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Small-strain deformation behaviour of a clay at frozen and unfrozen states: A comparative study

机译:黏土在冻结和未冻结状态下的小应变变形行为:比较研究

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The small-strain deformation behaviour of frozen high-plasticity clay, and the factors influencing it were investigated through parallel tests at frozen and unfrozen states. The first and second series involved temperature-controlled triaxial compression tests on unfrozen and frozen samples, respectively, with accurate strain measurement with local displacement sensors, fully calibrated for cold environment. The small-strain loading was conducted at different axial strain rates and temperatures. At pre-yield small strains in order of 0.001%, Young's modulus was independent of the strain rate, in a same manner as in unfrozen soils. The strain rate only affected the onset of small-scale yielding and the degradation of stiffness after that. The elastic strain range was greater at lower temperature, but the degree of stress-strain non-linearity seen at small strains remained on the whole similar between frozen and unfrozen states. An interesting feature of the frozen clay's stiffness, also confirmed by third test series adopting bender elements, is that it decreases when the soil is frozen from higher effective stress. A simple model was proposed to explain this feature.
机译:通过在冻结和未冻结状态下的平行试验,研究了冻结的高塑性黏土的小应变变形行为及其影响因素。第一个和第二个系列分别对未冷冻和冷冻的样品进行了温度控制的三轴压缩测试,并使用局部位移传感器进行了精确的应变测量,并针对寒冷环境进行了全面校准。在不同的轴向应变速率和温度下进行小应变加载。在屈服强度为0.001%左右的小应变下,杨氏模量与应变率无关,其方式与在未冻结的土壤中相同。应变率仅影响小规模屈服的开始以及之后的刚度降低。在较低温度下,弹性应变范围更大,但在小应变下看到的应力-应变非线性程度总体上在冻结状态和未冻结状态之间保持相似。冷冻粘土刚度的一个有趣特征,也被采用弯曲元件的第三个测试系列所证实,是当土壤因较高的有效应力而冻结时,其降低。提出了一个简单的模型来解释此功能。

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