Journal of Composites for Construction · 2007 · 77 citations · 12 references
Overloading BehaviorReinforcement MaterialEngineeringStrength PropertyMechanical EngineeringCivil EngineeringReinforced ConcreteFiber-reinforced Cement CompositeBridge BeamsStructural PerformancePolymer CompositesStructural SteelStructural MechanicsSteel–concrete CompositeHm CfrpConcrete StructuresStructural Engineering
Due to corrosion and the continuous demand to increase traffic loads, there is a need for an effective system which can be used to repair and/or strengthen steel bridges and structures. This paper describes an experimental program, recently completed, to investigate the fundamental behavior of steel–concrete composite scaled bridge beams strengthened with new high modulus carbon fiber-reinforced polymer (HM CFRP) materials. The behavior of the beams under overloading conditions and fatigue loading conditions was studied as well as the possible presence of shear lag at the interface of the steel surface and the CFRP strengthening material. The test results are compared to an analytical model based on the fundamental principles of equilibrium and compatibility, to predict the behavior of the strengthened steel–concrete composite beams. Based on the findings of this research work, combined with other work in the literature, a design guideline is proposed for the use of HM CFRP for strengthening the steel flexural members typically used for bridges and structures.
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Strengthening of a Steel Bridge Girder Using CFRP Plates
Trent C. Miller, Michael J. Chajes, Dennis R. Mertz et al. · Journal of Bridge Engineering · 2001 · 378 citations