Evaluation of Concrete with Glass and Coconut Shell in Place of Coarse Aggregate and Partially Replaced Cement

Authors

  • Adusumalli Manikanta Assistant Professor, Department of Civil Engineering, PACE Institute of Technology & Sciences, Ongole, Andhra Pradesh, India Author
  • P Kiran Kumar Assistant Professor, Department of Civil Engineering, PACE Institute of Technology & Sciences, Ongole, Andhra Pradesh, India Author
  • T Udaya Assistant Professor, Department of Civil Engineering, PACE Institute of Technology & Sciences, Ongole, Andhra Pradesh, India Author
  • I Prasoona Rajya Lakshmi M.Tech Scholar, Department of Civil Engineering, PACE Institute of Technology & Sciences, Ongole, Andhra Pradesh, India Author
  • K Raj kumar B.Tech Scholae, Department of Civil Engineering, PACE Institute of Technology & Sciences, Ongole, Andhra Pradesh, India Author

DOI:

https://doi.org/10.55524/

Keywords:

Glass, coconut shell, cement, aggregate

Abstract

 Supplies for building are getting more  expensive every day. The two essential components of the  concrete are pozzolanic material and crushed rock. These  days, a lot of scientists are investigating building materials  that could both raise and lower construction prices. It has  been shown that using some industrial leftovers and  agricultural residues as construction materials, particularly in  underdeveloped countries, provide a number of real  advantages. It was discovered that there is a lot of potential  for using coconut shells to replace part of the aggregate used  in concrete. The current work consists solely of a compilation  of data related to GFRGC and earlier studies conducted by  other academics. Millions of tonnes of glass waste are  created annually. 

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References

ACI 311-05. “Specifications for Structural Concrete”. American Concrete Institute, Farmington Hills.

ACI 211.2-98. “Standard Practice for Selecting Proportions for Structural Lightweight Concrete”. American Concrete Institute, Detroit, Michigan.

ACI 213R-87. “Guide for Structural Lightweight Aggregate Concrete”. American Concrete Institute, Detroit, Michigan. [4] “Advantages of Structural Lightweight Aggregate Concrete”. Expanded Clay, Shale and Slate Institute.

ASTM C496-11. “Standard Test Method for Splitting Tensile Strength of Cylindrical Concrete Specimens”.

ASTM C39-16b. “Standard Test Method for Compressive Strength of Cylindrical Concrete Specimens”.

ASTM C143-15a. “Standard Test Method for Slump of Hydraulic-Cement Concrete”.

IS: 516 (1959). “Indian Standard methods of tests for strength of concrete.” Bureau of Indian standards, ManakBhavan, 9 Bahadur Shah Zafar Marg, New Delhi 110002.

IS: 4031 (1996). “Indian Standard method of physical tests for hydraulic cement.” Bureau of Indian standards, ManakBhavan, 9 Bahadur Shah Zafar Marg, New Delhi 110002.

IS: 456 (2000). “Indian Standard Plain and Reinforced Concrete Code of Practice.” Bureau of Indian standards, ManakBhavan, 9 Bahadur Shah Zafar Marg, New Delhi 110002

IS: 10262 (1982) (Reaffirmed 2004). “Recommended Guidelines for Concrete Mix Bureau of Indian standards, ManakBhavan, 9 Bahadur Shah Zafar Marg, New Delhi 110002.

Ghambhir, M. L. (2003). Concrete Technology (2nd edition), Huang, B., Li, G., Pang, S., and Eggers, J., (2004). “Investigation into Waste Tire Rubber- Filled Concrete. Journal of Materials in Civil Engineering, 16(3), 187-194.

IS: 383 (1970). “Indian Standard Specification for Coarse and Fine Aggregates from Natural Sources for Concrete (Second Revision).” Bureau of Indian

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Published

2022-09-30

How to Cite

Evaluation of Concrete with Glass and Coconut Shell in Place of Coarse Aggregate and Partially Replaced Cement . (2022). International Journal of Innovative Research in Computer Science & Technology, 10(5), 145–148. https://doi.org/10.55524/