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张四化, 原崇轩, 刘云龙, 夏妍妍. 膨胀土增湿水平膨胀力的研究现状综述[J]. 岩土工程学报, 2022, 44(S1): 143-147. DOI: 10.11779/CJGE2022S1026
引用本文: 张四化, 原崇轩, 刘云龙, 夏妍妍. 膨胀土增湿水平膨胀力的研究现状综述[J]. 岩土工程学报, 2022, 44(S1): 143-147. DOI: 10.11779/CJGE2022S1026
ZHANG Si-hua, YUAN Chong-xuan, LIU Yun-long, XIA Yan-yan. Review on researches on horizontal swelling pressure of expansive soils after humidification[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(S1): 143-147. DOI: 10.11779/CJGE2022S1026
Citation: ZHANG Si-hua, YUAN Chong-xuan, LIU Yun-long, XIA Yan-yan. Review on researches on horizontal swelling pressure of expansive soils after humidification[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(S1): 143-147. DOI: 10.11779/CJGE2022S1026

膨胀土增湿水平膨胀力的研究现状综述

Review on researches on horizontal swelling pressure of expansive soils after humidification

  • 摘要: 膨胀土是一种富含蒙脱石、伊利石及高岭石的高塑性黏土,在增湿作用下会发生体积膨胀。若其横向膨胀变形受到约束,将会产生水平膨胀力,对岩土工程设施造成巨大危害。近年来,为减少相关损失,学者们通过大量室内试验,开发了新型理论方法及预测模型对水平膨胀力进行了深入研究。归纳总结并分析了膨胀土膨胀特性的影响因素和各因素对膨胀特性的影响规律,并从微观结构角度分析了各因素的影响机理。最后提出了降低侧向水平膨胀力的实用措施,分析了研究裂隙膨胀土水平膨胀力的重要性,并对其未来研究方向进行了展望。

     

    Abstract: The expansive soil is a kind of high plastic clay rich in montmorillonite, illite and kaolinite, in which volume expansion will occur under humidification. If the lateral swelling deformation is constrained, the horizontal swelling pressure will be generated, which will cause great harm to geotechnical engineering facilities. In recent years, in order to reduce the relative losses, domestic and foreign scholars have performed a large number of laboratory tests and developed new theoretical methods and prediction models for horizontal swelling pressure. The influence factors of swelling characteristics of expansive soils and the influence laws of various factors on the swelling characteristics are analyzed, and the influence mechanism of various factors is studied from the perspective of microstructure. Finally, the practical measures to reduce the lateral horizontal swelling force are proposed, the importance of studying the horizontal swelling force of fissured expansive soils is analyzed, and the future research direction is prospected.

     

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