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Application of Slag–Cement and Fly Ash for Strength Development in Cemented Paste Backfills

机译:渣水泥和粉煤灰在水泥浆料回填中的力量发展中的应用

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摘要

The present study investigates the combined capacity of a newly developed slag-blended cement (MC) and fly ash (FA) as a sustainable solution towards improving the mechanical performance of the cemented paste backfill (CPB) system of a copper-gold underground mine. A total of thirteen mix designs consisting of three MC-treated and ten MC + FA-treated blends were examined. Samples were prepared with a solids content of 77% (by total mass), and were allowed to cure for 7, 14, 28, 56 and 128 days prior unconfined compression testing. Scanning electron microscopy (SEM) studies were also carried out to observe the evolution of fabric in response to MC and MC + FA amendments. The greater the MC content and/or the longer the curing period, the higher the developed strength, toughness and stiffness. The exhibited improvements, however, were only notable up to 56 days of curing, beyond of which the effect of curing was marginal. The performance of 4% Portland cement or PC (by total dry mass) was found to be similar to that of 1.5% MC, while the higher MC inclusions of 2.5% and 3%, though lower in terms of binder content, unanimously outperformed 4% PC. The use of FA alongside MC improved the bonding/connection interface generated between the tailings aggregates, and thus led to improved mechanical performance compared with similar MC inclusions containing no FA. Common strength criteria for CPBs were considered to assess the applicability of the newly introduced MC and MC + FA mix designs. The mix designs “3% MC” and “2.5% MC + 2–2.5% FA” satisfied the 700 kPa strength threshold required for stope stability, and thus were deemed as optimum design choices.
机译:本研究调查了新开发的矿渣混合水泥(MC)和飞灰(FA)作为可持续解决方案,以改善铜金地下矿井水泥浆料回填(CPB)系统的机械性能的可持续解决方案。研究了由三种MC处理和十种MC + FA处理的共混物组成的十三个混合设计。制备样品,用固体含量为77%(通过总质量),并使其固化7,14,28,56和128天,以前不包含束缚的压缩测试。还进行了扫描电子显微镜(SEM)研究,以应对MC和MC + FA修正案响应织物的演变。 MC含量和/或固化时段越长,显影强度,韧性和刚度越高。然而,表现出的改善仅为56天的固化,超出其固化的效果是边缘的。发现4%的Portland水泥或PC(通过总干质量)的性能与1.5%MC的性能相似,而MC夹杂物的较高含量为2.5%和3%,虽然粘合剂含量较低,但一致优于4 % 个人电脑。使用FA沿着MC改进了尾矿聚集体之间产生的粘接/连接界面,从而导致了与不含FA的类似MC夹杂物相比的机械性能。 CPB的常见强度标准被认为评估新引进的MC和MC + FA混合设计的适用性。混合设计“3%MC”和“2.5%MC + 2-2.5%FA”满足STOPE稳定所需的700 kPa强度阈值,因此被认为是最佳设计选择。

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