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碳酸钙改性红黏土微观孔隙及物理力学性质研究

Study on microscopic pores and physico-mechanical properties of red clay modified by calcium carbonate.

作者信息

Chen Lijie, Wang Xiao, Deng Qingyang, Wang He, Luo Baoyou, Tang Ting

机构信息

Key Laboratory of Disaster Prevention & Mitigation and Prestress Technology of Guangxi Colleges and Universities, Guangxi University of Science and Technology, Liuzhou, 545006, China.

School of Architecture and Electrical Engineering, Hezhou University, Hezhou, 542899, China.

出版信息

Sci Rep. 2024 Oct 11;14(1):23852. doi: 10.1038/s41598-024-73723-y.

Abstract

Red clay as a special soil has a high liquid-plastic limit, water swelling and water loss shrinkage. To solve the problems red clay was modified by calcium carbonate produced in Hezhou, Guangxi. The Liquid-plastic limit, water loss shrinkage, nuclear magnetic resonance (NMR), X-ray diffraction (XRD), scanning electron microscopy (SEM), and consolidated drained (CD) triaxial shear test were carried out on the modified soils. The results show that when the calcium carbonate content is 20%, the plastic limit is 24.38 and the liquid limit is 38.67, which are reduced by 35.04% and 22.16%, respectively. The Montmorillonite content in the modified soil is reduced by 27.7%. The shrinkage coefficient decreased from 0.325 to 0.102. The NMR test shows that the content is 5% and 10% would lead to a decrease in the macropores and an increase in the micropores pores. The phenomenon is the opposite (15% and 20%). All contents led to the porosity increase. The calcium carbonate content of 5% was selected for triaxial shear tests to obtain the stress-strain curves. The Duncan-Zhang was used to predict the modified soil. The model has a large error in the prediction of the peak of the principal stress difference, but the overall trend is relatively consistent. Therefore, the correction coefficient related to the confining pressure was introduced. The corrected model fits the triaxial shear test well. The research provides a method for the liquid-plastic limits and shrinkage properties of modified red clay, explores the influence of calcium carbonate content on microscopic pores, and the correction of the model provides a theoretical basis for practical application.

摘要

红黏土作为一种特殊土,具有高液塑限、遇水膨胀和失水收缩的特性。为解决这些问题,采用广西贺州产的碳酸钙对红黏土进行改性。对改性土进行了液塑限、失水收缩、核磁共振(NMR)、X射线衍射(XRD)、扫描电子显微镜(SEM)以及固结排水(CD)三轴剪切试验。结果表明,当碳酸钙含量为20%时,塑限为24.38,液限为38.67,分别降低了35.04%和22.16%。改性土中蒙脱石含量降低了27.7%。收缩系数从0.325降至0.102。NMR试验表明,含量为5%和10%时会导致大孔隙减少、小孔隙增加,而15%和20%时现象相反。所有含量均导致孔隙率增加。选取碳酸钙含量为5%进行三轴剪切试验以获得应力应变曲线,采用邓肯-张模型对改性土进行预测。该模型在主应力差峰值预测上误差较大,但总体趋势较为一致。因此,引入了与围压相关的修正系数,修正后的模型与三轴剪切试验拟合良好。该研究为改性红黏土的液塑限及收缩特性提供了一种方法,探讨了碳酸钙含量对微观孔隙的影响,模型的修正为实际应用提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cbd/11470031/3f3962a9359d/41598_2024_73723_Fig1_HTML.jpg

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