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The Effect of Displacement Mode of Rigid Retaining Walls on Shearing Bands by Active Earth Pressure

机译:主动土压力对刚性挡土墙位移模式对剪切带的影响

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This work treats the physical modeling of failure mechanisms by active earth pressure. This last is developed by retaining wall movement. A lot of research showed that wall displacement has a significant effect on active earth pressure. A good comprehension of active earth pressure phenomenon and its failure mechanisms help us to better conceive retaining walls. The conception of a small-scale model allowed the realization of active earth pressure tests, while displacing the mobile wall toward the outside of the massif. The studied material is that of Schneebeli; light two-dimensional material made of cylindrical plastic rollers, simulating granular non-cohesive soil. The evolution of shearing zones under continuous and discontinuous displacement modes of mobile walls by correlation pictures allows the investigation of the localization of deformations and failure mechanisms.
机译:这项工作通过主动土压力处理破坏机理的物理模型。通过保持墙的移动来开发最后一个。大量研究表明,墙体位移对主动土压力有显着影响。对活动土压力现象及其破坏机制的良好理解有助于我们更好地设计挡土墙。小规模模型的概念允许实现主动土压力测试,同时将活动墙移向地块的外部。研究的材料是Schneebeli的材料。由圆柱形塑料滚轴制成的轻型二维材料,可模拟颗粒状非粘性土壤。通过相关图片在移动壁连续和不连续位移模式下剪切区域的演化,可以研究变形和破坏机制的局部性。

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