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Effect Of Nano-Sio2 Solution On The Strength Characteristics Of Kaolinite

Authors: Moayed, Reza Ziaie; Hamidreza Rahmani;

Effect Of Nano-Sio2 Solution On The Strength Characteristics Of Kaolinite

Abstract

{"references": ["Z.H. Majeed, M.R Taha, \"A Review of Stabilization of Soils by using Nano materials,\" Australian Journal of Basic and Applied Sciences., vol. 7, pp. 576-581, 2013.", "D. Wu, W. Xu, R. Tjuar, \"Improvements of marine clay slurries using chemical-physical combined method (CPCM),\" Journal of Rock Mechanics and Geotechnical Engineering., vol. 7, pp. 220-225, 2015.", "Borchardt, G., \"Stabilization of Landslides: Effects of Various Chemicals on the Laboratory Shear Strength of an Expansive Soil.\" Rep. No. Special Report 155, California Department of Conservations, Division of Mines and Geology, Sacramento, CA. Stabilization.\" Transportation Research Record, (1295), pp. 45-51, 1984", "Al. Rawas, A.A. and M.F.A. Goosen, \"Expansive Soils: Recent Advances in Characterization and Treatment,\" Taylor and Francis Group, London, UK, 2006.", "B. R. Phanikumar, \"Effect of lime and fly ash on swell, consolidation and shear strength characteristics of expansive clays: a comparative study,\" Geomechanics and Geoengineering, vol. 4, pp. 175\u2013181, 2009.", "B. R. Phanikumar, R. Sreedharan, and C. Aniruddh, \"Swell compressibility characteristics of lime-blended and cement-blended expansive clays\u2014a comparative study,\" Geomechanics and Geoengineering, vol. 10, pp. 153\u2013162, 2015.", "R. Brooks, F. Udoeyo, K. Takkalaplli, \"Geotechnical Properties of Problem Soils Stabilized with Fly Ash and Limestone Dust in Philadelphia\", Journal of Materials in Civil Engineering, vol. 23, pp 711-716, 2011.", "U. Huang, Z. Wen, \"Recent developments of soil improvement methods for seismic liquefaction mitigation,\" Nat Hazards., vol. 76, pp. 1927\u20131938, 2015.", "NSTC, \"The National Nanotechnology Initiative - Strategic Plan,\" Executive Office of the President of the United States, 2007.\n[10]\tF. Changizi, A. Haddad, \"Effect of Nano-SiO2 on the geotechnical properties of cohesive Soil,\" Geotech Geol Eng., vol. 34, pp. 725\u2013733, 2015. \n[11]\tC.T. Conlee, P.M. Gallagher, R.W. Boulanger, R. Kamai, \"Centrifuge Modeling for Liquefaction Mitigation Using Colloidal Silica Stabilizer,\" J. Geotech. Geoenviron. Eng., vol. 138, pp. 1334-1345, 2012. \n[12]\tP.M. Gallagher, A. Pamuk, T. Abdoun, \"Stabilization of liquefiable soils using colloidal silica grout,\" ASCE J Mater Civil Eng., vol. 19, pp.33\u201340, 2007.\n[13]\tP.M. Gallagher, J.K. Mitchell, \"Influence of colloidal silica grout on liquefaction potential and cyclic undrained behavior of loose sand,\" Soil Dyn Earthq Eng., vol. 22, pp.1017\u20131026, 2002.\n[14]\tL.M. Spencer, J. Glenn, P.M. Gallagher, \"Dynamic properties of colloidal silica gel and sand mixtures,\" Proceedings of the 4th international conference on earthquake geotechnical engineering, paper No.1324, 2007.\n[15]\tH. Ghazi, M.H. Baziar, S.M. Mirkazemi, \"The effects of nano-material additives on the basic properties of soil\", 14th Asian regional conference of geotechnic, Hong-Kong, 2011.\n[16]\tM.R. Taha, O.M.E Taha, \"Influence of Nano-material on the expansive and shrinkage soil behavior,\" Journal of Nanoparticle Research., vol. 14, pp.1190, 2012. \n[17]\tC.T. Conlee, P.M. Gallagher, R.W. Boulanger, R. Kamai, \"Centrifuge modeling for liquefaction mitigation using colloidal silica stabilizer,\" ASCE J Geotech Geoenviron Eng, vol. 138, pp. 1334\u20131345, 2012.\n[18]\tASTM D1557, \"Standard Test Methods for Laboratory Compaction of Soil Modified Effort,\" American Society for Testing and Materials, 2012.\n[19]\tASTM D2166, \"Standard Test Method for Unconfined Compressive Strength of Cohesive Soil,\" American Society for Testing and Materials, 2013."]}

Today, with developments in science and technology, there is an excessive potential for the use of nanomaterials in various fields of geotechnical project such as soil stabilization. This study investigates the effect of Nano-SiO2 solution on the unconfined compression strength and Young's elastic modulus of Kaolinite. For this purpose, nano-SiO2 was mixed with kaolinite in five different contents: 1, 2, 3, 4 and 5% by weight of the dry soil and a series of the unconfined compression test with curing time of one-day was selected as laboratory test. Analyses of the tests results show that stabilization of kaolinite with Nano-SiO2 solution can improve effectively the unconfined compression strength of modified soil up to 1.43 times compared to the pure soil.

Keywords

unconfined compression test, Kaolinite, nano-SiO2, Young's modulus., stabilization

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This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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