首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >NEGATIVE VISCOSITY DUE TO MAGNETIC PROPERTIES OF A SEMI-DENSE COLLOIDAL DISPERSION COMPOSED OF FERROMAGNETIC ROD-LIKE PARTICLES WITH MAGNETIC MOMENT NORMAL TO THE PARTICLE AXIS
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NEGATIVE VISCOSITY DUE TO MAGNETIC PROPERTIES OF A SEMI-DENSE COLLOIDAL DISPERSION COMPOSED OF FERROMAGNETIC ROD-LIKE PARTICLES WITH MAGNETIC MOMENT NORMAL TO THE PARTICLE AXIS

机译:由于半致密胶体分散体的磁性特性导致的负粘度由粒径正常具有磁矩的铁磁棒状颗粒组成

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We have investigated the negative viscosity of a colloidal dispersion composed of ferromagnetic rod-like particles, which have a magnetic moment normal to the particle axis. A simple shear flow problem has been treated to clarify the particle orien-tational distribution and rheological properties of such a semi-dense dispersion, under circumstances of an external magnetic field applied in the direction normal to the shear plane of a simple shear flow. The results obtained here are summarized as follows. For the cases of a very strong magnetic field and magnetic interactions between particles, the magnetic moment of the rod-like particles is significantly restricted in the magnetic field direction, so that the particle approximately aligns in the shear flow direction. Also, the particle can easily rotate around the axis of the cluster almost freely even in a simple shear flow. Characteristic orientational properties of the particle cause negative viscosity, as in the previous study for a dilute dispersion. However, magnetic particle-particle interactions have a function to make such negative viscosity decrease.
机译:我们研究了由铁磁性棒状颗粒组成的胶体分散体的负粘度,其具有颗粒轴线的磁矩。已经治疗了简单的剪切流量问题以阐明这种半致密分散的颗粒的粒子原理分布和流变性质,在沿正常剪切流程的剪切平面的方向上施加的外部磁场的情况下。这里获得的结果总结如下。对于非常强的磁场和颗粒之间的磁相互作用的情况,磁头状颗粒的磁矩在磁场方向上显着限制,使得颗粒在剪切流动方向上近似对准。而且,即使在简单的剪切流动中,颗粒也可以在簇的轴线周围容易地旋转。颗粒的特征定义性能引起负粘度,如先前的稀散分散的研究中。然而,磁性粒子颗粒相互作用具有使这种负粘度降低的功能。

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