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Investigation on strength and microstructure characteristics of nano-MgO admixed with cemented soft soil

机译:纳米MgO与胶结软土混合的强度和微观结构特性研究

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The effectiveness of nano-MgO in strength properties and microstructure characteristics of cement stabilized soft soil were analyzed in this study. Sulfuric acid attack was also taken into account, and the effects nano-MgO content and sulfuric acid concentration were mainly addressed. Based on a series of unconfined compression tests, it shows that nano-MgO content plays a significant role in the strength properties of the stabilized soil. For the cement content of 13%, the optimum nano-MgO content is 15% considering both with and without sulphate attack condition. The addition of nano-MgO not only improves the unconfined compressive strength (UCS) of the cement stabilized soil, but also tends to increase its ductility. Scanning electron microscopy (SEM) reveals that the addition of nano-MgO improves the microstructure of the stabilized soil, while overuse of nano-MgO may generate cracks inside of the structure. For the effect of sulfuric acid concentration, specimens under higher concentration solution will have lower strength and stiffness. Finally, the mechanism of sulfuric acid attack on cemented soil was revealed to be outside structure loss caused by sulfuric acid erosion and inside structure distortion caused by ettringite generation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:分析了纳米MgO在水泥稳定软土强度特性和微观结构特征方面的有效性。还考虑了硫酸侵蚀,并且主要解决了纳米MgO含量和硫酸浓度的影响。基于一系列无边压缩试验,结果表明,纳米MgO含量在稳定土的强度特性中起着重要作用。对于水泥含量为13%的情况,考虑到是否具有硫酸盐侵蚀条件,最佳的纳米MgO含量为15%。纳米MgO的添加不仅可以改善水泥稳定土的无侧限抗压强度(UCS),而且还可以提高其延性。扫描电子显微镜(SEM)表明,纳米氧化镁的添加改善了稳定土壤的微观结构,而纳米氧化镁的过度使用可能会在结构内部产生裂纹。对于硫酸浓度的影响,高浓度溶液中的样品将具有较低的强度和刚度。最后,揭示了硫酸侵蚀水泥土的机理是硫酸侵蚀引起的外部结构损失和钙矾石生成引起的内部结构变形。 (C)2019 Elsevier Ltd.保留所有权利。

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