徐智敏, 韩重庆, 许清风, et al. Experimental Research on Fire-damaged RC Continuous T-beam with High-strength Rebar Strengthened with Steel Angle[J]. 2016, 36(3): 471-477.
徐智敏, 韩重庆, 许清风, et al. Experimental Research on Fire-damaged RC Continuous T-beam with High-strength Rebar Strengthened with Steel Angle[J]. 2016, 36(3): 471-477. DOI: 10.13409/j.cnki.jdpme.2016.03.023.
Experimental Research on Fire-damaged RC Continuous T-beam with High-strength Rebar Strengthened with Steel Angle
Glue steel angle can improve the carrying capacity and stiffness of specimens without substantially increasing the size of section.To investigate the performance of fire-damaged RC continuous T-beams with high-strength rebar strengthened with steel angle
3specimens were experimentally studied.Wherein one beam is unexposed to fire
one beam is exposed to ISO 834 for 60min without strengthening
and one beam is exposed to ISO 834 for 60 min strengthened with steel angle.The test results showed that the initial bending stiffness of the fire-damaged specimen had an obviously decrease than the unexposed beam
after strengthening with steel angle its initial bending stiffness had a light increase compared to the unexposed beam.The carrying capacity had a 59.5%increase than the unexposed beam
while the ultimate deformation had a77.0% decrease
the deformation ductility factor had a 53.8% decrease
and the energy ductility factor had a 52.6% decrease.