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Ultrasonic evaluation of strength properties of cemented paste backfill: Effects of mineral admixture and curing temperature

机译:超声评估水泥浆料回填的强度性能:矿物混合物和固化温度的影响

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This paper presents the findings of a research study designed and conducted to investigate the effects of mineral admixture and curing temperature on uniaxial compressive strength (UCS) and ultrasonic pulse velocity (UPV) behavior of laboratory-prepared cemented paste backfill (CPB) samples. A total of 290 CPB samples were prepared at different replacement rates (10-80%), cured at various temperatures (10-50 degrees C), and respectively subjected to both UPV and UCS testing after curing times of 3, 7, 14, 28, 56 and 90 days. The obtained experimental results show that the addition of fly ash (FA) can lead to an increase or decrease trend in UCS and UPV behavior of CPB samples, depending on the replacement level of admixtures. There is a competition between the strength-increasing factor (micro-filler effect of FA) and strength-decreasing factor (lower amount of cement hydration products induced by replacement ratio). Both UPV and UCS are found to decrease with increasing blast furnace slag (Slag) replacement level mainly attributable to its low pozzolanic reactivity. Besides, the curing temperature has a significant influence on UCS and UPV behavior, depending on the curing time. Results also suggest that UPV is less sensitive to the variation in the admixture dosage and curing temperature than UCS. As a result, there exists a clear linear relationship between UPV and UCS behavior of both CPB samples prepared with FA and/or Slag admixtures, and CPB samples tested at each curing temperature. The main findings of this research study suggest that the UPV test can be reliably used for predicting CPB's strength properties, saving money and time to mine operators.
机译:本文介绍了研究和进行的研究研究的结果,探讨了矿物混合物和固化温度对实验室制备的粘液浆料回填(CPB)样品的单轴抗压强度(UCS)和超声波脉冲速度(UPV)行为的影响。在不同的替代速率(10-80%)上制备总共290个CPB样品,在各种温度(10-50℃)下固化,并分别在固化3,7,14的固化时间后进行UPV和UCS测试。 28,56和90天。获得的实验结果表明,根据混合物的替代水平,加入粉煤灰(FA)可以导致CPB样品的UCS和UPV行为的增加或降低。在强度增强因子(FA的微填充效果)和强度降低因子之间存在竞争(通过替代比诱导的水泥水合产物的较低量)。随着高炉炉渣(炉渣)替代水平的增加,主要归因于其低原波佐反应性,UPV和UCS都被发现减少。此外,根据固化时间,固化温度对UCS和UPV行为产生显着影响。结果还表明UPV对混合物剂量和固化温度的变异比UCs的变异敏感。结果,在使用FA和/或熔渣混合器的CPB样品的UPV和UCS行为之间存在明显的线性关系,并且在每个固化温度下测试的CPB样品。该研究的主要结果表明,UPV测试可以可靠地用于预测CPB的强度特性,节省资金和时间到矿井运营商。

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