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Combination of water head control and axis translation techniques in new unsaturated cyclic simple shear tests

机译:新的非饱和循环简单剪切试验中水头控制与轴平移技术的结合

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摘要

A cyclic simple shear device was modified for testing coarse-grained soils at unsaturated conditions. A combined methodology of controlling suction for the practical range of coarse-grained soil water retention curves was adopted. Water head control method was used to accurately control suction within capillary and transition zones of such soils. The axis translation technique, on the other hand, was employed as a complementary approach to reach higher suction values within residual zone. In order to evaluate the performance of the new setup, independent cyclic tests were carried out at various initial suctions including all key points and zones along the primary drying path. The analyses of cyclic stress-strain curves revealed an S-shaped trend of shear modulus against suction, where the peak occurs after residual suction. The merit and necessity of recent modifications were highlighted through comparing shear modulus obtained from constant-suction tests with that of constant-water content experiments.
机译:修改了一种循环简单剪切装置,用于在非饱和条件下测试粗粒土。采用了一种在实际的粗颗粒土壤保水曲线范围内控制吸力的组合方法。使用水头控制方法来精确控制此类土壤的毛细血管和过渡带内的吸力。另一方面,轴平移技术被用作补充方法,以在残留区域内达到较高的吸力值。为了评估新装置的性能,在各种初始吸力下进行了独立的循环测试,包括主要干燥路径上的所有关键点和区域。循环应力-应变曲线的分析显示,剪切模量相对于吸力呈S形趋势,该峰值出现在残余吸力之后。通过比较从恒定吸水试验得到的剪切模量和恒定水含量试验得到的剪切模量,强调了最近修改的优点和必要性。

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