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Characteristics and Assessment of seismic behavior of improved ground by Sand Compaction Pile Method using iron and steel slag as base of Gravity Caisson Structure

机译:以钢渣为重力沉箱结构的夯实桩法改良地基特性及抗震性能评估

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The Sand Compaction Pile Method (SCP) is a major method to improve soft clay ground. Natural sand is generally used as a filling material of SCP. In this study, the seismic deformation behavior of improved ground using solidified iron and steel slag as an alternate material was investigated. As a result of the cyclic loading tests using hollow cylindrical torsional test apparatus to composite ground consisting of improvement pile and clay, the dilatancy properties significantly appeared in improvement pile. As a result of dynamic centrifuge model tests, deformation behavior was similar in the case using solidified iron and steel slag and the case using sand, and residual deformation in the improvement area of the case using solidified iron and steel slag is smaller than that of the case using sand. And as the results of effective stress analysis to the model test, it has been confirmed that the consideration of the dilatancy properties of solidified iron and steel slag is important in the seismic performance evaluation.
机译:压实桩法(SCP)是改善软土地基的主要方法。通常使用天然沙子作为SCP的填充材料。在这项研究中,研究了以固化的钢渣作为替代材料的改良地面的地震变形行为。使用空心圆柱体扭转试验装置对由改良桩和粘土组成的复合地基进行循环荷载试验的结果是,改良桩显着出现了剪胀特性。动态离心模型试验的结果是,在使用凝固的钢渣和使用砂子的情况下,变形行为是相似的,并且在使用凝固的钢渣的情况下,改进区域的残余变形小于炉渣。用沙子的情况。并且,作为对模型试验进行有效应力分析的结果,已经证实,考虑到凝固的钢渣的膨胀特性对抗震性能评估很重要。

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