Behaviour of cemented and compacted clayey sand reinforced with two types of fibers

Adjabi Souhila, Nouaouria Mohamed Salah
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Abstract

Abstract Considering Soil reinforcement techniques have been rapidly developed because of its efficiency in geotechnical engineering. The goal of this experimental work is to improve the characteristics of a collapsible soil with polyethylene fibers in the aim of reducing the number of plastic bottles thrown in nature and with natural materials such as sisal fibers. Polyethylene fibers contents in mass were used in this investigation, namely: 5%, 10% and 15%; Sisal fibers contents: 0.5% and 1% respectively. Oedometer apparatus is used to study the reinforcing fibers effect on the Collapse Potential, and direct shear box is used to determine the intrinsic characteristics of this treated soil. Results show that when the fiber reinforcement is combined with other processing procedures such as compaction and the addition of APC cement decrease the collapse potential until a non-collapsible soil is obtained.
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两种纤维增强的胶结和压实粘土砂的性能
考虑土加固技术因其在岩土工程中的有效性而得到迅速发展。本实验工作的目的是用聚乙烯纤维改善可湿性土壤的特性,以减少在自然界中投掷塑料瓶的数量,并使用天然材料如剑麻纤维。聚乙烯纤维的质量含量分别为5%、10%和15%;剑麻纤维含量:分别为0.5%和1%。采用位移仪研究了加固纤维对土体倒塌电位的影响,采用直接剪切箱法测定了处理后土体的内在特性。结果表明,当纤维加固与压实及APC水泥的掺入等其他处理工序相结合时,可降低土体的崩塌电位,直至获得非湿陷性土。
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