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二元粉煤灰-石灰混合物对天然土壤承载力影响的评估:与两种传统稳定剂石灰和波特兰水泥的比较

Evaluation of the Effect of Binary Fly Ash-Lime Mixture on the Bearing Capacity of Natural Soils: A Comparison with Two Conventional Stabilizers Lime and Portland Cement.

作者信息

Arias-Jaramillo Yhan P, Gómez-Cano Diana, Carvajal Gloria I, Hidalgo César A, Muñoz Fredy

机构信息

Department of Construction, School of Architecture, Universidad Nacional de Colombia, Medellín 050034, Colombia.

Engineering Faculty, Universidad de Medellín, Medellín 050026, Colombia.

出版信息

Materials (Basel). 2023 May 26;16(11):3996. doi: 10.3390/ma16113996.

Abstract

This study evaluates a binary mixture of fly ash and lime as a stabilizer for natural soils. A comparative analysis was performed on the effect on the bearing capacity of silty, sandy and clayey soils after the addition of lime and ordinary Portland cement as conventional stabilizers, and a non-conventional product of a binary mixture of fly ash and Ca(OH) called FLM. Laboratory tests were carried out to evaluate the effect of additions on the bearing capacity of stabilized soils by unconfined compressive strength (UCS). In addition, a mineralogical analysis to validate the presence of cementitious phases due to chemical reactions with FLM was performed. The highest UCS values were found in the soils that required the highest water demand for compaction. Thus, the silty soil added with FLM reached 10 MPa after 28 days of curing, which was in agreement with the analysis of the FLM pastes, where soil moistures higher than 20% showed the best mechanical characteristics. Furthermore, a 120 m long track was built with stabilized soil to evaluate its structural behavior for 10 months. An increase of 200% in the resilient modulus of the FLM-stabilized soils was identified, and a decrease of up to 50% in the roughness index of the FLM, lime (L) and Ordinary Portland Cement (OPC)-stabilized soils compared to the soil without addition, resulting in more functional surfaces.

摘要

本研究评估了粉煤灰和石灰的二元混合物作为天然土壤稳定剂的效果。对添加石灰和普通硅酸盐水泥(作为传统稳定剂)以及粉煤灰与Ca(OH)的二元混合物(称为FLM)这种非常规产品后粉质土、砂土和黏土承载力的影响进行了对比分析。通过无侧限抗压强度(UCS)进行室内试验,以评估添加剂对稳定土承载力的影响。此外,进行了矿物学分析,以验证因与FLM发生化学反应而产生的胶凝相的存在。在压实所需含水量最高的土壤中发现了最高的UCS值。因此,添加FLM的粉质土在养护28天后达到了10MPa,这与FLM浆体的分析结果一致,其中含水量高于20%时表现出最佳力学特性。此外,用稳定土建造了一条120米长的试验路段,以评估其10个月的结构性能。结果表明,与未添加的土壤相比,FLM稳定土的回弹模量提高了200%,FLM、石灰(L)和普通硅酸盐水泥(OPC)稳定土的粗糙度指数降低了50%,从而形成了更具功能性的路面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/658a/10254164/b27b4ad6dbcd/materials-16-03996-g001.jpg

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