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Macroscopic and Microscopic Mechanisms of Cement-Stabilized Soft Clay Mixed with Seawater by Adding Ultrafine Silica Fume

机译:通过加入超细硅胶烟雾与海水混合水泥稳定的软粘土的宏观和微观机理

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摘要

The strength of the cement-stabilized soil can be improved by the use of seawater. Compressive strength test results show that the strength of cement-stabilized soil mixed with seawater is 50% greater than that mixed with freshwater at the 90th day. However, the application is limited because the expansion of the cement-stabilized soil mixed with seawater increases significantly. A kind of ultrafine silica fume was added into the cement-stabilized soil to inhibit swelling of the cement-stabilized soil with seawater. The expansion of cement-stabilized soil mixed with seawater by adding ultrafine silica fume is close to that of cement-stabilized soil mixed with freshwater. With the addition of ultrafine silica fume, the unconfined compressive strength increases by close to 6.5% compared with seawater alone at the 90th day. The mechanisms of adding ultrafine silica fume into the cement-stabilized soil mixed with seawater are revealed by several physical and chemical characterization parameters, such as specific gravity, unbound water content, surface morphology seen with SEM, and crystal products by X-ray diffraction tests. The results show that the crystal growth is an important factor, affecting the strength and expansion of cement-stabilized soil mixed with seawater.
机译:通过使用海水,可以提高水泥稳定的土壤的强度。抗压强度试验结果表明,与海水混合的水泥稳定土壤强度大于90天混合淡水的50%。然而,申请是有限的,因为与海水混合的水泥稳定土壤的扩张显着增加。将一种超细石英烟雾加入水泥稳定的土壤中,以抑制水泥稳定土壤与海水溶胀。通过加入超细硅胶与海水混合水泥稳定的土壤的膨胀接近与淡水混合的水泥稳定的土壤。随着超细硅粉的加入,与第90天单独的海水相比,无束缚的抗压强度接近6.5%。通过几种物理和化学表征参数(例如比重,未结合的水含量,用SEM所见)和晶体产品,X射线衍射试验,将超细硅粉加入与海水混合的水泥稳定的土壤中加入水泥稳定的土壤中的机制。结果表明,晶体生长是一种重要因素,影响水泥稳定土壤与海水混合的水泥稳定的膨胀。

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