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Original Article
Experimental Study on Strength of Concrete Using Slag Sand and Partial Replacement of Cement with Alccofine
Sathram Vidya1
B. Sravan Kumar2
1 2 Department of Civil Engineering, Ananthalakshmi Institute of Technology and Sciences (Autonomous), Ananthapuramu, Andhra Pradesh, India.
Published Online: May-June 2026
Pages: 55-59
Cite this article
↗ https://www.doi.org/10.59256/ijsreat.20260603007References
1. Deval Soni, Suhasini Kulkarni and Vilin Parekh, "Experimental Study on High-Performance Concrete, with Mixing of Alccofine and Fly
ash," Indian Journal of Research, Vol. 3, Issue 4, 2013, pp. 84-86.
2. S. Kavitha and T. Felix Kala, "Evaluation of Strength Behavior of Self-Compacting Concrete using Alccofine and GGBS as Partial
Replacement of Cement," Indian Journal of Science and Technology, Vol. 9, Issue 22, 2016, pp. 1-5.
3. D. Sharma, S. Sharma and A. Goyal, "Utilization of Waste Foundry Slag and Alccofine for Developing High Strength Concrete,"
International Journal of Electrochemical Science, Vol. 11, Issue 1, 2016, pp. 3190-3205.
4. M.V. Sekhar Reddy, K.A. Latha and K. Surendra, "Experimental work on partial replacement of cement with fly ash and Alccofine for
M40 Grade concrete," 2016.
5. P.J. Patel et al., "Compressive & Flexural Strength of High-Performance Concrete including Alccofine and Fly ash," 2013.
6. Chepuri Jaswanthi Yoga, B. Ajitha, "An Exploratory Study on Replacement of Cement with Metakaolin, Marble Dust, and Slag Sand,"
Journal of Northeastern University, Vol. 25, Issue 04, 2022, ISSN: 1005-3026.
7. M. Praneeth Kumar, B. Ajitha, "Study on Tensile Strength of High Strength Concrete with Metakaolin Admixture and Artificial Sand,"
International Journal of Analytical and Experimental Modal Analysis, Vol. XIII, Issue XI, November 2021, ISSN: 0886-9367.
8. P.R. Kalyana Chakravarthy, R. Rathan Raj, "Experimental Investigation on Concrete by Replacing Cement with Alccofine on Varying
Percentage," 2017.
9. IS 10262-2019: Guidelines for Concrete Mix Proportion, Bureau of Indian Standards, New Delhi.
10. IS 456-2000: Plain and Reinforced Concrete - Code of Practice, Bureau of Indian Standards, New Delhi.
ash," Indian Journal of Research, Vol. 3, Issue 4, 2013, pp. 84-86.
2. S. Kavitha and T. Felix Kala, "Evaluation of Strength Behavior of Self-Compacting Concrete using Alccofine and GGBS as Partial
Replacement of Cement," Indian Journal of Science and Technology, Vol. 9, Issue 22, 2016, pp. 1-5.
3. D. Sharma, S. Sharma and A. Goyal, "Utilization of Waste Foundry Slag and Alccofine for Developing High Strength Concrete,"
International Journal of Electrochemical Science, Vol. 11, Issue 1, 2016, pp. 3190-3205.
4. M.V. Sekhar Reddy, K.A. Latha and K. Surendra, "Experimental work on partial replacement of cement with fly ash and Alccofine for
M40 Grade concrete," 2016.
5. P.J. Patel et al., "Compressive & Flexural Strength of High-Performance Concrete including Alccofine and Fly ash," 2013.
6. Chepuri Jaswanthi Yoga, B. Ajitha, "An Exploratory Study on Replacement of Cement with Metakaolin, Marble Dust, and Slag Sand,"
Journal of Northeastern University, Vol. 25, Issue 04, 2022, ISSN: 1005-3026.
7. M. Praneeth Kumar, B. Ajitha, "Study on Tensile Strength of High Strength Concrete with Metakaolin Admixture and Artificial Sand,"
International Journal of Analytical and Experimental Modal Analysis, Vol. XIII, Issue XI, November 2021, ISSN: 0886-9367.
8. P.R. Kalyana Chakravarthy, R. Rathan Raj, "Experimental Investigation on Concrete by Replacing Cement with Alccofine on Varying
Percentage," 2017.
9. IS 10262-2019: Guidelines for Concrete Mix Proportion, Bureau of Indian Standards, New Delhi.
10. IS 456-2000: Plain and Reinforced Concrete - Code of Practice, Bureau of Indian Standards, New Delhi.
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