In this study, the performance evaluation of the RC frame specimen (RV2) which was strengthened by a steel frame and a steel damper with the lateral deformation prevention details proceeded. The comparison objects are bare frame specimen (BF), RV2 and AWD, where AWD is a specimen reinforced with steel damper and aramid fiber sheets. In the evaluation of envelope curve, stiffness degradation, and energy dissipation capacity, RV2 was evaluated to have excellent capacity as a whole. To evaluate the strengthening effect of the steel frame based on the maximum strength and energy dissipation capacity, it was evaluated to have a 38% of the RV2’s capacity.
최근 국내의 지진발생 빈도가 증가함에 따라, 지진피해 저감 시스템 중 가장 효율이 높은 제진방식의 문제점을 해결하며 댐퍼의 복원성과 에너지 소산 능력을 증가시켜 잔류변형 감소와 사용성 증대 효과를 발생시키는 새로운 제진설계 방식이 필요하다. 본 연구에서는 학교 등 기존에 시공된 비내진상세 철근콘크리트 구조물의 지진에 의한 뒤틀림 방지, 횡방향 변위제어 및 진동저감을 위하여 구조물의 양 옆에 원형강봉댐퍼를 설치하는 시스템을 제안하고, 2층 철근콘크리트골조 실험체를 반복횡 하중 가력 하여 내진성능을 평가하였다. 무보강 및 보강 실험체들의 실험결과를 비교한 결과 외부보강용 원형강봉댐퍼 시스템이 2층 철근콘크리트 골조의 강성과 에너지소산면적을 증가시켜 내진성능을 증가시킴을 확인하였다. 또한 원형강봉댐퍼가 지진 에너지를 소산하여 지진력을 흡수함을 확인하였다.
SAFE damper is a hybrid damper which is comprised of a friction damper and a metallic damper. These two dampers combine to resist external energy in stages. Under minor earthquake loads, the friction damper operates alone. However, the friction damper and metallic damper dissipate the energy together when a severe earthquake occurs. In comparison with other methods for seismic retrofitting, the SAFE damper has many advantages. The SAFE damper doesn’t cause damage to façade of the building, and the construction period can be reduced when retrofitting. This paper describes experiments evaluating the structural performance of the SAFE damper. From the results, it was found that the structural performance of a conventional RC bare frame can be significantly improved by the installation of the SAFE damper.
The purpose of this study is to evaluate the effectiveness of the seismic retrofit performance for a reinforced concrete structure with steel damper. The nonlinear static analysis of the RC frame specimens with and without retrofit using the steel damper was conducted and the reliability of the analysis was verified by comparing the analysis and test results. Using this analysis model and method, additional nonlinear analysis was conducted considering varying stiffness and strength ratios between RC frame and steel damper and the failure mode of RC frame. As the result of the study, the total absorbed energy increased and the damage of RC frame was reduced as stiffness and strength ratios increased. The seismic retrofit performance, evaluated by means of the yield strength, increasing ratio of the absorbed energy and damage of the frame, increased linear proportionally with the increase of the strength ratio. In addition, the seismic retrofit performance was stable for stiffness ratios larger than 4~5. The energy absorption capacity of the frame governed by shear failure was better than that of the frame governed by flexure failure.
본 연구에서는 비내진상세를 가지는 중⦁저층 R/C 건물의 1층 골조를 제작하여 무보강 실험체에 대한 구조실험을 실시하였다. 실험결과 실험체는 부재각 1.33%에서 전단파괴를 나타내어, 비내진상세를 가지는 R/C 건물의 내진성능에 관한 중요한 자료를 획득하였다. 본 연구에서는 간주형 좌굴방지 강재 슬릿댐퍼 시스템을 개발하였으며 내진보강효과를 검증하기 위하여 구조실험에 선행하여 상기 국내 비내진상세 RC 골조 실험결과를 기반으로 비선형해석을 실시하였다.
수직거동 마찰댐퍼 시스템의 내진보강공법의 유효성을 판단하기 위해 제진장치의 반복가력실험과 1980년대 비내진 상세를 가지는 R/C건축물을 대상으로 하는 실물 2층 골조를 제작하여 유사동적실험을 실시하였다. 실험결과 수직거동 마찰댐퍼 시스템으로 보강된 실험체는 동일 가속도(200 gal)에서 기준 실험체 대비 최대하중은 약 1.6배 증가하였고, 응답변위는 0.4배로 저감되어 본 연구에서 개발된 수직거동 마찰댐퍼 내진보강공법의 유효성이 검증되었다.
To evaluate the aramid sheet and metallic damper strengthening effect of non-seismic detailed RC frame FE program, which is ABAQUS, analysis is used. Used material model of concrete, steel, rebar and aramid are concrete damaged plasticity model, steel plasticity model, perfectly plasticity model and linear fracture model, respectively. From step by step lateral load increment, the stress and crack distribution of frame and elements can be properly simulate by FE analysis.
Non-linear hysteresis model and analysis method are suggested to evaluate hysteresis behaviors of reinforced concrete frame having spandrel wall which was retrofitted by steel damper. As the results of non-linear static analysis, the proposed non-linear hysteresis models can represent the results of experiments similarly.