蒙脱石含量对黏土表面干缩裂隙影响试验研究

夏冬生,刘清秉,项伟,王菁莪,艾密

raybet体育在线 院报 ›› 2016, Vol. 33 ›› Issue (9) : 83-86.

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raybet体育在线 院报 ›› 2016, Vol. 33 ›› Issue (9) : 83-86. DOI: 10.11988/ckyyb.20150607
岩土工程

蒙脱石含量对黏土表面干缩裂隙影响试验研究

  • 夏冬生a,刘清秉b,项伟a,b,王菁莪b,艾密b
作者信息 +

Impact of Montmorillonite Content on Desiccation Cracks on Clay Surface

  • XIA Dong-sheng1, LIU Qing-bing2, XIANG Wei1,2, WANG Jing-e2, AI Mi2
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摘要

蒙脱石作为膨胀土中主要的黏土矿物成分,对膨胀土胀缩性质及裂隙性具有重要的影响。为研究蒙脱石含量对裂隙发育的影响同时规避其他成分的影响,对13组不同蒙脱土含量的蒙脱土-石英砂饱和泥浆样进行了干燥试验,试验控制温度为40 ℃。

Abstract

As a major clay mineral in swelling soil, montmorillonite has important influence on swelling-shrinkage properties and developing fissures of swelling soil. Desiccation tests were conducted under 40 ℃ on initially saturated montmorillonite-silica sand mixture slurry to investigate the effects of montmorillonite content on shrinkage and cracking characteristics. Water loss and surface crack evolution were monitored during the whole drying period while the critical moisture content and surface crack ratio δS were obtained with computer software. The results showed that during drying period, the process of water loss showed three obvious phases: the evaporation phase at constant speed, the decline phase and the residual phase. And cracks on the surface of samples mostly developed in the first phase. The final surface crack ratio δSF and the initial moisture content wI at which the cracks start were significantly influenced by the content of montmorillonite showing trend of increasing with the growth of the content of montmorillonite. But the final moisture content wF at which the cracks end were different, yet, the difference Δw between wI and wF is positively related to the content of montmorillonite.

关键词

蒙脱土 / 干燥曲线 / 裂隙 / 临界含水率 / 定量化分析

Key words

montmorillonite / drying curve / crack / critical moisture content / quantitative analysis

引用本文

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夏冬生,刘清秉,项伟,王菁莪,艾密. 蒙脱石含量对黏土表面干缩裂隙影响试验研究[J]. raybet体育在线 院报. 2016, 33(9): 83-86 https://doi.org/10.11988/ckyyb.20150607
XIA Dong-sheng, LIU Qing-bing, XIANG Wei, WANG Jing-e, AI Mi. Impact of Montmorillonite Content on Desiccation Cracks on Clay Surface[J]. Journal of Changjiang River Scientific Research Institute. 2016, 33(9): 83-86 https://doi.org/10.11988/ckyyb.20150607
中图分类号: TV443   

参考文献

[1] 郑少河,姚海林,葛修润. 裂隙性膨胀土饱和-非饱和渗流分析[J]. 岩土力学, 2007,28(增1):281-285.
[2] STOLTE J, RITSEMA C J, DE ROO A P J. Effects of Crust and Cracks on Simulated Catchment Discharge and Soil Loss[J]. Journal of Hydrology, 1997, 195(1): 279-290.
[3] 王恩志,孙 役,黄远智,等.三维离散裂隙网络渗流模型与实验模拟[J].水利学报,2002,33(5):37-40.
[4] 张 嘎,张建民,洪 镝. 面板堆石坝面板出现裂缝工况下的渗流分析[J]. 水利学报, 2005, 36(4): 420-425.
[5] TERZAGHI K. Stability of Slopes of Natural Clay[C]∥Proceedings of the First International Conference on Soil Mechanics and Foundation Engineering, Cambridge:Harvard University, 1936.
[6] KLEPPE J H, OLSON R E. Desiccation Cracking of Soil Barriers[C]∥Hydraulic Barriers in Soil and Rock. ASTM. 1985: 263-275.
[7] 唐朝生,施 斌,刘 春,等. 影响黏性土表面干缩裂缝结构形态的因素及定量分析[J]. 水利学报,2007, 38(10): 1186-1193.
[8] 吴珺华,袁俊平,卢廷浩. 基于变湿应力概念的膨胀土初始开裂分析[J]. 岩土力学,2011,32(6):1631-1636.
[9] 唐朝生,崔玉军, TANG A M,等. 膨胀土收缩开裂过程及其温度效应[J]. 岩土工程学报, 2012,34(12): 2181-2187.
[10]张 琦. 膨胀土干燥收缩特性试验研究[D]. 南京:南京大学, 2014.
[11]张 丹,徐洪钟,施 斌,等. 基于FBG技术的饱和膨胀土失水致裂过程试验研究[J]. 工程地质学报, 2012,20(1): 103-108.

基金

国家自然科学基金(41202199,41572286);湖北省自然科学基金(2015FB247);中国博士后科学基金(2013M542098)

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