The effect of wetting and drying cycles on the swelling-shrinkage behavior of the expansive soils improved by nanosilica and industrial waste

被引:2
作者
Sajad Shahsavani
Amir Hossein Vakili
Mehdi Mokhberi
机构
[1] Estahban Branch,Department of Civil Engineering
[2] Islamic Azad University,Department of Civil Engineering, Faculty of Engineering
[3] Zand Institute of Higher Education,Young Researcher and Elite Club
[4] Estahban Branch,undefined
[5] Islamic Azad University,undefined
来源
Bulletin of Engineering Geology and the Environment | 2020年 / 79卷
关键词
Expansive soil; Wetting and drying cycles; Swelling-shrinkage behavior; Modified odometer; Soil improvement;
D O I
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中图分类号
学科分类号
摘要
The expansive clayey soils show swelling-shrinkage behavior in wetting and drying cycles, respectively. The seasonal water content variations cause large volume changes of expansive clays, and consequently great losses on the infrastructure. In this study, the swelling-shrinkage behavior of a natural severely expansive clay was verified in its natural state and after being improved by nanosilica and industrial waste. Firstly, the swelling potential of the natural soil was determined, and then improvement impacts of different combinations of the stabilizers on the swelling potential were assessed by means of odometer tests. The results indicated that the swelling potential of 1-day-cured samples containing 0.5% of nanosilica decreased from an initial value of 75.26% for the natural expansive clay to 58.1%. The improvement by means of 0.5% of nanosilica and 20% of electric-arc furnace (EAF) slag decreased the swelling potential from an initial value of 75.26% for the natural expansive clay to 17.11%. Afterwards, the wetting and drying cycles’ effects on the swelling and shrinkage of the natural soil and that of the best identified combination of additives were verified by means of a modified odometer. The measurement of the axial deformation of soil, water content, void ratio, and saturation ratio during the swelling-shrinkage cycles indicated that the wetting and drying cycles caused the reduction of swelling potential of both natural and improved expansive soil samples. It was observed that the equilibrium condition occurred in lower number of wetting and drying cycles for the improved sample, compared to that of the natural soil. In addition, for the untreated samples, the highest void ratio and deformation variations occurred at saturation degrees between 50 and 90%. However, for improved soil sample, the highest void ratio and deformation variations were recorded at saturation degrees between 70 and 90%. In comparison with untreated expansive soil, occurring the highest void ratio and deformation variations at the higher saturation ratio reflected the reduction of negative effects of water content variations on volume changes when the expansive soil samples were improved. Based on the experiments performed on both the untreated and treated samples using the scanning electron microscope (SEM) and X-ray diffraction (XRD) tests before and after wetting and drying cycles, it was concluded that the additives used in the study decreased not only the swelling potential of highly expansive soil samples but also the swelling-shrinkage behavior of the soil. Additionally, it increased the durability of the samples during wetting and drying cycles.
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页码:4765 / 4781
页数:16
相关论文
共 104 条
[21]  
Changizi F(1962)Prediction of swelling potential for compacted clays J Soil Mech Found Eng 88 53-62
[22]  
Haddad A(2017)Effect of by-product steel slag on the engineering properties of clay soils J King Saud Univ Sci 29 394-103
[23]  
Estabragh AR(2018)Experimental study of the mechanical properties of expansive soil with added nanomaterials Arab J Geosci 11 180-959
[24]  
Moghadas M(2010)Effect of lime stabilized soil cushion on strength behavior of expansive soil Geotech Geol Eng 28 889-245
[25]  
Javadi AA(2006)Wetting, drying and compression characteristics of compacted clay Géotechnique 56 57-162
[26]  
Estabragh AR(2012)Influence of nano-material on the expansive and shrinkage soil behavior J Nanopart Res 14 1190-965
[27]  
Parsaei B(2009)Cyclic swell- shrink behavior of a compacted expansive soil Geotech Geol Eng 27 89-249
[28]  
Javadi AA(2002)Water content-void ratio swell-shrink paths of compacted expansive soils Can Geotech J 39 938-undefined
[29]  
Goodarzi AR(2013)The effects of technological voids on the hydro-mechanical behavior of compacted bentonite–sand mixture Soils Found 53 232-undefined
[30]  
Akbari HR(2014)Long-term effect of water chemistry on the swelling pressure of a bentonite-based material Appl Clay Sci 87 157-undefined