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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Evolution process and regulation of particle kinematics and spatial distribution driven by exciting parameters during variable-amplitude screening
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Evolution process and regulation of particle kinematics and spatial distribution driven by exciting parameters during variable-amplitude screening

机译:可变幅度筛选过程中励磁参数驱动的粒子运动学和空间分布的演化过程和空间分布

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摘要

Variable-amplitude screen has been widely used for the classification of particulate materials due to its advantages including large capacity production and good screening performance. The exciting parameters significantly influence the trajectory of the screen surface, particle kinematics and spatial distribution, and screening performance during variable-amplitude screening. Investigation of the optimization and regulation of exciting parameters is necessary because they are the key to realize high screening efficiency of materials. In this study, variable-amplitude screening experiment and test analysis system were constructed to conduct relevant research. Consequently, the material distribution on the screen surface exhibited the spatial evolution process as follows: the material layer was thicker at the feed end, had approximately equal thickness of the material layer, and a thicker material layer at the discharge end with an increasing difference in amplitude. The corresponding screening efficiency first increased and then decreased. Based on the above-mentioned analysis, the method of regulation of trajectory of screen, particle velocity, and material distribution during variable-amplitude screening by adjusting exciting parameters was introduced to realize the variable amplitude equal-thickness screening and achieve optimum classification performance. Based on the proposed regulation method, the optimum conditions were obtained as follows: f(1) = 4.01 kN, f(2) = 3.09 kN, k(f) = 1.3, and I-reb = 40%; the corresponding screening efficiency reached a maximum value of 93.11%, and the total misplaced materials reached a minimum value of 2.68%. (C) 2018 Published by Elsevier B.V.
机译:可变幅度屏幕已广泛用于颗粒材料的分类,因为它的优点包括大容量生产和良好的筛选性能。励磁参数显着影响屏幕表面,粒子运动学和空间分布的轨迹,以及在可变幅度筛选期间筛选性能。需要调查令人兴奋参数的优化和调节,因为它们是实现材料高筛选效率的关键。在该研究中,构建可变幅度筛选实验和测试分析系统以进行相关研究。因此,屏幕表面上的材料分布表现出如下的空间演化过程:材料层在进料端较厚,具有大致相等的材料层厚度,并且在排出端的较厚的材料层具有越来越大的差异振幅。相应的筛选效率首先增加然后减少。基于上述分析,引入了通过调整激发参数的可变幅度筛选期间屏幕,粒子速度和材料分布的轨迹调节方法,实现了可变幅度等厚度筛选并实现了最佳的分类性能。基于所提出的调节方法,获得最佳条件如下:F(1)= 4.01KN,F(2)= 3.09kN,K(F)= 1.3,I-REB = 40%;相应的筛选效率达到最大值为93.11%,总错位材料达到了2.68%的最小值。 (c)2018由elsevier b.v发布。

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