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Shear strength and dilative characteristics of an unsaturated compacted completely decomposed granite soil

机译:非饱和压实完全分解花岗岩土的抗剪强度和膨胀特性

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摘要

Shear strength and dilative characteristics of a re-compacted completely decomposed granite (CDG) soil are studied by performing a series of single-stage consolidated drained direct shear tests under different matric suctions and net normal stresses. The axis-translation technique is applied to control the pore-water and pore-air pressures. A soil-water retention curve (SWRC) is obtained for the CDG soil from the equilibrium water content corresponding to each applied matric suction value for zero net normal stress using a modified direct shear apparatus. Shear strength increases with matric suction and net normal stress, and the failure envelope is observed to be linear. The apparent angle of internal friction and cohesion intercept increase with matric suction. A greater dilation angle is found at higher suctions with lower net normal stresses, while lower or zero dilation angles are observed under higher net normal stresses with lower suctions, also at a saturated condition. Experimental shear strength data are compared with the analytical shear strength results obtained from a previously modified model considering the SWRC, effective shear strength parameters, and analytical dilation angles. The experimental shear strength data are slightly higher than the analytical results under higher net normal stresses in a higher suction range.
机译:通过在不同的基质吸力和净法向应力下进行一系列单阶段固结排水直接剪切试验,研究了重新压实的完全分解花岗岩(CDG)土的抗剪强度和膨胀特性。轴平移技术用于控制孔隙水和孔隙空气压力。使用改进的直接剪切设备,从与零净法向应力的每个应用矩阵吸力值对应的平衡含水量中,获得CDG土壤的土壤水分保持曲线(SWRC)。剪切强度随基质吸力和净法向应力而增加,并且观察到破坏范围是线性的。内摩擦和内聚力拦截的表观角度随基质吸力而增加。在较高的吸力下具有较低的净法向应力会发现较大的膨胀角,而在较高的净法向应力下具有较低的吸力也会观察到较小或零的扩张角,同样在饱和条件下。将试验抗剪强度数据与从先前修​​改的模型(考虑SWRC,有效抗剪强度参数和分析膨胀角)获得的分析抗剪强度结果进行比较。在较高的吸力范围内,在较高的净法向应力下,实验抗剪强度数据略高于分析结果。

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