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An improved contact model for ball mill simulation by the discrete element method

机译:改进的接触模型,用于离散球法模拟球磨机

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The discrete element method (DEM) has emerged as a powerful tool for simulating discrete particle systems. It has wide application in the field of mining and mineral processing where it can b e used as a design and diagnostic tool for industrial size tumbling mills. The simulation of tumbling mills involves the calculation of contact forces between the colliding balls in order to predict the enmasse charge motion, ball wear, power draw, collision spectra, etc. These calculations are made by modeling the contact by a set of spring, dashpot and slider elements. The manner of implementation of these contact elements within the DEM framework and the associated contact parameters determine the accuracy of the simulajtion. A physically more realistic contact model based on theoretical contact mechanics is described. The model is not implementation specific and requires only material parameters that may be obtained from standard tests. In addition, the model allows for a variation in the coefficient of restitution as a function of impact velocity. The implementation of this contact model is illustrated by simulating a 0.545 m diameter ball mill.
机译:离散元素方法(DEM)已经成为模拟离散粒子系统的强大工具。它在采矿和矿物加工领域具有广泛的应用,可以用作工业尺寸翻滚磨的设计和诊断工具。翻滚轧机的模拟包括计算碰撞的球之间的接触力,以便预测嵌入的装药运动,球的磨损,功率消耗,碰撞谱等。这些计算是通过用一组弹簧,减震器对接触进行建模来进行的和滑块元素。这些接触元件在DEM框架内的实现方式以及相关的接触参数决定了模拟的准确性。描述了基于理论接触力学的物理上更现实的接触模型。该模型不是特定于实现的,仅需要可以从标准测试中获得的材料参数。此外,该模型允许恢复系数随冲击速度的变化而变化。通过模拟直径为0.545 m的球磨机来说明此接触模型的实现。

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