Investigating the Properties of Concrete Using Steel Slag as a Partial Replacement of Coarse Aggregate
- 1 College of Civil and Transportation Engineering, Hohai University, Nanjing, China
- 2 College of Civil and Transportation Engineering, Hohai University, Nanjing, China
- 3 College of Civil and Transportation Engineering, Hohai University, Nanjing, China
- 4 School of Civil Engineering, Zhengzhou University, Zhengzhou, China
- 5 Department of Civil Engineering, Faculty of Engineering, Aliko Dangote University of Science and Technology, Wudil, Nigeria
Abstract
Concrete is one of the best building materials, widely used for various purposes. Replacing coarse aggregate with steel slag not only supports economic growth but also helps conserve natural resources. The objectives of this research are to determine the optimum percentage of replacement of coarse aggregate with steel slag and to determine the water absorption, specific gravity, and compressive strength of the concrete. A blend ratio of 1:2:4 for concrete grade M20 was determined after analyzing the aggregates. The density of concrete is 2400 kg/m 3 . The amount of each component such as coarse aggregate, fine aggregate, and cement needed for the molds of the entire 45 cubes was determined by which 9 cubes per age per mix in which average value was taken for each percentage of steel slag replacement (0%, 10%, 20%, 30%, 40%, and 50%) at a water-cement ratio of 0.6, also the average value of each age were recorded. The compressive strength, specific gravity, slump test, and water absorption of the concrete were all evaluated. The compressive strength gradually rises from 0 to 30% before declining to 50%. These findings indicate that the ideal percentage is 30% replacement, with values of 17.78, 21.91, and 26.14 N/mm 2 at 7, 14 and 28 days, respectively. Additionally, an M20 was achievable after 14 days of curing. This indicates that the concrete strengthened more quickly than anticipated because it surpasses the minimum needed for M20 grade concrete, which is 20 N/mm 2 at 28 days.
- Kumar, P.V. and Kumar, R.R. (2016) An Experimental Study on Partial Replacement of Coarse Aggregate by Iron Slag with Polypropylyne Fiber. International Journal of Science and Research ( IJSR ), 5, 212-216.
- Wahane, A.M. and Dahat, I.B. (2023) Evaluation of Steel Slag as Partial Replacement of Cement in Concrete. International Journal of Advanced Research in Engineering and Innovative Technologies , No. 4, 1590-1595.
- Subramani, T. and Ravi, G. (2015) Experimental Investigation of Coarse Aggregate with Steel Slag in Concrete. IOSR Journal of Engineering , 5, 64-73.
- Nema, R. (2021) Experimental Investigation on Concrete Using Steel Slag as Fine Aggregate. International Journal of Science Engineering and Technology , 7, 9-12.
- Ravikumar, H., Dattatreya, J.K. and Shivananda, K.P. (2015) Experimental Investigation on Replacement of Steel Slag as Coarse Aggregate in Concrete. Journal of Civil Engineering and Environmental Technology , 2, 58-63.
- Suri, N. and Babu, Y.A. (2016) Experimental Investigations on Partial Replacement of Steel Slag as Coarse Aggregates and Eco Sand as Fine Aggregate. International Journal of Civil Engineering and Technology , 7, 322-328.
- Tangadagi, R.B. (2022) Experimental Investigation on Use of Steel Slag as a Partial Replacement of Fine Aggregate in Concrete. Journal of Xi ’ an Shiyou University , 14, 34-40.
- Ravisankar, K.L. and Luwang, S.C. (2023) Investigation on Strength of Concrete by Partial Replacement of Coarse Aggregate with Steel Slag. International Journal for Research in Applied Science and Engineering Technology , 11, 336-340. https://doi.org/10.22214/ijraset.2023.48573
- Mani, V., Dinesh Kumar, S., Gaayathri Priya, N. and Poornima (2016) Replacement of Coarse Aggregate Using Steel Slag in Concrete. International Journal of Engineering Research & Technology , 4, 1-3.
- Nguyen, C.T., Pham, P.N., Nam, H.P. and Nguyen, P. (2025) Factors Affecting Compressive Strength of Steel Slag Concrete: A Systematic Literature Review. Journal of Building Engineering , 100, Article 111686. https://doi.org/10.1016/j.jobe.2024.111686
- Qureshi, H.J., Alghamdi, S.A., Majdi, A., Ahmad, J., Rahmawati, C., Alattyih, W., et al . (2025) Utilization of Steel Slag in Concrete: A Review on Durability and Microstructure Analysis. Reviews on Advanced Materials Science , 64, Article 20250086. https://doi.org/10.1515/rams-2025-0086
- Subramani, G.R.T. (2015) Experimental Investigation of Coarse Aggregate with Steel Slag in Concrete. Journal of Engineering , 5, 64-73.