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Simulation and analysis of nonlinear motion for material particles on vibrating screen

机译:振动筛网材料颗粒非线性运动的仿真与分析

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In order to study the law of motion of material particles on the screen, the numerical simulation of oblique impact between single particle and the screening surface was carried on. The results showed that, with the increase of throwing index, the motion of single particle on the screening surface undergoes nonlinear dynamics phenomena, such as period bifurcation, period doubling bifurcation, and chaotic motion and so on. The numerical simulation of the motion about particle group on the screening surface was carried on based on the numerical simulation of single particle. The results indicate that, with the throwing index increases, the transmission capacity of vibrating screen is stronger, cleaning loss is greater, while screen-penetrating probability is first increased and then decreased, in the vicinity of throwing index D = 1.67, comprehensive performance of vibration screening is best.
机译:为了研究屏幕上材料颗粒的运动规律,进行了单颗粒与筛选之间的倾斜冲击的数值模拟。 结果表明,随着投掷指数的增加,单个粒子在筛选表面上的运动经历非线性动力学现象,例如周期分叉,周期倍增,以及混沌运动等。 基于单颗粒的数值模拟,继续进行筛选表面上的粒子组的运动的数值模拟。 结果表明,随着抛光指数的增加,振动屏的传输容量更强,清洁损耗更大,而屏幕穿透概率首先增加,然后减少,在投掷指数d = 1.67附近,综合性能 振动筛选是最好的。

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