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Application of a Suction Control System in the Method of Specimen Saturation in Triaxial Tests

机译:吸力控制系统在三轴试验试样饱和度方法中的应用

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A new soil suction control system was developed to saturate soils in triaxial tests. The suction control system was used to reduce the void ratio change during the saturation stage in triaxial tests and to preserve their small-strain behavior. A series of CK_0UAC triaxial tests (K_0 consolidation and undrained axial compression) on Taipei silty clay, saturated with and without suction control, are presented. The results are presented in terms of the stress-strain behavior during consolidation and undrained shearing. Bender element tests were also performed during the K_0-consolidation stage. Results show that the new saturation method with suction control resulted in a better quality soil specimen than conventional saturation. Both the measured Young's modulus and the shear modulus of the specimens saturated conventionally were underestimated by 20 % and 14 % compared with those saturated with suction control for the reconstituted soil. It is expected that such a difference would be much larger for soils sampled at greater depths. However, the proposed suction control system is not applicable to soil specimens with suctions greater than 100 kPa. The proposed approach would only be applicable for high air-entry value soils so that the suction does not cause desaturation in the soil specimen. Finally, two empirical equations are proposed to estimate the shear modulus of in-situ soils.
机译:开发了一种新的土壤抽吸控制系统,以在三轴试验中使土壤饱和。在三轴测试中,吸力控制系统用于减少饱和阶段的空隙率变化,并保持其小应变性能。提出了一系列在台北粉质黏土上进行的CK_0UAC三轴试验(K_0固结和不排水的轴向压缩),有无吸力控制就饱和。结果以固结和不排水剪切过程中的应力应变行为表示。在K_0合并阶段还执行了弯曲器元素测试。结果表明,采用吸力控制的新饱和方法比传统的饱和方法能产生更好的土壤标本。与用吸水控制法饱和的土样相比,常规饱和的试样的杨氏模量和剪切模量均被低估了20%和14%。可以预期,对于更大深度的土壤,这种差异会更大。但是,建议的吸力控制系统不适用于吸力大于100 kPa的土壤样本。所提出的方法仅适用于高进气价值的土壤,因此吸力不会引起土壤样品的饱和。最后,提出了两个经验方程式来估算原位土的剪切模量。

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