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Predicting the effect of operating and design variables on breakage rates using the mechanistic ball mill model

机译:使用机械球磨机模型预测运行和设计变量对破损率的影响

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Batch grinding tests have been a very good tool to aid in understanding the effect of design and operating variables in ball milling, as well as in providing data for a couple of successful scale-up methods. Recently, a mechanistic model of the ball mill has been proposed, and the present paper describes its application in the simulation of batch mills operating under a range conditions. First-order breakage rates have been estimated using data from these simulations, and used to investigate the effect of operating and design variables in milling. Predictions using the mechanistic model are then compared to those using the scale-up relationships proposed by Austin and collaborators and Herbst and Fuerstenau. The trends predicted using the mechanistic model are in general agreement with the empirical models. Good correlation has also been observed between the simulated specific breakage rates and the specific mill power, which is in agreement with the scale-up method proposed by Herbst and Fuerstenau.
机译:批量研磨测试是一种非常好的工具,有助于理解球磨中设计和操作变量的效果,并为成功的几种放大方法提供数据。最近,提出了一种球磨机的机械模型,并且本文描述了其在一定范围条件下运行的间歇式磨机的模拟中的应用。一阶破损率已使用来自这些模拟的数据进行了估算,并用于研究铣削中操作和设计变量的影响。然后将使用机械模型的预测与使用奥斯汀及其合作者以及赫伯斯特和菲尔斯特瑙提出的按比例放大关系的预测进行比较。使用力学模型预测的趋势与经验模型基本一致。在模拟的比破损率和比磨机功率之间也观察到良好的相关性,这与Herbst和Fuerstenau提出的按比例放大方法相一致。

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