EXPERIMENTAL STUDY ON REPLACEMENT OF CEMENT AND FINE AGGREGATE WITH MARBLE DUST AND COPPER SLAG

Open Access

Year : 2024 | Volume : | : | Page : –
By

    Ch. Vasavya

  1. Ch. Mallika Chowdary

  1. PG Student, Department of Civil Engineering, Koneru Lakshmaiah Education Foundation, Guntur,, Andhra Pradesh, India
  2. Assistant Professor, Department of Civil Engineering, Koneru Lakshmaiah Education Foundation, Guntur, Andhra Pradesh, India

Abstract

With the ever-growing challenge of managing escalating waste materials globally, this paper explores sustainable solutions in construction through the utilization of marble dust and copper slag. The rapid generation of waste poses severe environmental and health threats, necessitating innovative strategies for responsible waste management. Local availability and the potential to enhance concrete strength make marble dust and copper slag attractive candidates for the partial replacement of cement and fine aggregate. Initial investigations suggest that a 30% replacement ratio offers optimal strength, with a slight decrease noted beyond this threshold. In this experimental study, M30 Grade concrete is employed, and equal percentages of 0%, 10%, 20%, 30%, 40%, and 50% of cement and fine aggregate are replaced with marble dust and copper slag. Cubes, cylinders, and prisms are cast to undergo comprehensive strength and durability tests at 7, 14, 28, and 56 days. The primary goal is to assess the long-term performance of concrete with varied proportions of marble dust and copper slag replacements. By providing insightful information on the potential of waste materials to improve concrete’s characteristics, this research enhances environmentally friendly solutions for the building sector and fosters sustainable construction practices.

Keywords: Aggregate, Cement, Concrete, Copper Slag, Durability, Marble Dust, Strength.

How to cite this article: Ch. Vasavya, Ch. Mallika Chowdary.EXPERIMENTAL STUDY ON REPLACEMENT OF CEMENT AND FINE AGGREGATE WITH MARBLE DUST AND COPPER SLAG.Journal of Polymer and Composites.2024; ():-.
How to cite this URL: Ch. Vasavya, Ch. Mallika Chowdary , EXPERIMENTAL STUDY ON REPLACEMENT OF CEMENT AND FINE AGGREGATE WITH MARBLE DUST AND COPPER SLAG jopc 2024 {cited 2024 Apr 19};:-. Available from: https://journals.stmjournals.com/jopc/article=2024/view=143994

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References

  1. Oza, R. B., Kangda, M. Z., Agrawal, M. R., Vakharia, P. R., & Solanki, D. M. (2022). Marble dust as a binding material in concrete: A review. Materials Today: Proceedings, 60, 421-430.
  2. Ambrish, E., Dhavamani, D. S., Shanmuganathan, N., & Ganapathi, R. (2017). Partial replacement of copper slag as fine aggregate. International Journal of Civil Engineering, ISSN, 2348-8352.
  3. Kaur, E. A., & Bansal, R. S. (2015). Strength and Duriabilty Properties of Concrete with Partial Replacement of Cement with Metakaolin and Marble Dust. vol, 4, 1032-1035.
  4. Gurumoorthy, N., 2014. Influence of marble dust as a partial replacement of cement in concrete. International Journal of Engineering Research and Technology.
  5. Elamaran, R., Srinivasan, K., & Vimala, S. (2019). Use of copper slag for partial replacement to fine aggregate in concrete. Int. J. Recent Technol. Eng, 7(5), 559-564.
  6. Amarnaath, M. R., Pradeep, S. J., Kavin, R. A., Dinesh, P., & Haribaskaran, S. (2015). A study on effective replacement of fine aggregate using copper slag. International Journal of Science Technology & Engineering, 1(10), 227-231.
  7. Malkhare, M. S. S., & Pujari, A. B. To Study the Performance of Copper Slag as Partial or Fully Replacement to Fine Aggregates in Concrete.
  8. Hong, C. W. (2017). Effect of copper slag as a fine aggregate on the properties of concrete. Journal of Ceramic Processing Research, 18(4), 324-328.
  9. Patel, D., Bodiwala, P., & Joshi, T. (2016). To study the properties of concrete as a replacement of cement with the marble dust powder. Technology, 7(4), 199-207.
  10. Kumar, R., & Kumar, S. K. (2015). Partial replacement of cement with marble dust powder. International Journal of Engineering Research and Applications, 5(8), 106-114.
  11. Kishore, I. S., & Chowdary, C. M. (2015). A study on waste utilization of marble dust in high strength concrete mix. International Journal of Civil Engineering and Technology, 6(12), 1-7.
  12. Kiran, K., & Kishore, I. S. (2017). An experimental study on partial replacement of cement with bagasse ash in concrete mix. International journal of civil engineering and technology, 8(1), 452-455.
  13. Dutt, K. S., Kumar, K. V., Kishore, I. S., & Chowdary, C. M. (2016). A case study on fly ash based geo-polymer concrete. International Journal of Engineering Trends and Technology (IJETT), 34.
  14. Reddy, K. A., & Kishore, I. S. (2017). Study on behaviour of partial replacement of cement with sugarcane bagasse ash for high strength concrete mix. International Journal of Civil Engineering and Technology, 8(1), 847-851.
  15. Ramesh, K. V., Goutham, R., & Kishor, S. (2017). An experimental study on partial replacement of bagasse ash in basalt concrete mix. International Journal of Civil Engineering and Technology, 8(5), 335-341.
  16. Kumar, P. P. S., Sri, S. M., Manideep, M. S., & Kishore, I. S. (2018). Experimental study on strength of concrete by partial replacement of coarse aggregate by ceramic aggregate. Int. J. Res. Dev.(IJRD), 3(6), 71-73.
  17. Panchal, J. N., Challagulla, S. P., & Kishore, I. S. (2021, November). Influence of palm oil fuel ash on strength properties of concrete. In IOP Conference Series: Materials Science and Engineering (Vol. 1197, No. 1, p. 012082). IOP Publishing.
  18. Rajesh, P., Babu, M. S., & Kishore, I. S. (2021, November). Service Life Prediction of RC Structure Incorporated with GGBS Subjected to Chloride Ion Penetration. In IOP Conference Series: Materials Science and Engineering (Vol. 1197, No. 1, p. 012066). IOP Publishing.

Ahead of Print Open Access Original Research
Volume
Received February 9, 2024
Accepted March 2, 2024
Published April 19, 2024