首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Visualization of flow conditions inside spiral jet mills with different nozzle numbers- Analysis of unloaded and loaded mills and correlation with grinding performance
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Visualization of flow conditions inside spiral jet mills with different nozzle numbers- Analysis of unloaded and loaded mills and correlation with grinding performance

机译:用不同喷嘴编号的螺旋射流内流动条件的可视化分析卸载和装载轧机的分析及与研磨性能相关

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Plenty of operational and geometric parameters have effects on spiral jet milling. Changes in the parameters cause distinctions in the flow conditions inside the mill and thereby also lead to consequences regarding the milled product. A new type of experimental spiral jet mill apparatus with almost entire optical accessibility enables a very convenient variation of the operational and geometric parameters as well as the determination of the flow conditions inside the spiral jet mill via non-invasive optical methods. Particle Image Velocimetry (PIV) measurements with diethylhexyl sebacat (DEHS) tracer droplets as well as solid barium sulphate micro particles were carried out to investigate the flow conditions inside the spiral jet mill. The differences between the net milling gas velocity fields and the velocity fields of loaded spiral jet mills were exposed. With the mill being loaded, the comminution zone decreases in the horizontal direction as well as decreases and deflects in the vertical direction. Besides, the analysis of the velocity fields inside the mill apparatus showed that decreasing milling nozzle numbers lead to increasing velocities inside the spiral jet mill, even if the mass flow rate of the gas supply is kept constant and the nozzle jet velocity is limited to sonic velocity at choked flow. With decreasing milling nozzle numbers, broader comminution zones and increasing lengths of the milling jets were investigated. As a consequence, a better grinding efficiency was expected and also confirmed with decreasing milling nozzle number by grinding experiments, as the new type of experimental apparatus was constructed in a fully operative way concerning the grinding ability. (C) 2018 Elsevier B.V. All rights reserved.
机译:充足的操作和几何参数对螺旋喷射铣削具有影响。参数的变化导致研磨机内的流动条件中的区别,从而导致磨削产品的后果。具有几乎整个光学等离感的新型实验螺旋射流磨机可实现操作和几何参数的非常方便的变化,以及通过非侵入性光学方法确定螺旋喷射磨机内的流动条件。进行颗粒图像速度(PIV)测量用二乙基己基癸二(DEHS)示踪液滴以及固体硫酸钡微粒,以研究螺旋喷射磨机内的流动条件。曝光了净铣液速度场与装载螺旋喷射液的速度场之间的差异。随着轧机的加载,粉碎区在水平方向上减小,并且在垂直方向上降低和偏转。此外,即使气体供应的质量流量保持恒定,也显示出铣削喷嘴数量的速度场的分析显示,降低铣削喷嘴数导致螺旋喷射磨机内部的速度增加,并且喷嘴速度限于声音Choked Flow的速度。通过减少铣削喷嘴数量,研究了更广泛的粉碎区和铣削射流的增加的长度。结果,预期更好的研磨效率,并且还通过研磨实验降低铣削喷嘴数来证实,因为新型的实验装置以磨削能力的完全操作方式构建。 (c)2018 Elsevier B.v.保留所有权利。

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