Fabrication and Performance Evaluation of Magneto Conductive Concrete for Improved Durability and Conductivity
Journal: International Journal of Trend in Scientific Research and Development (Vol.9, No. 5)Publication Date: 2025-10-04
Authors : Aman Potlia Er. Janardan Tiwari;
Page : 538-547
Keywords : Magneto-conductive concrete; Geopolymer concrete; Carbon fibers; Mechanical properties; Durability performance.;
Abstract
The modern world infrastructure is built on concrete which is valued due to mechanical power and flexibility. Nevertheless, its comparative lack of longevity and the lack of multifunctional capabilities are constant constraints. To deal with these problems, the current research examines the production and testing of Magneto Conductive Concrete MCC that employs carbon fibers as well as manufactured sand M sand as the sustainable alternative to river sand. Both the geopolymer based and Ordinary Portland Cement OPC concretes were prepared and experimented to establish their mechanical and durability behavior. The program included Compressive Strength CS , Split Tensile Strength SPS , Flexural Strength FS and Water Absorption tests in the experiment. Findings revealed that geopolymer concretes consistently delivered superior performance over OPC mixes, with compressive strengths ranging between 40β135 MPa, compared to 35β90 MPa achieved by OPC. Optimum performance was achieved at 50 M sand replacement, though full substitution remained feasible with only minor reductions. Durability assessment showed slightly higher water absorption in geopolymer concretes than OPC, yet within acceptable limits, confirming the suitability of M sand as an eco friendly fine aggregate. The findings highlight the potential of MCC as a multifunctional material for sustainable and smart infrastructure. Aman Potlia | Er. Janardan Tiwari "Fabrication and Performance Evaluation of Magneto Conductive Concrete for Improved Durability and Conductivity" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-9 | Issue-5 , October 2025, URL: https://www.ijtsrd.com/papers/ijtsrd97556.pdf Paper URL: https://www.ijtsrd.com/other-scientific-research-area/other/97556/fabrication-and-performance-evaluation-of-magneto-conductive-concrete-for-improved-durability-and-conductivity/aman-potlia
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