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Effect of incorporating multifilament polypropylene fibers into alkaline activated fly ash soil mixtures

机译:将复丝聚丙烯纤维掺入碱性活性粉煤灰土混合物中的效果

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摘要

Soil stabilization is a well-known methods for the treatment problematic soils. Its advantages over soil replacement include low cost and fast implementation. The alkaline activation of soft soils is a new technique that has been proposed recently to stabilize soft soils. However, its strengthening mechanism and the final product in terms of stiffness and brittleness resemble those observed in cemented soils. In other words, the residual strength which emerges when approaching failure is very low, and this results in immediate damage to building structures. These shortcomings need to be overcome, particularly in places where seismic loading can be expected. In the case of cemented columns under heavy embankments, horizontal displacement is likely to occur under seismic loading. This will result in the failure of stabilized material due to frail bending moments, making greater residual strengths more important than higher peak strengths. To address this problem, a fix fly ash content of 40% and polypropylene fibers in the range of 0.5%, 0.75%, 1%, and 1.25% were considered. Compressive, flexural and indirect tensile strength test results revealed the feasibility of polypropylene fibers to improve postpeak behavior, thus allowing for higher residual strength after failure. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:土壤稳定化是治疗问题土壤的公知方法。其优于土壤更换的优点包括低成本和快速的实施。软土的碱性活化是一种新技术,最近提出了稳定软土壤。然而,其强化机制和最终产品在刚度和脆性方面类似于在粘合的土壤中观察到的机制。换句话说,在接近故障时出现的残余强度非常低,这导致对建筑物结构的立即损坏。需要克服这些缺点,特别是在可以预期地震载荷的地方。在重型堤坝下的粘液柱的情况下,在地震载荷下可能发生水平位移。这将导致由于虚弱的弯曲力矩导致稳定材料的失效,使得更大的剩余优点比较高的峰强度更重要。为了解决这个问题,考虑了40%,聚丙烯纤维的固定粉煤灰含量为0.5%,0.75%,1%和1.25%。压缩,弯曲和间接拉伸强度试验结果表明,聚丙烯纤维改善封闭行为的可行性,从而允许在发生故障后的较高的残余强度。 (c)2019年Elsevier B.V的生产和托管代表日本岩土工会。

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