• 제목/요약/키워드: maximum shear strength

검색결과 610건 처리시간 0.023초

강섬유 보강 RC 기둥의 전단능력 산정 (Shear Capacity Determination of Steel Fiber Reinforced RC Columns)

  • 이현호;장극관
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 가을 학술발표회 논문집
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    • pp.891-896
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    • 2001
  • As composite materials, the addition of steel fiber in concrete significantly improves the engineering properties of structural members, notably shear strength and ductility, In this study, shear capacity evaluation method according to steel fiber contents was proposed from the literature surveys and member tests. For this, previously proposed five shear strength equation were examined and evaluated by maximum shear strength and shear capacity ratio. From the parametric study and regression analysis, following conclusion can be made; the maximum shear strength of steel fiber reinforced column will be estimated by relative shear capacity ratio.

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프리캐스트 Girder-Beam 접합부에서 Girder Ledge의 전단내력에 관한 실험적 연구 (An Experimental Study on Shear Strength of Girder Ledge of Precast Girder-Beam Connection)

  • 배준우;박성무
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1996년도 가을 학술발표회 논문집
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    • pp.408-415
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    • 1996
  • This study is aimed to define the behavior of the girder ledge of precast girder-beam joint in rame type precast concrete construction method. The variable of this study is followed : 1) The change of the maximum shear strength depended on the transformation of concrete compressive strength 2) The change of the behavior of ledge depended on the transformation of shear-span ratio 3) The change of maximum shear strength and ductility by the type of reinforcement. The results of this study show the behavior of ledge is affected by shear-span ratio and the maximum shear strength is depended on the concrete compressive strength, reinforcement ratio and effective section area. In addition, through the investigation of the established study, the results of this study suggest the shear friction formula of Raths.

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고강도 콘크리트를 사용한 RC보의 최대철근비 (Maximum Shear Reinforcement of RC Beams using High Strength Concrete)

  • 이정윤;황현복
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
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    • pp.839-842
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    • 2008
  • 현행 기준식에서는 철근콘크리트 보의 취성적 전단 파괴를 방지하기 위하여 전단보강철근이 항복한 이후에 복부 콘크리트가 압축파괴하도록 최대전단철근비에 대한 제한을 두고 있다. 최대전단철근비에 대한 제한은 각 기준식마다 매우 상이하다. ACI 318-05, CSA-04 와 EC2-02기준에서는 최대전단철근비가 콘크리트의 압축강도에 따라서 변화하지만, 일본기준식은 압축강도와 무관하게 일정한 값이다. 고강도콘크리트가 사용될 경우에 CSA-04와 EC2-02기준에서 요구하는 최대전단철근비는 ACI 318-05의 두 배 이상으로 기준식마다 상이하게 최대전단철근비를 제한하고 있다. 이 연구에서는 10개의 철근콘크리트 보 실험을 통하여 최대철근비가 미치는 보의 거동 및 내력을 평가하였다. 실험 결과에 의하면 ACI 318-05에서 요구하는 철근비보다 많은 전단보강철근이 배근된 보에서도 전단보강철근이 항복한 이후에 콘크리트가 압축파괴하였다.

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철근콘크리트 보의 전단보강철근의 최대 항복강도 및 전단거동 평가 (Evaluation of the Maximum Yield Strength of Steel Stirrups and Shear Behavior of RC Beams)

  • 이정윤;최임준;강지은
    • 콘크리트학회논문집
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    • 제22권5호
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    • pp.711-718
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    • 2010
  • 콘크리트구조설계기준(2007)에서 제한하는 전단보강철근의 최대 항복강도와 ACI 318-08 기준식, EC2-02 기준식, CSA-04 기준식, JSCE-04 기준식에서 요구하는 전단보강철근의 최대 항복강도에는 많은 차이가 있다. 이 연구에서는 18개의 철근콘크리트 보 실험을 통하여 전단보강철근의 항복강도와 콘크리트의 압축강도가 부재의 전단거동에 미치는 영향을 파악하였다. 실험에 의하면 콘크리트구조설계기준(2007)에서 요구하는 전단보강철근의 최대 항복강도보다 최대 약 1.88배까지의 고강도 전단보강철근을 배근하였음에도 불구하고 실험결과는 전단보강철근이 항복한 이후에 부재가 최대 내력에 도달하였다. 또한 모든 실험체의 전단 내력은 전단보강철근의 양이 증가함에 따라서 거의 선형적으로 증가하였다. 사인장균열에 대해서는 전단보강철근의 항복강도가 증가함에 따라서 균열의 수가 증가하였고, 동일한 하중비에 대하여 보통강도 전단보강철근을 사용한 보의 사인장균열 폭과 고강도 전단보강철근을 사용한 보의 사인장균열 폭은 거의 유사하였다.

트러스 모델에 의한 철근콘크리트 저형 전단벽의 전단강도 (Shear Strength of Inn-Rise Reinforced Concrete Shear Walls with Truss Model)

  • 윤현도;최창식;이리형
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1992년도 가을 학술발표회 논문집
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    • pp.97-102
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    • 1992
  • To predict the shear strength of low - rise reinforced concrete shear walls with boundary elements, truss model theory considering the Vecchio - Collins stress - strain curve for softened concrete is applied. The model transforms cracked shear walls with a truss which consists of vertical bar. horizontal bar and diagonal concrete strut, and is based on equilibrium and compatibility conditions among three truss components, as well as stress - strain relationship considered for softening in diagonal concrete strut. In barbell specimens(M/VD = 0.75. fc = 420 kg/$\textrm{cm}^2$), the ratio of experimental to analytical maximum shear strength was within 0.83 ν$_{exp}$. / ν$_{cal}$. 1.25 with a relatively good agreement. As a result, the truss model was observed to be capable of predicting the maximum shear strength wi th a reasonable accuracy.acy.

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순결형 그라우트의 초기 전단강도 특성에 대한 연구 (A Study on the Initial Shear Strength Characteristics of Sudden Gelation Grout)

  • 허형석;박인준
    • 한국지반공학회논문집
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    • 제36권9호
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    • pp.33-44
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    • 2020
  • 순결 특성을 갖는 그라우트에 대한 경화 전 소성상태의 전단강도 특성을 분석하기 위하여 혼합물의 점도와 실내 베인전단시험을 수행하였다. 그라우트를 물-시멘트비(w/c) 별로 제조하고 전단강도시험을 실시하였다. 그라우트의 소성상태 전단강도는 물-시멘트비에 영향을 많이 받아 물-시멘트비가 낮을수록 초기에 높은 전단강도가 발현되었으며, 양생 시간이 길어질수록 높은 전단강도를 나타내었다. 최대전단강도는 그 값이 클수록 작은 회전각에서 발현되고, 최대전단강도 값이 작을수록 큰 회전각에서 발현되었다. 또한, 겔 상태의 그라우트는 최대 전단강도가 발현 이후 급격히 전단강도가 저하되고 베인날의 회전각이 약 70°~90°이후에는 일정한 수준으로 수렴되는 것을 확인할 수 있었다.

Shear Crack Control for High Strength Reinforced Concrete Beams Considering the Effect of Shear-Span to Depth Ratio of Member

  • Chiu, Chien-Kuo;Ueda, Takao;Chi, Kai-Ning;Chen, Shao-Qian
    • International Journal of Concrete Structures and Materials
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    • 제10권4호
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    • pp.407-424
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    • 2016
  • This study tests ten full-size simple-supported beam specimens with the high-strength reinforcing steel bars (SD685 and SD785) using the four-point loading. The measured compressive strength of the concrete is in the range of 70-100 MPa. The main variable considered in the study is the shear-span to depth ratio. Based on the experimental data that include maximum shear crack width, residual shear crack width, angle of the main crack and shear drift ratio, a simplified equation are proposed to predict the shear deformation of the high-strength reinforced concrete (HSRC) beam member. Besides the post-earthquake damage assessment, these results can also be used to build the performance-based design for HSRC structures. And using the allowable shear stress at the peak maximum shear crack width of 0.4 and 1.0 mm to suggest the design formulas that can ensure service-ability (long-term loading) and reparability (short-term loading) for shear-critical HSRC beam members.

New metal connectors developed to improve the shear strength of stone masonry walls

  • Karabork, Turan;Kocak, Yilmaz
    • Structural Engineering and Mechanics
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    • 제50권1호
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    • pp.121-135
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    • 2014
  • Stone masonry structures are widely used around the world, but they deteriorate easily, due to low shear strength capacity. Many techniques have been developed to increase the shear strength of stone masonry constructions. The aim of this experimental study was to investigate the performance of stone masonry walls strengthened by metal connectors as an alternative shear reinforcement technique. For this purpose, three new metal connector (clamp) types were developed. The shear strength of the walls was improved by applying these clamps to stone masonry walls. Ten stone masonry walls were structurally tested in diagonal compression. Various parameters regarding the in-plane behavior of strengthening stone masonry walls, including shear strength, failure modes, maximum drift, ductility, and shear modulus, were investigated. Experimentally obtained shear strengths were confirmed by empirical equations. The results of the study suggest that the new clamps developed for the study effectively increased the levels of shear strength and ductility of masonry constructions.

Strength Demand of Hysteretic Energy Dissipating Devices Alternative to Coupling Beams in High-Rise Buildings

  • Choi, Kyung-Suk;Kim, Hyung-Joon
    • 국제초고층학회논문집
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    • 제3권2호
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    • pp.107-120
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    • 2014
  • A Reinforced concrete (RC) shear wall system with coupling beams has been known as one of the most promising structural systems for high-rise buildings. However, significantly large flexural and/or shear stress demands induced in the coupling beams require special reinforcement details to avoid their undesirable brittle failure. In order to solve this problem, one of promising candidates is frictional hysteretic energy dissipating devices (HEDDs) as an alternative to the coupling beams. The introduction of frictional HEDDs into a RC shear wall system increases energy dissipation capacity and maintains the frame action after their yielding. This paper investigates the strength demands (specifically yield strength levels) with a maximum allowable ductility of frictional HEDDs based on comparative non-linear time-history analyses of a prototype RC shear wall system with traditional RC coupling beams and frictional HEDDs. Analysis results show that the RC shear wall systems coupled by frictional HEDDs with more than 50% yield strength of the RC coupling beams present better seismic performance compared to the RC shear wall systems with traditional RC coupling beams. This is due to the increased seismic energy dissipation capacity of the frictional HEDD. Also, it is found from the analysis results that the maximum allowable ductility demand of a frictional HEDD should increase as its yield strength decreases.

Investigation of the effects of connectors to enhance bond strength of externally bonded steel plates and CFRP laminates with concrete

  • Jabbar, Ali Sami Abdul;Alam, Md Ashraful;Mustapha, Kamal Nasharuddin
    • Steel and Composite Structures
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    • 제20권6호
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    • pp.1275-1303
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    • 2016
  • Steel plates and carbon-fiber-reinforced polymer (CFRP) laminates or plates bonded to concrete substrates have been widely used for concrete strengthening. However, this technique cause plate debonding, which makes the strengthening system inefficient. The main objective of this study is to enhance the bond strength of externally bonded steel plates and CFRP laminates to the concrete surface by proposing new embedded adhesive and steel connectors. The effects of these new embedded connectors were investigated through the tests on 36 prism specimens. Parameters such as interfacial shear stress, fracture energy and the maximum strains in plates were also determined in this study and compared with the maximum value of debonding stresses using a relevant failure criterion by means of pullout test. The study indicates that the interfacial bond strength between the externally bonded plates and concrete can be increased remarkably by using these connectors. The investigation verifies that steel connectors increase the shear bond strength by 48% compared to 38% for the adhesive connectors. Thus, steel connectors are more effective than adhesive connectors in increasing shear bond strength. Results also show that the use of double connectors significantly increases interfacial shear stress and decrease debonding failure. Finally, a new proposed formula is modified to predict the maximum bond strength of steel plates and CFRP laminates adhesively glued to concrete in the presence of the embedded connectors.