International Journal For Multidisciplinary Research
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Volume 6 Issue 6
November-December 2024
Indexing Partners
Experimental Study of Compressive Strength of 8M Geopolymer Mortar for Different Combinations of Eucalyptus-ash with Ggbs(45µ)
Author(s) | Dhanalakshmi C K |
---|---|
Country | India |
Abstract | Concrete is the material which is unstintingly used in the construction sector and the product of cement is one among the reason for global warming due to release of carbon dioxide, to minimize its effect on nature we must use artificial by- product as an indispensable material. Among artificial by- product, operation of cover ash is more. The geopolymer mortar made by the using cover- ash set sluggishly in ambient temperature and needs heat curing. To overcome this limitation, Ground Granulated Blast Furnace Sediment(GGBS) grease paint is used as a cementious material which shows considerable gain in strength. In this paper, we delved the parcels of geopolymeric binder prepared using the Ground “Granulated Blast Furnace Sediment”(GGBS) and eucalyptus ash without using conventional cement. The individual parcels of the GM for 1:3 rate, similar as compressive strength test were determined as per applicable Indian norms. cells of size (70.6x70.6x70.6) mm were casted and cured in ambient condition for molarity 8M with different rates and different temperatures. After the trials, compressive strength is increased for adding number of days of curing. Also compressive strength dropped for adding Na2SiO3/ NaOH rates and adding roaster curing temperatures |
Keywords | Geoploymer mortar, GGBFS, coalash,8M(Molarity) |
Field | Engineering |
Published In | Volume 5, Issue 6, November-December 2023 |
Published On | 2023-12-16 |
Cite This | Experimental Study of Compressive Strength of 8M Geopolymer Mortar for Different Combinations of Eucalyptus-ash with Ggbs(45µ) - Dhanalakshmi C K - IJFMR Volume 5, Issue 6, November-December 2023. DOI 10.36948/ijfmr.2023.v05i06.10443 |
DOI | https://doi.org/10.36948/ijfmr.2023.v05i06.10443 |
Short DOI | https://doi.org/gs9k4g |
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E-ISSN 2582-2160
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IJFMR DOI prefix is
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