SRC 합성교각의 비탄성거동에 대한 유한요소해석

Finite Element Analysis of Inelastic Behavior of SRC Composite Piers

  • 심창수 (중앙대학교 토목공학과) ;
  • 한정훈 (중앙대학교 대학원 토목환경공학과) ;
  • 박창규 (중앙대학교 건설환경연구소) ;
  • 정영수 (중앙대학교 토목공학과)
  • 발행 : 2006.03.17

초록

In the design of bridge piers in seismic area, the ductility requirement is one of the most important design criteria. In order to enhance the seismic performance of RC columns, it is necessary to make the ductility of columns larger by covering RC columns with steel tubes or confining RC columns by arranging transverse reinforcement such as hoop ties closely. Concrete encased composite columns can be utilized for bridge piers especially in seismic area. In this paper, finite element analyses are performed to study the nonlinear behavior of concrete encased composite columns with single core steel or multiple steel elements under static and quasi-static loads. The cross-sections of these specimens ate composed of concrete-encased H-shaped structural steel columns and a concrete-encased circular tube with partial in-filled concrete. Test parameters were the amount of the transverse reinforcement, encased steel member, and loading axis. Through the comparison between FE analyses and test results, adequate material models for confined concrete and unconfined concrete ate investigated. After getting the proper analysis models for composite columns, several parameters are considered to suggest design considerations on the details of composite piers.

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