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DOI will be assigned to every published paper at no additional charge. πŸ“’ Call for Papers β€” Volume 13, Issue 9 (September 2026) | Submission Deadline: September 30, 2026 | Rapid peer review: 2–3 days | Impact Factor: 7.37 (SJIF 2026)

Paper Details

📄 IJAERD-OJS-6346

Use of glass powder in concrete to improve Flexural strength

Author(s):Waykar Rajesh S, Chavan Sanket N, Yendhe Rushikesh C, Pawale Tushar T, Sonawane Pradip B
Institution:Department of Civil engineering, Jaihind Polytechnic, Kuran
Published In:Vol. 5, Issue 16 β€” January 2018
Page No.:-
Domain:Engineering
Type:Research Paper
ISSN (Online):2348-4470
ISSN (Print):2348-6406
Abstract

The global warming is caused by the emission of green house gases, such as CO2, to the atmosphere. Amongthe greenhouse gases, CO2 contributes about 65% of global warming. The global cement industry contributes about 7%of greenhouse gas emission to the earth’s atmosphere. Consequently efforts have been made in the concrete industry touse waste materials as partial replacement of coarse or fine aggregates and cement. Waste glass is one materials whenground to a very fine powder shows pozzolanic properties which can be used as a partial replacement for cement inconcrete. In this paper, an attempt has been made to find out the strength of concrete containing waste glass powder as apartial replacement of cement for concrete. Cement replacement by glass powder in the range 0% to 15% increment of5% has been studied. It was tested for compressive strength and flexural strength at the age of 7, 28 and 90 days andcompared with those of conventional concrete. Results showed that replacement of 15% cement by glass powder wasfound to have higher strength.Mixtures containing GLP also performed satisfactorily with respect to drying shrinkage and alkali reactivity,and there were indications that GLP reduces the chloride ion penetrability of the concrete, thereby reducing the risk ofchloride induced corrosion of the steel reinforcement in concrete. The results demonstrated that GLP can beincorporated into 40 MPa concrete at dosage rates of 20–30% to replace cement without harmful effects. The use of GLPprovides for considerable value-added utilisation of waste glass in concrete and significant reductions in the productionof green house gases by the cement industry.

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🕮 How to Cite

Waykar Rajesh S, Chavan Sanket N, Yendhe Rushikesh C, Pawale Tushar T, Sonawane Pradip B, “Use of glass powder in concrete to improve Flexural strength”, International Journal of Advance Engineering and Research Development (IJAERD), Vol. 5, Issue 16, pp. -, January 2018.

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Vol. 13 | Issue 9
September 2026