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Clay creep and displacements: influence of pore fluid composition

机译:粘土蠕变和位移:孔隙液组成的影响

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Time dependent shear displacements in clay soils under constant effective stresses can also be induced by changes in pore fluid composition. This paper presents the results of laboratory tests carried out on a sodium bentonite and on samples of the Varicoloured Clays formation outcropping east of Potenza, Southern Italian Apennines. The soils reconstituted with a 1M NaCl solution were submitted to shear tests under constant shear stresses in two different conditions: i) after shearing to the residual state, and ii) intact at various OCR. The applied shear stresses were lower than the residual strength of the materials reconstituted with the salt solution (residual friction angle, Φ'_r ≈ 15°) and higher than that obtained with distilled water (Φ'_r ≈ 5°). While exposed to 1M NaCl solution, the specimens didn't experiment creep; on the contrary, exposure to distilled water made the displacement rate increase greatly. The decrease in pore ion concentration obliterated the over-consolidation effects.
机译:在恒定有效应力下粘土土壤中的时间依赖性剪切位移也可以通过孔隙流体组合物的变化诱导。本文介绍了对膨润土钠和南部意大利赤阶南部的杂色粘土形成的样品进行实验室试验结果。用1M NaCl溶液重构的土壤在两个不同条件下的恒定剪切应力下的剪切试验:i)在剪切到残留状态之后,II)在各种OCR处完整。施加的剪切应力低于与盐溶液重构的材料的残余强度(残留摩擦角,φ'_r≈15°),高于用蒸馏水(φ'_r≈5°)得到的材料。在暴露于1M NaCl溶液中,标本没有实验蠕变;相反,暴露于蒸馏水使得位移率大大增加。孔离子浓度的降低消除了过巩固的效果。

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