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Effect of geosynthetic inclusion on the bearing ratio of two-layered soil

机译:土工包裹体对两层土承载比的影响

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摘要

In this article, the load-settlement characteristics of unreinforced and reinforced two-layered soil during the loading process are investigated. A series of bearing ratio tests was performed on a granular soil as the base layer overlaying a cohesive soil as the subgrade layer. Three reinforcing conditions (unreinforced, reinforced with nonwoven geotextile, and reinforced with geogrid) at the interface of layers, with four compaction moisture contents (CMCs) of the subgrade layer and three thicknesses of the base layer for both soaked and non-soaked conditions are considered. The results show that the CMC of the subgrade layer has a significant effect on the behavior of two-layered soil, such as swelling amount and the efficiency of the reinforcements. Reinforcing with geogrid resulted in a considerable increase in strength of the soaked samples due to adhesion between geogrids and clayey subgrade layer. For nonwoven geotextiles, strength of the two-layered soil decreased at shallow penetration depths due to reinforcements; and as the penetration increased in depth, the strength also increased. Also, it was found that with decreases in base layer thickness, the test variable's value (i.e., CMC), and the type of geosynthetic reinforcement have significant effects on the behavior of two-layered soil.
机译:本文研究了未加筋和加筋两层土在加载过程中的荷载沉降特性。在作为基层的颗粒状土壤与作为路基层的粘性土壤重叠的基础上,进行了一系列承载比测试。层的界面处有三种增强条件(未增强,用非织造土工织物增强和用土工格栅增强),对于浸泡和非浸泡条件,路基层的压实含水量(CMC)为四个,基础层的厚度为三个考虑过的。结果表明,路基层的CMC对两层土的性能,如膨胀量和增强效率有显着影响。由于土工格栅与黏土路基层之间的粘附,用土工格栅进行加固导致浸泡后的样品强度大大提高。对于非织造土工布,由于加固,两层土壤的强度在浅穿透深度处降低;随着渗透深度的增加,强度也增加。此外,还发现随着基层厚度的减小,测试变量的值(即CMC)和土工合成材料的增强类型对两层土壤的性状具有显着影响。

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