Behavior of magnetic systems of different dimensions in a magnetic field

E. Shel'deshova, E. V. Bondar, I. A. Shabanova, A. Churaev, E. A. Sokolov, K. A. Matarykin, P. Ryapolov
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Abstract

   Purpose. To investigate the influence of the magnetic field on the formation of structures in magnetic media of various dispersities.   Methods. Experiments to study the dynamics of magnetic inclusions were carried out on a self-made installation in flat transparent cells by microscopy. The magnetic field was created by an electromagnet FL-1 connected to a power source. Magnetite particles of various sizes, as well as metal balls with a diameter of 0.5 mm, were studied as a magnetic medium. Video recording was performed using a MICMED WiFi 2000X 5.0 microscope.   Results. The dynamics of magnetic inclusions in a viscous liquid medium under the influence of a magnetic field, as well as under conditions of mechanical shear effects, have been studied. The influence of the magnetic field strength on the growth rate of chain structures, as well as on the angle of deflection under shear action, has been studied. A theoretical interpretation of the observed phenomena is proposed.   Conclusion. During the experiment, it was found that under the influence of a magnetic field, magnetic inclusions form chain structures. Their size, growth rate and dynamics depend on the physical parameters of the system and the external magnetic field. An intensive increase in the formation of chains of magnetic inclusions was detected at low and medium values of the magnetic field strength. An experimental dependence of the angle of deviation of chain structures from the equilibrium position on the magnetic field strength is obtained, which correlates with known theoretical data, on the basis of which a computational model is proposed. The results of the study can be used to visualize numerical calculations of the dynamics of dispersed systems under external influences.
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不同尺寸的磁性系统在磁场中的行为
研究目的研究磁场对不同分散度磁性介质中结构形成的影响。 方法。通过显微镜在自制的扁平透明细胞装置上进行了研究磁性夹杂物动态的实验。磁场由连接电源的电磁铁 FL-1 产生。研究将不同大小的磁铁矿颗粒以及直径为 0.5 毫米的金属球作为磁性介质。使用 MICMED WiFi 2000X 5.0 显微镜进行视频记录。 研究结果研究了粘性液体介质中的磁性夹杂物在磁场影响下以及机械剪切效应条件下的动态。研究了磁场强度对链结构增长速度以及剪切作用下偏转角度的影响。对观察到的现象提出了理论解释。 结论在实验过程中发现,在磁场的影响下,磁性夹杂物会形成链状结构。它们的大小、生长速度和动态取决于系统的物理参数和外部磁场。在低磁场强度和中等磁场强度下,磁性夹杂物链的形成会显著增加。实验得出了磁链结构偏离平衡位置的角度与磁场强度的关系,这与已知的理论数据相关,并在此基础上提出了一个计算模型。研究结果可用于分散系统在外部影响下动态的可视化数值计算。
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