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Performance of soft clay stabilized with sand columns treated by silica fume

机译:硅粉处理砂柱稳定的软土性能

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In many road construction projects, if weak soil exists, then uncontrollable settlement and critical load carrying capacity are major difficult problems to the safety and serviceability of roads in these areas. Thus ground improvement is essential to achieve the required level of performance. The paper presents results of the tests of four categories. First category was performed on saturated soft bed of clay without any treatment, the second category shed light on the improvement achieved in loading carrying capacity and settlement as a result of reinforcing with conventional sand columns at area replacement ratio = 0.196. The third set investigates the bed reinforced by sand columns stabilized with dry silica fume at different percentages (3, 5 and 7%) and the fourth set investigates the behavior of sand columns treated with slurry silica fume at two percentages (10 and 12%). All sand columns models were constructed at (R.D= 60%). Model tests were performed on bed of saturated soil prepared at undrained shear strength between 16-20 kPa for all models. For all cases, the model test was loaded gradually by stress increments up to failure. Stress deformation measurements are recorded and analyzed in terms of bearing improvement ratio and settlement reduction ratio. Optimum results were indicated from soil treated with sand columns stabilized with 7% dry silica fume at medium state reflecting the highest bearing improvement ratio (3.04) and the settlement reduction ratio (0.09) after 7 days curing. While soil treated with sand columns stabilized with 10% slurry silica fume provided higher bearing improvement ratio 3.13 with lower settlement reduction ratio of 0.57 after 7-days curing.
机译:在许多道路建设项目中,如果土壤薄弱,那么无法控制的沉降和临界载荷承载能力是这些地区道路安全性和可服务性的主要难题。因此,地面改善对于实现所需的性能水平至关重要。本文介绍了四个类别的测试结果。第一类是在未经处理的饱和软土上进行的,第二类是由于用常规砂柱以面积替代比= 0.196进行加固而提高了承载能力和沉降的结果。第三组研究用不同百分比(3%,5%和7%)的干燥硅粉稳定的砂柱加固的床层,第四组研究两个比例(10%和12%)用浆料二氧化硅粉处理的砂柱的性能。 。所有砂柱模型均以(R = 60%)构建。对于所有模型,均在以16-20 kPa之间的不排水抗剪强度制备的饱和土壤床上进行了模型测试。在所有情况下,模型测试都是通过应力增量逐渐加载直至失效。根据轴承改善率和沉降减少率来记录和分析应力变形测量值。从用中性状态的7%干硅粉稳定的砂柱处理过的土壤中获得了最佳结果,反映了7天固化后最高的承载改善率(3.04)和沉降减少率(0.09)。用砂柱处理的土壤用10%的硅粉泥稳定后,养护7天后,其承载力改善率更高,为3.13,沉降减少率仅为0.57。

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