Empirical Study of Classification Process for Two-stage Turbo Air Classifier in Series

被引:0
|
作者
YU Yuan [1 ]
LIU Jiaxiang [2 ]
LI Gang [2 ]
机构
[1] College of Mechanical and Electrical Engineering, Beijing University of Chemical Technology
[2] College of Materials Science and Engineering, Beijing University of Chemical Technology
基金
中国国家自然科学基金;
关键词
two-stage turbo air classifier in series; aluminum oxide powders; process parameters; classification performance;
D O I
暂无
中图分类号
TQ051.8 [物质分离机械];
学科分类号
080706 ;
摘要
The suitable process parameters for a two-stage turbo air classifier are important for obtaining the ultrafine powder that has a narrow particle-size distribution, however little has been published internationally on the classification process for the two-stage turbo air classifier in series. The influence of the process parameters of a two-stage turbo air classifier in series on classification performance is empirically studied by using aluminum oxide powders as the experimental material. The experimental results show the following: 1) When the rotor cage rotary speed of the first-stage classifier is increased from 2 300 r/min to 2 500 r/min with a constant rotor cage rotary speed of the second-stage classifier, classification precision is increased from 0.64 to 0.67. However, in this case, the final ultrafine powder yield is decreased from 79% to 74%, which means the classification precision and the final ultrafine powder yield can be regulated through adjusting the rotor cage rotary speed of the first-stage classifier. 2) When the rotor cage rotary speed of the second-stage classifier is increased from 2 500 r/min to 3 100 r/min with a constant rotor cage rotary speed of the first-stage classifier, the cut size is decreased from 13.16 μm to 8.76 μm, which means the cut size of the ultrafine powder can be regulated through adjusting the rotor cage rotary speed of the second-stage classifier. 3) When the feeding speed is increased from 35 kg/h to 50 kg/h, the "fish-hook" effect is strengthened, which makes the ultrafine powder yield decrease. 4) To weaken the "fish-hook" effect, the equalization of the two-stage wind speeds or the combination of a high first-stage wind speed with a low second-stage wind speed should be selected. This empirical study provides a criterion of process parameter configurations for a two-stage or multi-stage classifier in series, which offers a theoretical basis for practical production.
引用
收藏
页码:526 / 531
页数:6
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