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Variables controlling tensile strength of stabilized sand with cement and zeolite

机译:用水泥和沸石控制稳定砂抗拉强度的变量

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摘要

Soil treatment using cement is widely used in soil stabilization mainly in road construction, as a support layer for shallow foundations, to strengthen slopes, and to prevent sand liquefaction. The current research intends to quantify the influence of cement and zeolite contents, porosity index and porosity/cement ratio on zeolite-cemented sands measuring splitting tensile strength (q(t)). In this research, 213 splitting tensile tests considering void ratio, cement content and different percent of cement replacement by zeolite are done. Results indicate that cement replaced by zeolite is at optimum proportion of 30%. Besides, the value of improved q(t) of the cement sand specimens due to zeolite and cement chemical properties are exploited. Increasing cement content and porosity of the compacted mixture, the efficiency of using zeolite rises. In this paper, it has been shown that for the zeolite-cement-sand mixtures, q(t) increases via cement content (C) raise and porosity (eta) reduction and a power function is well-adapted to fit both q(t)-C and q(t)-eta. As a consequence, for each of the zeolite-cement-sand mixtures studied, a target q(t) value could be obtained using a specific correlation by porosity reductions, cement content rises and zeolite variations. This experimental research will introduce an acceptable description of the mechanical parameters which can be used in the subgrade and foundation designs.
机译:使用水泥的土壤处理广泛用于土壤稳定,主要用于道路建设,作为浅层基础的支撑层,加强斜坡,防止砂液。目前的研究旨在量化水泥和沸石含量,孔隙率指数和孔隙率/水泥比的影响测量分裂拉伸强度(Q(T))。在本研究中,完成了考虑空隙率,水泥含量和沸石的不同百分比的分裂拉伸试验。结果表明,沸石替代的水泥是最佳比例为30%。此外,利用了由于沸石和水泥化学性质引起的水泥砂样本的改善Q(t)的值。增加水泥含量和压实混合物的孔隙率,使用沸石的效率上升。在本文中,已经表明,对于沸石 - 水泥 - 砂混合物,Q(t)通过水泥含量(c)增加(c)升高(ETa)减少,功率函数很好地适应q(t )-c和q(t)-eta。因此,对于所研究的每个沸石 - 水泥砂混合物,可以使用孔隙率降低,水泥含量上升和沸石变化来获得靶Q(t)值。该试验研究将引入可接受的机械参数描述,该参数可用于路基和基础设计。

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