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首页> 外文期刊>International journal of geotechnical engineering >A comparison study between CaSO_4•2H_2O and Na_2SO_4 effects on geotechnical properties of clayey soils stabilised with mineral additives to recommend adequate mixtures as materials for road pavements
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A comparison study between CaSO_4•2H_2O and Na_2SO_4 effects on geotechnical properties of clayey soils stabilised with mineral additives to recommend adequate mixtures as materials for road pavements

机译:CaSO_4•2H_2O和Na_2SO_4对用矿物添加剂稳定的黏性土的土工特性影响的比较研究,以推荐适当的混合物作为路面材料

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This paper presents a comparison study between calcium (CaSO_4•2H_2O) and sodium (Na_2SO_4) sulphates effects on physico-mechanical properties (pH, plasticity index (PI), unconfined compressive strength (UCS) and shear strength parameters) of both grey and red clayey soils (GS and RS) stabilised with lime (L), natural pozzolana (NP) and their combination (L-NP) in order to recommend adequate mixtures which can be used as building materials for road pavements. In this study, Atterberg limits, pH, UCS and shear strength tests were carried out after different curing periods (1-120 days). Tests results showed that the addition of L as an additive produced a high decrease in the PI of both clayey soils but a considerable increase in UCS, cohesion (C), internal friction angle (φ) and pH was recorded, whereas the NP caused a slight effect. However, when combining both additives, a high decrease in the PI and a further increase in other properties were recorded. Moreover, it was found that the CaSO_4•2H_2O lowered the PI of both clayey soils whereas the Na_2SO_4 increased it. Thus, the increase in pH values of all mixtures with sulphate content was more pronounced with the Na_2SO_4 than with the CaSO_4•2H_2O. On the other hand, both CaSO_4•2H_2O and Na_2SO_4 accelerated the pozzolanic reactions responsible for strength gain. However, at a later stage, the degradation of RS specimens can be explained by the formation of ettringite observed in X-ray diffraction (XRD) patterns. In general, the CaSO_4•2H_2O developed better effects for soil improvement whereas the presence of Na_2SO_4 (with a high content) can be classified as a deleterious element for soil stabilisation. From these results, tow tables were given for choosing an adequate mixture for pavement subgrade soil stabilisation.
机译:本文对硫酸钙(CaSO_4•2H_2O)和硫酸钠(Na_2SO_4)对灰色和红色的物理力学性能(pH,可塑性指数(PI),无侧限抗压强度(UCS)和剪切强度参数)的影响进行了比较研究。用石灰(L),天然火山灰(NP)和它们的组合(L-NP)稳定的黏土(GS和RS),以便推荐足够的混合物作为道路路面的建筑材料。在这项研究中,在不同的固化时间(1-120天)后进行了Atterberg限值,pH,UCS和剪切强度测试。试验结果表明,添加L作为添加剂会使两种黏土的PI值都大大降低,但记录到的UCS,内聚力(C),内摩擦角(φ)和pH值却显着增加,而NP引起了轻微的影响。然而,当将两种添加剂组合时,记录到PI的高度降低和其他性能的进一步提高。此外,还发现CaSO_4•2H_2O降低了两种黏土的PI,而Na_2SO_4则提高了PI。因此,与CaSO_4·2H_2O相比,Na_2SO_4与硫酸盐含量的所有混合物的pH值升高更为明显。另一方面,CaSO_4•2H_2O和Na_2SO_4均加速了引起强度增加的火山灰反应。但是,在稍后的阶段,可以通过在X射线衍射(XRD)模式中观察到的钙矾石的形成来解释RS样品的降解。通常,CaSO_4•2H_2O对土壤改良具有更好的效果,而Na_2SO_4(含量高)的存在可以归类为土壤稳定的有害元素。根据这些结果,给出了拖曳表,用于选择用于路面路基土壤稳定的合适混合物。

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