钢渣-土混拌基层材料试验研究及微观机理分析
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TU411.3;U416.1

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安徽省高校自然科学研究重大项目(KJ2018ZD006);安徽省住房城乡建设科学技术计划(2018YF-007)


Experimental study and micro-mechanism analysis of steel slag-soil mixed road base material
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    摘要:

    针对钢渣用于基层材料易发生膨胀的问题,采用钢渣、高炉矿渣微粉、土混拌并结合土体固化技术,制备道路基层材料钢渣混合土。对16组不同配比土样开展了击实、膨胀率、无侧限抗压强度试验。研究表明:钢渣混合土最佳含水率受配比影响较小,均维持在12%~14%;最大干密度随钢渣掺量的减少而降低,随高炉矿渣微粉掺量的增加而降低;高炉矿渣微粉的掺入可显著降低钢渣混合土膨胀率,提高其无侧限抗压强度;7、14、28、90 d无侧限抗压强度均随钢渣占比增加呈先增后减趋势,配比为50%钢渣、50%土时达到最大。微观结构分析表明:土颗粒表面电荷的改变使得钢渣混合土体结构在成型时更易受压密实,钢渣中游离氧化钙(f-CaO)在固化过程中的水化反应受到明显抑制,主要与矿渣中二氧化硅(SiO2)发生消解反应生成水化硅酸钙凝胶(C—S—H);与此同时,钢渣、土相互包裹的颗粒间堆叠效应及C—S—H凝胶填充混合料缝隙产生的自密实效应进一步提高了土体强度,从而制备出强度高、安定性好的钢渣混合土。

    Abstract:

    In view of the problem that steel slag is prone to expand in base material, steel slag, blast furnace slag micro-powder and soil were mixed to prepare a road base material-steel slag mixed soil using soil solidification technology. The compaction, expansion rate and unconfined compressive strength tests were carried out on 16 soil samples with different mixture ratios. The results show that the optimum moisture content of the steel slag mixed soil is little affected by the mixture ratio, which maintained at 12~14%. The maximal dry density decreases with steel slag content, and decreases as the content of blast furnace slag micro-powder rises. Blast furnace slag micro-powder could significantly reduce the expansion rate of steel slag mixed soil and increase its unconfined compressive strength. The 7 d, 14 d, 28 d and 90 d unconfined compressive strength of steel slag mixed soil are firstly increase then decrease with steel slag content, and the strength reaches the maximum value when the mixture ratio is 50% steel slag and 50% soil. Microstructural analysis shows that the change of surface charge of soil particle enhance the compactness of steel slag mixed soil in molding process. The hydration reaction of f-CaO in the steel slag was inhibited during solidification, and which conduct digestion reaction with SiO2 in the mineral slag to form hydrated calcium silicate gel (C—S—H). At the same time, inter-particle stacking effect between steel slag and soil and self-compacting effect produced by C—S—H gel could enhance strength of steel slag mixed soil, and thus steel slag mixed soil with high strength and stability is prepared.

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黄伟,邱鹏,赵鲁卿,唐钢,王宗森.钢渣-土混拌基层材料试验研究及微观机理分析[J].土木与环境工程学报(中英文),2020,42(4):44-52. Huang Wei, Qiu Peng, Zhao Luqing, Tang Gang, Wang Zongsen. Experimental study and micro-mechanism analysis of steel slag-soil mixed road base material[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2020,42(4):44-52.10.11835/j. issn.2096-6717.2020.037

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  • 收稿日期:2019-10-20
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  • 在线发布日期: 2020-08-10
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