• 제목/요약/키워드: reinforced concrete flexural members

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단조하중을 받는 철근콘크리트 휨부재의 처짐해석 (Analysis of Deflection of Reinforced Concrete Flexural Members under Monotonic Loading)

  • 변근주;김영진
    • 대한토목학회논문집
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    • 제11권1호
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    • pp.69-78
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    • 1991
  • 본 연구은 단조하중을 받는 철근콘크리트 휨부재의 처짐을 해석하기 위한 것으로서, 콘크리트는 직교이방성재료로 모형화하고, 이력거동과 균열거동을 추적하기 위하여 등가일축변형율과 균열변형율을 이용하며, 철근은 탄소성재료로 모형화하고, 항복조건으로는 von Mises기준을 적용한다. 단조하중을 받는 철근콘크리트 휨부재의 변위거동을 해석하기 위하여 4절점 등매개요소와 트러스요소의 유한요소정식과 중분-반복기법을 적용한 유한요소 프로그램을 도출하고, 단조하중을 받는 과소 철근콘크리트 보에 대한 실험결과와 본 연구의 해석결과를 비교하여 개발된 모형과 해석프로그램의 타당성을 검증한다.

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하이브리드 강섬유 보강 초고강도 콘크리트 휨파괴형 부재의 강도 및 연성 평가에 관한 연구 (Evaluation of Flexural Strength and Ductility of Hybrid Fiber Reinforced UHSC Flexural Members)

  • 여옥경;배백일
    • 한국구조물진단유지관리공학회 논문집
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    • 제23권6호
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    • pp.61-69
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    • 2019
  • 본 연구에서는 단일강섬유와 하이브리드강섬유로 보강된 UHPC의 휨강도 및 연성을 평가하기 위해 세 개의 휨파괴형 보에 대한 4점 가력 실험을 수행하였다. 실험 결과 단일섬유로 보강된 UHPC보다 하이브리드 섬유로 보강된 UHPC가 강도 및 연성 모든 측면에서 더 우수한 구조성능을 보유한 것으로 나타났다. 설계시의 안전성에 대해 평가하기 위하여, K-UHPC 구조설계지침에서 제공하는 방법에 따라 실험체의 강도와 연성을 평가해본 결과 현재의 재료모델은 강도에 대해서는 보수적으로 평가할 수 있으나 연성에 대해서는 과대평가하는 것으로 나타났다.

철근콘크리트 구조물의 보수공법 연구(I) -보수재료 및 공법- (Studies on Repair of Reinforced Concrete Structures(I) -Repair Materials and Methods-)

  • 연규석;정영수;한만엽;이종열;장태연;정경현
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1995년도 봄 학술발표회 논문집
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    • pp.212-218
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    • 1995
  • This study experimentally evaluated the performance of damaged section which was repaired using polymer materials in reinforced flexural flexural members Six different materials, two types of polymer, two types of polymer-cement and two types of cement, were used by means of injection method on prepacked concrete and spray mortar patching method. As results, the repair works could be done easily and surfaces of the repaired section were smooth.

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Flexural behavior model for post-tensioned concrete members with unbonded tendons

  • Kim, Kang Su;Lee, Deuck Hang
    • Computers and Concrete
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    • 제10권3호
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    • pp.241-258
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    • 2012
  • The need for long-span members increases gradually in recent years, which makes issues not only on ultimate strength but also on excessive deflection of horizontal members important. In building structures, the post-tension methods with unbonded tendons are often used for long-span members to solve deflection problems. Previous studies on prestressed flexural members with unbonded tendons, however, were mostly focused on the ultimate strength. For this reason, their approaches are either impossible or very difficult to be implemented for serviceability check such as deflection, tendons stress, etc. Therefore, this study proposed a flexural behavior model for post-tensioned members with unbonded tendons that can predict the initial behavior, before and after cracking, service load behavior and ultimate strength. The applicability and accuracy of the proposed model were also verified by comparing with various types of test results including internally and externally post-tensioned members, a wide range of reinforcement ratios and different loading patterns. The comparison showed that the proposed model very accurately estimated both the flexural behavior and strength for these members. Particularly, the proposed model well reflected the effect of various loading patterns, and also provided good estimation on the flexural behavior of excessively reinforced members that could often occur during reinforcing work.

A tension stiffening model for analysis of RC flexural members under service load

  • Patel, K.A.;Chaudhary, Sandeep;Nagpal, A.K.
    • Computers and Concrete
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    • 제17권1호
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    • pp.29-51
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    • 2016
  • Tension-stiffening is the contribution of concrete between the cracks to carry tensile stresses after cracking in Reinforced Concrete (RC) members. In this paper, a tension-stiffening model has been proposed for computationally efficient nonlinear analysis of RC flexural members subjected to service load. The proposed model has been embedded in a typical cracked span length beam element. The element is visualized to consist of at the most five zones (cracked or uncracked). Closed form expressions for flexibility and stiffness coefficients and end displacements have been obtained for the cracked span length beam element. Further, for use in everyday design, a hybrid analytical-numerical procedure has been developed for nonlinear analysis of RC flexural members using the proposed tension-stiffening model. The procedure yields deflections as well as redistributed bending moments. The proposed model (and developed procedure) has been validated by the comparison with experimental results reported elsewhere and also by comparison with the Finite Element Method (FEM) results. The procedure would lead to drastic reduction in computational time in case of large RC structures.

반복하중을 받는 철근콘크리트 휨부재의 비선형해석 (Nonlinear Analysis of Reinforced Concrete Flexural Members under Cyclic Loading)

  • 변근주;김영진
    • 콘크리트학회지
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    • 제3권3호
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    • pp.149-157
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    • 1991
  • 본 논문은 반복하중을 받는 철근콘크리트 휨부재를 비선형해석하기 위한 것으로서, 재료의 구성방정식도출, 비선형 프로그램의 개발 및 개발된 프로그램의 검증으로 구성되어 있다. 재료의 구성방정식도출에서 콘크리트는 직교이방성재료로 모형화하고, 철근은 탄소성모형으로 취하였다. 반복하중하에서 휨부재의 압축부 콘크리트에 이력거동과 강성감소, 인장부 콘크리트에는 균열개폐거동과 균열변형률의 개념을 도입하여 콘크리트의 구성방정식을 도출하였다. 반북하중을 받는 철근콘크리트 휨부재를 해석하기 위하여 4절점등매개요소와 트러스요소의 유한요소정식과 증분반복기법을 적용한 유한요소프로그램을 도출하고, 반복하중을 받는 과소 철근콘크리트 보에 대한 실험결과와 해석결과를 비교하여 개발된 재료모형과 해석프로그램의 타당성을 검증하였다.

Post-fire flexural behavior of functionally graded fiber-reinforced concrete containing rubber

  • Nematzadeh, Mahdi;Mousavi, Reza
    • Computers and Concrete
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    • 제27권5호
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    • pp.417-435
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    • 2021
  • The optimal distribution of steel fibers over different layers of concrete can be considered as an appropriate method in improving the structural performance and reducing the cost of fiber-reinforced concrete members. In addition, the use of waste tire rubber in concrete mixes, as one of the practical ways to address environmental problems, is highly significant. Thus, this study aimed to evaluate the flexural behavior of functionally graded steel fiber-reinforced concrete containing recycled tire crumb rubber, as a volume replacement of sand, after exposure to elevated temperatures. Little information is available in the literature regarding this subject. To achieve this goal, a set of 54 one-, two-, and three-layer concrete beam specimens with different fiber volume fractions (0, 0.25, 0.5, 1, and 1.25%), but the same overall fiber content, and different volume percentages of the waste tire rubber (0, 5, and 10%) were exposed to different temperatures (23, 300, and 600℃). Afterward, the parameters affecting the post-heating flexural performance of concrete, including flexural strength and stiffness, toughness, fracture energy, and load-deflection diagrams, along with the compressive strength and weight loss of concrete specimens, were evaluated. The results indicated that the flexural strength and stiffness of the three-layer concrete beams respectively increased by 10 and 7%, compared to the one-layer beam specimens with the same fiber content. However, the flexural performance of the two-layer beams was reduced relative to those with one layer and equal fiber content. Besides, the flexural strength, toughness, fracture energy, and stiffness were reduced by approximately 10% when a 10% of natural sand was replaced with tire rubber in the three-layer specimens compared to the corresponding beams without crumb rubber. Although the flexural properties of concrete specimens increased with increasing the temperature up to 300℃, these properties degraded significantly with elevating the temperature up to 600℃, leading to a sharp increase in the deflection at peak load.

철근콘크리트 부재의 손상량 평가 모델에 관한 연구 (Study on Damage Evaluation Model for Reinforced Concrete Members)

  • 조병민;;김태진
    • 한국지진공학회논문집
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    • 제19권2호
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    • pp.75-83
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    • 2015
  • The purpose of this study is to improve the previous damage evaluation model for RC members which is proposed by Igarashi[1] in 2010.The previous model was not confirmed by enough data of damage such as, residual crack length, width and area for exfoliation of concrete, etc. In addition, validation of the model is still insufficient. Therefore, experiment of a real-scale RC structure and experiment of RC columns using the high-strength concrete were conducted to gather the data of damage in RC members. The investigation has been conducted gathering the data not only additional experiments data but also existing data for modification of damage evaluation model. It has been investigated on changing damage in RC due to axial force ratio, shear reinforcement and shear span ratio. As a result, several problems were founded in the previous model, such as, hinge length($l_p$), spacing of flexural crack($S_{av,f}$), total width of flexural cracks regulated by maximum width of flexural crack($n_f$) and total width of shear cracks regulated by maximum width of shear crack($n_s$). New model is proposed and evaluated the damage properly.

탄소섬유쉬트로 보강된 철근콘크리트 보의 휨거동에 전단키와 U 스터립이 미치는 영향 (Effect of Shear Key and U strip on Flexural Behavior of Reinforced Concrete Beams Strengthened by CFS(Carbon Fiber Sheet))

  • 최홍식;이진용;이성태;이시우;허권
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.88-91
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    • 2004
  • It is generally known that the bonding strength of RC(Reinforced Concrete) flexural members strengthened by fiber sheet composites are sufficient and the bonding failure does not occur until the sheet failed. However, many researchers have been reported that, before the failure of the sheet, the bonding failure happens even though the bonding length is sufficient. This study was carried out to evaluate the effectiveness of shear key and U strip on flexural behavior of reinforced concrete beam structures. The ply number of CFS(Carbon Fiber Sheet), location of shear key, and existence or not of U strip were selected as the main test variables. Test results show that the behavior of a beam of which shear key is located in the nearby. of support and U strip is not existent, and having CFS of 1 ply is mostly improved.

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철근콘크리트 부재의 파괴거동에 대한 크기 효과 (Size Effect in the Fracture Behavior of Reinforced Concrete Members)

  • Kim, Dong-Baik;Kim, Woon-Hak;Paik, Shin-Won
    • 한국안전학회지
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    • 제13권4호
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    • pp.292-299
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    • 1998
  • 본 연구에서는 철근콘크리트 보의 휨 및 전단거동에 대한 크기효과를 실험적으로 연구하고 그 결과를 다른 연구와 비교했다. 주철근비는 같고 크기가 다른 부재를 하나의 시리즈로 실험을 했으며, 주요 실험변수는 주철근비와 부재의 상대높이이다. 휨 및 전단강도의 크기효과는 주철근비에 따라 유효높이가 일정하게 변하는 부재를 실험함으로써 측정했다. 본 연구의 결과를 살펴보면 철관콘크리트 보의 휨 및 전단에 대한 크기효과는 상당히 크다는 사실을 알았다. 철근콘크리트 부재의 휨 및 전단강도에 대한 예측식을 제안했으며, 실험치와 비교적 잘 일치했다. 따라서 본 연구의 결과는 철근콘크리트 구조물의 보다 정밀한 해석 및 설계에 유용할 것으로 기대된다.

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