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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Addressing Clay Mineralogy Effects on Performance of Chemically Stabilized Expansive Soils Subjected to Seasonal Wetting and Drying
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Addressing Clay Mineralogy Effects on Performance of Chemically Stabilized Expansive Soils Subjected to Seasonal Wetting and Drying

机译:解决粘土矿物学对季节性湿润和干燥条件下化学稳定膨胀土性能的影响

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摘要

Premature failures in chemically stabilized expansive soils cost millions of dollars in maintenance and repair. One reason for these failures is the inability of existing stabilization design guidelines to take into account the complex interactions between the clay minerals and the stabilizers. It is vital to understand these complex interactions, as they are responsible for the improved strength and reduction of swelling/shrinking in these soils, which in turn affects the overall health of the infrastructure. This research study examined the longevity of chemically stabilized expansive soils subjected to wetting/drying conditions, with a major focus on clay mineralogy. Eight different natural soils with varying clay mineralogy were subjected to wetting/drying durability studies after they were stabilized with chemical additives including quicklime and cement. Performance indicators such as volumetric strain and unconfined compressive strength trends were monitored at regular intervals during the wetting/drying process. It was observed that clayey soils dominant in the mineral montmorillonite were susceptible to premature failures. It was also noted that soils dominant in other clay minerals exhibited early failures at lower additive contents. For the first time, an attempt was made to address the field implications of the laboratory studies by developing a correlation that predicts service life in the field based on clay mineralogy and stabilizer dosage.
机译:化学稳定膨胀土的过早破坏在维护和修理上花费了数百万美元。这些失败的原因之一是现有的稳定设计指南无法考虑粘土矿物和稳定剂之间的复杂相互作用。了解这些复杂的相互作用至关重要,因为它们可提高这些土壤的强度并减少其膨胀/收缩,进而影响基础设施的整体健康。这项研究研究了在湿润/干燥条件下化学稳定的膨胀土壤的寿命,主要关注粘土矿物学。八种具有不同粘土矿物学特性的天然土壤在用化学添加剂(包括生石灰和水泥)稳定后,进行了湿/干耐久性研究。在润湿/干燥过程中,定期监测性能指标,例如体积应变和无侧限抗压强度趋势。据观察,在蒙脱石矿物中占优势的粘土质土壤容易过早破坏。还应注意的是,在其他粘土矿物中占优势的土壤在较低的添加剂含量下会表现出早期破坏。首次尝试通过建立基于粘土矿物学和稳定剂用量来预测田间使用寿命的相关性来解决实验室研究的田间影响。

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