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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >The compaction effect on the performance of a compaction-grouted soil nail in sand
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The compaction effect on the performance of a compaction-grouted soil nail in sand

机译:对砂中压实灌浆土钉性能的压实影响

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摘要

In this study, two series of physical modeling experiments, with and without a grouting process, were conducted under different grouting pressures to study the effect of compaction grouting on the performance of compaction-grouted soil nails. In addition, a hyperbola-based model was proposed to describe the variation of the pullout forces with and without grouting. Some of the main conclusions drawn are as follows. First, the compaction effect initially influences the mobilized pullout force, but not the final stage of pullout; the large difference between the two series of tests in regard to the pullout force at the initial stage led to the first part of this conclusion. However, the final pullout force results of the tests, both those with and those without grouting, were similar. Second, once the soil condition changes, the compaction effect on the performance of a soil nail depends on the grouting pressure rather than the diameter of the grout bulb. Third, the difference in the soil response (i.e., vertical dilatancy and the vertical and horizontal squeezing effects) derived from the compaction grouting effect will result in the initial difference in the increased rate of the pullout force between the tests with a grouting process and those without. Finally, a hyperbola-based model was proposed to describe the variation of the pullout force of the model tests with and without grouting, through which the pullout force is available of prediction for the given diameter of grout bulb and pullout displacement.
机译:在这项研究中,在不同的灌浆压力下进行了两次具有和没有灌浆过程的物理建模实验,以研究压实灌浆对压实灌浆土钉的性能的影响。此外,提出了一种基于双曲线的模型来描述带有和无灌浆的拉伸力的变化。一些主要的结论如下。首先,压实效果最初影响动员的拔出力,但不是拉出的最后阶段;在初始阶段的拉伸力方面两系列测试之间的巨大差异导致了该结论的第一部分。然而,测试的最终拉伸力结果,与没有灌浆的那些,既有和那些没有灌浆一样。其次,一旦土壤条件发生变化,对土着钉子性能的压实效果取决于灌浆压力而不是灌浆灯泡的直径。第三,源自压实灌浆效果的土壤反应(即,垂直膨胀和垂直和水平挤压效应的差异将导致灌浆过程和灌浆过程之间的拉伸力的增加率的初始差异没有。最后,提出了一种基于双曲线的模型来描述模型试验的拉伸力的变化,并且在没有灌浆的情况下,拉伸力可获得针对灌浆灯泡的给定直径的预测和拉伸位移。

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