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1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. © Modelling Of Damaged RC Beams Strengthened By Fibre Composite Plates Ziraba, YN; Baluch, MH; Sharif, AM; AlSulaimani,

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Presentation on theme: "1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. © Modelling Of Damaged RC Beams Strengthened By Fibre Composite Plates Ziraba, YN; Baluch, MH; Sharif, AM; AlSulaimani,"— Presentation transcript:

1 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. © Modelling Of Damaged RC Beams Strengthened By Fibre Composite Plates Ziraba, YN; Baluch, MH; Sharif, AM; AlSulaimani, GJ; Azad, AK MCB UNIV PRESS LTD, ENGINEERING COMPUTATIONS; pp: 619-640; Vol: 12 King Fahd University of Petroleum & Minerals http://www.kfupm.edu.sa Summary This paper presents a finite element model for analysis of damaged RC beams strengthened or repaired by externally bonding glass fibre reinforced plastics (GFRP) on the tension side of the beams. The salient features include: (i) the introduction of a thin, six-noded element to simulate behaviour of the concrete/epoxy glue/GFRP interface and (ii) a scheme of loading a virgin RC beam to a prescribed displacement to simulate damage, unloading and then reloading the damaged RC beam fortified by an externally bonded GFRP plate. Results are presented for RC beams repaired by plates of varying thickness and a transmutation of failure mode is noted from classical flexure for the case of external reinforcement in the form of thin GFRP plates to a unique concrete cover rip off failure for thicker GFRP plates and not predicted by the ACI shear strength formula for diagonal tension failure of unplated RC beams of similar geometry. References: 1984, J AM CONCRETE I, V81, P361 ALSULAIMANI GJ, 1989, P 3 INT C DET REP CO, P369 BALAKRISHNAN S, 1988, J STRUCT ENG, V114, P2421 BALUCH MH, UNPUB MAG CONCRETE R BROWN K, 1973, CONSTRUCTION NEWS, V21 CEDOLIN L, 1977, J ENG MECH DIV AM SO, V103, P395 CHANNAKESHAV C, 1988, J STRUCT ENG, V114, P1467 CHEN WF, 1982, CONSTITUTIVE EQUATIO, V1 CHEN WF, 1982, PLASTICITY REINFORCE FENWICK RC, 1968, J STRUCTURAL DIVISIO, V94, P2325 FLEMING CJ, 1967, SYNTHETIC RESINS BUI, P75 GHALEB BMN, 1992, STRENGTHENING DAMAGE Copyright: King Fahd University of Petroleum & Minerals; http://www.kfupm.edu.sa

2 13. 14. 15. 16. 17. 18. 19. 20. 21. 22. 23. 24. 25. 26. 27. 28. 29. 30. 31. 32. 33. 34. 35. 36. 37. 38. © GLEMBERG R, 1984, DYNAMIC ANAL CONCRET GOTO Y, 1971, ACI J, P244 HAMADI YD, 1980, MAG CONCRETE RES, V32, P67 HINTON E, 1984, FINITE ELEMENTS SOFT HSU TTC, 1963, ACI J P, V60, P209 HUGENSCHMIDT F, 1985, STRENGTH EXISTING CO JONES R, 1988, STRUCTURAL ENG LONDO, V66, P85 LHERMITE RL, 1967, SYNTHETIC RESINS BUI, P175 LINO T, 1981, P 3 INT C POL CONCR, P997 MASSICOTTE B, 1990, J STRUCT ENG-ASCE, V116, P3039 MPHONDE AG, 1984, ACI J, P350 OWEN DRJ, 1980, FINITE ELEMENTS PLAS PHILLIP AR, 1991, ACI STRUCT J, V88, P490 RAITHBY KD, 1980, 612 TRRL DEP ENV DEP RAPHAEL JM, 1984, J AM CONCRETE I, V81, P158 ROBERTS TM, 1989, P I CIVIL ENG PT 2, V87, P39 ROBERTS TM, 1989, STRUCT ENG, V67, P229 SAADATMANESH H, 1990, COMPOSITE PLATES STR SAADATMANESH H, 1990, CONCRETE INT DESIGN, V12, P65 SAADATMANESH H, 1991, J STRUCT ENG ASCE, V117 ZIENKIEWICZ OC, 1977, FINITE ELEMENT METHO ZIRABA YN, IN PRESS ACI STRUCTU ZIRABA YN, IN PRESS MAT STRUCT ZIRABA YN, UNPUB COMPUTATIONAL ZIRABA YN, 1991, P 3 SAUD ENG C RIYAD, P85 ZIRABA YN, 1993, THESIS KING FAHD U P For pre-prints please write to: abstracts@kfupm.edu.sa Copyright: King Fahd University of Petroleum & Minerals; http://www.kfupm.edu.sa


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