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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Evaluation of Swell Behavior of Expansive Clays from Internal Specific Surface and Pore Size Distribution
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Evaluation of Swell Behavior of Expansive Clays from Internal Specific Surface and Pore Size Distribution

机译:从内部比表面和孔径分布评估膨胀黏土的膨胀行为

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摘要

The interdependency of microsoil fabric-related properties and swell/shrink behavior of expansive soils needs to be identified to achieve a more thorough and accurate prediction of heave of expansive soils. In a recent research study, two microsize-related properties of a soil-pore size distribution and specific surface area-were identified and examined in an effort to address their synergistic effects on swelling behavior of soils. To study this aspect in detail, eight natural expansive clayey soils from known expansive soil regions were sampled and studied by using two test methods: conventional one-dimensional vertical swell tests and novel three-dimensional volumetric swell strain tests. Microinternal structural details, including pore void distribution, were obtained from mercury intrusion porosimetry (MIP) studies on compacted soil specimens. Specific surface area (SSA) details of the same soils were determined using the chemical ethylene glycol monoethyl ether (EGME) method. Attempts were made to predict macroswell properties, using both pore and surface area properties. Modeling analyses and results showed that the swelling behavior of the clays was dependent on a newly introduced parameter that accounted for both clay mineralogy constituents and internal pore distribution of the soils. The new swell property models showed accurate predictions of measured swell strains of the present soils, depicting the importance of including mineralogy and pore fabric details in a given soil.
机译:需要确定微土织物相关特性与膨胀土的膨胀/收缩行为之间的相互依赖性,以实现对膨胀土胀大的更彻底和准确的预测。在最近的一项研究中,确定并检查了土壤尺寸分布和比表面积的两个与尺寸有关的特性,以解决它们对土壤溶胀行为的协同作用。为了对此进行详细研究,使用已知的两种膨胀方法对来自已知膨胀土壤区域的八种天然膨胀黏土进行了采样和研究:常规一维垂直膨胀试验和新型三维体积膨胀应变试验。微观内部结构细节(包括孔隙分布)是从压实土壤样品上的压汞法(MIP)研究获得的。使用化学乙二醇单乙醚(EGME)方法确定相同土壤的比表面积(SSA)细节。尝试使用孔隙和表面积特性来预测大膨胀特性。建模分析和结果表明,粘土的溶胀行为取决于新引入的参数,该参数同时考虑了粘土矿物学成分和土壤内部孔隙分布。新的膨胀特性模型显示了对当前土壤测得的膨胀应变的准确预测,表明了在给定土壤中包括矿物学和孔隙结构细节的重要性。

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