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Effects of freeze-thaw cycles on a fiber reinforced fine grained soil in relation to geotechnical parameters

机译:冻融循环对纤维增强细粒土与岩土参数的影响

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Freeze-thaw cycling is a weathering process which occurs in cold climates during winter and spring. At temperatures just below 0 degrees C, ice lenses which tend to form in free spaces between soil aggregates, force them apart and end up the alteration of characteristic structures in micro and macro scales. In most of the previous studies, changes in physical and chemical properties of soils were investigated. This study was conducted to manifest the effect of using polypropylene fibers in a fine grained soil during freeze-thaw cycles. A clayey soil, reinforced with 0.5, 1 and 1.5 percentages of polypropylene fibers, was compacted in the laboratory and exposed to a maximum of 9 closed-system freeze-thaw cycles. It has been found that for the investigated soil, unconsolidated undrained triaxial compressive strength of unreinforced soil decreases with increasing the number of freeze-thaw cycles, whereas reinforced sample shows better performance and the strength reduction amount decreases from 43% to 32% by reinforcing the soil samples. This effect is caused by acting polypropylene fibers as tensile elements between the soil particles as it is demonstrated with scanning electron microscope (SEM). In addition reinforcing can also reduces the effect of freeze-thaw cycles on the changes of cohesion of the soil. (C) 2015 Elsevier B.V. All rights reserved.
机译:冻融循环是一个风化过程,发生在冬季和春季的寒冷气候中。在低于0摄氏度的温度下,往往会在土壤聚集体之间的自由空间中形成冰晶,迫使它们分开并最终导致微观和宏观尺度的特征结构发生变化。在大多数先前的研究中,都研究了土壤物理化学性质的变化。进行该研究以证明在冻融循环中在细粒土壤中使用聚丙烯纤维的效果。在实验室中压实用0.5%,1%和1.5%的聚丙烯纤维增强的黏性土壤,并使其暴露于最多9个封闭系统的冻融循环中。研究发现,随着冻融循环次数的增加,未加筋土的未固结不排水三轴抗压强度降低,而加筋土则表现出更好的性能,而加筋土的强度降低量从43%降至32%。土壤样品。如扫描电子显微镜(SEM)所示,这种作用是由于聚丙烯纤维在土壤颗粒之间起拉伸作用而引起的。另外,增强还可以减少冻融循环对土壤内聚力变化的影响。 (C)2015 Elsevier B.V.保留所有权利。

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