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Predicting the specific energy of autogenous and semi-autogenous mills from small diameter drill core samples

机译:从小直径钻芯样品预测自生和半自生磨的比能

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A rock breakage test has been developed that can help predict autogenous (AG) and semi-autogenous (SAG) mill performance in situations where only limited quantities of rock samples are available. The test was originally developed to make use of quartered (slivered) core but whole core, half core and lump material can also be used. Original core diameters in the range 27-85 mm are suitable. The samples, once broken, can be used subsequently for Bond ball mill work index or batch grinding tests, therefore limiting overall sample requirements. The test generates an index (DW_i) that can be used to estimate the throughput of AG and SAG circuits through a combination of power-based and model-based approaches. The model-based approach makes use of the direct relationship between the DW_i and the JK rock breakage parameters A and b. The power-based route uses correlations which have been developed between the DW_i and the specific energies of a very wide range of operating AG and SAG circuits. Its usefulness also extends to rock mass characterisation in mining applications, as it is also correlated with the point load index/UCS. It is therefore ideally suited for mine-to-mill studies where it can be simultaneously used to predict comminution circuit performance and to augment input to blast fragmentation models. This makes it a useful tool for orebody profiling in greenfield, brownfield and established operations as, in conjunction with a mine's block model, a detailed picture can built of the blast fragmentation and comminution circuit response.
机译:已经开发了岩石破损测试,可以帮助预测只有有限数量的岩石样品的情况下的自磨(AG)和半自磨(SAG)磨机性能。该测试最初是使用四分之一(已交付)磁芯开发的,但也可以使用全磁芯,半磁芯和块状材料。原始芯线直径在27-85毫米范围内是合适的。样品一旦破碎,便可以随后用于邦德球磨机的工作指数或批量研磨测试,因此限制了总体样品要求。该测试生成一个索引(DW_i),该索引可用于通过结合基于功率和基于模型的方法来估计AG和SAG电路的吞吐量。基于模型的方法利用了DW_i与JK岩石破损参数A和b之间的直接关系。基于功率的路径使用已在DW_i与非常大范围的工作AG和SAG电路的比能量之间建立的相关性。它的用途还扩展到采矿应用中的岩体表征,因为它还与点载荷指数/ UCS相关。因此,它非常适合矿场研究,可同时用于预测粉碎电路性能并增加爆炸碎片模型的输入。这使其成为在未开发区,未开发区和已建立的作业中进行矿体剖析的有用工具,因为结合矿山的区块模型,可以生成爆炸碎片和粉碎回路响应的详细图片。

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