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INTERNAL STABILITY OF GROUP COLUMN TYPE DEEP MIXING IMPROVED GROUND UNDER EMBANKMENT LOADING

机译:路堤荷载作用下群柱式深混合改进地面的内部稳定性

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References(17) Cited-By(5) The Deep Mixing Method (DMM), an in-situ soil stabilization technique using cement and/or lime as a binder, is often applied to improve soft soils. The group column type pattern is extensively applied to stabilize foundations of embankment or lightweight structures. An improved-ground design procedure in Japan assumes two failure patterns related to external and internal stabilities. For the external stability, a collapse failure pattern where the DM columns tilt like dominos could take place instead of a sliding failure pattern. For the internal stability, the DM columns show shear, bending and tensile failure mode, depending not only on the ground and loading conditions but also on the location of each column. However, the current design does not incorporate the effect of these failure modes, but only the shear failure mode. In this study, a series of centrifuge model tests was carried out to investigate the internal stability of group column type improved ground under embankment loading. This paper describes the failure modes of DM columns and a proposed simple calculation that takes into account the bending failure mode.
机译:参考文献(17)被引用(5)深层搅拌法(DMM)是一种使用水泥和/或石灰作为粘结剂的原位土壤稳定技术,通常用于改善软土。群柱式模式广泛用于稳定路堤或轻质结构的基础。在日本,一种改进的地面设计程序假定了两种与外部和内部稳定性有关的失效模式。为了外部稳定性,可以发生DM柱像多米诺骨牌一样倾斜的坍塌破坏模式,而不是滑动破坏模式。为了内部稳定性,DM柱显示剪切,弯曲和拉伸破坏模式,这不仅取决于地面和荷载条件,还取决于每个柱的位置。但是,当前的设计并未考虑这些破坏模式的影响,而仅考虑了剪切破坏模式。在这项研究中,进行了一系列离心模型试验,以研究路堤荷载下群柱式改良地面的内部稳定性。本文描述了DM柱的破坏模式,并提出了考虑弯曲破坏模式的简单计算方法。

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