Energy Dissipation Enhanced by Multiple Hinges in Bridge Piers with CFST Y-Shaped Fuses

Author:

Liu Qunfeng,Guo Zhaoyang,Wu Xing,Lu Kaile,Ren Xiang,Xiao Jialong

Abstract

Concrete-filled steel tubular Y-shaped (CFST-Y) piers are good candidates for meeting the structural and aesthetic requirements of bridges. By using the theoretical and nonlinear static (pushover) analyses, the seismic performances of three types of CFST-Y piers were evaluated at different seismic hazard levels. The theoretical formulas were first proposed to estimate the lateral stiffnesses for piers with different pier–deck connections. Then, the structural ductility with the development of plastic hinges in piers was investigated based on the pushover analyses. The results demonstrate that the structural dimensions, deck mass, shear limit, and stiffness of bearings can remarkably affect the formation of hinges and thereby lead to different energy dissipation patterns to achieve the expected performance in piers. The findings suggest an economic design strategy of piers, using CFST-Y members as energy dissipation fuses with multiple hinges, to achieve low-level seismic performance cost-effectively.

Funder

National Natural Science Fund

Scientific Research Program of Shanxi Provincial Education Department

State Key Laboratory for Strength and Vibration of Mechanical Structure open Foundation

Startup Foundation of XUST

Publisher

MDPI AG

Subject

Physics and Astronomy (miscellaneous),General Mathematics,Chemistry (miscellaneous),Computer Science (miscellaneous)

Reference43 articles.

1. Aesthetic considerations for urban pedestrian bridge design;J. Archit. Eng.,1997

2. Performance based seismic design;Bull. N. Z. Soc. Earthq.,2000

3. Priestley, M.J.N., Calvi, G.M., and Kowalsky, M.J. (April, January 30). Direct displacement-based seismic design of structures. Proceedings of the NZSEE Conference, Wellington, New Zealand.

4. A numerical general-purpose confinement model for non-linear analysis of R/C members;Comput. Struct.,2012

5. Confinement of concrete columns for seismic loading;Struct. J.,1987

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