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Vibration Parameter Optimization of a Linear Vibrating Banana Screen Using DEM 3D Simulation

机译:基于DEM 3D模拟的线性振动香蕉筛振动参数优化

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In this paper, the effects of vibration parameters of a banana screen, i.e. frequency, amplitude and vibration direction angle, on the screening efficiency per unit time were studied using the discrete element method (DEM). The simulations were validated according to data collected from an experimental prototype screen. Functional relationships between vibration parameters and screening efficiency per unit time are presented. The results showed that the screening efficiency per unit time first displays an increase and later a decrease when the frequency, amplitude or vibration direction angle increased respectively. Vibration parameter optimization was also investigated, using an orthogonal experiment. Based on the banana screen model, it can be concluded that when the frequency is 22 Hz, the amplitude is 2.2 mm and the vibration direction angle is 39°, the screening efficiency of a banana screen is optimal.
机译:本文采用离散元法研究了香蕉筛的振动参数,即频率,振幅和振动方向角,对单位时间筛分效率的影响。根据从实验原型屏幕收集的数据对模拟进行了验证。给出了振动参数和每单位时间的筛选效率之间的函数关系。结果表明,当频率,幅值或振动方向角分别增大时,单位时间的筛选效率先升高,然后降低。还使用正交实验研究了振动参数优化。根据香蕉筛模型,可以得出结论,当频率为22 Hz,振幅为2.2 mm,振动方向角为39°时,香蕉筛的筛分效率最佳。

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