• 제목/요약/키워드: Shear Reinforcement Ratio

검색결과 456건 처리시간 0.028초

Shear Strength of Prestressed Steel Fiber Concrete I-Beams

  • Tadepalli, Padmanabha Rao;Dhonde, Hemant B.;Mo, Y.L.;Hsu, Thomas T.C.
    • International Journal of Concrete Structures and Materials
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    • 제9권3호
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    • pp.267-281
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    • 2015
  • Six full-scale prestressed concrete (PC) I-beams with steel fibers were tested to failure in this work. Beams were cast without any traditional transverse steel reinforcement. The main objective of the study was to determine the effects of two variables-the shear-span-to-depth ratio and steel fiber dosage, on the web-shear and flexural-shear modes of beam failure. The beams were subjected to concentrated vertical loads up to their maximum shear or moment capacity using four hydraulic actuators in load and displacement control mode. During the load tests, vertical deflections and displacements at several critical points on the web in the end zone of the beams were measured. From the load tests, it was observed that the shear capacities of the beams increased significantly due to the addition of steel fibers in concrete. Complete replacement of traditional shear reinforcement with steel fibers also increased the ductility and energy dissipation capacity of the PC I-beams.

Shear strength model for reinforced concrete corbels based on panel response

  • Massone, Leonardo M.;Alvarez, Julio E.
    • Earthquakes and Structures
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    • 제11권4호
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    • pp.723-740
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    • 2016
  • Reinforced concrete corbels are generally used to transfer loads within a structural system, such as buildings, bridges, and facilities in general. They commonly present low aspect ratio, requiring an accurate model for shear strength prediction in order to promote flexural behavior. The model described here, originally developed for walls, was adapted for corbels. The model is based on a reinforced concrete panel, described by constitutive laws for concrete and steel and applied in a fixed direction. Equilibrium in the orthogonal direction to the shearing force allows for the estimation of the shear stress versus strain response. The original model yielded conservative results with important scatter, thus various modifications were implemented in order to improve strength predictions: 1) recalibration of the strut (crack) direction, capturing the absence of transverse reinforcement and axial load in most corbels, 2) inclusion of main (boundary) reinforcement in the equilibrium equation, capturing its participation in the mechanism, and 3) decrease in aspect ratio by considering the width of the loading plate in the formulation. To analyze the behavior of the theoretical model, a database of 109 specimens available in the literature was collected. The model yielded an average model-to-test shear strength ratio of 0.98 and a coefficient of variation of 0.16, showing also that most test variables are well captured with the model, and providing better results than the original model. The model strength prediction is compared with other models in the literature, resulting in one of the most accurate estimates.

Effect of vertical reinforcement connection level on seismic behavior of precast RC shear walls: Experimental study

  • Yun-Lin Liu;Sushil Kumar;Dong-Hua Wang;Dong Guo
    • Earthquakes and Structures
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    • 제26권6호
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    • pp.449-461
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    • 2024
  • The vertical reinforcement connection between the precast reinforced concrete shear wall and the cast-in-place reinforced concrete member is vital to the performance of shear walls under seismic loading. This paper investigated the structural behavior of three precast reinforced concrete shear walls, with different levels of connection (i.e., full connection, partial connection, and no connection), subjected to quasi-static lateral loading. The specimens were subjected to a constant vertical load, resulting in an axial load ratio of 0.4. The crack pattern, failure modes, load-displacement relationships, ductility, and energy dissipation characteristics are presented and discussed. The resultant seismic performances of the three tested specimens were compared in terms of skeleton curve, load-bearing capacity, stiffness, ductility, energy dissipation capacity, and viscous damping. The seismic performance of the partially connected shear wall was found to be comparable to that of the fully connected shear wall, exhibiting 1.7% and 3.5% higher yield and peak load capacities, 9.2% higher deformability, and similar variation in stiffness, energy dissipation capacity and viscous damping at increasing load levels. In comparison, the seismic performance of the non-connected shear wall was inferior, exhibiting 12.8% and 16.4% lower loads at the yield and peak load stages, 3.6% lower deformability, and significantly lower energy dissipation capacity at lower displacement and lower viscous damping.

철근콘크리트 깊은 보에서 수평 전단철근의 전단저항에 관한 실험적 연구 (An Experimental Study on the Shear Resistance of Horizontal Shear Reinforcement in R.C. Deep Beams)

  • 양근혁;이영호;은희창;정헌수
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 가을 학술발표회 논문집
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    • pp.903-906
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    • 2001
  • The objective of this experimental study was to understand the effect of horizontal shear bar on the shear behavior of R.C. deep beams. Therefore, in the test program, the horizontal shear bar ratio($\rho_{sh}$) and shear span-to-overall depth ratio(a/h) are considered as two main variables. Test results indicate that for deep beams with a/h equal to 1.0, horizontal shear bar is less efficient in restricting the diagonal crack width development and enhancing the ultimate shear strength. So, it can be concluded that shear resistance of horizontal shear bar is related to a/h rather than clear span-to-effective depth ratio($l_{n}$/d) recommended in ACI code.

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비정질 강섬유 보강 일방향 콘크리트 슬래브의 전단성능에 대한 실험적 연구 (An Experimental Study of Shear Capacity for One-way Concrete Slabs Reinforced with Amorphous Micro Steel Fibers)

  • 김선두;최경규;최완철;최세진
    • 한국건설순환자원학회논문집
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    • 제1권2호
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    • pp.128-135
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    • 2013
  • 본 연구에서는 비정질 강섬유보강 콘크리트 슬래브의 전단성능을 분석하기 위하여 일면 전단 실험을 수행하였다. 주요 변수는 전단보강방법과 전단보강비이며, 1종류의 무전단보강실험체와 3종류의 전단보강실험체(전단철근, 0.25%, 0.5% 비정질 강섬유보강 실험체)의 일방향 슬래브 실험체를 제작하여 실험하였다. 실험결과, 0.25% 비정질 강섬유보강실험체는 전단 성능이 향상되었지만 0.5% 실험체는 0.25% 보강실험체에 비해 전단성능이 향상되지 않았다. 섬유 보강비에 따른 전단보강 효과를 파악하기 위한 추가적인 연구가 필요하다.

고강도 경량 콘크리트 보의 전단거동에 관한 실험적 연구 (An Experimental Study on the Shear behavior of High Strength light-aggregate Reinforced Concrete Beam)

  • 박완신;진인철;윤현도;정수영
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1999년도 학회창립 10주년 기념 1999년도 가을 학술발표회 논문집
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    • pp.385-388
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    • 1999
  • This study is to investigate experimentally the shear capacity of high-strength reinforced concrete beams subjected to monotonic loading. Nine reinforced concrete beams using high strength concrete $(f'c=380kg/\textrm{cm}^2)$ are tested to determine their diagonal cracking and ultimate shear capacity. The main variables are shear span-depth ratio a/d=1.5, 2.5, 3.5, and shear reinforcement ratio. All specimens are 170mm wide and have a total depth of 300mm. The test results indicate that ACI 318-95(b) Code for shear capacity gave closest agrement with the exsprimental results. The beams with a shear spear-depth ratio 1.5 and 2.5. ACI 318-95 Code underestimates shear strength carried by vertical shear reinforcements.

Predicting shear strength of SFRC slender beams without stirrups using an ANN model

  • Keskin, Riza S.O.
    • Structural Engineering and Mechanics
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    • 제61권5호
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    • pp.605-615
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    • 2017
  • Shear failure of reinforced concrete (RC) beams is a major concern for structural engineers. It has been shown through various studies that the shear strength and ductility of RC beams can be improved by adding steel fibers to the concrete. An accurate model predicting the shear strength of steel fiber reinforced concrete (SFRC) beams will help SFRC to become widely used. An artificial neural network (ANN) model consisting of an input layer, a hidden layer of six neurons and an output layer was developed to predict the shear strength of SFRC slender beams without stirrups, where the input parameters are concrete compressive strength, tensile reinforcement ratio, shear span-to-depth ratio, effective depth, volume fraction of fibers, aspect ratio of fibers and fiber bond factor, and the output is an estimate of shear strength. It is shown that the model is superior to fourteen equations proposed by various researchers in predicting the shear strength of SFRC beams considered in this study and it is verified through a parametric study that the model has a good generalization capability.

강섬유를 혼입한 고강도 콘크리트 보의 전단강도 (Shear Strength of High Strength Concrete Beams with Steel Fibrous)

  • 곽계환;박종건;정태영
    • 콘크리트학회논문집
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    • 제12권4호
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    • pp.23-30
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    • 2000
  • The purpose of this paper is to study on the shear strength of high strength concrete beams with steel fibrous. In general, the shear strength of reinforced concrete beams is affected by the compressive strengths of concrete( c), the shear span-depth ratio(a/d), the longitudinal steel ratio($\rho$ $\omega$), and shear reinforcement. An experimental investigation of the shear strength of high strength concrete beams with steel fibrous was conducted. In each series the shear span-depth ratio(a/d) was held constant at 1.5, 2.8, or 3.6, while concrete strengths were varied from 320 to 520, to 800kgf/$\textrm{cm}^2$. To verify the proposed equations the experimental results were compared with those from other researches such as equation of ACI code 318-95 or equation of Zsutty. To deduce equation for shear strength from experimental data carried out MINITAP program. According to the experimental results, the addition of steel fibrous has increased the deflection and strain at failure load, improving the brittleness of the high strength concrete.

슬래브-기둥 접합부에서 전단보강체에 정창성능에 따른 영향 (The Effect of Anchorage of Reinforcement in Slab-Column Connection)

  • 최현기;김준서;이문성;최창식
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
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    • pp.185-188
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    • 2008
  • 플랫 플레이트 시스템은 펀칭전단과 같은 구조적 취약점이 있다. 펀칭전단의 저항력은 기둥단면의 증가, 슬래브 유효춤의 증가, 콘크리트 강도의 증가, 휨철근의 증가로 증가시킬 수 있다. 그러나 전단보강체를 설치하는 방법이 경제적, 시공적, 안정적으로 가장 좋은 방법이다. 하지만 슬래브 두께가 250mm보다 작은 슬래브에서는 전단보강체의 충분한 정착길이를 확보할수 없기 때문에 충분한 정착효과를 발휘하기 힘들다. 이전 연구에서 제안된 전단보강체의 경우 상부철근과 하부철근의 사이에 설치되었기 때문에 전단철근의 항복강도에 도달하기 전에 미끄러짐 파괴가 발생하였다. 정착강도의 영향을 주는 요인으로는 유효정착길이, 콘크리트강도, 전단철근의 직경, 정착상세이다. 본 연구에서는 슬래브 두께와 콘크리트 강도를 고려하여 제안된 보강체의 강도산정시 K factor를 제안하였다. 정착길이와 콘크리트강도를 고려함으로써 두께가 얇은 플랫플레이트 슬래브내에서 전단철근에 의한 전단강도를 정확히 산정할수 있을 것으포 판단된다..

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전단 보강이 없는 고강도 섬유보강 철근 콘크리트보의 전단 역학적 거동에 관한 연구 (Shear Mechanism of Steel-Fiber Reinforced High Strength Concrete Beams without Shear Reinforcement)

  • 오정근;이광수;권영호;신성우
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1990년도 봄 학술발표회 논문집
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    • pp.51-56
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    • 1990
  • Investigations on the behavior of steel fiber reinforced high strength concrete beams subjected to predominant shear are accomplished to determine their diagonal shear strength including ultimate shear strength. The parameters varied were the volume fraction(Vf) of the fibers, shear span depth ratio(a/d). The test result show that diagonal shear strength and ultimate shear strength are increased siginificantly due to crack arrest mechanism. Predictive equations are suggested for evaluating the diagonal cracking strength and ultimate shear strength of the fiber reinforced high strength concrete beams.

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