首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Unconfined Compressive Strength of Synthetic and Natural Mine Tailings Amended with Fly Ash and Cement
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Unconfined Compressive Strength of Synthetic and Natural Mine Tailings Amended with Fly Ash and Cement

机译:粉煤灰和水泥修正的合成和天然矿山尾矿的无限制抗压强度

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摘要

The objectives of this study were to evaluate the effect of binder amendment on the unconfined compression strength (UCS) of mine tailings and assess applicability of using the amended materials in earthworks. Natural and synthetic (i.e., laboratory prepared) mine tailings were used to assess the effects of tailings particle size and tailings solids content on UCS. Two types of off-specification fly ashes and Types I and II portland cement were used as cementitious binders. Tailings and fly ash mixtures were prepared at 70, 80, and 90% solids content and amended with 10 or 20% binder. Unconfined compression strength tests were conducted on specimens cured for 7 days. In general, UCS increased with an increase in tailings particle size, solids content, and/or increase in CaO-to-SiO_2 ratio of fly ash for amended tailings specimens. A multivariate regression model was developed to predict UCS of tailings amended with fly ash as a function of (1) tailings water content, (2) water-to-binder ratio, and (3) CaO-to-SiO_2 ratio of fly ash. The model was developed using data from synthetic tailings specimens and validated via tests on natural tailings and data compiled from literature. The model is applicable for estimating the UCS of candidate fly ash amended hard rock mine tailings and low plasticity soils (i.e., liquid limit < 50). The UCS of high plasticity materials was underpredicted with the model.
机译:这项研究的目的是评估粘结剂改良剂对矿山尾矿的无侧限抗压强度(UCS)的影响,并评估在土方工程中使用修正材料的适用性。天然和合成(即实验室制备的)矿山尾矿用于评估尾矿粒径和尾矿固体含量对UCS的影响。两种不合规格的粉煤灰和I型和II型硅酸盐水泥被用作水泥粘合剂。尾矿和粉煤灰混合物的固含量为70%,80%和90%,并用10%或20%的粘合剂进行了改性。对固化7天的样品进行无侧限抗压强度测试。通常,对于修正后的尾矿标本,UCS随尾矿粒度,固含量和/或粉煤灰CaO / SiO_2比的增加而增加。建立了多元回归模型来预测用粉煤灰修正的尾矿的UCS与(1)尾矿含水量,(2)水灰比和(3)粉煤灰对SiO_2的比率的关系。该模型是使用合成尾矿标本中的数据开发的,并通过对天然尾矿的测试和文献汇编的数据进行了验证。该模型适用于估算经过修改的硬粉矿尾矿和低可塑性土壤(即液体极限<50)的粉煤灰的UCS。该模型对高塑性材料的UCS预测不足。

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