被动脉冲空气分级机回收利用电子废料的基础研究

C. Duan, Yaqun He, Yuemin Zhao, X. Wen, Haifeng Wang, S. Song
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引用次数: 7

摘要

随着电子电气技术的飞速发展,电子废品的数量越来越大。采用高效、环保的分离方法对电子废弃物进行再利用和循环利用是一项紧迫而富有挑战性的任务。介绍了一种实用、高效的无源脉冲空气分级机分离方法。在脉动式空气分级机中,喉部的膨胀和收缩分离产生一种距离变化的气流,这种气流交替地使颗粒加速和减速。采用先进的高速动态分析设备对运动颗粒进行了动力学分析。ANSYS仿真结果表明,被动脉冲空气分离器内的加速区和对称涡是被动脉冲空气分离器基于密度优势差实现优异分离的根本原因。室内实验结果表明,与非脉冲分类器相比,脉冲分类器的分离效果更好,气流运行速度范围更大。无源脉冲分离器柱内气流的加减速现象提供了密度优势分离。这对电子废料的处理是有利的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The fundamental study on the reutilization of electronic scrap by passive pulsed air classifiers
As the electric and electronic technology being developed so quickly, the amount of electronic scrap (ES) becomes more and more enormous. The reutilization of ES is an urgent and challenging task achieved by adopting high efficiency, environmental friendly separation methods for reuse and recycle of electronic scrap. A practical and efficient separation method using passive pulsed air classifiers is introduced in this paper. In the pulsing air classifier, expansions and contractions separation of the throats impose a distance-varying airflow which alternately accelerates and decelerates the particles. Dynamics of the moving particles were analyzed by applying of advanced high-speed dynamic analyzing equipment. The ANSYS simulation results show that the accelerating region and symmetrical vortexes in the passive pulsed air separator are the basic reasons to achieve excellent separation based on density-dominant difference in passive pulsed air classifier. The results of the laboratory experiments indicate that the pulsing classifiers achieve more effective results of separation and get a wider range of operating velocities of the airflow than the non-pulsing ones. The acceleration and deceleration phenomenon of the air currents in the column of the passive pulsed separator provides a density dominant separation. It is concluded that this is favorable for electronic scrap processing.
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