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Quantifying the effect of clinker grinding aids under laboratory conditions

机译:在实验室条件下量化熟料助磨剂的作用

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The effect of clinker grinding aids (GAS) on mill performance and cement properties is currently quantified in real-scale grinding plants. In fact, laboratory-grinding mills operated for given time interval do not consider the effect of circulating load, thereby leading to increased specific energy consumption (Ec) with excessively wide cement particle size distribution (PSD) curves. The main objective of this paper is to develop and validate a laboratory locked-cycle approach that mimics the industrial grinding operations occurring in closed-circuit tube mills. Test results have shown that Ec and its rate of decrease due to GA additions can be adequately predicted using this approach, when compared to those resulting from a real mill operating at 90 ton/h. The addition of GA led to narrower PSD curves and shifting towards smaller diameters, just like what happens in industrial grinding. Also, the cement properties including water demand, setting time, and compressive strength matched to a large extent within each other. (C) 2015 Elsevier Ltd. All rights reserved.
机译:熟料助磨剂(GAS)对磨机性能和水泥性能的影响目前在实际规模的研磨厂中得以量化。实际上,在给定的时间间隔内运行的实验室研磨机没有考虑循环负载的影响,因此导致水泥的粒度分布(PSD)曲线过宽时,单位能耗(Ec)有所增加。本文的主要目的是开发和验证一种实验室锁定循环方法,该方法可模仿闭路管轧机中发生的工业研磨操作。测试结果表明,与以90吨/ h的速度运行的真实轧机得出的结果相比,使用这种方法可以充分预测Ec及其因添加GA而降低的速度。 GA的加入导致PSD曲线变窄,并朝着较小的直径移动,就像在工业研磨中一样。而且,包括需水量,凝结时间和抗压强度在内的水泥性能在很大程度上相互匹配。 (C)2015 Elsevier Ltd.保留所有权利。

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