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Effects of cement and foam addition on chemo-mechanical behaviour of lightweight cemented soil (LWCS)

机译:水泥和泡沫的添加对轻质水泥土(LWCS)化学力学行为的影响

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One of the main problems encountered in civil engineering is the management of large amounts of excavated soil, especially when the mechanical properties of this soil are not suitable for its reuse as a construction material. However, the excavated soil could represent a resource if appropriately improved. A suitable solution is the addition of cement and foam to produce lightweight cemented soils (LWCS). In this paper, an insight into the influence of foam on chemo-mineralogical and microstructural features of soil-cement-water system is presented. Time dependent mineralogical and microstructural changes have been monitored by means of X-Ray Diffraction, Thermo-gravimetric analysis and Mercury Intrusion Porosimetry. The present study shows that addition of foam does not alter the chemo-physical evolution of the soil-cement-water system. Large voids are present in the samples as footprint of air bubbles upon mixing, thus increasing porosity. Macroscopic behaviour of treated samples has been investigated by direct shear and oedometric tests. Chemo-physical evolution induced by cement addition is the major responsible for mechanical improvement showed by treated samples. Porosity of samples induced by foam addition plays a key role in the mechanical response of LWCS, inducing a transition of stress-strain behaviour from brittle and dilative to ductile and contractive as a function of increasing foam content.
机译:土木工程中遇到的主要问题之一是大量挖掘土壤的管理,特别是当该土壤的机械性能不适合用作建筑材料时。但是,如果适当改良,开挖的土壤可能是一种资源。合适的解决方案是添加水泥和泡沫以生产轻质水泥土(LWCS)。本文介绍了泡沫对土壤-水泥-水系统化学矿物学和微观结构特征的影响。通过X射线衍射,热重分析和汞侵入孔隙率法监测了随时间变化的矿物学和微观结构变化。本研究表明,添加泡沫不会改变土壤-水泥-水系统的化学物理演化。样品中大的空隙作为混合时气泡的足迹存在于样品中,从而增加了孔隙率。已通过直接剪切和测压测试研究了处理样品的宏观行为。水泥添加引起的化学物理演化是处理样品显示出机械性能改善的主要原因。泡沫添加引起的样品孔隙度在LWCS的机械响应中起关键作用,随着泡沫含量的增加,应力应变行为从脆性和扩张性转变为延性和收缩性。

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