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Stokesian Dynamics Simulations of Ferromagnetic Colloidal Dispersions in a Sinusoidal Shear Flow (Non-Newtonian Viscosities and Viscoelastic Properties)

机译:正弦剪切流中的铁磁胶体弥散的斯托克斯动力学模拟(非牛顿粘度和粘弹性)

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摘要

We have conducted Stokesian dynamics simulations to investigate the dynamic properties of ferromagnetic colloidal dispersions subjected to a sinusoidal shear flow. Thick chainlike cluster formation is significantly influenced by an oscillatory shear flow even if the amplitude is relatively small, since the internal structures of thick chainlike clusters are highly sensitive to the change in the direction of the shear flow. The motions of thick chainlike clusters are out of phase to a sinusoidal shear rate, and this phase difference is strongly correlated with that of the viscosity and normal stress coefficients. The viscoelastic properties become more apparent with decreasing frequency of the oscillatory shear flow, since such properties have a strong relationship with thick chainlike cluster formation. In other words, since thick chainlike clusters are more stable for the case of a smaller frequency shear flow, such stable clusters induce significant viscoelastic properties of ferromagnetic colloidal dispersions in a strong applied magnetic field.
机译:我们已经进行了斯托克斯动力学模拟,以研究正弦剪切流作用下铁磁胶体分散体的动力学特性。即使振幅相对较小,粗链状团簇的形成也会受到振荡剪切流的显着影响,因为粗链状团簇的内部结构对剪切流方向的变化高度敏感。粗链状团簇的运动与正弦剪切速率异相,该相差与粘度和法向应力系数密切相关。粘弹性性质随着振荡剪切流频率的降低而变得更加明显,因为这种性质与厚链状团簇的形成有很强的关系。换句话说,由于较粗的链状团簇在较小的频率剪切流的情况下更稳定,因此这种稳定的团簇在强外加磁场中引起铁磁胶体分散体的显着粘弹性质。

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