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Quasi-2D Monte Carlo simulations of the regime change in the aggregates of magnetic cubic particles on a material surface

机译:准2D蒙特卡罗模拟材料表面上磁立方粒子聚集体的变化

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摘要

We have investigated the aggregate structure of a suspension composed of magnetic particles with a cubic geometry by means of Monte Carlo simulations. From the viewpoint of application to the technology of surface modification, we have considered a quasi-two-dimensional suspension in thermodynamic equilibrium. As themagnetic interaction strength is increased, the effects of the thermal energy are reduced and the particles tend to aggregate together. These aggregates of cubic particles are not chain-like, but are designated as closely packed clusters. An applied magnetic field tends to enhance the formation of clusters along the field direction but does not significantly regularise the internal structure of the cluster. This is mainly due to the preference of a face-to-face contact configuration for the alignment of particles with cubic geometry. The regime of the internal structure of aggregates has a significant effect on the characteristics of the alignment of the magnetic moments with regard to the external magnetic field direction. Our simulations indicate that larger closely packed clusters are formed with increasing volumetric fraction, whereas the internal structure of the closely packed clusters is not found to be significantly influenced by the change in the volumetric fraction.
机译:我们已经研究了由蒙特卡罗模拟的立方几何构成的磁性颗粒组成的悬浮液的聚集结构。从应用到表面改性技术的角度来看,我们已经考虑了热力学平衡中的准二维悬架。随着术术相互作用强度的增加,热能的影响降低,颗粒倾向于聚集在一起。这些立方体颗粒的聚集体不是链状的,但被称为紧密堆积的簇。施加的磁场倾向于沿着场方向增强簇的形成,但不会显着规范簇的内部结构。这主要是由于面对面接触构造的偏好,用于使颗粒与立方几何形状对准。聚集体内部结构的制度对磁矩对外部磁场方向的对准的特性具有显着影响。我们的模拟表明,随着体积分数的增加,形成较大的紧密堆积的簇,而密切填充的簇的内部结构不会被体积分数的变化显着影响。

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