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首页> 外文期刊>Minerals Engineering >The effects of chamber diameter and stirrer design on dry horizontal stirred mill performance
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The effects of chamber diameter and stirrer design on dry horizontal stirred mill performance

机译:腔室直径和搅拌器设计对干式卧式搅拌机性能的影响

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This paper focussed on investigating the effects of chamber diameter and stirrer design on cement grinding performance of a horizontal type dry stirred mill. Within the scope, pilot scale test works were undertaken with two different chamber diameters (20.4 cm and 26.4 cm) having the same length and three different stirrer designs (wing, cross and disc) having the same diameter (16 cm). The chamber diameter tests were performed at the same stirrer design, media size and media filling. The studies concluded that, the use of larger chamber improved the grinding efficiency since 31.8% and 35.8% less energy was consumed than the smaller mill at the RR_d50 of 1.41 and 1.66 respectively. This behaviour of the larger mill can be attributed to the increased gap distance between the chamber wall and stirrer edge. With regards to stirrer design, the statistical evaluations, grinding results and temperature measurements all indicated that the disc design of stirrer ground the particles more effectively at high energy levels (>40 kW h/t). The use of the disc design reduced the energy consumption by 21% (at RR_d5o of 3.5). This was attributed to dissipation of energy as heat since the temperature measured for the wing and cross types were higher than the disc type.
机译:本文重点研究了卧式干式搅拌机的腔室直径和搅拌器设计对水泥粉磨性能的影响。在此范围内,进行了中试规模的试验,使用了两个具有相同长度的不同腔室直径(20.4 cm和26.4 cm)和三个具有相同直径(16 cm)的不同搅拌器设计(机翼,十字形和盘形)。在相同的搅拌器设计,介质尺寸和介质填充条件下进行腔室直径测试。研究得出的结论是,在RR_d50分别为1.41和1.66时,与较小的磨机相比,使用较大的腔室可以提高磨削效率,因为能耗比较小的磨机少31.8%和35.8%。较大的磨粉机的这种行为可归因于腔室壁和搅拌器边缘之间的间隙距离增加。关于搅拌器的设计,统计评估,研磨结果和温度测量都表明,搅拌器的圆盘设计在高能级(> 40 kW h / t)下更有效地将颗粒磨碎。光盘设计的使用将能耗降低了21%(在RR_d50为3.5时)。这归因于能量的散发,因为机翼和十字翼类型的测得温度高于盘形。

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