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The anisotropy of transformer oil-based magnetic fluids studied by acoustic spectroscopy

机译:通过声学光谱研究的变压器油基磁性流体的各向异性

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The anisotropy in transformer oil-based magnetic fluids upon the effect of an external magnetic field and temperature were studied by acoustic spectroscopy. When a magnetic field is increased, the interaction between the external magnetic field and the magnetic moments of the nanoparticles occurs, leads to the aggregation of magnetic nanoparticles and following clusters formation. However, the temperature of magnetic fluids has also very important influence on the structural changes because of the mechanism of thermal motion that acts against the cluster creation. In present the anisotropy of the transformer oil-based magnetic fluids can be described by two theories. Taketomi theory assumes existence of spherical clusters. These cluster form long chains, aligned in magnetic field direction. Later Shliomis proposed similar theory, in which these chains are formed by nanoparticles. A comparison of the experimental results with the predictions of the Taketomi theory allowed a determination of the cluster radius and the number density of the colloidal particles. These data allowed us to draw conclusions about the changes in the parameters describing the structure of the ferrofluid at different temperatures. On the basis of the measurements performed, it was possible to establish the proportion of the acoustic wave used for excitation of the translational and rotational degrees of freedom.
机译:通过声光谱研究了变压器油基磁性流体的各向异性。通过声光谱研究了外部磁场和温度的影响。当磁场增加时,外部磁场与纳米颗粒的磁矩之间的相互作用发生,导致磁性纳米粒子的聚集和后续簇形成。然而,由于采用针对簇产生的热运动的机制,磁性流体的温度对结构变化的影响也非常重要。在本文中,可以通过两个理论描述变压器油基磁性流体的各向异性。 Taketomi理论假设存在球形簇。这些簇形成长链,在磁场方向上对齐。后来Shliomis提出了类似的理论,其中这些链由纳米颗粒形成。实验结果与Taketomi理论的预测的比较允许确定胶体颗粒的簇半径和数量密度。这些数据允许我们得出关于描述不同温度下的替铜流体结构的参数变化的结论。在执行的测量的基础上,可以建立用于激发平移和旋转自由度的声波的比例。

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