Watanabe Tomonori, Aoshima Masayuki, Satoh Akira
Graduate School of Science and Technology, Chiba University, 1-33, Yayoi-cho, Inage-ku, Chiba-shi, Chiba 263-8522, Japan.
J Colloid Interface Sci. 2006 Oct 1;302(1):347-55. doi: 10.1016/j.jcis.2006.06.004. Epub 2006 Jun 8.
We have analyzed the orientational distributions and rheological properties of a nondilute colloidal dispersion composed of ferromagnetic spherocylinder particles subjected to a simple shear flow. In order to understand the effects of the magnetic interactions between the particles, we have applied the mean-field theory to a nondilute colloidal dispersion for the two typical external magnetic field directions, that is, the direction parallel to the shear flow and the direction parallel to the angular velocity vector of the shear flow. The main results are summarized as follows. The particle-particle interactions suppress the Brownian motion of the particles and, therefore, make the particles incline toward the same direction. For the magnetic direction parallel to the shear flow, the influence of the particle-particle interactions makes the peak of the orientational distribution sharper and higher. The viscosity generally increases as the interactions between particles become stronger in the case where the effects of the shear flow and magnetic field are relatively small. For the magnetic direction parallel to the angular velocity vector of the shear flow, the influence of the particle-particle interactions on the orientational distribution appears significantly, when the influences of the shear flow and magnetic field are not so strong that the particles can be aligned sufficiently to form stable chainlike clusters in a certain direction.
我们分析了由铁磁球柱体颗粒组成的非稀释胶体分散体在简单剪切流作用下的取向分布和流变特性。为了理解颗粒间磁相互作用的影响,我们将平均场理论应用于非稀释胶体分散体,研究了两种典型的外部磁场方向,即平行于剪切流的方向和平行于剪切流角速度矢量的方向。主要结果总结如下。颗粒间相互作用抑制了颗粒的布朗运动,因此使颗粒倾向于同一方向。对于平行于剪切流的磁场方向,颗粒间相互作用的影响使得取向分布的峰值更尖锐、更高。在剪切流和磁场影响相对较小的情况下,粘度通常随着颗粒间相互作用增强而增加。对于平行于剪切流角速度矢量的磁场方向,当剪切流和磁场的影响不太强以至于颗粒能够充分排列形成沿特定方向的稳定链状聚集体时,颗粒间相互作用对取向分布的影响会显著显现。