• 제목/요약/키워드: steel shear wall

검색결과 290건 처리시간 0.021초

Design Method of Steel Slit Shear Walls with Tapered Links for Structural Condition Assessment

  • He, Liusheng;Wu, Chen;Jiang, Huanjun
    • 국제초고층학회논문집
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    • 제9권4호
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    • pp.361-368
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    • 2020
  • The authors developed a new type of steel slit shear wall (SSSW) having the function of structural condition assessment through visually inspecting the out-of-plane deformation of the designed tapered links subjected to lateral deformation. To facilitate its practical application, this paper studies how to design dimensions of the tapered links. Two parameters, the width-to-thickness ratio of the tapered links and steel yield stress, were studied. The performance of structural condition assessment was affected by both parameters with the width-to-thickness ratio being the controlling one. Through both numerical and experimental study, the designed width-to-thickness ratio of tapered links for different levels of structural condition assessment was established considering the effect of different steel grades used. In practice, the dimensions of tapered links can be determined following the design equation provided. Finally, a design procedure for the proposed SSSW system is provided.

Analytical performance evaluation of modified inclined studs for steel plate concrete wall subjected to cyclic loads

  • Lim, Jin-Sun;Jeong, Young-Do;Nam, Jin-Won;Kim, Chun-Ho;Yi, Seong-Tae
    • Computers and Concrete
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    • 제17권2호
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    • pp.227-240
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    • 2016
  • An analytical study was conducted to investigate the effect of the shape and spacing of modified inclined studs used as shear connector between concrete and steel plate on the cyclic behavior of steel plate concrete (SC) shear wall. 9 different analysis cases were adopted to determine the optimized shape and spacing of stud. As the results, the skeleton curves were obtained from the load-displacement hysteresis curves, and the ultimate and yielding strengths were increased as the spacing of studs decrease. In addition, the strength of inclined studs is shown to be bigger compared to that of conventional studs. The damping ratios increased as the decrease of stiffness ratio. Finally, with decreasing the spacing distance of studs, the cumulative dissipated energy was increased and the seismic performance was improved.

경량기포모르터와 합성한 경량형강 벽체의 전단 저항 (Shear Resistance of Light-gauge Steel Stud Wall infilled with light-weight foamed mortar)

  • 이상섭;배규웅
    • 한국강구조학회 논문집
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    • 제16권4호통권71호
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    • pp.397-406
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    • 2004
  • 본 논문은 경량형강으로 제작한 프레임에 경량기포모르터를 채운 경량합성벽체의 전단 거동에 대한 실험 결과와 전단 강도 및 강성 평가를 제시한 것이다. 경량기포모르터는 스틸하우스 벽체의 구조 성능 및 단열 성능의 향상과 마감에 대한 시공성 개선을 위해 도입되었다. 연구 결과 단열 성능에 대한 기여도는 낮으나, 경량기포모르터의 슬러리 비중이 0.8 이상인 경우 구조 성능의 향상과 마감성이 좋은 것으로 나타났다. 본 연구에서는 전단 거동에 미치는 경량기포모르터의 영향을 알아보기 위해 경량기포모르터의 비중(0.6, 0.8, 1.0, 1.2) 벽체의 스터드 배치간격(450mm, 600mm, 900mm), 마감재(경량기포모르터, OSB, 석고보드) 및 브레이싱 등을 변수로 한 14개의 경량합성벽체를 제작하였고 비교를 위해 대표적인 스틸하우스 벽체 3개를 제작하였다. 면내전단 실험결과, 경량기포모르터를 타설한 경량합성벽체가 기존의 스틸스터드 벽체에 비해 최대 내력은 1.15~5.38배, 초기강성은 1.45~13.7배 증가한 것으로 나타났다. 또한 벽체 내부의 스터드를 900mm까지 확장하여도 무리가 없는 것으로 나타났다. 그러나 이와 같은 결과는 건조수축 균열이 억제되지 않은 상태에서 나온 것으로 경량합성벽체의 내력을 향상시키기 위해서는 경량기포모르터의 초기 건조수축균열을 억제하고 스터드와 경량기포모르터 사이의 부착력을 확보하는 것이 무엇보다도 중요한 것으로 나타났다.

피해를 입은 전단벽의 보강 후 구조성능 평가 (A Study on the Structural Performance of Retrofitted RC Shear Walls with An Opening)

  • 김현민;최윤철;최창식;이리형
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계학술발표회 논문집(I)
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    • pp.234-237
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    • 2006
  • A series of three shear wall specimens was tested under constant axial stress and reversed cyclic lateral loading in order to evaluate the seismic retrofit that had been proposed for the shear wall with the opening induced by remodeling. One of these specimens was tested in the as-built condition and the other two were retrofitted prior to testing. The retrofit involved the use of carbon fiber sheets and steel plates (thickness of 3mm) over the entire face of the wall. The test results show that the ultimate failure modes of the specimens were found to be shear fracture of the wall around the opening and two difference types of retrofitting strategy make the different effects of a rise in the strength of each specimen.

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Comparison and prediction of seismic performance for shear walls composed with fiber reinforced concrete

  • Zhang, Hongmei;Chen, Zhiyuan
    • Advances in concrete construction
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    • 제11권2호
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    • pp.111-126
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    • 2021
  • Concrete cracking due to brittle tension strength significantly prevents fully utilization of the materials for "flexural-shear failure" type shear walls. Theoretical and experimental studies applying fiber reinforced concrete (FRC) have achieved fruitful results in improving the seismic performance of "flexural-shear failure" reinforced concrete shear walls. To come to an understanding of an optimal design strategy and find common performance prediction method for design methodology in terms to FRC shear walls, seismic performance on shear walls with PVA and steel FRC at edge columns and plastic region are compared in this study. The seismic behavior including damage mode, lateral bearing capacity, deformation capacity, and energy dissipation capacity are analyzed on different fiber reinforcing strategies. The experimental comparison realized that the lateral strength and deformation capacity are significantly improved for the shear walls with PVA and steel FRC in the plastic region and PVA FRC in the edge columns; PVA FRC improves both in tensile crack prevention and shear tolerance while steel FRC shows enhancement mainly in shear resistance. Moreover, the tensile strength of the FRC are suggested to be considered, and the steel bars in the tension edge reaches the ultimate strength for the confinement of the FRC in the yield and maximum lateral bearing capacity prediction comparing with the model specified in provisions.

PHC-W 흙막이를 활용한 건축영구벽체에서 PHC-W말뚝과 증설벽체를 합벽시키는 전단연결재의 인발거동에 관한 연구 (A Study on the Pullout Behavior of Shear Connectors which Fix the Additional Wall to the PHC-W Piles in the PHC-W Type Permanent Building Retaining Wall)

  • 진홍민;김성수;최정표;최용규
    • 한국지반공학회논문집
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    • 제33권12호
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    • pp.107-113
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    • 2017
  • PHC-W 흙막이를 건축영구벽체로 활용하기 위해서 전단연결재를 이용하여 PHC-W말뚝과 증설벽체를 일체화 시켜야 한다. 전단연결재의 인발 거동은 2가지 인발 거동 유형으로 나타났다. 첫 번째 인발 거동 유형은 최대 인발저항력에 도달한 이후 정착부가 파괴되어 전단연결재가 정착부위에서 뽑혀 나오는 인발변위 거동을 나타내었다. 두 번째 인발거동 유형은 최대인발저항력에 도달한 이후에도 정착부가 파괴되지 않고 인발변위가 점진적으로 증가하는 거동을 나타내었다. 최대 인발저항력은 강재 앵커 전단연결재가 이형 철근 전단연결재보다 크게 나타났다. 동일 재료의 전단 연결재에서는 직경이 클수록 그리고 정착 길이가 길수록 최대 인발저항력은 큰 값을 나타내었다. 최대인발력에 상응하는 인발변위는 재료, 직경 및 정착길이에 상관없이 다양한 범위를 나타내었다. 즉 A-D20 전단연결재의 경우 8~10mm이었으며 A-D16, D-D19 그리고 D-D16 전단연결재의 경우 14~20mm이었는데 정착길이가 50, 80mm에서는 6~10mm로 나타났다.

Investigation of performance of steel plate shear walls with partial plate-column connection (SPSW-PC)

  • Azandariani, Mojtaba Gorji;Gholhaki, Majid;Kafi, Mohammad Ali;Zirakian, Tadeh;Khan, Afrasyab;Abdolmaleki, Hamid;Shojaeifar, Hamid
    • Steel and Composite Structures
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    • 제39권1호
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    • pp.109-123
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    • 2021
  • This research endeavor intends to use the implicit finite element method to investigate the structural response of steel shear walls with partial plate-column connection. To this end, comprehensive verification studies are initially performed by comparing the numerical predictions with several reported experimental results in order to demonstrate the reliability and accuracy of the implicit analysis method. Comparison is made between the hysteresis curves, failure modes, and base shear capacities predicted numerically using ABAQUS software and obtained/observed experimentally. Following the validation of the finite element analysis approach, the effects of partial plate-column connection on the strength and stiffness performances of steel shear wall systems with different web-plate slenderness and aspect ratios under monotonic loading are investigated through a parametric study. While removal of the connection between the web-plate and columns can be beneficial by decreasing the overall system demand on the vertical boundary members, based on the results and findings of this study such detachment can lower the stiffness and strength capacities of steel shear walls by about 25%, on average.

Rao-3 algorithm for the weight optimization of reinforced concrete cantilever retaining wall

  • Kalemci, Elif N.;?kizler, S. Banu
    • Geomechanics and Engineering
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    • 제20권6호
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    • pp.527-536
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    • 2020
  • The paper represents an optimization algorithm for reinforced concrete retaining wall design. The proposed method, called Rao-3 optimization algorithm, is a recently developed algorithm. The total weight of the steel and concrete, which are used for constructing the retaining wall, were chosen as the objective function. Building Code Requirements for Structural Concrete (ACI 318-05) and Rankine's theory for lateral earth pressure were considered for structural and geotechnical design, respectively. Number of the design variables are 12. Eight of those express the geometrical dimensions of the wall and four of those express the steel reinforcement of the wall. The safety against overturning, sliding and bearing capacity failure were regarded as the geotechnical constraints. The safety against bending and shear failure, minimum and maximum areas of reinforcement, development lengths of steel reinforcement were regarded as structural constraints. The performance of proposed algorithm was evaluated with two design examples.

비탄성 정적해석을 이용한 격자강판 전단벽 보강 RC구조물의 내진성능평가 (Seismic Performance Evaluation of RC Structure Strengthened by Steel Grid Shear Wall using Nonlinear Static Analysis)

  • 박정우;이재욱;박진영;이영학;김희철
    • 한국전산구조공학회논문집
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    • 제26권6호
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    • pp.455-462
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    • 2013
  • 최근에 지어진 건축물의 경우 지진에 대한 안전성을 확보하고 있지만, 내진설계 도입 이전의 건축물은 지진에 대해 매우 취약하다. 본 연구에서는 내진성능이 부족한 기존 저층 RC구조물의 지진 발생 시 안전성 확보를 위한 내진보강 방안으로 격자강판 전단벽을 제안하고 내진성능평가를 수행하였다. 횡력저항요소로 사용된 격자강판 전단벽의 탄소성 이력특성값은 실험결과를 토대로 횡력저항 기여도등을 평가하여 작성된 이선형곡선을 적용하였다. 비탄성 정적해석을 통해 대상구조물의 성능점을 찾아내어 적용 지진하중에 대한 응답과 성능수준을 평가하였다. 격자강판 전단벽을 적용한 경우, 보강 전에 비하여 응답변위가 약 42% 저감되는 것을 확인할 수 있었으며, 성능점에서 거의 탄성거동을 보여주고 있어 목표성능인 인명안전수준을 만족시켰다. 또한 반응수정계수를 산정하여 내진보강 효과를 검증하였으며, 보강 전과 후에 각각 2.17에서 3.25로 증가하여 설계기준을 초과하였다. 따라서 격자강판 전단벽에 의해 대상 구조물의 강도 및 강성보강이 적절히 수행된 것으로 판단된다.

Displacement-based design method for an energy-dissipation self-centering wall panel structure

  • Sisi Chao;Guanqi Lan;Hua Huang;Huiping Liu;Chenghua Li
    • Steel and Composite Structures
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    • 제51권3호
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    • pp.289-304
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    • 2024
  • The seismic performance of traditional steel frame-shear wall structures was significantly improved by the application of self-centering steel-reinforced concrete (SRC) wall-panel structures in the steel frames. This novel resilience functionality can rapidly restore the structure after an earthquake. The presented steel frame with steel-reinforced concrete self-centering wall-panel structures (SF-SCW) was validated, indicating its excellent seismic performance. The seismic design method based on bear capacity cannot correctly predict the elastic-plastic performance of the structure, especially certain weak floors that might be caused by a major fracture. A four-level seismic performance index, including intact function, continued utilization, life safety, and near-collapse, was established to achieve the ideal failure mode. The seismic design method, based on structural displacement, was proposed by considering performance objectives of the different seismic action levels. The pushover analysis of a six-floor SF-SCW structure was carried out under the proposed design method and the results showed that this six-floor structure could achieve the predicted failure mode.