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Improved flow- and pressure model for cone crushers

机译:圆锥破碎机的改进的流量和压力模型

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摘要

Cone crushers are used in the aggregates and mining industries to crush rock material. A model was previously developed to predict the worn geometry of a cone crusher. In that model there was some disagreement between predicted and measured geometry. A suggested explanation for the discrepancy is that the flow model used is not accurate enough to predict the pressure and wear on the liners. In this study an alternative flow model is presented that is better adapted for pressure and wear prediction. In the new model, the same mode of motion as in the old model is assumed to occur but only below the choke level of the crusher. Above the choke level it is assumed that downward flow is stopped by other particles that are squeezed further down. To determine the size distribution and bulk density above the choke level, an iterative process was necessary. Simulation results show that the new flow model has improved the accuracy in the prediction of operating parameters of the rock crusher, such as hydraulic pressure, power draw, and close side setting, CSS. There is also some improvement of the prediction of worn geometry as compared to the old model.
机译:圆锥破碎机用于骨料和采矿业中,用于破碎岩石材料。先前已开发出一种模型来预测圆锥破碎机的磨损几何形状。在该模型中,预测几何形状和测量几何形状之间存在一些分歧。对于差异的建议的解释是所使用的流动模型不够准确,无法预测衬管上的压力和磨损。在这项研究中,提出了一种更适合压力和磨损预测的替代流动模型。在新模型中,假定发生与旧模型相同的运动模式,但仅在破碎机的节流阀水平以下。高于节流阀水平,则假定向下的流动被进一步向下挤压的其他颗粒停止。为了确定阻气门上方的尺寸分布和堆积密度,必须进行迭代。仿真结果表明,新的流动模型提高了岩石破碎机的工作参数预测的准确性,例如液压,功率消耗和闭合边设定CSS。与旧模型相比,磨损几何形状的预测也有了一些改进。

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