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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Nonequilibrium Brownian dynamics analysis of negative viscosity induced in a magnetic fluid subjected to both ac magnetic and shear flow fields - art. no. 061508
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Nonequilibrium Brownian dynamics analysis of negative viscosity induced in a magnetic fluid subjected to both ac magnetic and shear flow fields - art. no. 061508

机译:交流磁场和剪切流场共同作用下的磁流体中引起的负粘度的非平衡布朗动力学分析-艺术。没有。 061508

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摘要

We study the rheological and magnetic characteristics of a magnetic fluid. The system, which we investigate, is as follows. Ferromagnetic particles are dispersed in a solvent, which is subjected to both ac magnetic and shear flow fields. The translational and rotational motions of particles are calculated by the Brownian dynamics method based on Langevin equations and the rheological and magnetic characteristics of the magnetic fluid system are estimated. First, we investigate the rheological and magnetic characteristics of the system in a dc magnetic field and then we analyze the effect of an ac magnetic field on those characteristics. We find that the negative viscosity effect is induced at a certain frequency range of the ac magnetic field. We also find that there are two main mechanisms responsible for the occurrence of negative viscosity. (1) Resonance between the rotational motions of the dipoles of particles and the fluctuation of ac magnetic fields occurs when applied magnetic fields are weak compared to the shear rate, in which case particles can still rotate in magnetic fields. Beyond this resonance frequency, negative viscosity appears. (2) The magnetic dipole moments of particles are forced to stay in the direction of the magnetic field when strong magnetic fields are applied in relatively low shear flow fields. However, negative viscosity occurs when the frequency of external magnetic fields exceeds a critical value, in which case the dipoles rotate continuously in a shear flow without stopping. In both cases, the mean angular velocity of the particles becomes higher than that of the solvent. [References: 22]
机译:我们研究磁性流体的流变和磁性特征。我们研究的系统如下。铁磁颗粒分散在溶剂中,该溶剂同时受到交流磁场和剪切流场的影响。基于朗文方程,通过布朗动力学方法计算了粒子的平移和旋转运动,并估算了磁流体系统的流变和磁学特性。首先,我们研究系统在直流磁场中的流变和磁特性,然后分析交流磁场对这些特性的影响。我们发现,在交流磁场的某个频率范围内会产生负粘度效应。我们还发现,造成负粘度的原因主要有两种。 (1)当施加的磁场相对于剪切速率较弱时,粒子的偶极子的旋转运动与交流磁场的波动之间会发生共振,在这种情况下,粒子仍然可以在磁场中旋转。超过该共振频率,出现负粘度。 (2)当在相对较低的剪切流场中施加强磁场时,粒子的磁偶极矩被迫停留在磁场方向上。但是,当外部磁场的频率超过临界值时,会出现负粘度,在这种情况下,偶极子在剪切流中连续旋转而不会停止。在这两种情况下,颗粒的平均角速度都高于溶剂的平均角速度。 [参考:22]

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