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Groutability of granular soils using sodium pyrophosphate modified bentonite suspensions

机译:焦磷酸钠改性膨润土悬浮液对粒状土壤的灌浆性

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Groutability of granular soils using sodium pyrophosphate (SPP) modified bentonite suspensions was studied to investigate its applicability in permeation grouting. While the relative grain size of the soil and the grout has been widely used to evaluate the groutability of granular soils with particulate grouts, such criteria do not account for the effect of chemical modifications of grouts such as the changes in their Theological properties. The modification of grouts may improve the depth of its penetration, and thus changing the groutability of the granular soils. For such cases, the Theological properties of grouts become crucial to evaluate groutability of soils. In this study, the rheological properties of bentonite suspensions were measured at various bentonite fractions (5%, 7.5%, 10%, and 12% by total mass of suspension) modified with 0%, 1%, 2%, 3%, and 4% SPP (by mass of dry bentonite), respectively. The small amounts of SPP effectively improved the mobility of the concentrated bentonite suspensions allowing the evaluation of change in groutability at different rheological properties but same concentrations. The modified bentonite suspensions were injected into the saturated sand columns prepared at various experimental conditions (effective particle size, relative density, and fines content) under two different constant pressures (35 and 140 kPa). The results showed that the injected pore volumes increased with an increase of the apparent viscosity at equilibrium (high shear rates). A new groutability criterion for granular soils is proposed based on the rheological properties of the suspensions, relative density of the sand, relative grain size of the sand and bentonite, and injection pressure. The proposed groutability criterion provides a more accurate prediction of groutability in granular soils when using modified bentonite suspensions.
机译:研究了使用焦磷酸钠(SPP)改性膨润土悬浮液对粒状土壤的灌浆性,以研究其在渗透灌浆中的适用性。尽管土壤和灌浆的相对粒度已被广泛用于评估带有颗粒灌浆的粒状土壤的灌浆性,但这些标准并未考虑灌浆的化学改性(例如其流变性质)的影响。灌浆的改性可以提高其渗透的深度,从而改变粒状土壤的灌浆性。对于这种情况,灌浆的流变学特性对于评估土壤的灌浆性至关重要。在这项研究中,以0%,1%,2%,3%和0%改性的膨润土级分(悬浮液总质量的5%,7.5%,10%和12%)测量了膨润土的流变性能。 SPP(按干膨润土的质量计)分别为4%。少量的SPP有效地改善了浓缩膨润土悬浮液的流动性,从而可以评估在不同流变特性但相同浓度下的灌浆性变化。在两种不同的恒定压力(35和140 kPa)下,将改性的膨润土悬浮液注入到在各种实验条件(有效粒径,相对密度和细粉含量)下制备的饱和砂柱中。结果表明,在平衡状态下(高剪切速率),随着表观粘度的增加,注入的孔体积增加。根据悬浮液的流变特性,沙子的相对密度,沙子和膨润土的相对粒度,以及注入压力,提出了一种新的粒状土壤灌浆性判据。当使用改良的膨润土悬浮液时,建议的灌浆性标准可以更准确地预测粒状土壤中的灌浆性。

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