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Sulfate induced heave: Addressing ettringite behavior in lime treated soils and in cementitious materials.

机译:硫酸盐引发的隆起:解决钙矾石在石灰处理过的土壤和水泥质材料中的行为。

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摘要

Civil engineers are at times required to stabilize sulfate bearing clay soils with calcium based stabilizers. Deleterious heaving in these stabilized soils may result over time. This dissertation addresses critical questions regarding the consequences of treating sulfate laden soils with calcium-based stabilizers. The use of a differential scanning calorimeter was introduced in this research as a tool to quantify the amount of ettringite formed in stabilized soils.;The first part of this dissertation provides a case history analysis of the expansion history compared to the ettringite growth history of three controlled low strength mixtures containing fly ash with relatively high sulfate contents. Ettringite growth and measurable volume changes were monitored simultaneously for mixtures subjected to different environmental conditions. The observations verified the role of water in causing expansion when ettringite mineral is present. Sorption of water by the ettringite molecule was found to be a part of the reason for expansion.;The second part of this dissertation evaluates the existence of threshold sulfate levels in soils as well as the role of soil mineralogy in defining the sensitivity of soils to sulfate-induced damage. A differential scanning calorimeter and thermodynamics based phase diagram approach are used to evaluate the role of soil minerals. The observations substantiated the difference in sensitivity of soils to ettringite formation, and also verified the existence of a threshold level of soluble sulfates in soils that can trigger substantial ettringite growth.;The third part of this dissertation identifies alternative, probable mechanisms of swelling when sulfate laden soils are stabilized with lime. The swelling distress observed in stabilized soils is found to be due to one or a combination of three separate mechanisms: (1) volumetric expansion during ettringite formation, (2) water movement triggered by a high osmotic suction caused by sulfate salts, and (3) the ability of the ettringite mineral to absorb water and contribute to the swelling process.
机译:有时需要土木工程师使用钙基稳定剂来稳定含硫酸盐的粘土。随着时间的流逝,这些稳定的土壤中可能会发生有害的隆起。这篇论文解决了关于用钙基稳定剂处理含硫酸盐土壤的后果的关键问题。引入差示扫描量热仪作为量化稳定土中钙矾石形成量的工具。受控的低强度混合物,其中含有相对较高的硫酸盐含量的粉煤灰。同时监测了在不同环境条件下混合物的钙矾石生长和可测量的体积变化。观察结果证实了存在钙矾石矿物时水在引起膨胀中的作用。发现钙矾石分子对水的吸收是膨胀的原因。硫酸盐引起的损害。差示扫描量热仪和基于热力学的相图方法用于评估土壤矿物的作用。观察证实了土壤对钙矾石形成敏感性的差异,并验证了土壤中可溶性硫酸盐阈值水平的存在可以触发大量钙矾石的生长。满载的土壤用石灰稳定。在稳定的土壤中观察到的膨胀窘迫是由于以下三种机理中的一种或两种或多种引起的:(1)钙矾石形成过程中的体积膨胀;(2)硫酸盐引起的高渗透压所引起的水运动,以及(3 )钙矾石矿物吸收水并促进溶胀过程的能力。

著录项

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Civil.;Geochemistry.;Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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