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Liquefaction strength of fly ash reinforced with randomly distributed fibers

机译:随机分布纤维增强粉煤灰的液化强度

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摘要

In this paper a study on the improvement of liquefaction strength of fly ash by reinforcing with randomly distributed geosynthetic fiber/mesh elements is reported. A series of stress controlled cyclic triaxial tests were carried out on fly ash samples reinforced with randomly distributed fiber and mesh elements. The liquefaction resistance of reinforced fly ash is defined in-terms of pore pressure ratio. The effects of parameters such as fiber content, fiber aspect ratio, confining pressure, cyclic stress ratio, on liquefaction resistance of fly ash have been studied. Test results indicate that the addition of fiber/mesh elements increases the liquefaction strength of fly ash significantly and arrests the initiation of liquefaction even in samples of loose initial condition and consolidated with the low confining pressure.
机译:本文报道了通过用随机分布的土工合成纤维/网状元素增强来提高粉煤灰液化强度的研究。在用随机分布的纤维和网状元件增强的粉煤灰样品上进行了一系列的应力控制循环三轴试验。增强粉煤灰的抗液化性是根据孔隙压力比来定义的。研究了纤维含量,纤维长径比,围压,循环应力比等参数对粉煤灰抗液化性能的影响。测试结果表明,纤维/网状元素的添加显着提高了粉煤灰的液化强度,即使在初始条件较松散且在低围压下固结的样品中,也阻止了液化的开始。

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