Creep behaviour of saturated clay subjected to cyclic loading in plain strain condition

N. Thang
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Abstract

Creep of clayey soils is defined as the time-dependent deformation under sustained stresses, due to viscous behavior of the soil skeletons. Creep behavior of soil depend upon main factors which include time, temperature, soil type, soil structure, stress history, stress state and drainage conditions. In this study, a series of one-dimensional oedometer laboratory creep tests were conducted on samples subjected to cyclic loading in order to study the effect of overconsolidation ratio (OCR) and duration of preloading on the secondary consolidation coefficient of the soft clay. Test results reveal that the secondary consolidation coefficient of theoverconsolidated samples are smaller than that of the normally consolidated samples, and decreases with increasing OCR with a drastic drop for OCR values close to 1. On the basis of the isotache model, an equation for secondary consolidation coefficient compression index is proposed as a function of OCR and duration of preloading. The laboratory tests show that the actual measured secondary consolidation coefficient is independent of time. Therefore, to comply with this reality, the proposed equation was modified to be independent of time and laboratory test results were used to calibrate parameters of the newly proposed equation.
平原应变条件下饱和黏土循环加载的蠕变特性
粘性土的蠕变被定义为在持续应力作用下,由于土骨架的粘性行为而产生的随时间变化的变形。土的蠕变行为主要取决于时间、温度、土的类型、土的结构、应力历史、应力状态和排水条件。为了研究超固结比(OCR)和预压时间对软土二次固结系数的影响,本研究对循环加载的软土试样进行了一系列一维蠕变试验。试验结果表明:超固结试样的二次固结系数小于正常固结试样,且二次固结系数随OCR的增大而减小,在OCR值接近1时急剧下降;在等环节模型的基础上,提出了二次固结系数压缩指数与OCR和预压时间的函数关系式。室内试验表明,实测的二次固结系数与时间无关。因此,为了符合这一实际情况,将所提出的方程修改为不受时间影响,并利用实验室测试结果对新提出的方程的参数进行校准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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