• 제목/요약/키워드: end-reinforced steel-beam

검색결과 77건 처리시간 0.034초

Structural Response of Reinforced Concrete Beams Strengthened with CERP Rod

  • Moon Do-Young;Sim Jong-Sung;Oh Hong-Seob
    • 콘크리트학회논문집
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    • 제17권6호
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    • pp.1085-1090
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    • 2005
  • Rod-type fiber reinforced polymer plastics(FRPs) similar to reinforcing steel bars have rarely been considered. In this study, an experiment was performed using beams strengthened with rod-type CFRPs and high-strength mortar overlay. The test results show that the strengthened beams not only had improved endurance limits but also improved load carrying capacities, stiffness values, and cracking loads as compared to a non-strengthened beam. Strengthened beams anchored with bolts throughout their entire span had more efficient structural behaviors, including composite behavior on the interface between the concrete and mortar, and load carrying capacity, than a strengthened beam anchored only on the end block.

Composite Strips with Various Anchor Systems for Retrofitting Concrete Beams

  • Yoshitake, Isamu;Yumikura, Keiyu;Mimura, Yoichi;Kim, Yail-J.
    • International Journal of Concrete Structures and Materials
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    • 제5권1호
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    • pp.43-48
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    • 2011
  • This paper presents the performance of anchor systems for reinforced concrete beams retrofitted with carbon fiber reinforced polymer (CFRP) strips. Nine simply-supported beams are tested with various anchor systems such as steel hooks, steel plates with anchor bolts, CFRP anchor plates, and near-surface mounted (NSM) CFRP strip. The effects of these anchors on the behavior of the retrofitted beams are discussed, including load-carrying capacity, failure modes, and ductility characteristics. Test results indicate that end-anchorage is an important parameter when a CFRP-retrofit design is conducted. Mechanical bolts and NSM CRFP anchors are recommended.

피로하중을 받는 강섬유보강콘크리트의 인장변형에 관한 연구 (Tensile Strain of Steel Fiber Reinforced Concrete under Fatigue Load)

  • 장동일;채원규;박철우;민인기
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1992년도 가을 학술발표회 논문집
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    • pp.82-87
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    • 1992
  • In this thesis, the fatigue tests were performed on a series of SFRC (steel fiber reinforced concrete)to investigate the flexural tensile behavior of SFRC varying with the steel fiber contents and the steel fiber aspect ratios. Beam specimens of 10$\times$10$\times$60cm are used. the specimen series are classified according to the steel fiber contents varying 0.5. 1.0, 1.5%, and to the steel fiber aspect ratios varying 60, 80, 100. The three point loading system was used in the fatigue tests. The minimum value of repeated loading was fixed at 10.0kgf and maximum value was 75% to static ultimate strength for periodically using concrete strain gages located at the lower end of the mid-span, and the stress-strain curves were drawn for each specimens, respectively. From the tests result, it was found that the larger steel fiber content and the smaller the steel fiber aspect ratio is , the tensile strain of SFRC under fatigue load proportionally increases. By the regression analysis on these results, the empirical formulae to predict the tensile strain of SFRC were suggested. In comparison of the tensile elastic modulus under fatigue load, it was also found that the larger steel fiber content and the smaller steel fiber aspect ratio is , the smaller decreasing rate of the stiffness of SFRC under fatigue load decreased.

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MINLP optimization of a composite I beam floor system

  • Zula, Tomaz;Kravanja, Stojan;Klansek, Uros
    • Steel and Composite Structures
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    • 제22권5호
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    • pp.1163-1192
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    • 2016
  • This paper presents the cost optimization of a composite I beam floor system, designed to be made from a reinforced concrete slab and steel I sections. The optimization was performed by the mixed-integer non-linear programming (MINLP) approach. For this purpose, a number of different optimization models were developed that enable different design possibilities such as welded or standard steel I sections, plastic or elastic cross-section resistances, and different positions of the neutral axes. An accurate economic objective function of the self-manufacturing costs was developed and subjected to design, resistance and deflection (in)equality constraints. Dimensioning constraints were defined in accordance with Eurocode 4. The Modified Outer-Approximation/Equality-Relaxation (OA/ER) algorithm was applied together with a two-phase MINLP strategy. A numerical example of the optimization of a composite I beam floor system, as presented at the end of this paper, demonstrates the applicability of the proposed approach. The optimal result includes the minimal produced costs of the structure, the optimal concrete and steel strengths, and dimensions.

Thermal buckling analysis of functionally graded carbon nanotube-reinforced composite sandwich beams

  • Ebrahimi, Farzad;Farazmandnia, Navid
    • Steel and Composite Structures
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    • 제27권2호
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    • pp.149-159
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    • 2018
  • Thermo-mechanical buckling of sandwich beams with a stiff core and face sheets made of functionally graded carbon nanotube-reinforced composite (FG-CNTRC) within the framework of Timoshenko beam theory is presented. The material properties of FG-CNTRC are supposed to vary continuously in the thickness direction and are estimated through the rule of mixture. Also the properties of these materials should be considered temperature dependent. The governing equations and boundary conditions are derived by using Hamilton's principle and solved using an efficient technique called the Differential Transform Method (DTM) to achieve the critical buckling of the sandwich beam in uniform thermal environment. A detailed parametric study is guided to investigate the effects of carbon nanotube volume fraction, slenderness ratio, core-to-face sheet thickness ratio, and clamped-clamped, simply-simply and clamped-simply end supports on the critical buckling behavior of sandwich beams with FG-CNTRC face sheets. Numerical results for comparison of sandwich beams with uniformly distributed carbon nanotube-reinforced composite (UD-CNTRC) face sheets with those with FG-CNTRC face sheets are also presented.

Investigating the effect of edge crack on the modal properties of composite wing using dynamic stiffness matrix

  • Torabi, Ali Reza;Shams, Shahrokh;Fatehi-Narab, Mahdi
    • Steel and Composite Structures
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    • 제39권5호
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    • pp.543-564
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    • 2021
  • In this study free vibration analysis of a cracked Goland composite wing is investigated. The wing is modelled as a cantilevered beam based on Euler- Bernoulli equations. Also, composite material is modelled based on lamina fiber-reinforced. Edge crack is modelled by additional boundary conditions and local flexibility matrix in crack location, Castigliano's theorem and energy release rate formulation. Governing differential equations are extracted by Hamilton's principle. Using the separation of variables method, general solution in the normalized form for bending and torsion deflection is achieved then expressions for the cross-sectional rotation, the bending moment, the shear force and the torsional moment for the cantilevered beam are obtained. The cracked beam is modelled by separation of beam into two interconnected intact beams. Free vibration analysis of the beam is performed by applying boundary conditions at the fixed end, the free end, continuity conditions in the crack location of the beam and dynamic stiffness matrix determinant. Also, the effects of various parameters such as length and location of crack and fiber angle on natural frequencies and mode shapes are studied. Modal analysis results illustrate that natural frequencies and mode shapes are affected by depth and location of edge crack and coupling parameter.

Behavior of simple precast high-strength concrete beams connected in the maximum bending moment zone using steel extended endplate connections

  • Magdy I. Salama;Jong Wan Hu;Ahmed Almaadawy;Ahmed Hamoda;Basem O. Rageh;Galal Elsamak
    • Steel and Composite Structures
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    • 제50권6호
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    • pp.627-641
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    • 2024
  • This paper presents an experimental and numerical study to investigate the behavior of the precast segmental concrete beams (PSCBs) utilizing high-strength concrete (HSC) connected in the zone of the maximum bending moment using steel extended endplate connections (EECs). The experimental study consisted of five beams as follows: The first beam was the control beam for comparison, which was an unconnected one-piece beam made of HSC. The other four other beams consisted of two identical pieces of precast concrete. An important point to be noted is that at the end of each piece, a steel plate was used with a thickness of 10 mm. Moreover, this steel plate was welded to the lower and upper reinforcing bars of the beam. Furthermore, the steel plate was made to connect the two pieces using the technique of EECs. Several variables were taken in these four beams, whether from the shape of the connection or enhancing the behavior of the connection using the post-tensioning technique. EECs without stiffeners were used for some of the tested beams. The behavior of these connections was improved using stiffeners and shear bolts. To get accurate results, a comparison was made between the behaviors of the five beams. Another important point to be noted is that Abaqus and SAP2000 programs were used to investigate the behavior of PSCBs and to ensure the accuracy of the modeling process which showed a good agreement with the experimental results. Additionally, the simplified modeling using SAP2000 was able to model the nonlinear behavior of PSCBs connected using steel EECs. It was found that the steel pre-tensioned bolted EECs, reinforced with steel stiffeners and shear anchors, could be used to connect the precast HSC segmental beams via the internal pre-stressing technique.

Ductility of carbon fiber-reinforced polymer (CFRP) strengthened reinforced concrete beams: Experimental investigation

  • Kim, Sang Hun;Aboutaha, Riyad S.
    • Steel and Composite Structures
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    • 제4권5호
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    • pp.333-353
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    • 2004
  • Strength of reinforced concrete beams can easily be increased by the use of externally bonded CFRP composites. However, the mode of failure of CFRP strengthened beam is usually brittle due to tension-shear failure in the concrete substrate or bond failure near the CFRP-Concrete interface. In order to improve the ductility of CFRP strengthened concrete beams, critical variables need to be investigated. This experimental and analytical research focused on a series of reinforced concrete beams strengthened with CFRP composites to enhance the flexural capacity and ductility. The main variables were the amount of CFRP composites, the amount of longitudinal and shear reinforcement, and the effect of CFRP end diagonal anchorage system. Sixteen full-scale beams were investigated. A new design guideline was proposed according to the effects of the above-mentioned variables. The experimental and analytical results were found to be in good agreement.

강섬유 혼입률에 따른 고강도 콘크리트의 휨 크리프 특성 (Effets of Steel Fiber Contents on Flexural Creep Behavior of High-Strength Concrete)

  • 임성훈;김동휘;윤현도
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권2호
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    • pp.111-118
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    • 2020
  • 이 논문에서는 섬유의 혼입량에 따른 휨부재의 장기거동에 대한 영향을 평가하기 위하여 후크형 강섬유로 보강된 고강도 콘크리트의 휨 크리프 거동에 대한 평가가 이루어졌다. 실험은 150 × 150 × 600mm 크기를 갖는 섬유 혼입량(0, 0.75 및 1.5%)을 변수로 하는 6개의 휨 시험체를 대상으로 하였다. 노치를 갖는 휨 시험체에 휨 크리프 하중을 도입하기 위하여 4점 가력 휨 시험장치가 활용되었다. 휨강도의 40%인 크리프 재하하중은 레버 장치를 활용하여 도입되었고 90일 동안 도입된 하중은 로드셀에 의해 제어되었다. 크리프 하중의 도입시, 시험체 중앙부에 설치된 노치의 균열개구변위(CMOD)가 측정되었다. 크리프 시험후 각 시험체 대한 휨시험을 실시하여 각 시험체의 잔여강도를 평가하였다. 이상과 같은 실험결과로부터 섬유 혼입량은 고강도 콘크리트의 휨 크리프 거동에 주요한 영향을 끼치고 휨강도의 40% 범위내의 지속하중은 섬유보강된 고강도 콘크리트의 잔여강도에 부정적인 영향을 끼치지 않았다.

엔드플레이트 항복형 보-기둥 접합부의 구조특성에 관한 실험적 연구 (An Experimental Study on Structural Characteristics of Beam-to-Column Connections with Plastic Deformation in the End-Plate)

  • 이성희;이세정;양일승;김진호;최성모
    • 한국강구조학회 논문집
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    • 제21권6호
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    • pp.585-596
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    • 2009
  • 엔드플레이트 접합부는 보의 단부에 엔드플레이트를 공장 용접하여 현장에서 볼트로 체결하는 접합법이다. 이 접합부는 유럽, 미국 등 선진국에서 일반적으로 이용되는 접합부로서 Eurocode 3, AISC LRFD, FEMA 350등에서 그 설계법과 접합상세를 제시하고 있다. 우리나라는 최근 미국의 IBC 2000을 근간으로 KBC 2005의 내진설계 기준을 강화하였고, 향후 제정될 보-기둥 접합부의 설계 기준도 미국의 접합상세가 도입될 것으로 예상된다. 미국의 엔드플레이트 접합상세는 보 파괴형을 유도하기 위하여 두꺼운 엔드플레이트를 사용하기 때문에 국내 적용은 사실상 과다설계의 문제점이 있다. 따라서 본 연구에서는 국내 실정에 적합한 End-Plate 접합부를 제시하기 위하여 미국의 FEMA-350에서 제시하고 있는 End-Plate 접합부 설계기준을 분석하여 엔드플레이트 항복형의 유도와 Shim Plate 유무에 따른 접합부 거동, 접합부의 형상에 따른 거동을 변수로 총 6개의 실험체를 제작하여 구조실험을 수행하고 내진성능을 평가하였다.