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Slurry flow in mills: grate-only discharge mechanism (Part-1)

机译:磨机中的泥浆流:纯炉排料机构(第1部分)

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Discharge grates play an important role in determining the performance of autogenous, semi-autogenous and grate discharge ball mills. The flow capacity (grinding capacity) of these mills is strongly influenced by the discharge grate design-open area and position of apertures, as well as the performance of the pulp lifters. As mill sizes have progressively increased and closed-circuiting has become more popular the importance of grate and pulp lifter design has grown. Unfortunately very few studies have concentrated on this aspect of mill performance. To remedy this a series of laboratory and pilot-scale tests were undertaken to study both the performance of grates on their own and in conjunction with pulp lifters. In this first paper of a two-part series the results from the grate-only experiments are presented and discussed, whilst the performance of the grate-pulp-lifter system is covered in the second paper. The results from the grate-only experiments have shown that the build-up of slurry (hold-up) inside the mill starts from the shoulder of the charge, while the toe position of the slurry progressively moves towards the toe of the charge with increasing flowrate. Besides grate design (open area and position of apertures), charge volume and mill speed were also found to have a strong influence on mill hold-up and interact with grate design variables.
机译:排料炉排在确定自排,半自排和炉排排料球磨机的性能方面起着重要作用。这些磨机的流量(研磨能力)受到排料design设计的开口面积和孔口位置以及纸浆提升器性能的强烈影响。随着工厂规模的不断扩大和闭路电路的普及,炉排和纸浆提升器设计的重要性日益提高。不幸的是,很少有研究集中在轧机性能的这一方面。为了解决这个问题,进行了一系列实验室和中试规模的测试,以单独研究gr子的性能以及与纸浆提升器一起使用。在这个由两部分组成的系列的第一篇论文中,介绍并讨论了纯炉排实验的结果,而第二篇论文则介绍了炉排纸浆提升系统的性能。仅炉排实验的结果表明,磨机内部的浆液堆积(滞留)始于装料的肩部,而浆液的趾部位置随着装料的增加而逐渐移向装料的趾部流量。除了炉排设计(开孔面积和孔的位置)以外,装料量和磨机速度也对磨机滞留量有很大影响,并与炉排设计变量相互作用。

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