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Field Tests of Cement Fly-Ash Steel-Slag Pile Composite Foundation

机译:水泥粉煤灰钢渣桩复合地基现场试验

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Steel slag is one of the main waste materials in the steelmaking process. As a result, a tremendous amount of steel slag is produced and deposited into storing yards every year. Recycling of the abandoned steel slag is of great environmental and economic value. This study investigates the usage of steel-slag concrete with fly ash as a kind of composite foundation pile material, which can be applied to multi-pile composition foundations for ground improvement involving different pile types. The micromorphology of the concrete, which uses steel slag as aggregate, is analyzed using scanning electron microscopy (SEM). The bearing characteristics of cement fly-ash steel-slag pile (CFS pile) composite foundations are investigated via field load tests, including settlement of the foundation base, horizontal displacement at different depths, distribution of vertical stress increase of the composite foundation, and stress increase of the soil around the pile hole. In addition, the effect of soil squeezing caused by the construction of a CFS pile is studied. To accomplish this, the variation in the increase in stress of the foundation at different distances in the horizontal direction is measured. The results suggest that the usage of steel slag as an aggregate can effectively satisfy the strength requirement of the pile. CFS pile composite foundations have the advantages of high bearing capacity, small settlement deformation, and limited horizontal deformation. This study demonstrates the potential usage of steel slag as aggregate in pile composite foundations, which can bring significant economic and environmental benefits.
机译:钢渣是炼钢过程中的主要废料之一。结果,每年产生大量的钢渣并沉积到堆场中。回收废钢渣具有很大的环境和经济价值。本研究探讨了粉煤灰钢渣混凝土作为一种复合地基桩材料的应用,可将其应用于多层桩基,以改善涉及不同桩类型的地基。使用钢渣作为骨料的混凝土的微观形态使用扫描电子显微镜(SEM)进行了分析。通过现场载荷试验研究了水泥粉煤灰钢渣桩(CFS桩)复合地基的承载特性,包括地基沉降,不同深度的水平位移,复合地基竖向应力增加的分布以及应力。增加桩孔周围的土壤。此外,研究了CFS桩施工引起的土壤挤压效应。为此,测量在水平方向上不同距离处的地基应力增加的变化。结果表明,钢渣作为骨料的使用可以有效满足桩的强度要求。 CFS桩复合地基承载力高,沉降变形小,水平变形小。这项研究表明,钢渣作为骨料在桩复合地基中的潜在用途可带来显着的经济和环境效益。

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