首页> 外文会议>EPD congress;TMS annual meeting amp; exhibition; 20090215-19;20090215-19; San Francisco, CA(US);San Francisco, CA(US) >MIGRATION AND INTERACTION BEHAVIOR OF ELECTRICAL-INSULATING PARTICLES IN A CONDUCTIVE MELT UNDER STRONGMAGNETIC FIELD WITH HIGH GRADIENT
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MIGRATION AND INTERACTION BEHAVIOR OF ELECTRICAL-INSULATING PARTICLES IN A CONDUCTIVE MELT UNDER STRONGMAGNETIC FIELD WITH HIGH GRADIENT

机译:高梯度强磁场下导电熔体中电绝缘颗粒的迁移和相互作用行为

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摘要

Magnetic fields have been used for inclusions removal from melt and preparation of materials with gradient compositions. Fundamental in these applications is that the induced magnetic forces on the particles/melt can enhance migration and change the interaction behavior. In the present paper, migration and interaction behavior of electrical-insulating particles in a conductive melt under strong magnetic field are theoretically analyzed. It is found that the migration can be considerably enhanced for micrometer sized particles by applying a strong magnetic field. In addition, two forces are involved in the interaction between two particles: the interparticle magnetic dipole-dipole attractive force due to magnetization and the repulsive force induced by flow of the melt. This theoretical analysis renders a better understanding of recent experimental results. Additionally, a new method by using strong magnetic field can be proposed to control the particle size distribution for the preparation of metal-matrix composites.
机译:磁场已用于从熔体中去除夹杂物并制备具有梯度成分的材料。在这些应用中的基本原理是,颗粒/熔体上的感应磁力可以增强迁移并改变相互作用行为。本文从理论上分析了电绝缘粒子在强磁场下在导电熔体中的迁移和相互作用行为。已经发现,通过施加强磁场,对于微米尺寸的颗粒可以显着增强迁移。另外,两个粒子之间的相互作用涉及两个力:由于磁化而产生的粒子间磁性偶极-偶极吸引力以及由熔体流动引起的排斥力。这种理论分析使人们对最近的实验结果有了更好的理解。此外,可以提出一种利用强磁场控制制备金属基复合材料的粒度分布的新方法。

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