Prediction of shear/peeling failure in plated R/C beams

dc.contributor.authorMohammed Ashrafuddin
dc.date1995
dc.date.accessioned2022-05-18T05:05:01Z
dc.date.available2022-05-18T05:05:01Z
dc.degree.departmentCollege of Engineering Sciences and Applied Engineering
dc.degree.grantorKing Fahad for Petrolem University
dc.description.abstractThe work in this thesis focuses on an experimental investigation to characterize ultimate load levels and failure mode characteristics of reinforced concrete (R/C) beams strengthened or repaired by bonding external plates to soffit of the R/C beam. The experimental investigation is designed so as to induce not only flexural failure and concrete rip-off failure in the repaired beams but also a diagonal tension failure similar to unplated R/C beams. Parametric constraints leading to diagonal tension failure in plated beams in contrast to flexural failure and rip-off failure are defined. A total of twenty eight R/C beams repaired by plate bonding were tested and data was generated to yield ultimate load levels, mode of failure and central beam deflection. Existing model for predicting rip-off failure was confirmed in terms of ultimate load levels and mode of failure, and a new predictor equation is proposed for determination of ultimate load for plated beams prone to fail under diagonal tension.
dc.identifier.other4969
dc.identifier.urihttps://drepo.sdl.edu.sa/handle/20.500.14154/1658
dc.language.isoen
dc.publisherSaudi Digital Library
dc.thesis.levelMaster
dc.thesis.sourceKing Fahad for Petrolem University
dc.titlePrediction of shear/peeling failure in plated R/C beams
dc.typeThesis

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