SUN Zhiguo, WANG Dongsheng, GUO Xun, et al. Deformation Capacity and Amount of Confining Reinforcement in Potential Plastic Hinge Regions of Rectangular Hollow Bridge Piers[J]. Journal of Civil and Environmental Engineering, 2012, 34(3): 95-102.
DOI:
SUN Zhiguo, WANG Dongsheng, GUO Xun, et al. Deformation Capacity and Amount of Confining Reinforcement in Potential Plastic Hinge Regions of Rectangular Hollow Bridge Piers[J]. Journal of Civil and Environmental Engineering, 2012, 34(3): 95-102. DOI: 10.11835/j.issn.1674-4764.2012.03.017.
Deformation Capacity and Amount of Confining Reinforcement in Potential Plastic Hinge Regions of Rectangular Hollow Bridge Piers
Quasi static test results of 71 rectangular hollow bridge piers were collected to study the deformation capacity and amount of confining reinforcement in the potential plastic hinge region of the bridge piers. The deformation capacity of the hollow bridge piers with different failure modes were analyzed
and current codes provisions for the amount of confining reinforcement in hollow bridge piers were evaluated. Then
main factors influencing the deformation capacity of the piers were discussed based on multiple linear regression analysis and correlation analysis. At last
design equations based on Caltrans code of required confining reinforcement for rectangular hollow bridge piers were proposed. It is found that both the Caltrans and ACI codes show great reliability for the flexural failure mode and deformation capacity of the hollow bridge piers while the Chinese JTG/T B02-01-2008 code is unsafe. Also
the deformation capacity of the hollow bridge piers increases with the increase of the transverse reinforcement
longitudinal reinforcement
and web width
and decreases with the increase of the axial load ratio.