Open Access
Issue |
E3S Web Conf.
Volume 391, 2023
4th International Conference on Design and Manufacturing Aspects for Sustainable Energy (ICMED-ICMPC 2023)
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Article Number | 01019 | |
Number of page(s) | 15 | |
DOI | https://doi.org/10.1051/e3sconf/202339101019 | |
Published online | 05 June 2023 |
- A.U. Ravi Shankar, B.J. Panditharadhya, K. Satish, S. Amulya, Experimental investigation of black cotton soil stabilized with lime and coconut coir, in Proceedings of geoshanghai international conference Ground improvement and geosynthetics, 230–243, May (2018). [CrossRef] [Google Scholar]
- K. Shiva Prashanth Kumar, N. Darga Kumar, Influence of randomly mixed coir fibers and fly ash on stabilization of clayey subgrade, in Proceedings of International Journal of geoengineering, 10, February (2019). [Google Scholar]
- P.K. Jayasree, K. Balan, K.K. Nisha, Shrinkage characteristics of expansive soil treated with coir waste, in Proceedings of Indian geotechnical journal, 45, 360–367, February (2015). [CrossRef] [Google Scholar]
- Jairaj, M.T. Pratap Kumar, Effect of molding water content and dry density on the performance of treated coir fiber reinforced black cotton soil, in Proceedings of Geo-congress, ASCE, 325–334, March (2019). [Google Scholar]
- I.S. 2720, Indian standard for determination of liquid and plastic limits, New Delhi: Bureau of Indian standard publications, part 5, (1985). [Google Scholar]
- I.S. 2720, Indian standard for determination of shrinkage limits, New Delhi: Bureau of Indian standard publications, part 6, (1972). [Google Scholar]
- I.S. 2720), Indian standard for determination of water content using light compaction, New Delhi: Bureau of Indian standard publications, part 7, (1980). [Google Scholar]
- I.S. 2720, Indian standard for determination of unconfined compressive strength, New Delhi: Bureau of Indian standard publications,part 10, (1973). [Google Scholar]
- I.S. 2720, Indian standard for laboratory determination of California bearing ratio, New Delhi: Bureau of Indian standard publications, part 16, (1987). [Google Scholar]
- I.S. 2720, Indian standard for laboratory determination of permeability, New Delhi: Bureau of Indian standard publications, part 17, (1986). [Google Scholar]
- P.K. Jyasree, K. Balan, Leema Peter, K.K. Nisha, Volume change behavior of expansive soil stabilized with coir waste, in Proceedings of journal of materials in civil engineering, ASCE, 27, June (2015). [Google Scholar]
- Ujala Kumar, Vikram Pandey Dr., Prashanth Rao, Stabilization of soil using coir fiber, in Proceedings of international research journal of engineering and technology, 9, February (2022). [Google Scholar]
- P. Sudhakaran, Anil Kumarsharma, K. Sreevalsa, Soil stabilization using bottom ash and areca fiber: experimental investigation and reliability analysis, in Proceedings of journal of materials in civil engineering, ASCE, 30, August (2018). [Google Scholar]
- Sandeep Singh, Microstructural analysis of clay after treatment with Terrasil - A nano chemical, in Proceedings of international journal of scientific and engineering research, 8, December (2017). [Google Scholar]
- Ekremkalkan, Influence of silica fume on the desiccation crack of compacted clayey soils, in Proceedings of applied clay science, 43, 296–302, March (2009). [CrossRef] [Google Scholar]
- V. Padmavathi, E.C. Nirmala peter, P.N. Rao, M. Padmavathi, Stabilization of soil using Terrasil, zycobond, and cement as admixtures, in The proceedings of the 2nd geomeast international congress and exhibition on sustainable civil infrastructures, 163–170, October (2018). [Google Scholar]
- K. Meeravali, A. Gopikrishna, P. Ravibabu, S. Sivareddy, Improvement of consistency limits, specific gravity, and permeability characteristics of soft with nanomaterial: Nanoclay, in The proceedings of materials today, 33, 232–238, February (2020). [CrossRef] [Google Scholar]
- Karumach, Ruban, Rangaswamy, Stabilization of soft-clay using nanomaterial: Terrasil, in the Proceedings of materials today, 27, 1030–1037, December (2019). [Google Scholar]
- Afreen, Gupta, Comparative study and laboratory investigation of soil stabilization using Terrasil and zycobond, in the Proceedings of sustainable construction and building materials, 757–769, December (2018). [Google Scholar]
- Sathyapriya, Arumairaj, Micro fabric and mineralogical studies on the stabilization of expansive soil using cement industry wastes, in The proceedings of Indian journal of geo-marine sciences, 45, 807–815, June (2016). [Google Scholar]
- M.A. Vincente, M. Suarez, M.A. Bañares, J.D. Lopez, Comparative FT-IR study of the removal and structural modifications during acid silicates of octahedral cations treatment of several silicates, in The proceedings of spectrochimica acta part A, 52, 1685–1694, November (1996). [CrossRef] [Google Scholar]
- Adeinola, Nnochiri, Stabilization of lateritic soil using Terrasil solution, in Proceedings of journal of civil engineering, 12, July (2017). [Google Scholar]
- Ravi Shankar, Harsha Kumar Rai, Ramesha, Bioenzyme-stabilized lateritic soil as highway material, in The proceedings of journal of Indian road congress, 144–151, September (2009). [Google Scholar]
- Neeraj Kumarsharma, S.K. Swain, Umesh C. Sahoo, Stabilization of a clayey soil with fly ash and lime: A micro-level investigation, in The proceedings of geotechnical and geological engineering, 30, 1197–1205, June (2022). [Google Scholar]
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