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Compaction Characteristics, Unconfined Compressive Strengths, and Coefficients of Permeability of Fine-Grained Soils Mixed with Crumb-Rubber Tire

机译:细粒土壤与碎屑-橡胶轮胎混合的压实特性,无侧限抗压强度和渗透系数

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摘要

In this study, five different weak soils were mixed with five different sizes of crumb rubber in six different proportions and used to understand the influence of the size and quantity of crumb rubber on the compaction characteristics, unconfined compressive strength, and coefficient of permeability of the soils. The maximum dry unit weight increased with the addition of crumb rubber, with the greatest increase found to occur when 2-4% crumb rubber of any size was added to the soil. An increase in the size of the crumb rubber mixed with kaolinite corresponded to an increase in the maximum dry unit weight. However, the opposite trend was observed when montmorillonite was mixed with crumb rubber. The unconfined compressive strength also increased when crumb rubber was mixed with soil, with the highest strengths also corresponding to the addition of 2-4% of crumb rubber. In all fine-grained soils except those containing montmorillonite, increasing the size of the crumb rubber used resulted in a reduction in the unconfined compressive strength. Moreover, the addition of crumb rubber caused an increase in the permeability of the mixtures. In kaolinite, an increase in the size of the crumb rubber led to a reduction in permeability. The permeability of the mixtures of montmorillonite with crumb rubber dropped as larger-sized crumb rubber was added. However, the coefficient of permeability with the addition of any crumb rubber was always greater than that of the parent soil.
机译:在这项研究中,将五种不同的弱土与五种不同尺寸的碎胶按六种不同比例混合,并用于了解碎胶的大小和数量对压实特性,无侧限抗压强度和渗透系数的影响。土壤。添加干胶后,最大干重增加,当将2-4%的任何大小的干胶加入土壤时,最大干重增加。与高岭石混合的碎屑橡胶的尺寸增加对应于最大干重的增加。然而,当蒙脱石与碎橡胶混合时,观察到相反的趋势。当将胶粉橡胶与土壤混合时,无侧限抗压强度也增加,最高强度也对应于添加2-4%的胶粉橡胶。在除含有蒙脱土的所有细粒土壤中,增加使用的碎屑橡胶的尺寸会导致无侧限抗压强度的降低。此外,添加碎橡胶导致混合物的渗透性增加。在高岭石中,碎屑橡胶的尺寸增加导致渗透率降低。蒙脱土与粒状橡胶的混合物的渗透性随较大尺寸的粒状橡胶的添加而降低。然而,添加任何碎橡胶的渗透系数总是大于母体土壤的渗透系数。

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  • 来源
    《Journal of materials in civil engineering》 |2017年第9期|04017148.1-04017148.10|共10页
  • 作者单位

    Dept. of Civil and Environmental Engineering, California State Univ., 800 N. State College Blvd., E-318, Fullerton, CA 92834;

    Dept. of Civil and Environmental Engineering, California State Univ., 800 N. State College Blvd., E-419, Fullerton, CA 92834;

    Dept. of Civil and Environmental Engineering, California State Univ., Fullerton, CA 92834;

    Dept. of Civil and Environmental Engineering, California State Univ., Fullerton, CA 92834;

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