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Influence of the magnetic interaction among particles on distributions of magnetic fluids using computer Simulations

机译:粒子磁性相互作用对磁流体分布的影响使用计算机模拟

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Magnetic fluid is a stable colloidal dispersion of ferromagnetic particles in a liquid carrier. Once a magnetic field is applied to magnetic fluids (MF), various structures of MF are formed. A detailed understanding of structures and particle distributions in gradient magnetic fields is much important. But very few works have been done on this. In the present study, the effects of magnetic field gradient and magnetic interaction among magnetic particles on the structures of MF are investigated using a two-dimensional Monte Carlo simulation. The results show that a gradient distribution of magnetic particles is formed under gradient magnetic fields. However, as the interaction between magnetic particles increases, the distribution gradient decreases, accompanied by the formation of chain-like clusters. Moreover, with increasing the magnetic interaction, particle distribution changes from grass-like clusters to needle-like ones.
机译:磁性流体是液体载体中铁磁性颗粒的稳定胶体分散体。一旦将磁场施加到磁性流体(MF),形成了MF的各种结构。详细了解梯度磁场中的结构和粒子分布非常重要。但很少有效已经完成了这一点。在本研究中,使用二维蒙特卡罗模拟研究了磁性颗粒对MF结构的磁场梯度和磁性相互作用的影响。结果表明,在梯度磁场下形成磁性颗粒的梯度分布。然而,随着磁性颗粒之间的相互作用增加,分布梯度降低,伴随着链状簇的形成。此外,随着磁性相互作用的增加,颗粒分布从草地簇变为针状簇。

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