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  Published Paper Details:

  Paper Title

EXPERIMENTAL STUDY ON PARTIAL REPLACEMENT OF FINE AGGREGATE BY GLASS POWDER

  Authors

  VIVEK FARENDRA,  YASH KUMAR SINHA,  ANISH MANDILWAR,  DIVYARTH MANAS

  Keywords

Glass powder, Compressive Strength , Dosages

  Abstract


Concrete is made up of a variety of materials, including coarse aggregate, fine aggregate, cement, and water, which are mixed in different proportions to achieve a specific strength. The most important material, cement, plays an important role in the production of concrete. The high cost of traditional building materials is a major factor influencing construction costs. This is a necessity-driven search for new types of alternative construction materials. As a coarse aggregate, waste glass in the form of fine aggregate can be used. In testing cubes for workability, compression strength, and flexural strength, the proportion of the mineral and mixtures is used. The effects of glass powder addition on the properties of M40 mortar concrete mix at 28 days three concrete mix with dosages of 20% of the weight concrete mix are briefly discussed in this paper. As mix dosages, a combination of these glass powders will be used. Cubes measuring 15x15x15cm were used to test compressive strength. The result of glass powder concrete curing for 7 days, 14 days, and 28 days

  IJCRT's Publication Details

  Unique Identification Number - IJCRT2201123

  Paper ID - 214755

  Page Number(s) - a966-a968

  Pubished in - Volume 10 | Issue 1 | January 2022

  DOI (Digital Object Identifier) -   

  Publisher Name - IJCRT | www.ijcrt.org | ISSN : 2320-2882

  E-ISSN Number - 2320-2882

  Cite this article

  VIVEK FARENDRA,  YASH KUMAR SINHA,  ANISH MANDILWAR,  DIVYARTH MANAS,   "EXPERIMENTAL STUDY ON PARTIAL REPLACEMENT OF FINE AGGREGATE BY GLASS POWDER", International Journal of Creative Research Thoughts (IJCRT), ISSN:2320-2882, Volume.10, Issue 1, pp.a966-a968, January 2022, Available at :http://www.ijcrt.org/papers/IJCRT2201123.pdf

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ISSN: 2320-2882
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Journal Starting Year (ESTD) : 2013
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ISSN and 7.97 Impact Factor Details


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ISSN: 2320-2882
Impact Factor: 7.97 and ISSN APPROVED
Journal Starting Year (ESTD) : 2013
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