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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Experimental investigation of the power draw of tumbling mills in wet grinding
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Experimental investigation of the power draw of tumbling mills in wet grinding

机译:湿磨转鼓磨机功率消耗的实验研究

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摘要

In comminution, mill power plays a major role from the economics standpoint and is a critical design criterion. It is influenced by a range of parameters such as media charge level (ball filling), slurry filling, slurry concentration and mill speed. In this work, the effects of these operating parameters were investigated using a pilot mill (1000 x 500mm). To this end, a copper ore (-1000 mu m) was used to prepare the slurry. The tests covered a range of slurry filling (U) from 0 to 1.7 with media charge between 12% and 36% of the mill volume and six different speeds between 60% and 85% of critical speed. A power analyser was utilized to measure mill power. Increase in mill speed and ball filling leads to a remarkable increase in the amount of the power. Preliminary results show that there is a definite trend between the power and the slurry filling U. Mill power draw is maximum at slurry concentration 60-70% and slurry filling 0.84. An empirical equation was given that fits the data reasonably well.
机译:从经济角度讲,轧机功率起着至关重要的作用,并且是关键的设计标准。它受一系列参数的影响,例如介质进料量(球填充),浆料填充,浆料浓度和研磨速度。在这项工作中,使用中试磨机(1000 x 500mm)研究了这些操作参数的影响。为此,使用铜矿石(-1000μm)制备浆料。这些测试涵盖了从0到1.7的浆液填充(U)范围,介质填充量为研磨机体积的12%至36%,六种不同的速度介于临界速度的60%至85%之间。功率分析仪用于测量磨机功率。磨机速度的提高和球的填充会导致功率的显着提高。初步结果表明,功率和浆料填充量U之间存在一定的趋势。在浆料浓度为60-70%且浆料填充量为0.84时,磨粉机的功率消耗最大。给出了一个可以很好地拟合数据的经验方程。

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