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首页> 外文期刊>Journal of Environmental Protection and Ecology >SOIL IMPROVEMENT TO COUNTER LIQUEFACTION USING COLLOIDAL SILICA GROUT INJECTION
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SOIL IMPROVEMENT TO COUNTER LIQUEFACTION USING COLLOIDAL SILICA GROUT INJECTION

机译:胶体二氧化硅灌浆对土壤液化的改良

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Soil liquefaction due to earthquakes is a major reason of damage to buildings and other structures. This study deals with soil improvement against liquefaction by injection of a particular stabiliser, colloidal silica, which is nontoxic and stable. Laboratory experiments were performed to determine the effects of colloidal silica grout injection regarding soil strength and deformations. The experiments involved static and dynamic triaxial tests on untreated and treated soil samples. The variables used in the tests are the relative density (loose - 40%, medium - 60% and dense - 80%), the confining pressure (100 and 300 kPa), and the curing period of silica treated samples (7 and 28 days). The results clearly indicate the significant increase in strength of the soil with colloidal silica injection. Furthermore, the relative increase is the highest in the sand of the lowest relative density which is the most probable candidate for soil improvement. The observations that the increase in the strength of colloidal silica treated sands with curing time is gradual and continuous add to the advantage of this method for use in soil improvement works. By using the dynamic test results, the equivalent Young modulus (or shear modulus) and the hysteretic damping ratio of untreated and treated soils are compared.
机译:地震引起的土壤液化是建筑物和其他结构损坏的主要原因。这项研究通过注入无毒且稳定的特定稳定剂胶体二氧化硅来解决土壤液化问题。进行了实验室实验,以确定胶体二氧化硅灌浆对土壤强度和变形的影响。实验涉及对未处理和处理过的土壤样品进行静态和动态三轴测试。测试中使用的变量是相对密度(松散-40%,中等-60%和稠密-80%),围压(100和300 kPa)以及二氧化硅处理样品的固化时间(7天和28天) )。结果清楚地表明,硅胶注入胶体可以显着提高土壤强度。此外,相对增加在相对密度最低的沙子中最高,这是土壤改良的最可能候选者。胶体二氧化硅处理过的砂的强度随固化时间的增加是逐渐且连续的,这增加了这种方法在土壤改良工作中的优势。通过使用动态测试结果,比较了未处理和已处理土壤的等效杨氏模量(或剪切模量)和滞回阻尼比。

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