首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >An Experimental Investigation on Effect of Adding Natural and Synthetic Fibres on Mechanical and Behavioural Parameters of Soil-Cement Materials
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An Experimental Investigation on Effect of Adding Natural and Synthetic Fibres on Mechanical and Behavioural Parameters of Soil-Cement Materials

机译:添加天然纤维和合成纤维对水泥土材料力学和行为参数影响的实验研究

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摘要

Soil-cement is a mixture of Portland cement, soil and water that sticks together due to the hydration of the cement and compression of its components to create a dense, durable compound, which has low permeability and is resistant to erosion. Unfortunately, these mixtures do not perform well under tensile load because soil-cement materials are brittle. In this study, three types of fibres were used to reinforce the materials to compensate for this flaw: jute (a natural fibre), polypropylene, and steel (a synthetic fibre) fibres. These fibres were randomly added to the soil-cement mixture in three percentages (1,2, and 3%). Tests were then conducted on three different soil-cement gradations each with three fine contents of different mineral types (nine different gradations in total). First, sand equivalent and Atterberg limits were conducted on the soil samples. Then compaction, unconfined compression strength, indirect tensile strength and flexural tests were conducted on the soil-cement samples in two conditions: control (unreinforced) and reinforced soil-cement samples. Results showed an undeniable role of fibres in changing the behaviour of the soil-cement-fibre matrix from brittle to ductile producing post-peak behaviour. The results also show that compressive, tensile and flexural strengths of soil-cement materials improved dramatically by adding steel fibres to the matrix.
机译:土壤水泥是波特兰水泥,土壤和水的混合物,由于水泥的水合作用和其成分的压缩而粘结在一起,从而形成致密,持久的混合物,该混合物的渗透性低且耐腐蚀。不幸的是,这些混合物在拉伸载荷下表现不佳,因为土壤水泥材料易碎。在这项研究中,使用了三种类型的纤维来增强材料以弥补这一缺陷:黄麻(天然纤维),聚丙烯和钢(合成纤维)纤维。将这些纤维以三个百分比(1,2和3%)随机添加到土壤-水泥混合物中。然后对三种不同的土壤-水泥等级进行了测试,每种等级均具有三种不同矿物质的细含量(总共9种不同等级)。首先,对土壤样品进行了沙当量和Atterberg限值。然后在两种条件下对土壤-水泥样品进行压实,无侧限抗压强度,间接抗拉强度和挠曲测试:对照(未增强)和增强的土壤-水泥样品。结果表明,纤维在改变土壤-水泥-纤维基质的行为从脆性到产生延性的峰后行为方面具有不可否认的作用。结果还表明,通过在基体中添加钢纤维,水泥土材料的抗压,抗张和抗弯强度得到了显着提高。

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