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Development of steel dampers for bridges to allow large displacement through a vertical free mechanism 被引量:8

Development of steel dampers for bridges to allow large displacement through a vertical free mechanism
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摘要 Isolation bearings and dampers are often installed between piers and superstructures to reduce the seismic responses of bridges under large earthquakes. This paper presents a novel steel damper for bridges. The damper employs steel plates as energy dissipation components, and adopts a vertical free mechanism to achieve a large deformation capacity. Quasi-static tests using displacement-controlled cyclic loading and numerical analyses using a finite element program called ABAQUS are conducted to investigate the behavior of the damper, and a design methodology is proposed based on the tests and numerical analyses. Major conclusions obtained from this study are as follows: (1) the new dampers have stable hysteresis behavior under large displacements; (2) finite element analyses are able to simulate the behavior of the damper with satisfactory accuracy; and (3) simplified design methodology of the damper is effective. Isolation bearings and dampers are often installed between piers and superstructures to reduce the seismic responses of bridges under large earthquakes. This paper presents a novel steel damper for bridges. The damper employs steel plates as energy dissipation components, and adopts a vertical free mechanism to achieve a large deformation capacity. Quasi-static tests using displacement-controlled cyclic loading and numerical analyses using a finite element program called ABAQUS are conducted to investigate the behavior of the damper, and a design methodology is proposed based on the tests and numerical analyses. Major conclusions obtained from this study are as follows: (1) the new dampers have stable hysteresis behavior under large displacements; (2) finite element analyses are able to simulate the behavior of the damper with satisfactory accuracy; and (3) simplified design methodology of the damper is effective.
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第3期375-388,共14页 地震工程与工程振动(英文刊)
基金 Natural Science Foundation of China under Grant Nos.51178250 and 51261120377 Tsinghua University of China under Grant No.2010Z01001
关键词 steel damper large deformation BRIDGE cyclic loading numerical simulation steel damper large deformation bridge cyclic loading numerical simulation
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