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Study on the particle stratification and penetration of a swing vibrating screen by using DEM

机译:使用DEM纺出振动筛的粒子分层和渗透研究

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PurposeAs for vibrating screen, the separation of granular materials is a very complicated process, particularly the screening with a swing trace. To study the characteristics of stratification and penetration in the swing vibrating screen, a three-dimensional numerical model was developed to simulate the screening process.Design/methodology/approachThe discrete element method (DEM) was used to perform the numerical simulation, and the kinetic model of the swing screening was established. The regions of stratification and penetration were defined, and the mathematical functions relating fine particle ratio of stratification and penetration to time were presented using the least squares method.FindingsThe results show that the low value of frequency (5 and 10 Hz) has a limited effect on the stratification, while the obvious effect can be found at high frequency. A low frequencies or small swing angles may enhance the particle penetration. By studying the vibration parameters affecting the stratification and penetration rate, it is found that the frequency has more influence than the swing angle.Originality/valueThe higher screening efficiency and processing capacity can be further obtained for the swing vibrating screen by comparing with the linear vibrating screen. These results reveal the fundamental characteristics of particle motion in the swing screening, which will provide reliable guidance for studying the design optimization of vibrating screen.
机译:用于振动筛网的三种方法,粒状材料的分离是一种非常复杂的方法,特别是用摆动迹线筛选。为了研究摆动屏幕中分层和渗透的特性,开发了一种三维数值模型来模拟筛选过程。用来使用离散元素方法(DEM)来执行数值模拟,以及动力学建立了摆动筛选的模型。定义分层和渗透的区域,使用最小二乘法提出了分层和渗透到时间的细粒度的数学函数。方法表明,频率(5和10 Hz)的低值具有有限的效果在分层上,虽然可以在高频率下发现明显的效果。低频或小的挥杆角度可以增强粒子渗透。通过研究影响分层和渗透率的振动参数,发现频率比摆动角度更大的影响。通过与线性振动相比,可以进一步获得更高的筛选效率和处理能力。屏幕。这些结果揭示了摆动筛选中粒子运动的基本特征,这将为研究振动筛的设计优化提供可靠的指导。

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