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Variables affecting the fine grinding of minerals using stirred mills

机译:影响使用搅拌磨机精细研磨矿物的变量

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Base metal resources are becoming more fine-grained and refractory and minerals separation processes require these ores to be milled to increasingly finer sizes. To cope with very fine grinding to below a P_(80) of approximately 15 mum stirred milling technology has been adopted from other industries. Neither this technology, nor the basic concepts of fine grinding, are well understood by the minerals processing industry. Laboratory studies were therefore carried out in order to investigate fine milling using different types of stirred mills. The variables analysed were stir speed, grinding media type and size, slurry solids content as well as the feed and product size was found to be of the testwork have shown that all of these variables affect the grinding efficiency. The ratio of media size to material size was found to be of particular significance. The results were also analysed using the stress intensity approach and the optimum stress intensity ranges for the most efficient grinding were determined. Application of the results for process optimisation in the industrial size units ins also discussed in this paper.
机译:贱金属资源正变得越来越细,耐火材料和矿物的分离过程要求将这些矿石研磨成越来越细的尺寸。为了应对非常精细的研磨,使其低于大约15微米的P_(80),其他行业也采用了搅拌研磨技术。矿物加工行业没有很好地理解这项技术或精细研磨的基本概念。因此进行了实验室研究,以研究使用不同类型的搅拌机进行的精细研磨。分析的变量包括搅拌速度,研磨介质的类型和大小,浆液固体含量以及进料和产品的大小,这些都是测试工作,表明所有这些变量都会影响研磨效率。发现介质尺寸与材料尺寸的比例特别重要。还使用应力强度方法分析了结果,并确定了最有效研磨的最佳应力强度范围。本文还讨论了结果在工业规模单位ins中进行过程优化的应用。

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