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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Numerical and experimental studies of the effect of iron ore particle shape on repose angle and porosity of a heap
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Numerical and experimental studies of the effect of iron ore particle shape on repose angle and porosity of a heap

机译:铁矿石颗粒形状对堆休谐角和孔隙率的数值和实验研究

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摘要

Spherical (pellet), cylindrical and conical iron ore particles were produced to study the effect of particle shape on repose angle and bottom porosity distribution of a heap formed by natural piling. The effects of coefficient of static friction, rolling friction and restitution and particle shape on the repose angle and porosity of the pile for three particle shapes were numerically studied by the discrete element method. The results show that the primary influential factors on repose angle and porosity is the static friction, followed by particle shape. The repose angle of piles of spheres is smaller than that of non-spheres, but there is little difference in repose angle between non-spherical particles. The value of the porosity in the three kinds of piles decreases from spheres to cones to cylinders, but all show a V-shape distribution, with lowest porosity along the axis through the apex. The porosity shows a minimum value when the sphericity is about 0.85. Piles of cylindrical particles show the smallest porosity due to parallel planes of the particle shape. (C) 2019 Elsevier B.V. All rights reserved.
机译:制作球形(颗粒),圆柱形和圆锥形铁矿石颗粒,以研究颗粒形状对天然桩形成的堆的休息角和底部孔隙率分布的影响。通过离散的元件法在数值上研究了静摩擦,滚动摩擦和恢复系数和颗粒形状对三种颗粒形状的堆叠角度和孔隙率的影响。结果表明,旋转角度和孔隙率的主要影响因素是静态摩擦,其次是颗粒形状。堆积的球体的休置角度小于非球体的角度,但是非球形颗粒之间的休氏角度几乎没有差异。三种桩中的孔隙率的值从球体降低到锥体到圆柱体,但全部显示V形分布,沿轴线通过顶点具有最低孔隙率。孔隙率显示在球形度约为0.85时的最小值。由于颗粒形状的平行平面,成堆圆柱颗粒显示出最小的孔隙率。 (c)2019年Elsevier B.V.保留所有权利。

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