外场方向上的约束。这些结果与实验观察结果一致。 Flores等人于1995年7月在谢菲尔德大学举行的第五届ER流体,MR悬浮液和相关技术国际会议论文集,由W. Bullough编辑(新加坡,世界科学,1996年),第1页。 140]。我们还使用此模型来研究两条链的相互作用。这项研究的结果有助于理解样品的厚度与观察到的横向图案的复杂性之间的联系。

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