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Dipole Interparticle Interaction in Magnetic Fluids

机译:磁流体中的偶极子相互作用

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The temperature dependence of the saturation magnetization of a magnetite-based magnetic fluid has been directly measured with a vibrating-coil magnetometer equipped with a superconducting solenoid. The magnetization varies in accordance with the 1 - αT~2 law. Coefficient α = 1.4 × 10~(-6) is almost twice as high as that of monolithic magnetite. The results of measuring the susceptibility of magnetic fluids stabilized with oleic and linoleic acids have been analyzed using novel corrections to the temperature dependence of particle magnetization. The susceptibility of ultimately concentrated samples is in good agreement with the Ivanov-Huke-Lücke and Morozov theories. The susceptibility of samples with a medium concentration is adequately described by the Ivanov theory alone. The susceptibility of low-concentrated samples increases to the level predicted by the Morozov theory in the case of particle aggregation. The widening of the particle size distribution leads to a reduction in the level of the interparticle interactions.
机译:磁铁矿基磁性流体的饱和磁化强度的温度依赖性已通过配备超导螺线管的振动线圈磁力计直接测量。磁化强度根据1-αT〜2定律变化。系数α= 1.4×10〜(-6)几乎是整体磁铁矿的两倍。使用对颗粒磁化强度的温度依赖性的新校正方法,已经分析了用油酸和亚油酸稳定的磁流体的磁化率测量结果。最终浓缩样品的磁化率与Ivanov-Huke-Lücke和Morozov理论完全吻合。仅伊万诺夫理论就足以描述中等浓度样品的敏感性。在颗粒聚集的情况下,低浓度样品的磁化率增加到Morozov理论预测的水平。粒度分布的加宽导致粒子间相互作用的水平降低。

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