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Strength and deformation characteristics of cement-mixed gravelly soil in multiple-step triaxial compression

机译:水泥砂砾土三步压缩强度与变形特性

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摘要

When backfill is mixed with cement and compacted in the field, it is very difficult to obtain the multiple similar samples needed to determine a Mohr-Coulomb (M-C) failure envelope by a set of triaxial compression (TC) tests at different levels of effective confining pressure (σ_h~'s), due to the inevitably large heterogeneity. The effects of the intermediate loading histories, with and without large stress amplitude unload/reload cycles, on the stress-strain properties of compacted cement-mixed well-graded gravelly soil, particularly the peak strength, were evaluated in multiple-step loading (ML) drained TC tests using a single specimen. A set of single-step loading (SL) tests at different σ_h~'s were also performed. Similar specimens, prepared in the laboratory, were used for the tests in this study. Although the M-C failure envelope can be quite accurately determined by relevant ML tests, the peak strength may be underestimated if (a) TC loading is ceased far before the peak stress state or (b) TC reloading is started after the peak stress state has been passed at previous loading steps. Cases (a) and (b) may take place in both ML tests, with increasing and decreasing σ_h~', while Case (b) may take place in ML tests with decreasing σ_h~'. The reloading stress-strain relation at the intermediate stage in ML tests may become very soft due to the additional damage caused by a negative irreversible shear strain increment occurring in the immediately preceding unloading process. This effect gradually decreases during reloading, while it totally disappears once large-scale yielding has started, with essentially no effect on the peak strength. It is of the first priority to perform ML tests by increasing σ_h~'. It is recommended that ML tests be performed by decreasing σ_h~' if possible, because the peak stress may be closely reached at some intermediate steps. An upper envelope of results from a pair of ML tests, with increasing and decreasing σ_h~', could be more representative of the true M-C failure envelope.
机译:当回填土与水泥混合并在现场压实时,很难通过在不同有效约束水平上进行的一组三轴压缩(TC)试验来获得确定莫尔-库仑(MC)破坏范围所需的多个相似样品。由于不可避免地存在较大的异质性,因此压力(σ_h〜)。在多步加载中评估了中间加载历史(无论是否具有大的应力振幅卸载/再加载循环)对压实的水泥混合的良好分级的砾石土的应力-应变特性(特别是峰值强度)的影响)使用单个样本进行了TC测试。还执行了一组在不同σ_h〜下的单步加载(SL)测试。本研究中使用了实验室准备的类似标本进行测试。尽管可以通过相关的ML测试相当准确地确定MC失效包络线,但如果(a)TC加载在峰值应力状态之前就已经停止,或者(b)在达到峰值应力状态之后才开始TC重新加载,则峰值强度可能会被低估。在先前的加载步骤中通过。情况(a)和(b)可能同时发生在ML测试中,σ_h〜'增大和减小,而情况(b)发生在ML测试中,σ_h〜'减小。在ML测试的中间阶段,由于紧接在前的卸载过程中出现了不可逆的负剪切应变增量所引起的额外损害,其再加载应力-应变关系可能变得非常柔软。在重新装填期间,这种影响逐渐降低,而一旦开始大规模屈服,则其完全消失,而对峰值强度基本上没有影响。通过增加σ_h〜'来执行ML测试是第一要务。如果可能,建议通过减小σ_h〜'来进行ML测试,因为在某些中间步骤可能会接近峰值应力。一对ML测试结果的上包络随着σ_h〜'的增加和减小,可能更能代表真实的M-C故障包络。

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