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◆ Scientific Reports2025-12-04· Materials science

Experimental research on mechanical and microstructural characteristics of hybrid fiber reinforced concrete (HFRC)

M. Vadivel, G. Selinaruby, R. Padmapriya, Bhagavathi Perumal

原始摘要(英文原文)· Original abstract
This study investigates the mechanical and microstructural performance of hybrid fiber-reinforced concrete (HFRC) incorporating steel, glass, and polypropylene fibers in varying proportions to optimize crack control and structural durability. Experimental results indicate that the optimal HFRC mixes exhibit a significant enhancement in mechanical properties, with compressive strength increasing by approximately 20-25%, split tensile strength by around 30%, and flexural strength improvements reaching up to 35% compared to plain concrete. The modulus of elasticity similarly improved by 15-20%, contributing to enhanced stiffness and load-bearing capacity. Workability remained within acceptable limits, with slump reductions not exceeding 15% due to superplasticizer use. Scanning electron microscopy confirmed that fiber incorporation densifies the matrix and strengthens the interfacial transition zones, effectively mitigating micro- and macro-crack propagation. These findings demonstrate that carefully optimized hybrid fiber combinations can provide a durable, high-performance concrete solution suitable for demanding structural applications.
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Experimental research on mechanical and microstructural characteristics of hybrid fiber reinforced concrete (HFRC) — 科研速览 Science Skim