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Application of the Taguchi Method for Optimizing the Process Parameters of Producing Lightweight Aggregates by Incorporating Tile Grinding Sludge with Reservoir Sediments

机译:Taguchi法在瓦泥掺入瓦泥制备轻骨料生产工艺参数中的应用。

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摘要

This study aimed to apply the Taguchi optimization technique to determine the process conditions for producing synthetic lightweight aggregate (LWA) by incorporating tile grinding sludge powder with reservoir sediments. An orthogonal array L16(45) was adopted, which consisted of five controllable four-level factors (i.e., sludge content, preheat temperature, preheat time, sintering temperature, and sintering time). Moreover, the analysis of variance method was used to explore the effects of the experimental factors on the particle density, water absorption, bloating ratio, and loss on ignition of the produced LWA. Overall, the produced aggregates had particle densities ranging from 0.43 to 2.1 g/cm3 and water absorption ranging from 0.6% to 13.4%. These values are comparable to the requirements for ordinary and high-performance LWAs. The results indicated that it is considerably feasible to produce high-performance LWA by incorporating tile grinding sludge with reservoir sediments.
机译:这项研究的目的是应用Taguchi优化技术,通过将瓷砖研磨污泥粉与储层沉积物结合起来,确定生产合成轻质骨料(LWA)的工艺条件。采用正交阵列L16(4 5 ),它由五个可控的四级因素组成(即污泥含量,预热温度,预热时间,烧结温度和烧结时间)。此外,使用方差分析法探讨了实验因素对所产生的LWA的颗粒密度,吸水率,膨胀率和损失对着火的影响。总体而言,所产生的聚集体的颗粒密度为0.43至2.1g / cm 3 ,吸水率为0.6%至13.4%。这些值可与普通和高性能LWA的要求相比。结果表明,通过将瓷砖研磨污泥与储层沉积物结合起来,生产高性能的LWA是相当可行的。

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