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Physical properties of magnetic fluids and nanoparticles from magnetic and magneto-rheological measurements

机译:磁性和磁流变学测量中的磁性流体和纳米颗粒的物理性质

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Static magnetization curves and the magnetorheological effect were used to study the microstructural properties (agglomerate formation) of magnetic fluids and the properties of dispersed nanoparticles, Improved techniques for magnetogranulometry analysis and a formula for the magnetoviscous effect were proposed, The area of applicability of some existing models was studied. The density, distribution, and dimension of particles, as well as the thickness of the nonmagnetic layer were accurately determined from magnetic measurements. The Shliomis diameter and the effective anisotropy constant were determined from rheological and magnetorheological measurements using information obtained from magnetization curves. (C) 2000 Academic Press. [References: 27]
机译:利用静态磁化曲线和磁流变效应研究磁流体的微结构性质(团聚体形成)和分散的纳米粒子的性质,提出了改进的磁粒度分析技术和磁粘效应的公式,现有的一些适用领域模型进行了研究。颗粒的密度,分布和尺寸以及非磁性层的厚度可通过磁性测量准确确定。 Shliomis直径和有效各向异性常数由流变学和磁流变学测量值确定,并使用从磁化曲线获得的信息确定。 (C)2000学术出版社。 [参考:27]

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