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Evaluation of local soil-pile friction in saturated clays under cyclic loading

机译:循环荷载作用下饱和黏土局部土-桩摩擦系数的评估

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This paper presents laboratory measurements of mobilized local friction along piles subjected to very large numbers of axial loading cycles. The experimental approach used here is of the physical modelling type and consists of testing an instrumented prototype pile-probe installed and loaded in specimens of saturated clay reconstituted in a calibration chamber. The procedure developed for evaluating the local friction mobilized upon monotonic loading and the further evolution of local friction during the application of displacement-controlled cycles is described. After the installation of the probe, a succession of monotonic and cyclic displacement-controlled loading phases, carried out on a reference kaolinite, is presented and analysed. During the cyclic sequence, carried out up to 10(5) cycles, an initial phase of friction degradation is observed, followed by a reinforcement phase, which continues until the end of the test. A coefficient of evolution is defined which allows for the quantification, during the application of the cycles, of the evolution of mobilized friction in terms of the degradation or reinforcement of friction. The evolution of the friction mobilized during the application of the cycles is interpreted in terms of the combination of excess pore water pressure generation and dissipation. A comparison is made between the maximum static shear mobilized before and after the cycles, which shows the influence of the cyclic sequence on this quantity. Elements are finally given on the repeatability of the test, showing a fairly good level of repeatability. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:本文介绍了承受大量轴向载荷循环的沿桩动员局部摩擦的实验室测量结果。这里使用的实验方法是物理建模类型,包括测试已安装并加载到在校准室中重构的饱和粘土样本中的仪器化原型桩探针。描述了用于评估在单调加载时动员的局部摩擦以及在施加位移控制的循环过程中局部摩擦的进一步演变过程。安装探针后,介绍并分析了在参考高岭石上进行的一系列单调和循环位移控制的加载阶段。在最多执行10(5)个循环的循环过程中,观察到摩擦降解的初始阶段,随后是增强阶段,该阶段一直持续到测试结束。定义了演化系数,该系数允许在施加循环期间根据摩擦的退化或增强来量化动员摩擦的演化。循环施加过程中动员的摩擦力的演变是根据多余的孔隙水压力的产生和耗散的组合来解释的。在循环前后动员的最大静态剪切力之间进行比较,这表明循环顺序对该数量的影响。最后给出测试重复性的元素,显示出相当好的重复性水平。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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