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S.KAVITHA 09J11 Guided by: DR.G.CHITRA.  The loss of stiffness caused by corrosion regained by FRP application  Confine concrete and improve the compressive.

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Presentation on theme: "S.KAVITHA 09J11 Guided by: DR.G.CHITRA.  The loss of stiffness caused by corrosion regained by FRP application  Confine concrete and improve the compressive."— Presentation transcript:

1 S.KAVITHA 09J11 Guided by: DR.G.CHITRA

2  The loss of stiffness caused by corrosion regained by FRP application  Confine concrete and improve the compressive strength  Decreased corrosion rates due to FRP application  Substantial increase in the ultimate strength

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4 Types of FRP composite E-modulus (GPa)Ultimate strain Ultimate tensile strength(MPa) CFRP(laminate)165-2151.3-1.42500-3000 CFRP(sheet)240-6400.4-1.62650-3800 GFRP(sheet)65-754.3-4.52400 AFRP(sheet)1202.52900

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6 STAGESPROCESS STAGE ICASTING OF BEAMS STAGE IIInducing cracks by flexural loading and ponding salt solution over high moment region and exposing it to moisture STAGE IIICONCRETE COVER DELAMINATION STAGE IVAPPLICATION OF FRP WRAP STAGE VTesting of flexural strength

7 No of beams 8 2 uncorroded control 4 fibre wrapped 2 corroded control

8 Splitting caused by damage Reinforcement before sandblasting Corrosion infliction

9 Process of inducing corrosion Cracks were induced by flexural loading Salt solution was then ponded over the high moment region Alternative wetting and drying carried out for 2-3 weeks Resulting in severe concrete cover delamination

10 CARBON FRP

11 Partial wrapFull wrap

12  Resin or polymer - Holds the composite together and influences the physical properties of the end product  Reinforcement (Fibre) - Mechanical strength  Fillers and Additives – Process/performance aids to impart special properties to the end product

13 ◦ Good Modulus At High Temperatures ◦ Excellent Stiffness ◦ Brittle ◦ Low Electric Insulating Properties ◦ Resistance to corrosion

14 Wet-lay up  Highly soluble resin is sprayed, poured, or brushed into a mold  Reinforcement is then wet out with resin and placed in the mold  The fibre is then rolled, brushed, or applied to remove entrapped air and to compact it against the mold surface

15 1)M. P. Kutarba, The Haskell CompanyJ. R. Brown, Hope CollegeH. R. Hamilton, University of Florida, “Repair of corrosion Damaged Concrete Beams with Carbon Fiber-Reinforced Polymer Composites “, Composites research journal- Fall2007 2) A. Leema Rose, K. Suguna and P.N.Ragunath,” Strengthening of corrosion damaged RC beams with GFRP laminates”, Journal of civil engineering - 2009 Science Publications 3)Rajan Sen, Ph.D, P.E.,Gray Mullins, Ph.D, P.E, “Use of FRP in corrosion mitigation applications in marine environment”, ASCE – OCTOBER 2005,University of South Florida 4) Khaled A. Soudki, Ted Sherwood, and Sobhy Masoud “FRP Repair of Corrosion-Damaged Reinforced Concrete Beams”, Department of Civil Engineering University of Waterloo, Waterloo, Canada, vol1, ASCE- June 2008 REFERENCES

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