AbstractA study on the flow characteristics of ore and factors that influence these characteristics is'/> Orthogonal Simulation Experiment for Flow Characteristics of Ore in Ore Drawing and Influencing Factors in a Single Funnel Under a Flexible Isolation Layer
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Orthogonal Simulation Experiment for Flow Characteristics of Ore in Ore Drawing and Influencing Factors in a Single Funnel Under a Flexible Isolation Layer

机译:柔性隔离层下矿石矿石矿石流动特性的正交模拟实验

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摘要

AbstractA study on the flow characteristics of ore and factors that influence these characteristics is important to master ore flow laws. An orthogonal ore-drawing numerical model was established and the flow characteristics were explored. A weight matrix was obtained and the effect of the factors was determined. It was found that (1) the entire isolation–layer interface presents a Gaussian curve morphology and marked particles in each layer show a funnel morphology; (2) the drawing amount,Q, and the isolation layer half-width,W, are correlated positively with the fall depth,H, of the isolation layer; (3) factors that affect the characteristics sequentially include the particle friction coefficient, the interface friction coefficient, the isolation layer thickness, and the particle radius, and (4) the optimal combination is an isolation layer thickness of 0.005?m, an interface friction coefficient of 0.8, a particle friction coefficient of 0.2, and a particle radius of 0.007?m.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>矿石流动特性的研究影响这些特征对于掌握矿石流法是重要的。建立了正交矿石绘图数值模型,探索了流动特性。获得了重量基质,确定因子的效果。发现(1)整个隔离层界面呈现了每层的高斯曲线形态和标记颗粒,显示出漏斗形态; (2)绘图量,<重点型=“斜体”> q ,和隔离层半宽,<重点型=“斜体”> w ,与跌幅深度正相关,<强调类型=“斜体”> H ,隔离层; (3)依次影响特征的因素包括颗粒摩擦系数,界面摩擦系数,隔离层厚度和颗粒半径,和(4)最佳组合是0.005Ωm的隔离层厚度,界面摩擦0.8的系数,颗粒摩擦系数为0.2,颗粒半径为0.007μm。 ]]>

著录项

  • 来源
    《JOM》 |2017年第12期|共7页
  • 作者单位

    College of Resources and Metallurgy Guangxi University;

    College of Resources and Metallurgy Guangxi University;

    College of Resources and Metallurgy Guangxi University;

    Civil and Environmental Engineering School University of Science and Technology Beijing;

    College of Resources and Metallurgy Guangxi University;

    College of Resources and Metallurgy Guangxi University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有色金属冶炼;金属学与金属工艺;
  • 关键词

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