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Numerical simulation of agglomeration process dynamics of ferromagnetic mineral particles in a weak magnetic field

机译:弱磁场下铁磁性矿物颗粒团聚过程动力学的数值模拟

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摘要

Based on the magnetic dipole theory of magnetic-field distribution, the forces acting on ferromagnetic mineral particles (FMMPs) in the magnetic separation process were calculated in detail and a macro-scale dynamic model of magnetic agglomeration (MA) of particle swarms was established. A calculation method toward the dynamic model was proposed, and the two-dimensional dynamic process of the interaction between FMMPs was simulated. Furthermore, the energy conversion of single mineral particles to magnetic chains (MCs) was also analyzed. The results show that magnetic dipole-dipole attraction (MDDA) acting on FMMPs was the primary force in the magnetic separation process, and the dynamic process of MC formation from single mineral particles was closely related to time, distance between particles, and the external magnetic-field orientation. For FMMPs arranged in chain structures oriented along the external magnetic field, the time required for FMMPs to form MCs was less than 50 ms. In addition, the optimum time for MC destruction was in the initial stages (less than 5 ms) of the MC-formation process; either removal of the permanent magnet or discontinuation of the excitation current was the most direct and efficient way to fragment MCs once formed. (C) 2014 Elsevier B.V. All rights reserved.
机译:基于磁场的磁偶极子理论,详细计算了磁选过程中作用于铁磁性矿物颗粒(FMMPs)的力,建立了粒子群磁团聚(MA)的宏观动力学模型。提出了一种针对动力学模型的计算方法,并模拟了FMMP之间相互作用的二维动力学过程。此外,还分析了单个矿物颗粒到磁链(MCs)的能量转换。结果表明,作用于FMMPs的磁偶极子-偶极子吸引(MDDA)是磁选过程中的主要作用力,单个矿物颗粒形成MC的动力学过程与时间,颗粒之间的距离以及外部磁场密切相关。场定向。对于以沿着外部磁场定向的链结构排列的FMMP,FMMP形成MC所需的时间少于50毫秒。另外,MC破坏的最佳时间是在MC形成过程的初始阶段(小于5毫秒)。去除永磁体或中断激励电流是一旦形成MC的最直接,最有效的方法。 (C)2014 Elsevier B.V.保留所有权利。

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