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首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section C. Mineral Processing and Extractive Metallurgy >Grinding of ceramic raw materials by a standard Bond mill: quartz, kaolin and K-feldspar
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Grinding of ceramic raw materials by a standard Bond mill: quartz, kaolin and K-feldspar

机译:用标准邦德磨机研磨陶瓷原料:石英,高岭土和钾长石

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摘要

The kinetics of batch dry grinding of ceramic raw materials, which are quartz, kaolin and K-feldspar, from the feeds of sieve sizes -3-350+2-360, -2-360+1-400, -1-400+0-850, Al-850+0-600, -4)-500+0-425 and -0-300+0-212 nun have been determined using a Bond mill with a mixture of five ball sizes. The mill used was a size of 30-5 cm diameter, 30-5 cm length, providing a total mill volume of 22 272 cm3 with a. total mass of 22 648 g steel ball mixtures of 38-10, 31-75, 25-40, 19-05 and 12-70 mm diameters, occupying 22 percent of mill volume and with a speed of rotation of 70 rpm. The specific rates of breakage (S.) and primary breakage distribution (B.J values, called grinding breakage parameters, were determined for those feed size fractions to predict the product size distributions by simulation for comparison to the experimentally obtained data. As the feed sizes increase, the 5. values also increase, that is, faster breakage values from higher to lower values were in the order of quartz, K-feldspar and kaolin by comparison with their a values. The B.. values obtained for these minerals were different in terms of characteristic fineness factor, j. Thus, kaolin produced more fines, while K-feldspar and, quartz produced less fines in the mill. In other words, the simulations of product size distributions for these minerals were in good, agreement with the experimental data using a ball mill simulation program, called However, the slowing down effect in the mill started earlier than expected for the minerals studied, unlike the laboratory size ball mill used extensively in our studies. Nevertheless, there exist linear relationships between the simulated time (0) and experimental time (t) for these minerals.
机译:从-3-350 + 2-360,-2-360 + 1-400,-1-400 +筛目的进料中分批干磨陶瓷原料(石英,高岭土和钾长石)的动力学0-850,Al-850 + 0-600,-4)-500 + 0-425和-0-300 + 0-212尼姑已使用邦德磨粉机测定,其中混合了五个球形。所使用的研磨机的直径为30-5 cm,长度为30-5 cm,提供的总研磨机体积为22 272 cm3。总质量为22648克,直径38-10、31-75、25-40、19-05和12-70毫米的钢球混合物,占轧机体积的22%,旋转速度为70 rpm。确定那些进料粒度分数的特定破损率(S.)和一次破损分布(BJ值,称为磨碎破损参数),以便通过模拟与实验获得的数据进行比较来预测产品粒度分布。 ,5.值也增加,也就是说,从较高的值到较低的值,较快的破裂值按石英,钾长石和高岭土的a值顺序排列。因此,高岭土产生更多的细粉,而钾长石和石英产生的细粉更少,换句话说,这些矿物的产品粒度分布模拟结果很好,与实验结果一致。使用称为“球磨机”的模拟程序获得的数据。然而,与以前使用的实验室规模的球磨机不同,该磨机的减慢效应开始得比预期的研究矿物早。专注于我们的研究。但是,这些矿物的模拟时间(0)和实验时间(t)之间存在线性关系。

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