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Consolidation and swelling behavior of major clay minerals and their mixtures

机译:主要粘土矿物及其混合物的固结和溶胀行为

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摘要

One of the most important geotechnical properties of a soil mass is compressibility. Compressibility is widely used in the design of the geotechnical structures including but not limited to foundations, embankments, dams and landfills. Previously, various researchers proposed numerous equations to estimate the compression index of a soil mass with other soil properties such as liquid limit, initial void ratio, void ratio at liquid limit, specific gravity or a combination of the above parameters. Almost every article in the literature concluded that the mineral composition and initial moisture content greatly influence the compression index of a soil mass. However, little research has been done on the compression index under an environment of controlled mineralogy and initial moisture content. Fifty-five different soil specimens composed of mixtures of montmorillonite, kaolinite, illite and quartz were prepared in the laboratory at an initial moisture content equal to their corresponding liquid limits. The results showed that the Intrinsic Compression Line (ICL) was unique for each dominating clay mineral. Furthermore, the compression index and swelling index exhibited good correlations with the initial void ratio, the liquid limit, and the plasticity index. Equations were proposed to estimate the compression and the swelling index of a soil mass using the liquid limit. The compression and the swelling indices for eighty-two natural specimens were estimated using the proposed equations and were found to be similar to the measured values. Moreover, triangular correlation charts relating the mineral composition to the compression index as well as the swelling index were developed to estimate the compression and the swelling indices of a soil mass.
机译:土体最重要的岩土工程特性之一是可压缩性。可压缩性广泛用于岩土结构的设计中,包括但不限于地基,路堤,水坝和垃圾填埋场。以前,各种研究人员提出了许多方程式来估算具有其他土壤性质的土壤团块的压缩指数,例如液体极限,初始孔隙率,在液体极限处的孔隙率,比重或上述参数的组合。文献中几乎所有文章都得出结论,矿物成分和初始水分含量极大地影响了土壤团块的压缩指数。但是,在控制矿物学和初始水分含量的环境下,关于压缩指数的研究很少。在实验室中制备了55种由蒙脱石,高岭石,伊利石和石英的混合物组成的不同土壤标本,其初始含水量等于其相应的液体限量。结果表明,本征压缩线(ICL)对于每种主要的粘土矿物都是唯一的。此外,压缩指数和溶胀指数与初始空隙率,液体极限和可塑性指数表现出良好的相关性。提出了利用液体极限来估算土壤团块的压缩和溶胀指数的方程。使用提出的方程式估算了八十二个自然标本的压缩指数和溶胀指数,发现它们与测量值相似。此外,开发了将矿物成分与压缩指数以及溶胀指数相关联的三角相关图,以估算土壤团块的压缩指数和溶胀指数。

著录项

  • 来源
    《Applied clay science》 |2011年第4期|p.264-273|共10页
  • 作者

    Binod Tiwari; Beena Ajmera;

  • 作者单位

    Civil and Environmental Engineering Department, California State University, Fullerton, 800 N State College Blvd., E-419. Fullerton, CA 92834, USA;

    Civil and Environmental Engineering Department, California State University, Fullerton, 800 N State College Blvd., E-419. Fullerton, CA 92834, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    montmorillonite; kaolinite; illite; quartz; consolidation; swelling;

    机译:蒙脱石高岭石伊利石石英;合并;肿胀;
  • 入库时间 2022-08-17 13:55:19

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