Ivanov Alexey O, Zubarev Andrey
Department of Theoretical and Mathematical Physics, Ural Federal University, Lenin Ave. 51, 620000 Ekaterinburg, Russia.
M.N. Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences, 620990 Ekaterinburg, Russia.
Materials (Basel). 2020 Sep 7;13(18):3956. doi: 10.3390/ma13183956.
Ferrofluids have attracted considerable interest from researchers and engineers due to their rich set of unique physical properties that are valuable for many industrial and biomedical applications. Many phenomena and features of ferrofluids' behavior are determined by internal structural transformations in the ensembles of particles, which occur due to the magnetic interaction between the particles. An applied magnetic field induces formations, such as linear chains and bulk columns, that become elongated along the field. In turn, these structures dramatically change the rheological and other physical properties of these fluids. A deep and clear understanding of the main features and laws of the transformations is necessary for the understanding and explanation of the macroscopic properties and behavior of ferrofluids. In this paper, we present an overview of experimental and theoretical works on the internal transformations in these systems, as well as on the effect of the internal structures on the rheological effects in the fluids.
铁磁流体因其丰富的独特物理特性而吸引了研究人员和工程师的极大兴趣,这些特性对许多工业和生物医学应用都很有价值。铁磁流体行为的许多现象和特征是由颗粒集合体中的内部结构转变决定的,这种转变是由于颗粒之间的磁相互作用而发生的。外加磁场会诱导形成诸如线性链和块状柱等结构,这些结构会沿磁场方向伸长。反过来,这些结构会极大地改变这些流体的流变学和其他物理性质。深入而清晰地理解这些转变的主要特征和规律对于理解和解释铁磁流体的宏观性质和行为是必要的。在本文中,我们概述了关于这些系统内部转变以及内部结构对流体流变学效应影响的实验和理论研究工作。