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Effect of High Pressure Grinding Rolls (HPGR) pre-grinding and ball mill intermediate diaphragm grate design on grinding capacity of an industrial scale two-compartment cement ball mill classification circuit

机译:高压磨辊(HPGR)预磨和球磨机中间隔膜炉排设计对工业规模两室水泥球磨机分级回路磨削能力的影响

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Effect of High Pressure Grinding Rolls (HPGR) pre-grinding and two-compartment ball mill intermediate diaphragm grate design on grinding capacity of an industrial scale conventional two-compartment ball mill cement grinding and classification circuit was investigated. For this purpose, cement clinker was crushed in an industrial scale HPGR in open circuit and fed to a Polysius two-compartment ball mill and air classifier closed circuit. Two-compartment ball mill intermediate diaphragm middle grate design was changed when HPGR crushed clinker was fed to the circuit to obtain optimum flow of material from the first compartment into the second compartment. Modifications on the diaphragm design were required due to the increased throughput when processing HPGR product. Two sampling campaigns were performed at the steady state conditions of the circuit. Raw clinker (uncrushed clinker) was fed to the conventional two-compartment ball mill air classifier circuit in sampling campaign-1 whereas HPGR crushed clinker was fed to the same circuit with modifications on the intermediate diaphragm middle grate design in sampling campaign-2. Mass balanced tonnage and particle size distributions were estimated by using JKSimMet Steady State Mineral Processing Simulator in both sampling campaigns. Polysius (R) two-compartment ball mill was modeled by using perfect mixing modeling approach (Whiten, 1974). Specific discharge and breakage rates in the grinding compartments were estimated by using the two-compartment ball mill model structure proposed by Genc and Benzer (2015). Specific discharge rates were found to increase at coarse size ranges when raw clinker was fed to the circuit in compartment-1. However, specific discharge rates of particles were increased slightly at coarse size ranges in the second compartment at higher mill capacity condition. Specific breakage rates were increased when the circuit was fed with HPGR crushed clinker. Modifications in the circuit and the ball mill intermediate diaphragm grate design enabled the optimization of the grinding capacity of the conventional two-compartment ball mill cement grinding and classification circuit. Ball mill grinding and classification circuit capacity was increased by 10% and specific energy consumption of the ball mill was decreased by 9.1%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了高压磨辊(HPGR)的预磨和二室球磨机中隔膜炉排设计对工业规模常规两室球磨机水泥粉磨分级系统的磨削能力的影响。为此,将水泥熟料在工业规模的HPGR中开路粉碎,然后送入Polysius两室球磨机和空气分级机闭路系统中。当将HPGR粉碎熟料送入回路时,可改变两室球磨机中间隔膜中炉排的设计,以使物料从第一室进入第二室的最佳流量。由于加工HPGR产品时产量的增加,需要对隔膜设计进行修改。在电路的稳态条件下进行了两次采样。将原始熟料(未粉碎的熟料)送入采样活动1的常规两室球磨机分级机回路,而将HPGR粉碎的熟料送入同一回路,对采样活动2的中间隔膜中炉排设计进行了修改。在两个采样活动中,均使用JKSimMet稳态矿物加工模拟器估算了质量平衡的吨位和粒径分布。 Polysius(R)两室式球磨机是使用完美的混合建模方法进行建模的(Whiten,1974)。通过使用Genc和Benzer(2015)提出的两室式球磨机模型结构来估算研磨室中的比放电率和破损率。当将粗熟料送入隔室1中的回路时,发现特定的放电速率在粗尺寸范围内增加。然而,在较高的磨机容量条件下,在第二室中,在较大的尺寸范围内,颗粒的比排放速率略有增加。当电路中装有HPGR压碎熟料时,比破损率会增加。电路的修改和球磨机中间膜栅的设计使传统的两室球磨机水泥粉磨和分级电路的粉磨能力得以优化。球磨机的粉碎和分级电路容量增加了10%,球磨机的单位能耗降低了9.1%。 (C)2016 Elsevier Ltd.保留所有权利。

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