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A laboratory study on pull-out resistance of geogrid in clay soil

机译:粘土土壤土工格栅阻力的实验室研究

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摘要

Geosynthetics such as geotextiles, geogrids and geocells are outstanding materials for reinforcement of soils. Recently, reinforcing the clay soils with geosynthetics, by increasing the bearing capacity and decreasing over consolidation, was used increasingly in geotechnical applications. The behavior of soil with reinforced material is crucial on design of reinforced soil. In this study the interaction between geogrid and clay soil was investigated by pulling out the geogrid experimentally with the help of direct shear tests machine. In experiments the geogrid was placed on shear surface that was the midpoint of test mold. The soil samples were prepared with different water content that was including optimum water content (OWC). A special cap was designed to pull-out the reinforcing material through the soil sample. According to experimental results, the variation of pullout load against displacement seems to be similar to classical load-displacement behavior of soil and it increases when the normal stress increases. Under the same normal stresses, pull-out load observed to be greater when the soil sample has OWC. At stress level sigma = 27,2 kPa, when water contents of soil samples increase 60%, the pull-out loads increase approximately 30%. These observations can be interpreted the interlocking between soil and geogrid is stronger if the water content of soil samples are equal to OWC. It is also showed from the tests results that pull-out load values are generally greater than interfacial strength of soil samples. (C) 2019 Elsevier Ltd. All rights reserved.
机译:土工织物,土工格栅和地质蜂块等地质合成剂是用于加固土壤的杰出材料。最近,通过增加承载能力和通过整合减少来加强具有地质合成的粘土土壤,越来越多地在岩土应用中使用。钢筋材料的土壤行为对增强土壤设计至关重要。在这项研究中,通过在直接剪切试验机的帮助下实验拔出土工格栅来研究地质格栅和粘土土壤之间的相互作用。在实验中,将土工格栅放置在剪切表面上,该剪切表面是测试模具的中点。用不同的水含量制备土壤样品,其包括最佳含水量(OWC)。设计了一种特殊的盖子,用于通过土样品拔出加强材料。根据实验结果,拉伸负荷抵抗载荷的变化似乎与土壤的经典负载 - 位移行为类似,并且当正常应力增加时它增加。在相同的正常应力下,当土壤样品具有OWC时,观察到的拉出载荷更大。在应力水平Sigma = 27,2 kPa时,当土壤样品的水含量增加60%时,拉出载荷增加约30%。如果土壤样品的水含量等于OWC,这些观察可以解释土壤和土工格栅之间的互锁更强。从测试结果也显示出拉出载荷值通常大于土壤样品的界面强度。 (c)2019年elestvier有限公司保留所有权利。

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