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首页> 外文期刊>International journal of geomechanics >Experimental Investigation and Constitutive Modeling of Grout-Sand Interface
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Experimental Investigation and Constitutive Modeling of Grout-Sand Interface

机译:灌浆砂界面的实验研究与本构型建模

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The shear stress-displacement behavior and shear-strength parameters of the interface between the cement grout nail and surrounding soil are important factors in the design and safety assessment of a soil-nailing system. One of the most commonly used methods to measure the interface shear strength of a soil-grouting system is the direct shear testing method. This study aimed to investigate the behavior of the interface between the cement-grouted materials (soil nails) and sandy soil using direct shear test apparatus, make a comparison between the sand-sand interface and grout-sand interface, and calibrate an interface model to be used in simulations of soil-nailing systems. The effect of the water: cement ratio of the grout and the relative density of the sand on the interface behavior is also investigated. The findings show that, in general, the behavior of interfaces is similar to that of dense sand in terms of strain softening, and their peak and residual friction angles were found to be approximately 8 and 4% higher, respectively. The setting time of the grout and relative density of the sand were not found to affect friction angles significantly, whereas cohesion intercepts were affected by it. Finally, the model calibrated herein was found to have good agreement with experimental data and could be used for soil-nailing simulations. (C) 2019 American Society of Civil Engineers.
机译:水泥灌浆钉和周围土壤之间界面的剪切应力 - 位移行为和剪切强度参数是土着系统的设计和安全评估的重要因素。测量土壤灌浆系统界面剪切强度的最常用方法之一是直接剪切测试方法。本研究旨在使用直接剪切试验装置研究水泥 - 灌浆材料(土钉)和砂土壁和砂土之间的行为,进行沙砂界面和灌浆 - 沙界面之间的比较,并校准界面模型用于土壤钉系统的模拟。还研究了水的影响:灌浆的水泥比和砂对界面行为的相对密度。结果表明,通常,界面的行为类似于菌株软化方面的致密沙子,并且它们的峰值和残余摩擦角分别为约8%和4%。没有发现砂浆的设定时间和砂的相对密度显着影响摩擦角,而凝聚力截距受其影响。最后,发现本文校准的模型与实验数据有良好的一致性,可用于土壤钉模拟。 (c)2019年美国土木工程学会。

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