工業(yè)廢渣-MgO協(xié)同固化粉質(zhì)砂土試驗研究

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中圖分類號:TU41 文獻標志碼:A 文章編號:1672-1098(2025)02-0059-09
引文格式:,,,等.工業(yè)廢渣- ??MgO 協(xié)同固化粉質(zhì)砂土試驗研究[J].理工大學學報(自然科學版),2025,45(2) :59-67.
DOI:10.3969/j. issn.1672-1098. 2025.02.008
Experimental Study on Industrial Waste Slag-MgO Synergistic Solidification of Silty Sand
WANG Qiang,ZHANG Zhaochang,CHU Zuoyong,GUO Jiawei,LI Yafeng (Schol of CivilEngineringandArchitecture,Anhui UniversityofScienceandTechnology,HuainanAnhui32Ool,China)
Abstract:Objective To address environmental pollution from industrial waste and improve silty sand for subgrade filling,slag,calcium carbide slagand MgO were employed to solidify silty sand.Methods Unconfined strength (UCS), X- ray diffraction (XRD),and electron microscope scanning (SEM) tests were carried out to evaluate the effcts of curing agent ratios and curing ages on soil strength and microstructure.Results The Orthogonal tests on 40% moisture-content silty sand showed that slag dominated UCS at 7d and 56d ( slag>MgO> calcium carbide slag),while calcium carbide slag surpassed MgO at 14d and 28d (slag > calcium carbide slag > MgO) . The optimal ratio was 15% slag +7% calcium carbide slag +8% (204號 MgO . The greatest effect of slag on the strength of the specimen was found at 7d,14d and 56d. The optimum ratio of the curing agent was 15%slag+7% calcium carbide slag +8% (20 MgO . Peak stress failure strains ranged from 0.9% to 1.9% ,inversely related to peak stress. Microstructural analysis showed that hydration products (C-S-H and M-S-H )filled pores and bonded particles, enhancing strength. Conclusion The research supports green,low-carbon slag-calcium carbide slag-Mg0 binders for soil stabilization.
Key words : silty sand solidification ;slag;unconfined compressive strength; microscopic properties
我國地域廣闊,路基土分類繁多,一些特殊土如黃土、膨脹土等工程性能差,用作路基材料時承載力不足。(剩余15128字)