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Stabilization of a Clayey Soil with Ladle Metallurgy Furnace Slag Fines

机译:用钢包冶金炉渣锻炼粘土土壤稳定性

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摘要

The research study described in this paper investigated the potential to use steel furnace slag (SFS) as a stabilizing additive for clayey soils. Even though SFS has limited applications in civil engineering infrastructure due to the formation of deleterious expansion in the presence of water, the free CaO and free MgO contents allow for the SFS to be a potentially suitable candidate for clayey soil stabilization and improvement. In this investigation, a kaolinite clay was stabilized with 10% and 15% ladle metallurgy furnace (LMF) slag fines by weight. This experimental study also included testing of the SFS mixtures with the activator calcium chloride (CaCl2), which was hypothesized to accelerate the hydration of the dicalcium silicate phase in the SFS, but the results show that the addition of CaCl2 was not found to be effective. Relative to the unmodified clay, the unconfined compressive strength increased by 67% and 91% when 10% and 15% LMF slag were utilized, respectively. Likewise, the dynamic modulus increased by 212% and 221% by adding 10% and 15% LMF slag, respectively. Specifically, the LMF slag fines are posited to primarily contribute to a mechanical rather than chemical stabilization mechanism. Overall, these findings suggest the effective utilization of SFS as a soil stabilization admixture to overcome problems associated with dispersive soils, but further research is required.
机译:本文描述的研究研究研究了使用钢炉渣(SFS)作为粘土土壤稳定添加剂的可能性。尽管SFS在水上存在有害扩张由于在水中存在有害扩张,但免费的CAO和免费MgO含量也允许SFS成为潜在合适的粘土土壤稳定和改善的候选者。在该研究中,具有10%和15%钢包冶金炉(LMF)炉渣稳定了高岭石粘土。该实验研究还包括使用活化剂氯化钙(CaCl2)的SFS混合物的测试,该氯化钙(CaCl 2)被假设以加速在SFS中的二钙相的水合,但结果表明未发现加入CaCl 2是有效的。相对于未改性的粘土,当使用10%和15%LMF渣时,不凝固的抗压强度分别增加了67%和91%。同样,通过加入10%和15%LMF渣,动态模量分别增加212%和221%。具体地,将LMF炉渣缩合被定位以主要有助于机械而不是化学稳定机制。总体而言,这些研究结果表明,SFS的有效利用SFS作为土壤稳定混合物来克服与分散土壤相关的问题,但需要进一步研究。

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