用于稳定粘土的碳化钙残渣:机械和微观结构特性

IF 4.9 2区 工程技术 Q1 ENGINEERING, CIVIL
Panpan Tang, Akbar A. Javadi, Raffaele Vinai
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引用次数: 0

摘要

电石渣(CCR)是一种富钙的工业废渣,无论是单独使用还是与火山灰材料和碱性活化剂结合使用,都有望改善软弱土壤的力学性能。本研究全面研究了CCR、CCR-粉煤灰和碱活化CCR-粉煤灰在高岭土上的力学性能和稳定机理,旨在阐明其机理差异,识别其局限性,促进其有效应用。基于田口法,通过信噪比和方差分析,定量评价了CCR、粉煤灰、碱性活化剂和土壤初始含水量对增强土壤强度的贡献。通过评价稳定样品的形态和矿物学特征,探讨了不同ccr基材料的稳定机理。Taguchi分析表明,土体强度的发展主要受养护初期初始含水量的影响,随着时间的推移,粉煤灰的贡献越来越大。在所有养护期间,CCR含量的变化对土壤强度的影响有限,方差分析的贡献值很低,统计意义也很低。微观结构分析表明,CCR单独和CCR与粉煤灰复合稳定土壤中C-S-H和C-A-H凝胶的形成程度较低,而碱性活化CCR-粉煤灰稳定土壤中C-A-S-H和N-A-S-H凝胶共存。田口叠加模型有效地用于估计抗压强度结果,并支持确定适合特定强度要求的ccr基材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calcium carbide residue for clay stabilisation: mechanical and microstructural properties
Calcium carbide residue (CCR), a calcium-rich industrial waste, shows promise in improving mechanical properties of weak soils when used alone or in combination with pozzolanic materials and alkaline activators. This study comprehensively investigated the mechanical performance and stabilisation mechanism of CCR, CCR-fly ash, and alkaline-activated CCR-fly ash on kaolin clay, aiming to clarify their differences in mechanisms, identify their limitations, and promote effective application. The contribution of CCR, fly ash, alkaline activator, and initial water content of soil on enhancing soil strength was quantitively assessed through signal-to-noise ratio and analysis of variance (ANOVA) based on the Taguchi method. The stabilisation mechanism of different CCR-based materials was investigated by assessing the morphological and mineralogical features of stabilised samples. Taguchi analysis revealed that the development of soil strength was primarily influenced by initial water content in the early curing stage, while the contribution of fly ash became larger over time. Variation in CCR content had a limited effect on soil strength across all curing periods, as indicated by low contribution values and low statistical significance in ANOVA. The microstructural analyses revealed a low degree of formation of C-S-H and C-A-H gels in soil stabilised with CCR alone and CCR combined with fly ash, while alkaline activated CCR-fly ash stabilised soil exhibited the coexistence of C-A-S-H and N-A-S-H gels. Taguchi superposition model was effectively used to estimate compressive strength results and supported the determination of suitable CCR-based materials for specific strength requirements.
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来源期刊
Transportation Geotechnics
Transportation Geotechnics Social Sciences-Transportation
CiteScore
8.10
自引率
11.30%
发文量
194
审稿时长
51 days
期刊介绍: Transportation Geotechnics is a journal dedicated to publishing high-quality, theoretical, and applied papers that cover all facets of geotechnics for transportation infrastructure such as roads, highways, railways, underground railways, airfields, and waterways. The journal places a special emphasis on case studies that present original work relevant to the sustainable construction of transportation infrastructure. The scope of topics it addresses includes the geotechnical properties of geomaterials for sustainable and rational design and construction, the behavior of compacted and stabilized geomaterials, the use of geosynthetics and reinforcement in constructed layers and interlayers, ground improvement and slope stability for transportation infrastructures, compaction technology and management, maintenance technology, the impact of climate, embankments for highways and high-speed trains, transition zones, dredging, underwater geotechnics for infrastructure purposes, and the modeling of multi-layered structures and supporting ground under dynamic and repeated loads.
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