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Research Article

Influence of chemical stabilization method and its effective additive concentration (EAC) in non-pavement roads. A study in andesite-based soils

& | (Reviewing editor)
Article: 1592658 | Received 27 Nov 2018, Accepted 06 Mar 2019, Published online: 03 Apr 2019

References

  • Afrin, H. (2017). A review on different types of soil stabilization techniques. International Journal of Transportation Engineering and Technology, 3(2), 19–17. doi:10.11648/j.ijtet.20170302.12
  • Alarcón, J. (2015). Análisis del Comportamiento Mecánico y Mineralógico de Suelo Procedente del Sector Angachilla ubicado en Valdivia a partir de una Estabilización con Productos Químicos. Escuela de Ingeniería Civil en Obras Civiles. Universidad Austral de Chile, Chile.
  • Amin, D. (2015). Triaxial testing of lime/cement stabilized clay. A comparison with unconfined compression tests (Master's Thesis). Division of Soil and Rock Mechanics. KTH Royal Institute of Technology.
  • Bozo, N., & Cabezas, R. (2016). Caracterización del Comportamiento Mecánico de Suelos con una Emulsión Asfaltica (Thesis). Escuela de Ingeniería Civil, Universidad San Sebastián, Santiago, Chile.
  • D’Angelo, G., Thom, N. H., & Lo Presti, D. (2016). Potential of bituminous emulsion for ballast stabilization. Construction Building Materials, 124, 118-126.
  • Ivanov, V., & Chu, J. (2008). Applications of microorganisms to geotechnical engineering for bioclogging and biocementation of soil in-situ. Reviews in Environmental Science and Bio/Technology, 7(2), 139–153. doi:10.1007/s11157-007-9126-3
  • Jones, D., Rahin, A., Saadeh, S., & Harvey, J. T. (2010). Guidelines for the stabilization of subgrade soils in California. Pavement Research Center, University of California, CA.
  • Kumar, A., Gaurav, K., Kishor, R., & Suman, S. (2017). Stabilization of alluvial soil for subgrade using rice husk ash, sugarcane bagasse ash and cow dung ash for rural roads. International Journal of Pavement Research and Technology, 10, 254–261. doi:10.1016/j.ijprt.2017.02.001
  • Leiva, A. (2015). Análisis del comportamiento del Estabilizador VC-Flex en la Estructura de Caminos Secundarios en la Región de Los Ríos. Escuela de Ingeniería Civil en Obras Civiles, Universidad Austral de Chile, Chile.
  • Lim, S., Wijeyesekera, D., Lim, A., & Bakar, I. (2014). Critical review of innovative soil road stabilization techniques. International Journal of Engineering and Advanced Technology, 3, 5.
  • Mirzababaei, M., Arulrajah, A., & Ouston, M. (2017). Polymers for stabilization of soft clay soils. Procedia Engineering, 189, 25–32. doi:10.1016/j.proeng.2017.05.005
  • Moaveni, M., Abuawad, I., Hasiba, K., Zhang, D., & Tutumluer, E. (2012). Characterization of emulsion bitumen stabilized aggregate base. In Proceedings of 2nd International Conference on Transportation Geotechnics. Sapporo, Japan.
  • Mousavi, S., & Karamvand, A. (2017). Assessment of strength development in stabilized soil with CBR PLUS and silica sand. Journal of Traffic and Transportation Engineering, 4(4), 412–421.
  • Musavi, F., Abdi, E., & Estabragh, A. R. (2014). Assessing the capability of polymer stabilizer in forest road stabilization. Iranian Journal of Forest, 6(1), 1–10.
  • Naeini, S. A., & Ziaie, R. (2009). Effect of plasticity index and reinforcement on CBR value of soft clay. International Journal of Civil Engineering, 7(2), 61–69.
  • National Academies of Sciences. (2009). Recommended practice for stabilization of subgrade soils and base materials. National cooperative highway research program. Washington, DC: The National Academies Press. doi:10.17226/22999
  • NCh2505. (2001). Estabilización química de suelos - Caracterización del produto y evaluación de propiedades de desempeño del suelo. Instituto Nacional de Normalización. Retrieved from http://www.inn.cl
  • Obras Publicas, M. D. (2018). Dirección de Vialidad. Retrieved from http://www.vialidad.cl/Paginas/default.aspx
  • Parsons, R. L., & Milburn, J. P. (2003). Engineering behavior of stabilized soils. Journal of the Transportation Research Board, 1837, 20–29. doi:10.3141/1837-03
  • Peter, T. M., & Little, D. N. (2002). Review of stabilization on clays and expansive soils in pavements and lightly loaded structures history, practice and future. Journal of Materials in Civil Engineering, 14, 447–460. doi:10.1061/(ASCE)0899-1561(2002)14:6(447)
  • Sharma, N. K., Swain, S. K., & Sahoo, U. C. (2012). Stabilization of a clayey soil with fly-ash and lime: A micro level investigation. Geotechnical and Geological Engineering, 30(5), 1197–1205. doi:10.1007/s10706-012-9532-3
  • Sherwood, P. (1993). Soil stabilization with cement and lime. State of art review. London, UK: Transport Research Laboratory, HMSO.
  • Taha, M. R., Khan, T. A., Jawad, I. T., Firoozi, A. A., & Firoozi, A. A. (2013). Recent experimental studies in soil stabilization with bio-enzymes - a review. Electronic Journal of Geotechnical Engineering, 18, 3881–3894.
  • Tingle, J. S., & Santori, R. L. (2003). Stabilization of clay soils with nontraditional additives. Journal of the Transportation Research Board. 1819(1), 72-84. doi:10.3141/1819b-10
  • US Army. (1997). FM 5-410: Military soils engineering. Washington, DC: Department of the Army.
  • Vega, C., & Cabezas, R. (2017). Análisis Experimental de Efectos de Estabilizado Químico en Suelos no Plasticos (Thesis). Escuela de Ingeniería Civil, Universidad San Sebastián, Santiago, Chile.
  • Venkarasubramanian, C., & Dhinakaran, G. (2011). Effect of bio-enzymatic soil stabilization on unconfined compressive strength and California bearing ratio. Journal of Engineering and Applied Sciences, 5, 295–298.
  • Verdugo, R. (2008). Singularities of geotechnical properties of complex soils in seismic regions. Journal of Geotechnical and Geoenvironmental Engineering, 134, 7. doi:10.1061/(ASCE)1090-0241(2008)134:7(982)
  • Vialidad, D. D. (2015). Manual de Carreteras. Santiago, Chile. Retrieved from http://www.vialidad.cl/areasdevialidad/manualdecarreteras/Paginas/default.aspx
  • Yasima, N., Gonzalez, F., & Cabezas, R. (2016). Estabilización Química de Suelos con Aditivos Enzimáticos y Polimérico (Thesis). Ecuela de Ingeniería Civil, Universidad San Sebastián, Santiago, Chile.
  • Zhao, Y., Gao, Y., Zhang, Y., & Wang, Y. (2016). Effect of fines on the mechanical properties of composite soil stabilizer-stabilized gravel soil. Construction and Building Materials, 126, 701–710. doi:10.1016/j.conbuildmat.2016.09.082