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An Experimental and Theoretical Study of Ball-Wall Impact for DEM Modeling of Tumbling Mills

机译:球磨机DEM建模中球壁冲击的实验和理论研究

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摘要

In recent years considerable effort has gone into applying distinct element methods to tumbling mills, and for good reason, as insights gained through DEM modeling promise significant improvements in both energy efficiency and general performance (Datta et al., 1999; Cleary and Hoyer, 2000; Rajamani et al., 2000; van Nierop et al., 2001). These DEM codes use soft contact between particles and generally assume the operation of normal and shear springs for motion perpendicular and tangential to the contact plane, with the latter shear spring giving way to simple frictional sliding under excessive shear forces (Cundall et al., 1999; Datta et al., 1999; Cleary et al., 2000). The springs can be linear or nonlinear. In addition several damping models have been invoked, perhaps the simplest, borrowed from fluid mechanics, being velocity dependent damping introduced independently to each spring system, creating normal and shear spring-and-dashpot contact systems. However, several features commonly present in DEM codes and of appreciable value in DEM modeling of coherent solids would seem to be inappropriate for the modeling of tumbling mills.
机译:近年来,由于在DEM建模中获得的见解有望显着改善能效和总体性能,因此有充分的努力将独特的元素方法应用于翻滚磨机(Datta等,1999; Cleary和Hoyer,2000)。 ; Rajamani等,2000; van Nierop等,2001)。这些DEM编码使用粒子之间的软接触,并且通常假定法向弹簧和剪切弹簧在与接触平面垂直和相切的方向上运动,而后者在较大的剪切力作用下会发生简单的摩擦滑动(Cundall等,1999)。 ; Datta等,1999; Cleary等,2000)。弹簧可以是线性的也可以是非线性的。此外,还调用了几种阻尼模型,也许是最简单的阻尼模型,是从流体力学中借来的,它们是独立于每个弹簧系统的依赖于速度的阻尼,从而创建了普通的和剪切的弹簧-阻尼器接触系统。但是,DEM代码中通常存在的一些特征以及在相干固体的DEM建模中具有可观的价值的特征对于滚动磨的建模似乎是不合适的。

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