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Strength and swelling properties of a waste tire textile fiber-reinforced expansive soil

机译:废轮胎纺织纤维增强膨胀土的强度和膨胀性能

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Expansive soils are problematic for their relatively low load bearing capacity and extensive swelling-shrinkage deformations. Therefore, treatment of such soils is often considered to be necessary prior to construction. This paper investigates the potential of reusing waste tire textile fibers (WTTFs), a byproduct of the treatment process of end of life tires (ELTs), as reinforcement materials for treatment of expansive soils. To that end, mechanical reinforcement of sodium bentonite by WTTF inclusion has been evaluated through a set of standard compaction, direct shear, Unconfined Compressive Strength (UCS), California Bearing Ratio (CBR), and swelling-consolidation tests. Six different WTTF contents - that is, f(c) = 0%, 0.5%, 1%, 2%, 3%, and 4% were used and investigated. It was proven that WTTFs can improve the shear strength and UCS parameters. Swelling deformations of the soil were demonstrated to reduce by as much as 44%. At low WTTF contents, CBR was enhanced marginally. However, this parameter decreased at high WTTF contents. Therefore, it can be concluded that WTTFs can be used as economical reinforcement materials in expansive soils to enhance the strength parameters, mitigate the swelling properties, and address an environmental concern regarding WTTFs.
机译:膨胀土对其相对低的承载能力和广泛的膨胀收缩变形是有问题的。因此,在施工之前通常认为这种土壤的处理通常是必要的。本文调查了重用废弃轮胎纺织纤维(WTTFS)的潜力,该副产品的副产品的副产品(elts),作为用于治疗膨胀土壤的增强材料。为此,通过一组标准压实,直接剪切,非挤压抗压强度(UCS),加州轴承比(CBR)和溶胀整合试验,通过WTTF夹杂物的机械加固通过WTTF夹杂物进行了评估。使用六种不同的WTTF含量 - 即,使用和研究,F(c)= 0%,0.5%,1%,2%,3%和4%。据证明,WTTFS可以提高剪切强度和UCS参数。对土壤的肿胀变形进行了证明减少多达44%。在低WTTF内容下,CBR略微增强。但是,该参数在高WTTF内容下减少。因此,可以得出结论,WTTF可以用作膨胀土壤中的经济增强材料,以增强强度参数,减轻肿胀性质,并解决有关WTTFS的环境问题。

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