• 제목/요약/키워드: bending-carrying capacity

검색결과 113건 처리시간 0.019초

Cracking and bending strength evaluations of steel-concrete double composite girder under negative bending action

  • Xu, Chen;Zhang, Boyu;Liu, Siwei;Su, Qingtian
    • Steel and Composite Structures
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    • 제35권3호
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    • pp.371-384
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    • 2020
  • The steel-concrete double composite girder in the negative flexural region combines an additional concrete slab to the steel bottom flange to prevent the local steel buckling, however, the additional concrete slab may lower down the neutral axis of the composite section, which is a sensitive factor to the tensile stress restraint on the concrete deck. This is actually of great importance to the structural rationality and durability, but has not been investigated in detail yet. In this case, a series of 5.5 m-long composite girder specimens were tested by negative bending, among which the bottom slab configuration and the longitudinal reinforcement ratio in the concrete deck were the parameters. Furthermore, an analytical study concerning about the influence of bottom concrete slab thickness on the cracking and sectional bending-carrying capacity were carried out. The test results showed that the additional concrete at the bottom improved the composite sectional bending stiffness and bending-carrying capacity, whereas its effect on the concrete crack distribution was not obvious. According to the analytical study, the additional concrete slab at the bottom with an equivalent thickness to the concrete deck slab may provide the best contributions to the improvements of crack initiation bending moment and the sectional bending-carrying capacity. This can be applied for the design practice.

Bending Behavior of Nailed-Jointed Cross-Laminated Timber Loaded Perpendicular to Plane

  • Pang, Sung-Jun;Kim, Kwang-Mo;Park, Sun-Hyang;Lee, Sang-Joon
    • Journal of the Korean Wood Science and Technology
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    • 제45권6호
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    • pp.728-736
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    • 2017
  • In this study, the bending behavior of cross-laminated timber (CLT) connected by nails were investigated. Especially, the load-carrying capacity of the nail-jointed CLT under out-of-plane bending was predicted by the lateral resistance of the used nails. Three-layer nail-jointed CLT specimens and a nail connection were manufactured by 30 mm (thickness) ${\times}$ 100 mm (width) domestic species (Pinus koraiensis) laminas and Ø$3.15{\times}82mm$ nails using a nail-gun. Shear test for evaluating the nail lateral resistance and bending test for evaluating the load-carrying capacity of the nail-jointed CLT under out-of-plane bending were carried out. As a result, two lateral resistance of the used nail, the 5% fastener offset value and the maximum value, were 913 N and 1,534 N, respectively. The predicted load-carrying capacity of the nail-jointed CLT by the 5% offset nail lateral resistance was similar to the yield points on the actual load-displacement curve of the nail-jointed CLT specimens. Meanwhile, the nail-jointed CLT specimens were not failed until the tension failure of the bottom laminas occurred beyond the maximum lateral resistance of the nails. Thus, the measured maximum load carrying capacities of the nail-jointed CLT specimens, approximately 12,865 N, were higher than the predicted values, 7,986 N, by the maximum nail lateral resistance. This indicates that the predicted load-carrying capacity can be used for designing a structural unit such as floor, wall and roof able to support vertical loads in a viewpoint of predicting the actual capacities more safely.

선박접안시험을 통한 자켓식 돌핀부두의 내하력 평가 방법 연구 (Assessment of Safety and Load Carrying Capacity of Aged Jacket-Typed Dolphin by Ship-Impact Test)

  • 조병완;권오혁
    • 한국해양공학회지
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    • 제12권3호통권29호
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    • pp.9-18
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    • 1998
  • An improved evaluation method of load-carrying capacity for the large-scaled offshore structures, which subjected to the axial force and bending moments simultaneously at the piles, was suggested with reliability analysis and advanced working stress method. Reliability analysis requires the fracture probability and safety factor(${beta}$) for each of forces and the load-carrying capacity due to combined action of axial force and bending moments from $P_n - {beta}$ Curve. The combined equation due to those forces, which suggested by the Korean Specification for the marine structure, was derived for the advanced working stress method and applied to evaluate the load-carrying capacity of jacket-type dolphin piers.

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FRP Rods로 보강한 콘크리트 보의 전단 내하력의 평가 (Estimation of Shear Carrying Capacity on Concrete Beams, Reinforced with FRP Rods)

  • 최익창;연준희;고재용
    • 한국해양공학회지
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    • 제18권1호
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    • pp.63-68
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    • 2004
  • The purpose of this study is to estimate the contribution of concrete and shear reinforcement, in shear carrying capacity, on concrete beams, reinforced with steel and/or FRP rods. The experimental tests for 12 concrete beams, reinforced with steel and/or FRP rods, are carried out. Experimental parameters includes the mechanical properties of reinforcements in shear and bending, and the ratio of shear reinforcement. This study compares the experimental results of shear carrying capacity in concrete beams, reinforced with steel and/or FRP rods, with the proposed equations. According to the experimental results, the effect of the concrete in concrete beams reinforced with FRP rods is decreased with decreasing Young's modulus of longitudinal tensile reinforcement. This results from the large deflection of concrete beams reinforced with decreasing Young's modulus of longitudinal tensile reinforcement. Also, the contribution of shear reinforcement is smaller than the calculated value, using the truss analogy. This results from the fact that the stress redistribution is not exhibited after the break of shear reinforcement.

초기처짐을 갖는 좌굴방정식을 이용한 교량의 내하력 평가 (Evaluation of the Load Carrying Capacity of Existing Bridges Using Buckling Equation With Initial Deflection)

  • 기완서;양승현
    • 한국산학기술학회논문지
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    • 제10권8호
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    • pp.2032-2037
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    • 2009
  • 본 논문은 공용중인 교량구조물의 내하력 평가시 획일적이고 실제 거동특성을 적극적으로 활용하지 않아 발생할 수 있는 내하력 평가의 오류에 대하여 연구하였다. 내하력의 평가시 지점의 경계조건과 같은 현재의 거동특성을 반영하기 위하여 초기 결함을 갖는 부재에 대한 좌굴방정식에 처짐을 적용시켜 산정된 축방향력과 처짐에 의해 구해진 모멘트를 고려하여 교량의 내하력을 평가하였다. 기존의 내하력 평가시에 다소 획일적으로 적용되어지는 응력보정 계수를 좌굴방정식을 통하여 각 주형에 대하여 선 반영함으로서 내하력 평가의 오류를 다소 제거하고자 하였다.

교량받침의 거동특성을 고려한 내하력 평가 (Load carrying capacity Evaluation Considering the Structural Characteristics of Bridge Bearing)

  • 박길현;양승현
    • 한국구조물진단유지관리공학회 논문집
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    • 제7권4호
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    • pp.209-216
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    • 2003
  • 교량의 내하력평가는 유지관리에 있어서 매우 중요한 요소이다. 재하시험과 구조해석에 의한 처짐이 차이를 보이는 이유는 여러 가지가 있다. 특히, 지점의 실제 거동특성을 고려하지 않고 일률적으로 모델링을 하는 경우에 이러한 문제가 더욱 심화될 수 있다. 이는 응력보정계수를 크게 산정하여 내하력을 실제보다 더 크게 평가할 우려가 있다. 본 연구에서는 지점의 거동특성을 고려하여 산정한 지점의 부모멘트를 이용하여 실제거동에 근접한 구조해석을 실시하야 보다 정확한 내하력을 평가하고자 한다.

탄성지점의 적용에 따른 교량의 내하력평가 (Load Carrying Capacity Assessment of Bridges with Elastic Supports Application)

  • 양승현
    • 한국강구조학회 논문집
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    • 제24권5호
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    • pp.595-603
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    • 2012
  • 본 연구에서는 재하시험에 의하여 얻어지는 측정데이터를 적극적으로 활용하고 다양한 방법을 통하여 내하력을 평가하기 위하여 탄성지점을 적용하였다. 스프링력에 의한 구조해석의 적정성을 확인하고 실험결과의 신뢰도를 향상시키기 위하여 내민보로 제작한 탄성빔을 대상으로 처짐시험을 실시하였으며 이를 토대로 공용중인 교량의 내하력 평가 방법의 개선을 위하여 실제 공용중인 교량에 대한 정밀안전진단을 통한 검증을 실시하였다. 휨시험 결과 기존방법에 의하여 계산된 처짐보다 탄성지점을 적용하여 구한 처짐이 실측한 처짐과 근접한 것으로 나타났다. 준공 직후 초기점검 대상인 3경간 연속 강박스형교에 대한 내하력을 평가한 결과 탄성지점에 의한 내하력이 기존의 방법에 의한 내하력보다 최대 9.7% 작게 평가되었다. 본 연구는 기존 방법에 따라 교량의 내하력을 평가할 경우 응력보정계수의 적용과 같이 지침에 명확하게 제시되지 않은 부분으로 인하여 공학자에 따라 내하력이 상이하게 평가되는 경우가 빈번하므로 이에 대한 연구가 더욱 활발해 져야 한다는 취지에서 수행하였다.

건축물의 친환경 시공·해체를 위한 재료 분리형 GLT-Steel 보 개발 (Development of a Separable Glued-Laminated Timber (GLT)-Steel Beam for Eco-Friendly Construction and Dismantling of Buildings)

  • 방성준;오정권
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.23-24
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    • 2023
  • In this study, an easily recyclable separable glued-laminated timber (GLT)-steel beam was developed, and a structural design method was presented. The GLT and steel were mechanically composited using self-tapping screws. The GLT-steel beam was designed to fail in the compression of GLT. The bending moment and load-carrying capacity of the GLT-steel beam were predicted based on composite beam theory and compared with experimental test data. As a result, the GLT-steel beam exhibited ductile behavior, and compression failure of GLT was observed. The screw connection showed no damage while the steel plate was extended. The load-carrying capacity of GLT after failure was similar to the load resistance predicted by the compressive strength of GLT and the tensile strength of steel. This indicates that the ductile behavior of the GLT-steel beam can be safely designed by the tensile strength (yield) of steel.

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Theoretical and experimental study on load-carrying capacity of combined members consisted of inner and sleeved tubes

  • Hu, Bo;Gao, Boqing;Zhan, Shulin;Zhang, Cheng
    • Structural Engineering and Mechanics
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    • 제45권1호
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    • pp.129-144
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    • 2013
  • Load-carrying capacity of combined members consisted of inner and sleeved tubes subjected to axial compression was investigated in this paper. Considering the initial bending of the inner tube and perfect elasto-plasticity material model, structural behavior of the sleeved member was analyzed by theoretic deduction, which could be divided into three states: the elastic inner tube contacts the outer sleeved tube, only the inner tube becomes plastic and both the inner and outer sleeved tubes become plastic. Curves between axial compressive loads and lateral displacements of the middle sections of the inner tubes were obtained. Then four sleeved members were analyzed through FEM, and the numerical results were consistent with the theoretic formulas. Finally, experiments of full-scale sleeved members were performed. The results obtained from the theoretical analysis were verified against experimental results. The compressive load-lateral displacement curves from the theoretical analysis and the tests are similar and well indicate the point when the inner tube contacts the sleeved tube. Load-carrying capacity of the inner tube can be improved due to the sleeved tube. This paper provides theoretical basis for application of the sleeved members in reinforcement engineering.

Rotational capacity of H-shaped steel beams under cyclic pure bending

  • Jia, Liang-Jiu;Tian, Yafeng;Zhao, Xianzhong;Tian, Siyuan
    • Steel and Composite Structures
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    • 제30권2호
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    • pp.123-140
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    • 2019
  • This paper presents experimental study on effects of width-to-thickness ratio and loading history on cyclic rotational capacity of H-shaped steel beams subjected to pure bending. Eight Class 3 and 4 H-shaped beams with large width-to-thickness ratios were tested under four different loading histories. The coupling effect of local buckling and cracking on cyclic rotational capacity of the specimens was investigated. It was found that loss of the load-carrying capacity was mainly induced by local buckling, and ductile cracking was a secondary factor. The width-to-thickness ratio plays a dominant effect on the cyclic rotational capacity, and the loading history also plays an important role. The cyclic rotational capacity can decrease significantly due to premature elasto-plastic local buckling induced by a number of preceding plastic reversals with relative small strain amplitudes. This result is mainly correlated with the decreasing tangent modulus of the structural steel under cyclic plastic loading. In addition, a theoretical approach to evaluate the cyclic rotational capacity of H-shaped beams with different width-to-thickness ratios was also proposed, which compares well with the experimental results.