• 제목/요약/키워드: SRC column-RC beam joint

검색결과 12건 처리시간 0.019초

SRC기둥-RC보 강축 접합부 상세의 구조성능 평가 (Cyclic Lond Testing for Strong Axis Joints Connected with SRC Column and RC Beams)

  • 문정호;이강민;임재형;오경환;김성호
    • 콘크리트학회논문집
    • /
    • 제19권4호
    • /
    • pp.401-409
    • /
    • 2007
  • 본 연구는 국내 현장에서 적용되고 있는 SRC 기둥-RC 보 강축 방향 접합부의 구조 성능을 평가하기 위하여 국내 현장 조사 및 기존 연구 자료를 기초로 접합부 상세를 분류하였고, 6개의 실험체를 제작하여 구조 실험을 수행하였다. 실험 결과로부터 하중-변위 이력 및 최대 내력 도달 이후의 내력 저하 등에 대한 거동을 비교 분석하였다. 그 결과 넓은 보 단면 (RCW-P, RCW-W, RCW-F) 및 T형 보 단면 (RCT-W) 실험체들이 H형강 브라켓 부착형 실험체(HBR-L, HBR-S)에 비해 대체로 우수한 구조적 거동을 보여주었으며, 설계 내력을 상회하는 내력을 보유하고 있었다. 또한 현장에서 적용하여도 무리가 없는 것으로 판단된다. 특히, T형 보 단면 (RCT-W)을 갖는 실험체가 최대 내력 및 최대 내력 도달 이후 강도 저하 등 전반적으로 다른 접합 형태를 갖는 실험체에 비해 우수한 구조 성능을 보유하고 있었다. 그리고 H형강 브라켓 부착형 실험체들 (HBR-L, HBR-S)은 설계 내력에 미치지 못한 최대 내력을 보여 주었고 최대 내력 도달 이후 급격한 하중 저하를 나타내며 취성적인 거동을 보였다.

Cyclic loading test of abnormal joints in SRC frame-bent main building structure

  • Wang, Bo;Cao, Guorong;Yang, Ke;Dai, Huijuan;Qin, Chaogang
    • Earthquakes and Structures
    • /
    • 제20권4호
    • /
    • pp.417-430
    • /
    • 2021
  • Due to functional requirements, SRC column-RC beam abnormal joints with characteristics of strong beam weak column, variable column section, unequal beam height and staggered height exist in the Steel reinforced concrete (SRC) frame-bent main building structure of thermal power plant (TPP). This paper presents the experimental results of these abnormal joints through cyclic loading tests on five specimens with scaling factor of 1/5. The staggered height and whether adding H-shaped steel in beam or not were changing parameters of specimens. The failure patterns, bearing capacity, energy dissipation and ductile performance were analyzed. In addition, the stress mechanism of the abnormal joint was discussed based on the diagonal strut model. The research results showed that the abnormal exterior joints occurred shear failure and column end hinge flexural failure; reducing beam height through adding H-shaped steel in the beam of abnormal exterior joint could improve the crack resistance and ductility; the abnormal interior joints with different staggered heights occurred column ends flexural failure; the joint with larger staggered height had the higher bearing capacity and stiffness, but lower ductility. The concrete compression strut mechanism is still applicable to the abnormal joints in TPP, but it is affected by the abnormal characteristics.

친환경 층고 절감형 합성보의 보-기둥 접합부 상세 및 시공성 연구 (Environmental Friendly Connection of Composite Beams and Columns)

  • 홍원기;김진민;박선치;임선재
    • KIEAE Journal
    • /
    • 제7권6호
    • /
    • pp.113-118
    • /
    • 2007
  • The composite beam adopted in the study was designed to reduce the floor height as well as to embed the top flange of steel frame into the slab that will enable to avoid applying the fire-resistant coating and to unify the joint method with a steel frame-type. As the steel frame and bottom concrete of the beam is pre-fabricated at the factory it could reduce the overall schedule at the jobsite. Applying such composite beam system to the work is expected to provide the efficient and enhanced performance, given the current tendency of the building construction that tends to be getting higher, larger and dense. The study focused on combining the composite beam with various column systems in a bid to propose the details thereof. A desirable composite girder can be adopted depending on site conditions through the evaluation of various beam and jointing approaches. Among the column systems applied to the study are steel column, SRC column, RC-PC column and RC column. The ways of combining with the columns addressed in the study were categorized into the rigid joint, pin joint, steel frame joint and bracket type joint. Besides, the instruction for site fabrication of beam-column was added in an effort to help set up the site fabrication procedures.

매입형 CFRP Rod와 CFRP시트를 활용한 RC 외부 보-기둥 접합부의 내진성능 평가 및 개선 (Improvement and Evaluation of Seismic Performance of Reinforced Concrete Exterior Beam-Column Joints using Embedded CFRP Rods and CFRP Sheets)

  • 하기주;강현욱
    • 한국구조물진단유지관리공학회 논문집
    • /
    • 제18권3호
    • /
    • pp.40-48
    • /
    • 2014
  • 본 연구에서는 기존 철근콘크리트 건물의 보-기둥 접합부의 내진성능의 개선을 위해 보-기둥 접합부 영역을 FRP보강재(매입형 CFRP Rod, CFRP시트)를 사용하여 보강한 후 내진성능을 평가하였다. 총 6개의 실험체를 제작하고 실험을 수행하여 내진성능을 평가하였으며, 본 연구의 실험결과를 근거로 다음과 같은 결론을 얻었다. 기존 철근콘크리트 보-기둥 접합부의 접합부 영역을 보강한 결과, 초기 재하시 접합부 영역의 균열억제 효과와 재하 전 과정을 통하여 보강재의 구속효과로 인하여 균열억제 효과가 커서 안정적인 파괴형태 및 내력향상 효과를 나타내었다. 매입형 CFRP Rod와 CFRP시트를 활용한 RC 외부 보-기둥 접합부 실험체 RBCJ-SRC2는 표준실험체 RBCJ와 비교하여 변위연성4, 7에서 각각 최대 내력은 1.97배, 에너지소산능력은 2.08배 증가하였다. 또한, 실험체 RBCJ-SR시리즈와 비교하여 최대내력이 1.09~1.11배 증가하였다. 그리고 실험체 RBCJ-CS, RBCJ-SR시리즈, RBCJ-SRC2는 변위연성 5, 6에서 표준실험체 RBCJ 보다 에너지소산능력이 1.10~2.30배 증가하였다. 그리고 에너지소산능력은 변위연성 4에서 13.0~14.4% 증가하였다.

Seismic behaviour of repaired superelastic shape memory alloy reinforced concrete beam-column joint

  • Nehdi, Moncef;Alam, M. Shahria;Youssef, Maged A.
    • Smart Structures and Systems
    • /
    • 제7권5호
    • /
    • pp.329-348
    • /
    • 2011
  • Large-scale earthquakes pose serious threats to infrastructure causing substantial damage and large residual deformations. Superelastic (SE) Shape-Memory-Alloys (SMAs) are unique alloys with the ability to undergo large deformations, but can recover its original shape upon stress removal. The purpose of this research is to exploit this characteristic of SMAs such that concrete Beam-Column Joints (BCJs) reinforced with SMA bars at the plastic hinge region experience reduced residual deformation at the end of earthquakes. Another objective is to evaluate the seismic performance of SMA Reinforced Concrete BCJs repaired with flowable Structural-Repair-Concrete (SRC). A $\frac{3}{4}$-scale BCJ reinforced with SMA rebars in the plastic-hinge zone was tested under reversed cyclic loading, and subsequently repaired and retested. The joint was selected from an RC building located in the seismic region of western Canada. It was designed and detailed according to the NBCC 2005 and CSA A23.3-04 recommendations. The behaviour under reversed cyclic loading of the original and repaired joints, their load-storey drift, and energy dissipation ability were compared. The results demonstrate that SMA-RC BCJs are able to recover nearly all of their post-yield deformation, requiring a minimum amount of repair, even after a large earthquake, proving to be smart structural elements. It was also shown that the use of SRC to repair damaged BCJs can restore its full capacity.

Seismic behavior and strength of L-shaped steel reinforced concrete column-concrete beam planar and spatial joints

  • Chen, Zongping;Xu, Deyi;Xu, Jinjun;Wang, Ni
    • Steel and Composite Structures
    • /
    • 제39권3호
    • /
    • pp.337-352
    • /
    • 2021
  • The study presented experimental and numerical investigation on the seismic performance of steel reinforced concrete (SRC) L-shaped column- reinforced concrete (RC) beam joints. Various parameters described as steel configuration form, axial compressive ratio, loading angle, and the existence of slab were examined through 4 planar joints and 7 spatial joints. The characteristics of the load-displacement response included the bearing capacity, ductility, story drift ratio, energy-dissipating capacity, and stiffness degradation were analyzed. The results showed that shear failure and flexural failure in the beam tip were observed for planar joints and spatial joint, respectively. And RC joint with slab failed with the plastic hinge in the slab and bottom of the beam. The results indicated that hysteretic curves of spatial joints with solid-web steel were plumper than those with hollow-web specimens. The capacity of planar joints was higher than that of space joints, while the opposite was true for energy-dissipation capacity and ductility. The high compression ratio contributed to the increase in capacity and initial stiffness of the joint. The elastic and elastic-plastic story deformation capacity of L-shaped column frame joints satisfied the code requirement. A design formula of joint shear resistance based on the superposition theory and equilibrium plasticity truss model was proposed for engineering application.

Seismic behavior of steel reinforced concrete (SRC) T-shaped column-beam planar and 3D hybrid joints under cyclic loads

  • Chen, Zongping;Xu, Jinjun;Chen, Yuliang;Xue, Jianyang
    • Earthquakes and Structures
    • /
    • 제8권3호
    • /
    • pp.555-572
    • /
    • 2015
  • This paper presents an experimental study of three two-dimensional (2D/planar) steel reinforced concrete (SRC) T-shaped column-RC beam hybrid joints and six 3D SRC T-shaped column-steel beam hybrid joints under low cyclic reversed loads. Considering different categories of steel configuration types in column cross section and horizontal loading angles for the specimens were selected, and a reliable structural testing system for the spatial loading was employed in the tests. The load-displacement curves, carrying capacity, energy dissipation capacity, ductility and deformation characteristics of the test subassemblies were analyzed. Especially, the seismic performance discrepancies between planar hybrid joints and 3D hybrid joints were intensively compared. The failure modes for planar loading and spatial loading observed in the tests showed that the shear-diagonal compressive failure was the dominating failure mode for all the specimens. In addition, the 3D hybrid joints illustrated plumper hysteretic loops for the columns configured with solid-web steel, but a little more pinched hysteretic loops for the columns configured with T-shaped steel or channel-shaped steel, better energy dissipation capacity & ductility, and larger interlayer deformation capacity than those of the planar hybrid joints. Furthermore, it was revealed that the hysteretic loops for the specimens under $45^{\circ}$ loading angle are generally plumper than those for the specimens under $30^{\circ}$ loading angle. Finally, the effects of steel configuration type and loading angle on the seismic damage for the specimens were analyzed by means of the Park-Ang model.

SRC기둥-RC보 약축방향 접합부 상세의 구조성능에 대한 실험적 연구 (Cyclic Load Testing for Weak Axis Joints Connected with SRC Column and RC Beams)

  • 문정호;임재형;오경환;김성호;이강민
    • 콘크리트학회논문집
    • /
    • 제21권1호
    • /
    • pp.37-45
    • /
    • 2009
  • 본 연구는 SRC기둥-RC보 약축방향 접합부에 대한 구조성능 평가 실험 연구이다. 현재 국내현장에서 많이 사용하고 있는 약축방향 접합방식은 구조성능이 명확하게 규명되지 않은 방식이 많으며, 이에 대한 안전성 확보 여부의 검증 및 문제점에 대한 개선도 시급하다. 따라서 본 연구에서는 표준갈고리형 실험체 3개와 접합부 형상 개선 실험체 3개 등 총 6개의 실험체를 제작하였다. 표준갈고리형 실험체들은 기준실험체, 정착길이 보정 실험체, 쉬어코넥터 및 전단보강근에 의한 보강 실험체 등으로 구성되어 있다. 접합부 형상 개선 실험체들은 주철근배치 방식과 용접 그리고 정착길이 확보 실험체 등이다. 반복가력에 의한 실험을 통하여 하중-변위 곡선, 최대강도, 강도저감 등을 평가하였다. 실험결과, 표준갈고리형 실험체들은 RC보의 주철근이 기둥면 내 콘크리트를 물고 떨어지는 쪼개짐 파괴현상을 나타내었으며, 구조성능도 불량하였다. 그러나 새로운 접합부 형상 개선 실험체들은 표준갈고리형 실험체들과 같이 기둥면 내콘크리트를 물고 떨어지는 쪼개짐 파괴현상도 나타나지 않았으며, 구조성능도 양호하였다.

Experimental study on shear capacity of SRC joints with different arrangement and sizes of cross-shaped steel in column

  • Wang, Qiuwei;Shi, Qingxuan;Tian, Hehe
    • Steel and Composite Structures
    • /
    • 제21권2호
    • /
    • pp.267-287
    • /
    • 2016
  • The seismic performance of the ordinary steel reinforced concrete (SRC) columns has no significant improvement compared to the reinforced concrete (RC) columns mainly because I, H or core cross-shaped steel cannot provide sufficient confinement for core concrete. Two improved SRC columns by constructing with new-type shaped steel were put forward on this background, and they were named as enlarging cross-shaped steel and diagonal cross-shaped steel for short. The seismic behavior and carrying capacity of new-type SRC columns have been researched theoretically and experimentally, while the shear behavior remains unclear when the new-type columns are joined onto SRC beams. This paper presents an experimental study to investigate the shear capacity of new-type SRC joints. For this purpose, four new-type and one ordinary SRC joints under low reversed cyclic loading were tested, and the failure patterns, load-displacement hysteretic curves, joint shear deformation and steel strain were also observed. The ultimate shear force of joint specimens was calculated according to the beam-end counterforce, and effects of steel shape, load angel and structural measures on shear capacity of joints were analyzed. The test results indicate that: (1) the new-type SRC joints display shear failure pattern and has higher shear capacity than the ordinary one; (2) the oblique specimens have good bearing capacity if designed reasonably; and (3) the two proposed construction measures have little effect on the shear capacity of SRC joints embedded with diagonal cross-shaped steel. Based on the mechanism observed from the test, the formulas for calculating ultimate shear capacity considering the main factors (steel web, stirrup and axial compression ratio) were derived, and the calculated results agreed well with the experimental and simulated data.

Experimental research on seismic behavior of novel composite RCS joints

  • Men, Jinjie;Guo, Zhifeng;Shi, Qingxuan
    • Steel and Composite Structures
    • /
    • 제19권1호
    • /
    • pp.209-221
    • /
    • 2015
  • Results from an experimental study on the seismic response of six composite reinforced concrete column-to-steel beam interior joints are presented. The primary variable investigated is the details in the joint. For the basic specimen, the main subassemblies of the beam and column are both continuous, and the steel beam flanges extended to the joint are partly cut off. Transverse beam, steel band plates, cove plates, X shape reinforcement bars and end plates are used in the other five specimens, respectively. After the joint steel panel yielded, two failure modes were observed during the test: local failure in Specimens 1, 2 and 4, shear failure in Specimens 3, 5 and 6. Specimens 6, 3, 5 and 4 have a better strength and deformation capacity than the other two specimens for the effectiveness of their subassemblies. For Specimens 2 and 4, though the performance of strength degradation and stiffness degradation are not as good as the other four specimens, they all have excellent energy dissipation capacity comparing to the RC joint, or the Steel Reinforced Concrete (SRC) joint. Based on the test result, some suggestions are presented for the design of composite RCS joint.