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Experimental observations of lifter parameters and mill operation on power draw and liner impact loading

机译:提升机参数和轧机运行对功率消耗和衬板冲击载荷的实验观察

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In mineral processing the mill power plays a major role in the economics of the process and is a critical design criterion. The mill power is influenced by a range of parameters such as: charge and slurry filling,number and geometry of lifters, and mill speed. Deriving the optimum conditions of these parameters should lead to efficient mill operation. Additionally, the optimum utilization of the impact loads that are affected by charge and slurry filling, number of lifters, geometry of lifter and mill speed should result in increased milling efficiency. In this work the influence of these operating parameters were investigated using a laboratory experimental mill. It is found that the power, are affected by number of lifters, lifter height, mill charge and mill speed. Overall the results showed that increasing the mill velocity, number of lifters, and height of lifter and significantly decreasing the mill charge filling results in a higher impact value and impact frequency that may also increase overall efficiency. A simple linear regression relationship has been demonstrated for mill power as a function of lifter spacing (S/H) and mill speed. These parameters give an indication of the possible optimum mill operating conditions in an idealised condition.
机译:在矿物加工中,磨机功率在过程经济中起着重要作用,并且是关键的设计标准。磨机功率受一系列参数的影响,例如:装料和浆液填充,提升机的数量和几何形状以及磨机速度。推导这些参数的最佳条件应该可以使轧机高效运转。此外,受装料和浆液填充,提升器数量,提升器的几何形状和磨机速度影响的冲击载荷的最佳利用应导致提高磨粉效率。在这项工作中,使用实验室实验磨机研究了这些操作参数的影响。发现功率受升降机数量,升降机高度,轧机加料量和轧机速度的影响。总体而言,结果表明,提高轧机速度,提升机数量和提升机高度,并显着降低轧机装料填充量会导致更高的冲击值和冲击频率,这也可能会提高整体效率。轧机功率随升降机间距(S / H)和轧机速度的关系已证明了简单的线性回归关系。这些参数表示理想状态下可能的最佳磨机运行条件。

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