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A generic wear prediction procedure based on the discrete element method for ball mill liners in the cement industry

机译:一种基于水泥工业球磨机衬里离散元件的通用磨损预测过程

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摘要

A generic procedure to predict the wear evolution of lining surfaces, namely the spatial distribution of wear and the progressive modification of the geometry due to wear, is introduced in the context of shell liners in ball mills. The wear data is accumulated on the surface of the liner by 3D discrete element method (DEM) simulations of the ball charge in an axial slice of the mill, which is either closed by a periodic boundary condition or by frictionless end walls. The calibration of this wear data with the measured wear profiles of the shell liner in a 5.8 m diameter industrial cement tube mill shows that the tangential damping energy defined by the linear spring-slider-damper DEM contact law is the best fitting wear model of 6 different models. The gradual update of the liner shape delivers adequate results for liners without an axial height variation, while the accuracy of fully variable geometrical modifications is limited by the computation time. Nevertheless, detailed phenomena, like the creation of grooves in the liner, were for the first time numerically modeled. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在球磨机中的壳体衬垫的背景下,引入了预测衬砌表面的磨损的磨损进化,即磨损的空间分布和几何形状的渐进修改,在球磨机中的背景下引入。磨损数据通过3D离散元件(DEM)模拟在研磨机的轴向切片中的球电荷的3D离散元件方法(DEM)模拟,其由周期性边界条件或通过无摩擦端壁封闭。在5.8米直径的工业水泥管磨机中校准了壳体衬垫的测量磨损型材的校准表明,线性弹簧滑块DEM接触法定义的切向阻尼能量是6的最佳拟合磨损模型不同的模型。衬里形状的逐渐更新为没有轴向高度变化的衬垫提供了足够的结果,而完全可变几何修改的精度受到计算时间的限制。尽管如此,详细的现象,就像衬里中的凹槽的创建一样,是第一次进行数字建模的。 (c)2017 Elsevier Ltd.保留所有权利。

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