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The flexural strength, flexural stiffness, and shear strength of RC beams reduce considerably after exposure to fire. The strength of concrete decreases after fire imposition and so is the balance steel ratio.This will decrease the ductility of a beam and the shear strength contribution of concrete.As a result, the failure mode of the beam will possibly be changed from flexural failure to shear failure. Twelve 30 cm×50 cm×340 cm RC beams, with several different stirrup spacings, have been made and conducted to fire simulation tests and loading tests. The results show that the flexural stiffness of RC beams reduce pronouncedly after fireexposure, and the reduction of shear strength of damaged beams is more evident than that of the flexural strength. Both the modified conventional RC beam model and the finite element model, account for the change of stress- strain curves of the reinforcement and the concrete, have been used to analyze the fire-damaged beams, Good agreements between the test results and the analytical ones are obtained. As a modified ACI shear strength equation for fire-damaged concrete is adopted to calculate the shear strength of the damaged beam, a reasonable however conservative result is achieved. An under- reinforcement design and an adequately increase of shear reinforcement, considering the weaker shear strength of damaged concrete, will avoid the beam to have the brittle failure either in compression or in shear, and enable the beam to retain a reasonable ductility after fire damage.
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