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Laboratory evaluation of the behavior of a geotextile reinforced clay

机译:土工织物增强粘土性能的实验室评估

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摘要

To evaluate the behavior of cohesive soil reinforced with a geotextile, 144 unconfined and 72 uncon-solidated-undrained (UU) triaxial compression tests were conducted. The moisture content of soil during remolding, relative compaction, soil type, confining pressure, type and number of geotextile layers were all varied so that the behavior of the sample could be examined. The results provide evidence that as the moisture content increases, the peak strength of both the reinforced and unreinforced samples decreases and the axial strain at failure increases. Moreover, with increasing relative compaction the peak strength of the sample and axial strain at failure increases, whereas the peak strength ratio decreases. The peak strength ratio is the ratio of the peak strength of the reinforced samples to that of the unreinforced samples. For soils with low plasticity indices the main cause of the increase in the strength is the increase in the cohesion of the reinforced sample. However, in soils of higher plasticity index, as the number of geotextile layers increases, the internal friction angle of the reinforced samples increases.
机译:为了评估用土工布加固的粘性土壤的性能,进行了144次无侧限和72次无固结不排水(UU)三轴压缩试验。重塑过程中土壤的水分含量,相对压实度,土壤类型,围压,土工织物层的类型和数量均发生了变化,因此可以检查样品的性能。结果提供了证据,随着水分含量的增加,增强和未增强样品的峰值强度都会降低,破坏时的轴向应变也会增加。而且,随着相对压实度的增加,样品的峰值强度和破坏时的轴向应变增加,而峰值强度比降低。峰强度比是增强样品与未增强样品的峰强度之比。对于可塑性指数较低的土壤,强度增加的主要原因是增强样品的内聚力增加。但是,在可塑性指数较高的土壤中,随着土工织物层数的增加,增强样品的内摩擦角也会增加。

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