Effect of Steel Fiber Aspect Ratio on the Properties of High Strength Self Compacting Concrete

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Abstract

The High strength concrete defined as per IS 456 as the concrete having characteristic compressive strength more than 65 MPa. The self-compacting concrete has lot of advantages including concreting at congested reinforcement locations, better finish, good compaction etc. The inclusion of fibers in the concrete mix decreases the brittle nature of concrete thereby the ductility increases. Different types of fibers are available for inclusion in concrete like steel, glass, polypropylene, basalt, etc. In the present investigation, high strength concrete having characteristic strength of 90 MPa was developed and hooked ended steel fibers are used and the hardened properties are determined. Steel fibers having diameter of 1 mm and lengths of 25 and 50 mm were added to concrete in 0.125%, 0.25% and 0.5% by volume of concrete. Three hardened properties compressive strength, split tensile Strength and flexural strength were determined. Out of the two lengths of fiber i.e with two aspect ratios, the fiber with 50 mm length yielded better results.

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Kiran*, G. S., Siempu, Dr. R., & Kumar, G. A. V. S. S. (2019). Effect of Steel Fiber Aspect Ratio on the Properties of High Strength Self Compacting Concrete. International Journal of Innovative Technology and Exploring Engineering, 9(2), 2938–2941. https://doi.org/10.35940/ijitee.b8105.129219

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