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首页> 外文期刊>International Journal of Mineral Processing >Charge behaviour and power consumption in ball mills: sensitivity to mill operating conditions, liner geometry and charge composition
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Charge behaviour and power consumption in ball mills: sensitivity to mill operating conditions, liner geometry and charge composition

机译:球磨机的充电行为和功耗:对磨机运行条件,衬板几何形状和装料组成的敏感性

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Discrete element method (DEM) modeling has been used to systematically study the effects of changes in mill operating parameters and particle properties on the charge shape and power draw of a 5-m ball mill. Specifically, changes in charge fill level, lifter shape (either by design or wear) and lifter pattern are analysed. The effect of changes to the properties of the charge (ball fraction, ball and rock shape, type of ball and rock size distributions and the lower cutoff of the rock size distribution) can all be interpreted in terms of their effects on the shear strength of the charge. Some changes increase the shear strength leading to higher dynamic angles of repose of the charge, higher shoulder positions and higher power consumption for sub-critical speeds. For super-critical speeds, they lead to lower power consumption, due to lower particle mobility as the particles lock together better. Changes to the charge that weaken the interlocking of particles have the opposite effect on the charge shape and power consumption. The combination of these effects means that the speed for which peak power consumption occurs is predominantly determined by the shear strength of the charge material and the fill level. This demonstrates the sensitivity of mill behaviour to the charge characteristics and the critical importance of various assumptions used in DEM modeling
机译:离散元素方法(DEM)建模已用于系统地研究磨机操作参数和颗粒性质的变化对5米球磨机的装料形状和功率消耗的影响。具体来说,分析充气填充水平,挺杆形状(通过设计或磨损)和挺杆样式的变化。装料特性变化的影响(球分数,球和岩石形状,球和岩石尺寸分布的类型以及岩石尺寸分布的下边界)都可以通过它们对剪切强度的影响来解释。费用。一些变化会提高剪切强度,从而导致装药的动态休止角更高,肩位置更高,次临界速度下的功率消耗更高。对于超临界速度,由于较低的粒子移动性,它们可以降低功耗,因为粒子可以更好地锁定在一起。电荷的变化削弱了粒子的互锁,对电荷的形状和功耗产生了相反的影响。这些效果的组合意味着,峰值功率消耗发生的速度主要取决于装料的剪切强度和料位。这证明了轧机行为对装料特性的敏感性以及DEM建模中使用的各种假设的至关重要性

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