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首页> 外文期刊>Minerals Engineering >Slice matrix analysis for combinatorial optimization of rod matrix in PHGMS
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Slice matrix analysis for combinatorial optimization of rod matrix in PHGMS

机译:切片矩阵分析用于PHGMS中棒形矩阵的组合优化

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Rod matrix is effectively applied in pulsating high gradient magnetic separation (PHGMS), due to its reliable operation, simple combination and resistance to mechanical entrainment. The matrix is made of huge numbers of rod elements and as a whole its configuration presents a decisive role in the operation of PHGMS, due to the fact that it has an inherent determination on the distribution of magnetic field in the matrix and on the collision efficiency of particles with the matrix, thus producing a dominant control on the dynamics of magnetic particles in the matrix and on the separation performance of PHGMS. An experimental approach entitled Slice Matrix Analysis (SMA) method is developed and attempted to optimize the configuration of rod matrix, with a cyclic pilot-scale PHGMS separator in concentrating fine hematite. It was found that the configuration has a significant effect on the separation performance of PHGMS, and the SMA method provides an effective way for the optimization of rod matrix.
机译:棒矩阵由于其可靠的操作,简单的组合和抗机械夹带而有效地应用于脉动高梯度磁选(PHGMS)。基质由大量的棒状元件组成,总体上,它的结构在PHGMS的操作中起着决定性的作用,因为它对基质中的磁场分布和碰撞效率具有内在的决定性事实颗粒与基质的相互作用,从而对基质中磁性颗粒的动力学和PHGMS的分离性能产生了主导性的控制。开发了一种名为“切片基体分析(SMA)”方法的实验方法,并尝试使用循环中试规模的PHGMS分离器浓缩细赤铁矿来优化棒基体的构型。发现该构型对PHGMS的分离性能有显着影响,SMA方法为优化棒基质提供了有效的方法。

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