• 제목/요약/키워드: concrete compression struts

검색결과 15건 처리시간 0.019초

콘크리트 구조물의 전단 안정성 평가를 위한 전단전달 실험 및 해석 (An Experimental and Analytical Study on Shear Transfer for Safety Evaluation of Concrete Structure)

  • 김광수
    • 한국안전학회지
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    • 제23권3호
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    • pp.42-50
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    • 2008
  • This study, push-off tests for the initially uncracked specimens were conducted to investigate shear transfer mechanism in reinforce concrete elements. Experimental programs for shear transfer were undertaken to investigate the effect of the concrete compressive strength, the presence of steel stirrups as shear reinforcement and the amount of steel stirrups. As the shear plane is loaded, several cracks form in a direction inclined to the shear plane, creating compression struts in the concrete. For this stage, shear is being transferred through a truss-like action produced by the combination of the compressive force in the concrete struts and the tensile force that the steel reinforcement crossing the shear plane develops. In the normal strength concrete specimens with steel stirrups, ultimate failure occurred when the compression struts crushed in concrete. In the high strength concrete specimens, on the other hand, ultimate failure occurred when the steel stirrups developed their yield strength.

A stress field approach for the shear capacity of RC beams with stirrups

  • Domenico, Dario De;Ricciardi, Giuseppe
    • Structural Engineering and Mechanics
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    • 제73권5호
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    • pp.515-527
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    • 2020
  • This paper presents a stress field approach for the shear capacity of stirrup-reinforced concrete beams that explicitly incorporates the contribution of principal tensile stresses in concrete. This formulation represents an extension of the variable strut inclination method adopted in the Eurocode 2. In this model, the stress fields in web concrete consist of principal compressive stresses inclined at an angle θ combined with principal tensile stresses oriented along a direction orthogonal to the former (the latter being typically neglected in other formulations). Three different failure mechanisms are identified, from which the strut inclination angle and the corresponding shear strength are determined through equilibrium principles and the static theorem of limit analysis, similar to the EC-2 approach. It is demonstrated that incorporating the contribution of principal tensile stresses of concrete slightly increases the ultimate inclination angle of the compression struts as well as the shear capacity of reinforced concrete beams. The proposed stress field approach improves the prediction of the shear strength in comparison with the Eurocode 2 model, in terms of both accuracy (mean) and precision (CoV), as demonstrated by a broad comparison with more than 200 published experimental results from the literature.

횡보강근이 없는 콘크리트 부재의 전단강도 (Shear Strength of Concrete Members without Transverse Steel)

  • 김장훈
    • 콘크리트학회논문집
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    • 제12권6호
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    • pp.57-66
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    • 2000
  • The truss analogy for the analysis of beam-columns subjected of shear and flexure is limited by the contribution of transverse and longitudinal steel and diagonal concrete compression struts. However, it should be noted that even though the behavior of reinforced concrete beam-columns after cracking can be modeled with the truss analogy, they are not perfect trusses but still structural elements with a measure of continuity provided by a diagonal tension field. The mere notion of compression field denotes that there should be some tension field coexisting perpendicularly to it. The compression field is assumed to form parallel to the crack plane that forms under combined flexure and shear. Therefore, the concrete tension field may be defined as a mechanism existing across the crack and resisting crack opening. In this paper, the effect of concrete tensile properties on the shear strength and stiffness of reinforced concrete beam-columns is discussed using the Gauss two-point truss model. The theoretical predictions are validated against the experimental observations. Although the agreement is not perfect, the comparison shows the correct trend in degradation as the inelasticity increases.

균일한 압축장에 대한 새로운 휨 형태의 파괴 매캐니즘 (New Flexural Failure Mechanisms for Uniform Compression Stress Fields)

  • 홍성걸
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 가을 학술발표회 논문집
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    • pp.546-551
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    • 1997
  • New typology of failure mechanisms for uniform compression fields are presented based on the classical theory of plasticity, in particular th normality rule, and the limit theorem. The concrete is assumed as a rigid-perfectly plastic material obeying the modified Coulomb failure criteria with zero tension cut-off. The failure mechanisms are capable of explaining flexural types of crushing failure in uniaxial uniform compression stress fields which are called struts in truss models. The failure mechanisms consist of sliding failure along straight failure lines or hyperbolic failure curves and rigid body rotation. The failure mechanisms involving straight failure lines are explained by constant strain expansion in the first principal direction and rigid body rotation motion. The failure mechanisms presented are applied to the explanation of bond failure of bar combined with concrete crushing failure and flexural crushing failure of concrete.

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비선형 스트럿-타이 모델 방법에 의한 철근콘크리트 코벨의 강도 평가 (Strength Evaluation of Reinforced Concrete Corbels using Nonlinear Strut-Tie Model Approach)

  • 윤영묵;신용목
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 봄 학술발표회 논문집
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    • pp.391-396
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    • 2003
  • The concrete corbels consist of various failure mechanisms such as the yielding of the tension reinforcement, the crushing or splitting from compression concrete struts, and localized bearing or shearing failure under the loading plate. However, predicting those failure mechanisms is very difficult. In this study, the ACI 318-02, the softened strut-tie model approach, and the nonlinear strut-tie model approach are applied to ultimate strength analysis of normal strength concrete corbels tested to failure. From the result of the analysis, an effective analysis and design method of normal strength concrete corbels is suggested.

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Effect of loading rate on softening behavior of low-rise structural walls

  • Mo, Y.L.;Rothert, H.
    • Structural Engineering and Mechanics
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    • 제5권6호
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    • pp.729-741
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    • 1997
  • Cracked reinforced concrete in compression has been observed to exhibit lower strength and stiffness than uniaxially compressed concrete. The so-called compression softening effect responsible is thought to be related to the degree of transverse cracking and straining present. It significantly affects the strength, ductility and load-deformation response of a concrete element. A number of experimental investigations have been undertaken to determine the degree of softening that occurs, and the factors that affect it. At the same time, a number of diverse analytical models have been proposed by various this behavior. In this paper, the softened truss model thoery for low-rise structural shearwalls is employed using the principle of the stress and strain transformations. Using this theory the softening parameters for the concrete struts proposed by Hsu and Belarbi as well as by Vecchio and Collins are examined by 51 test shearwalls available in literature. It is found that the experimental shear strengths and ductilities of the walls under static loads are, in average, very close to the theoretical values; however, the experiment shear strengths and ductilities of the walls under dynamic loads with a low (0.2 Hz) frequency are generally less than the theoretical values.

개구부를 갖는 철근콘크리트 깊은 보의 전단거동에 대한 실험 연구 (An Experimental Study on the Shear Behavior of R/C Deep Beems with Web Opentings)

  • 임채문;이진섭;양창현;김상식
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1996년도 봄 학술발표회 논문집
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    • pp.280-285
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    • 1996
  • The shear behavior of reinforced concrete deep beams with web opennings has been scrutinized experimentally to verify the influences of the structural parameters such as size, shape, location and reinfrocements of web openings, and shear span ratio. A total of 22 specimens has been tested under one or two point loading conditions at the laboratory. In the tests most specimens have shown shear failures with inclined cracks from the loacing points to the supports through openings. The ultimate strengths of the specimens measured from the tests have shown wide differences depending on the locations of the openings which deter the formation of the compression struts between the loading points and the supports. The effects of the reinforcements and the geomtry of the openings on the shear strengths and the crack developments have been carefully checked and analyzed.

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개구부를 갖는 철근콘크리트 깊은 보의 전단거동 (Shear Behavior of Reinforced Concrete Deep Beams with Web Openings)

  • 이진섭;김상식
    • 콘크리트학회논문집
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    • 제13권6호
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    • pp.619-628
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    • 2001
  • 깊은 보의 실제 시공에서는 창호, 배관, 설비 등의 건축적 요구 조건과 각종 제약 조건에 의하여 복부에 개구부를 설치해야하는 경우가 많으며, 이러한 개구부를 갖는 깊은 보에서는 하중 전달 경로가 개구부의 위치와 크기 및 형태 등에 큰 영향을 받게 된다. 이 연구는 양단이 단순지지되어 있는 철근콘크리트 질은 보를 대상으로 하여, 전단경간비와 콘크리트 강도, 복부 보강형태 및 개구부의 위치 등 여러 구조 변수가 깊은 보의 최대 전단내력과 균열 발생 및 진전, 파괴형태 등에 미치는 영향을 실험을 통해 조사하고 이론과 비교하였다 실험 결과, 깊은 보의 거동은 복부의 대각균열 형성과 크게 연관되어 있으며, 전단경간비와 개구부의 영향에 따라 내력이 큰 차이를 보이는 것으로 나타났다. 이론식으로는 Kong의 제안식과 Ray의 제안식이 비교되었으며 개구부의 크기가 커 다소 오차를 보이는 X 계열 시험체를 제외하면 Kong과 Ray의 제안식 모두가 깊은 보의 극한 전단강도를 적절히 예측할 수 있는 것으로 조사되었다.

비균열 인장재하 시험체의 압축장 이론에 기반한 전단전달강도 산정모델 (Estimation Model of Shear Transfer Strength for Uncracked Pull-Off Test Specimens based on Compression Field Theory)

  • 김민중;이기열
    • 대한토목학회논문집
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    • 제41권2호
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    • pp.101-111
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    • 2021
  • 전단마찰 시험체는 재하형태에 따라 압축재하와 인장재하 시험으로 구분된다. 인장재하 시험의 경우에는 외력으로 작용하는 수직방향 인장력에 의하여 전단응력 및 수직방향 인장응력이 유발된다. 이 연구에서는 압축장 이론을 이용하여 인장재하 시험체의 전단전달강도를 평가하였으며, 2축-응력 상태의 콘크리트 최대 압축강도의 변화를 고려하기 위하여 수정압축장이론, 연화트러스모델의 구성방정식을 사용하였다. 타당성 검증을 위하여 과거 연구자들에 의해 수행된 직접전단강도 실험값들과 압축장 이론을 이용하여 구한 값들을 비교한 결과, 비균열 인장재하 시험체의 경우 예측값과 실측치가 대체적으로 잘 일치함을 확인하였다. 또한 콘크리트 스트럿의 유효압축강도를 고려한 전단강도 평가식을 제안하고, 기존 문헌에 수록된 실험결과와 비교함으로써 제안식의 적용 가능성을 검증하였다.

2축-응력장 이론을 이용한 철근콘크리트 부재의 전단마찰 해석 (Bi-Axial Stress Field Analysis on Shear-Friction in RC Members)

  • 김민중;이기열;이준석;김우
    • 콘크리트학회논문집
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    • 제24권1호
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    • pp.25-35
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    • 2012
  • 직접 전단력이 작용하는 철근콘크리트 부재는 콘크리트 계면의 전단전달에 의해 외력에 저항한다. 현행 구조설계기준의 전단마찰 관련식은 과거 연구자들의 실험 결과를 바탕으로 유도되었으며, 전단마찰강도는 콘크리트 계면을 가로지르는 철근 단면적의 크기에 비례한다. 이러한 경험식을 통해 구해진 전단마찰강도는 철근비가 큰 콘크리트 부재의 경우 실측값과 비교해서 매우 낮은 값을 나타낸다. 이 연구에서는 2축-응력장 이론을 이용하여 종방향 철근의 항복 이후 콘크리트 경사스트럿의 압축파쇄로 이어지는 일련의 극한 한계상태를 정의하고자 하였다. 2축 응력 상태의 콘크리트 최대 압축강도의 변화를 고려하기 위하여 수정압축장이론, 연화트러스모델의 구성방정식을 사용한 각각의 경우에 대하여 전단마찰 강도를 평가하였다. 타당성 검증을 위하여 과거 연구자들에 의해 수행된 직접 전단강도 실험값들과 2축-응력장 이론을 이용하여 구한 값들을 현행 구조설계기준의 전단마찰식과 함께 비교하였으며, 보통강도 콘크리트로 제작된 비균열 직접 전단 시험체의 경우 산정값과 실측치가 대체적으로 일치함을 확인하였다.