首页> 外文期刊>Journal of materials in civil engineering >Soil-Water Characteristic Curve and One-Dimensional Deformation Characteristics of Fiber-Reinforced Lime-Blended Expansive Soil
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Soil-Water Characteristic Curve and One-Dimensional Deformation Characteristics of Fiber-Reinforced Lime-Blended Expansive Soil

机译:纤维增强石灰掺合膨胀土的土壤水特征曲线和一维变形特征

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Soil reinforcement using synthetic fibers is a proven technique for enhancing engineering properties to meet the requirements of subgrade materials for pavement projects. The safe and economical design of fiber-reinforced pavement layers requires better insights into their unsaturated behavior. The soil-water characteristic curve (SWCC) is a measure of the water content inside soil pores at a given suction and is considered an essential property to better understand or predict the behavior of unsaturated fiber-reinforced soils. This paper centers on investigating the soil-water characteristic curves for typical expansive clay reinforced with two different types of polypropylene fibers having different surface morphological properties. The effect of an increase in the fiber dosage (0.2% and 0.6% by dry weight of soil) and fiber lengths (6 and 12 mm) on the resultant SWCC patterns is investigated. The addition of lime is considered to enhance the bonding between clay particles and fiber elements to ensure better friction mobilization levels. SWCCs were determined for all experimental mixtures using a combination of axis translation and filter paper techniques that cover the entire matric suction range during measurements. Volume changes undergone during suction measurements have been duly highlighted and discussed. Furthermore, the one-dimensional deformation (swelling/ consolidation) characteristics of these lime-blended fiber-reinforced mixtures at different levels of initial matric suction are studied, and the correlations between initial matric suction with both compression index (C_c) and swell index (C_s) are established. The results indicate a significant change in the shape of the SWCC for lime-blended fiber-reinforced mixtures compared with the shape of the SWCC for natural clay. The contribution of fiber inclination to altering the shape of the SWCC curve is observed as slight regardless of the type, length, and dosage of fiber. Compression and swell indices for tested mixtures increased proportionately with an increase in initial matric suction levels. Doubling the length of the fiber also induced an increase in the compression index. Under no stress conditions did both fiber type and fiber length have a marginal effect on the swell potential and SWCCs.
机译:使用合成纤维对土壤进行加固是一种行之有效的技术,可以提高工程性能以满足路面工程对路基材料的要求。安全且经济的纤维增强路面层设计需要对它们的不饱和行为有更好的了解。土壤-水特征曲线(SWCC)是在给定吸力下土壤孔隙内水含量的量度,被认为是更好地理解或预测非饱和纤维增强土壤性能的基本特性。本文主要研究典型的膨胀性粘土的土壤-水特征曲线,该粘土用两种具有不同表面形态特性的聚丙烯纤维增强。研究了纤维用量(土壤干重的0.2%和0.6%)和纤维长度(6和12 mm)增加对所得SWCC图案的影响。人们认为添加石灰可增强粘土颗粒与纤维元素之间的结合力,以确保更好的摩擦动员水平。使用轴平移和滤纸技术相结合的方法确定了所有实验混合物的SWCC,这些技术覆盖了测量过程中的整个基质吸力范围。吸力测量过程中发生的体积变化已得到适当强调和讨论。此外,研究了这些石灰混合纤维增强混合物在不同初始吸力水平下的一维变形(溶胀/固结)特性,并且初始吸力与压缩指数(C_c)和膨胀指数( C_s)被建立。结果表明,与天然粘土的SWCC相比,石灰混合纤维增强混合物的SWCC形状发生了显着变化。不论纤维的类型,长度和用量如何,观察到纤维倾角对改变SWCC曲线形状的贡献都很小。测试混合物的压缩和膨胀指数随初始基质吸力水平的增加而成比例增加。纤维长度加倍也引起压缩指数的增加。在无应力条件下,纤维类型和纤维长度对膨胀电位和SWCC均没有影响。

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