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  2. Volume 7, Issue 11
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Online ISSN: 2515-8260

Volume7, Issue11

BEAMS STRENGTHENED BY GLASS FRP LAMINATES BYFLEXURAL BEHAVIOUR OFHYBRID FIBER REINFORCED CONCRETE

    G. Swarnalakshmi, A. Sekar, S. Prasath kumar, S. Arulmozhi

European Journal of Molecular & Clinical Medicine, 2020, Volume 7, Issue 11, Pages 2284-2294

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Abstract

The flexural conduct of remotely justified fiber solid compound (GFRP) concrete (RC) radiates fusing each 'basalt' and 'polyolefin' filaments at a persevering connection of 70:30 and in a few blends of fiber volume portions (Vf) extending from zero-2% (at a tireless addition zero-0.5%) were explored, to highlight to part of reinforcing and conjointly the cross breed strands in radiates. type of pillars, altogether a controlled shaft, GFRP covered RC bar and overlaid half breed fiber solid bars. Were projected and tried under a four-reason bowing.  The outcomes demonstrate that there is a 'joined impact' of cover and consolidation of the upper than half and half filaments in contributory to the truly high burden conveying ability and improved physical property of overlaid HFRC bar. fundamentally fiber volume substance of 1.5%.
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(2020). BEAMS STRENGTHENED BY GLASS FRP LAMINATES BYFLEXURAL BEHAVIOUR OFHYBRID FIBER REINFORCED CONCRETE. European Journal of Molecular & Clinical Medicine, 7(11), 2284-2294.
G. Swarnalakshmi, A. Sekar, S. Prasath kumar, S. Arulmozhi. "BEAMS STRENGTHENED BY GLASS FRP LAMINATES BYFLEXURAL BEHAVIOUR OFHYBRID FIBER REINFORCED CONCRETE". European Journal of Molecular & Clinical Medicine, 7, 11, 2020, 2284-2294.
(2020). 'BEAMS STRENGTHENED BY GLASS FRP LAMINATES BYFLEXURAL BEHAVIOUR OFHYBRID FIBER REINFORCED CONCRETE', European Journal of Molecular & Clinical Medicine, 7(11), pp. 2284-2294.
BEAMS STRENGTHENED BY GLASS FRP LAMINATES BYFLEXURAL BEHAVIOUR OFHYBRID FIBER REINFORCED CONCRETE. European Journal of Molecular & Clinical Medicine, 2020; 7(11): 2284-2294.
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