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최영후,이종일,이호찬,김진구,Choi, Young hoo,Lee, Jong il,Lee, Ho chan,Kim, Jin koo 한국지진공학회 2021 한국지진공학회논문집 Vol.25 No.4
The connection of the steel structure serves to transmit external forces to the main components. The same is true for the behavior of modular systems composed mainly of steel or composite members. In this study, the joint performance of the composite and steel modules proposed was evaluated. The analytical models of the two joint types were constructed and were subjected to cyclic loading to assess the safety and the energy dissipation capacity of the joint types. The analysis results of the joints showed that the joints of the modular systems remain stable when the joint rotation reached the seismic performance limit state of the 0.02 rad required for steel intermediate moment frame. It was also observed that the joint of the composite modular system showed higher energy dissipation capacity compared with the steel modular system.
최영후,이호찬,김진구 한국구조물진단유지관리공학회 2017 한국구조물진단유지관리공학회 논문집 Vol.21 No.2
By producing pre-engineered modular system in the factory, It is enable to expedite construction and can be distinguished from two types by the method resisting load. One is the open-sided modular system composed of beams and columns. The other is enclosed modular system composed of panels and studs. Of the modular systems, the open-sided modular system buildings the connection between modules are difficult due to closed member sections, and the overall strength is reduced as a result of local buckling. In this study, in order to solve these problems, a modular system with folded steel members filled with concrete are proposed. The capacity spectrum method presented in ATC 40 is used for seismic performance assessment of the proposed model structure and the structure with conventional steel members. The analysis results show that at the performance point of each model the number and rotation of plastic hinge formed in the proposed modular system are smaller than those in the conventional system. Based on this observation it is concluded that the proposed system with composite sections has superior seismic capacity compared with conventional system.
접합부 강성을 고려한 합성 모듈러 시스템의 내진 성능평가
최영후,이호찬,김진구 한국구조물진단유지관리공학회 2019 한국구조물진단유지관리공학회 논문집 Vol.23 No.1
Modular system can be divided into two types based on the methods of resisting load. The one is the open-sided modular system composed of beams and columns. The other is the enclosed modular system composed of panels and studs. Of the Modular systems, the use of open-sided modular system is limited because it consists of closed member sections. In order to solve this problem, Choi et al.(2017) proposed a composite modular system with folded steel members filled with concrete. However, it was assumed in the previous study that the connections between modules are composed of rigid joint. Therefore it didn't identify the effect of connection behavior in structure. This study used finite element analysis to calculate stiffness of the connections in the proposed modular system. The linearization method presented in FEMA 440 is used for seismic performance assessment of structures, considering the connection stiffness computed in this study. The result of analysis shows that the capacity and story drift ratio obtained in the model considering stiffness of connection are less than those in the model not considering connection stiffness. Based on this observation, it is concluded that the stiffness of connection has a considerable effect on structural behavior. 모듈러 시스템은 하중저항 방식에 따라 개방형 모듈러 및 폐쇄형 모듈러 분류가 된다. 그 중 개방형 모듈러는 폐쇄형 단면을 갖고 있어 부재간의 접합 및 모듈간의 접합을 하는데 제약이 있다. 이에 Choi et al.(2017)은 절골형 단면 안에 콘크리트를 채운 합성 모듈러 시스템을 제안하였다. 하지만 모듈간 접합을 강접으로 가정하여 접합부 거동에 의해 구조물 전체에 미치는 영향을 파악하지 못하였다. 본 연구에서는 유한요소해석을 하여 제안된 모듈러의 접합부 강성을 산정하였다. 성능 검증을 위해 FEMA 440의 선형화방법을 사용하여 접합부 강성 유, 무에 따른 구조물의 내진성능을 파악하였다. 해석결과에 따르면 접합부 강성을 고려한 모델의 보유 내력 및 층간변위비가 접합부 강성을 고려하지 않은 모델에 비해 현저하게 감소하는 것으로 나타났다. 이를 토대로 접합부의 강성이 전체 구조물 거동에 영향을 미치는 것으로 판단된다.
접합부 강성을 고려한 합성 모듈러 시스템의 내진 성능평가
최영후 ( Young-hoo Choi ),이호찬 ( Ho-chan Lee ),김진구 ( Jin-koo Kim ) 한국구조물진단유지관리공학회 2018 한국구조물진단유지관리공학회 논문집 Vol.22 No.2
모듈러 시스템은 하중저항 방식에 따라 개방형 모듈러 및 폐쇄형 모듈러 분류가 된다. 그 중 개방형 모듈러는 폐쇄형 단면을 갖고 있어 부재간의 접합 및 모듈간의 접합을 하는데 제약이 있다. 이에 Choi et al.(2017)은 절골형 단면 안에 콘크리트를 채운 합성 모듈러 시스템을 제안하였다. 하지만 모듈간 접합을 강접으로 가정하여 접합부 거동에 의해 구조물 전체에 미치는 영향을 파악하지 못하였다. 본 연구에서는 유한요소해석을 하여 제안된 모듈러의 접합부 강성을 산정하였다. 성능 검증을 위해 FEMA 440의 선형화방법을 사용하여 접합부 강성 유, 무에 따른 구조물의 내진성능을 파악하였다. 해석결과에 따르면 접합부 강성을 고려한 모델의 보유 내력 및 층간변위비가 접합부 강성을 고려하지 않은 모델에 비해 현저하게 감소하는 것으로 나타났다. 이를 토대로 접합부의 강성이 전체 구조물 거동에 영향을 미치는 것으로 판단된다. Modular system can be divided into two types based on the methods of resisting load. The one is the open-sided modular system composed of beams and columns. The other is the enclosed modular system composed of panels and studs. Of the Modular systems, the use of open-sided modular system is limited because it consists of closed member sections. In order to solve this problem, Choi et al.(2017) proposed a composite modular system with folded steel members filled with concrete. However, it was assumed in the previous study that the connections between modules are composed of rigid joint. Therefore it didn't identify the effect of connection behavior in structure. This study used finite element analysis to calculate stiffness of the connections in the proposed modular system. The linearization method presented in FEMA 440 is used for seismic performance assessment of structures, considering the connection stiffness computed in this study. The result of analysis shows that the capacity and story drift ratio obtained in the model considering stiffness of connection are less than those in the model not considering connection stiffness. Based on this observation, it is concluded that the stiffness of connection has a considerable effect on structural behavior.
Seismic Capacity Design and Retrofit of Reinforced Concrete Staggered Wall Structures
김진구,최영후 한국콘크리트학회 2017 International Journal of Concrete Structures and M Vol.11 No.2
This study investigates the seismic performance of a staggered wall structure designed with conventional strength based design, and compares it with the performance of the structure designed by capacity design procedure which ensures strong column-weak beam concept. Then the seismic reinforcement schemes such as addition of interior columns or insertion of rotational friction dampers at the ends of connecting beams are validated by comparing their seismic performances with those of the standard model structure. Fragility analysis shows that the probability to reach the dynamic instability is highest in the strength designed structure and is lowest in the structure with friction dampers. It is also observed that, at least for the specific model structures considered in this study, R factor of 5.0 can be used in the seismic design of staggered wall structures with proposed retrofit schemes, while R factor of 3.0 may be reasonable for standard staggered wall structures.