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A New Testing Device for Characterizing Anisotropic Response of Soils during Compaction Processes

机译:一种新型压实过程中土体各向异性特征的测试装置

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Soil behavior during compaction is not completely understood due to the difficulty of observing principal state variables during this process. Determination of stress paths and failure envelopes occurring during compaction is challenging due to limitations during determination of principal stresses. The development of a new one-dimensional compaction device designed to allow direct measurement of axial and radial stresses provides an innovative testing procedure that allows analysis of the evolution of state variables of soils subjected to compaction. This methodology is presented through the analysis of fine-grained soils subjected to cyclic compaction together with the analysis of the moisture effect over the stress ratio. As variations with loading cycles are observed, the results allow inference of ratios between horizontal and vertical stresses (K) as non-unique values. Yield stresses and failure envelopes obtained from compaction stress paths are analyzed considering the effect of unsaturated undrained conditions.
机译:由于很难在压实过程中观察主要状态变量,因此无法完全理解压实过程中的土壤行为。由于在确定主应力过程中的局限性,因此确定在压实过程中发生的应力路径和破坏包络是一项挑战。新的一维压实设备的开发旨在允许直接测量轴向和径向应力,提供了一种创新的测试程序,可以分析压实土壤的状态变量的演变。通过对经受循环压实的细颗粒土的分析以及在应力比下的水分效应分析,提出了这种方法。当观察到加载周期的变化时,结果可以推断出水平应力和垂直应力(K)之比为非唯一值。考虑到不饱和不排水条件的影响,分析了从压实应力路径获得的屈服应力和破坏包络线。

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