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Use of X-Ray Diffraction to Identify and Quantify Soil Swelling Potential.

机译:使用X射线衍射来识别和量化土壤膨胀潜力。

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摘要

Expansive soils impose challenges on the design, maintenance and long-term stability of many engineered infrastructure. These soils are composed of different clay minerals that are susceptible to changes in moisture content. Expansive clay soils wreak havoc due to their volume change property and, in many cases, exhibit extreme swelling and shrinking potentials. Understanding what type of minerals and clays react in the presence of water would allow for a more robust design and a better way to mitigate undesirable soil volume change. The relatively quick and widely used method of X-ray Diffraction (XRD) allows identifying the type of minerals present in the soil. As part of this study, three different clays from Colorado, San Antonio Texas, and Anthem Arizona were examined using XRD techniques. Oedometer-type testing was simultaneously preformed in the laboratory to benchmark the behavior of these soils. This analysis allowed performing comparative studies to determining if the XRD technique and interpretation methods currently available could serve as quantitative tools for estimating swell potential through mineral identification. The soils were analyzed using two different software protocols after being subjected to different treatment techniques. Important observations include the formation of Ettringite and Thaumasite, the effect of mixed-layer clays in the interpretation of the data, and the soils being subject to Gypsification. The swelling data obtained from the oedometer-type laboratory testing was compared with predictive swelling functions available from literature. A correlation analysis was attempted in order to find what index properties and mineralogy parameters were most significant to the swelling behavior of the soils. The analysis demonstrated that Gypsification is as important to the swelling potential of the soil as the presence of expansive clays; and it should be considered in the design and construction of structures in expansive soils. Also, the formation of Ettringite and Thaumasite observed during the treatment process validates the evidence of Delayed Ettringite Formation (DEF) reported in the literature. When comparing the measured results with a proposed method from the University of Texas at Arlington (UTA), it was found that the results were somewhat indicative of swell potential but did not explain all causes for expansivity. Finally, it was found that single index properties are not sufficient to estimate the free swell or the swell pressure of expansive soils. In order to have a significant correlation, two or more index properties should be combined when estimating the swell potential. When properties related to the soil mineralogy were correlated with swell potential parameters, the amount of Gypsum present in the soil seems to be as significant to the swell behavior of the soil as the amount of Smectite found.
机译:膨胀的土壤对许多工程基础设施的设计,维护和长期稳定性提出了挑战。这些土壤是由不同的粘土矿物组成的,这些矿物易受水分含量变化的影响。膨胀的粘土由于其体积变化特性而遭受严重破坏,并且在许多情况下,表现出极大的膨胀和收缩潜力。了解什么类型的矿物和粘土在水的存在下会发生反应,将使设计更可靠,并且可以更好地减轻不希望的土壤体积变化。 X射线衍射(XRD)的相对快速和广泛使用的方法可以识别土壤中存在的矿物质的类型。作为这项研究的一部分,使用XRD技术检查了来自科罗拉多州,德克萨斯州圣安东尼奥市和亚利桑那州国歌的三种不同的粘土。在实验室中同时进行了里程表式测试,以对这些土壤的行为进行基准测试。通过该分析,可以进行比较研究,以确定当前可用的XRD技术和解释方法是否可以用作通过矿物鉴定估算膨胀潜力的定量工具。在经历了不同的处理技术后,使用两种不同的软件协议对土壤进行了分析。重要的观察结果包括钙矾石和硅陶土的形成,混合层粘土在解释数据方面的作用以及土壤经过吉普赛化处理。从里程表型实验室测试中获得的膨胀数据与文献中提供的预测膨胀功能进行了比较。试图进行相关性分析,以发现哪些指数特性和矿物学参数对土壤的溶胀行为最重要。分析表明,与膨胀粘土的存在一样,吉普赛化对土壤膨胀的潜力同样重要。在膨胀土结构的设计和施工中应予以考虑。而且,在处理过程中观察到的钙矾石和硅铝石的形成证实了文献中报道的延迟钙矾石形成(DEF)的证据。当将测量结果与德克萨斯大学阿灵顿分校(UTA)提出的方法进行比较时,发现该结果在某种程度上表明存在膨胀潜力,但不能解释所有导致膨胀的原因。最后,发现单指数特性不足以估计膨胀土的自由膨胀或膨胀压力。为了具有显着的相关性,在估计膨胀潜力时应将两个或多个指标属性组合在一起。当与土壤矿物学相关的特性与膨胀电位参数相关时,土壤中存在的石膏的数量对土壤的膨胀行为似乎与发现的蒙脱石数量同样重要。

著录项

  • 作者

    Shafer, Zachery.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2014
  • 页码 194 p.
  • 总页数 194
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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