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Mechanical behaviour of heavily compacted bentonite under high suction changes

机译:高吸力变化下重压实膨润土的力学行为

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摘要

The paper reports the results of an experimental study carried out on a bentonite compacted to a dry density of\udup to 1·7 Mg=m3, a high value for this type of soil. The soil fabric has been studied using a variety of techniques, revealing a clear bimodal pore distribution that corresponds to two distinct structural levels: a microstructural one and a macrostructural one. The main testing programme has been performed using oedometers especially designed to apply a very large range of suctions. By applying the axis-translation technique (using nitrogen as the gas fluid), it has been possible to reach suctions up to 15 MPa. The higher suction range has been achieved by\udapplying a controlled atmosphere where the relative humidity has been fixed by a solution of sulphuric acid or salts. In this way suctions up to 550 MPa could be reached. The maximum vertical stress that could be\udapplied in the apparatus was 10 MPa. Two types of test have been carried out: (a) tests in which a combination of loading paths at constant suction and drying/wetting\udpaths at constant load were applied; (b) swelling tests under constant-volume conditions in order to determine the swelling pressure and the stress path followed during wetting. The results of the experimental programme are examined, taking into account the role of the soil fabric\udin controlling observed mechanical behaviour. In addition, the results of the laboratory tests are reproduced and interpreted using a generalised plasticity model that considers explicitly the interaction between macrostructure and microstructure. In this way, it is possible to achieve a more complete understanding of the mechanisms that underlie observed behaviour, and in particular the interplay between the two structural levels.
机译:该论文报告了对膨润土进行压实试验的结果,该膨润土被压实至干密度达1·7 Mg = m3,对此类土壤而言具有很高的价值。已使用多种技术对土壤织物进行了研究,揭示了一种清晰的双峰孔隙分布,其对应于两个不同的结构水平:微观结构水平和宏观结构水平。主要测试程序已使用专门设计用于施加很大吸力的里程表执行。通过应用轴平移技术(使用氮气作为气体流体),可以达到高达15 MPa的吸力。通过在受控的气氛中使用硫酸或盐溶液固定相对湿度,可以达到更高的吸力范围。这样,吸力可达到550 MPa。可以在设备中施加的最大垂直应力为10 MPa。已经进行了两种类型的测试:(a)结合使用恒定吸力下的加载路径和恒定负载下的干燥/润湿\ udpaths的测试; (b)在恒定体积条件下进行溶胀测试,以确定溶胀过程中的溶胀压力和应力路径。考虑到土壤织物\ udin控制观察到的机械行为的作用,检查了实验程序的结果。此外,使用广义可塑性模型复制并解释了实验室测试的结果,该模型明确考虑了宏观结构和微观结构之间的相互作用。通过这种方式,可以更完整地了解观察到的行为的基础机制,尤其是两个结构层次之间的相互作用。

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