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The influence of grouting pressure on the pullout resistance of soil nails in compacted completely decomposed granite fill

机译:压实完全分解花岗岩填充物中灌浆压力对土钉抗拔性的影响

摘要

The interface shear strength between a soil nail and the surrounding soil is required in the design analysis and safety assessment of a soil nailed structure, such as a slope, retaining wall or excavation. It has been found that a number of factors may influence the interface shear strength, such as the normal stress, soil properties, soil nail surface roughness, degree of saturation and grouting pressure. Some initial results from field pullout tests on soil nails grouted under pressure have indicated that the grouting pressure contributes to the pullout resistance. Pressure grouting is a cost-effective method for increasing the soil nail pullout resistance, thus improving the performance of the nailed structure. Studies on the soil nail failure mechanisms and quantitative data from tests investigating how grouting pressure influences the pullout resistance are, however, very limited. First, this paper introduces a laboratory soil nail pullout box with full instrumentation and a special pressure grouting device and its set-up. Second, the paper describes the test procedures and a programme for studying the influence of pressure grouting. The paper presents representative test results. The influence of the grouting pressure together with overburden soil pressure on the pullout resistance is examined. From the test results, relationships between pullout resistance and grouting pressure are obtained and discussed.
机译:在土钉结构(例如边坡,挡土墙或开挖)的设计分析和安全评估中,需要土钉与周围土壤之间的界面抗剪强度。已经发现许多因素可能影响界面剪切强度,例如法向应力,土壤性质,土钉表面粗糙度,饱和度和灌浆压力。对在压力下灌浆的土钉进行现场拉拔试验的一些初步结果表明,灌浆压力有助于抗拉拔。压力灌浆是一种增加土钉抗拉强度,从而改善钉结构性能的经济有效的方法。然而,关于土钉破坏机理的研究以及来自调查灌浆压力如何影响抗拔性的测试的定量数据非常有限。首先,本文介绍了一个带有完整仪器的实验室土钉抽拉盒,一个特殊的压力灌浆装置及其设置。其次,本文介绍了测试程序和研究压力灌浆影响的程序。本文介绍了代表性的测试结果。研究了灌浆压力和上覆土压力对抗拔力的影响。从测试结果中,获得并讨论了抗拔力与灌浆压力之间的关系。

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