Parametric study ofself-compacted concrete (SCC) by using industrial waste (copper slag, ceramic waste)
| Author(s) | : | Jayesh Prajapati, Kalpesh Prajapati, Pinkesh Prajapati, guide by prof. Nikunj Patel |
| Institution | : | Civil engineering department, Sardar Patel College of Engineering |
| Published In | : | Vol. 4, Issue 1 — January 2017 |
| Page No. | : | 179-186 |
| Domain | : | Engineering |
| Type | : | Research Paper |
| ISSN (Online) | : | 2348-4470 |
| ISSN (Print) | : | 2348-6406 |
self-compacted concrete is high performance concrete which has high fluidity without segregation which does notrequired vibration and able to flow by own weight for filling purpose of mold. SCC first develop in 1988 in japan to makestandard recommendation and manuals for SCC. Now a days concrete has no long just cement, fine aggregate, coarseaggregate and water. Technology undergone from macro to micro study which improve performance of concrete. But use ofexpansive admixture and very large quantity of cement and its give low strength and difficult to obtain. India has seriouschallenge for disposing industrial waste as land filling which result in high cost and environmental problem. Utilize treatedand untreated industrial waste as raw material in concrete is give clean and greener environment. Industrial waste likecopper slag and construction & demolition (C&D) waste replacing by fine aggregate and coarse aggregate in differentproportion is economical. Copper slag is by product of matte smelting and retaining copper.Which can replace by fineaggregate in concrete and in C&D wastes major part ceramic waste can replace by coarse aggregate to improve workabilityand strength of concrete. The test conducted for finding workability of SCC conducted are slump test, U-tube test, V-funneltest and L bar test.
Jayesh Prajapati, Kalpesh Prajapati, Pinkesh Prajapati, guide by prof. Nikunj Patel, “Parametric study ofself-compacted concrete (SCC) by using industrial waste (copper slag, ceramic waste)”, International Journal of Advance Engineering and Research Development (IJAERD), Vol. 4, Issue 1, pp. 179-186, January 2017.








