• 제목/요약/키워드: long-span steel bridge decks

검색결과 12건 처리시간 0.02초

KL-510 하중을 적용한 장지간 바닥판의 설계휨모멘트에 관한 연구 (A Study on the Design Bending Moments of Long Span Decks with KL-510 Load)

  • 정철헌;이한주;주상훈;안호현
    • 대한토목학회논문집
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    • 제36권3호
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    • pp.375-384
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    • 2016
  • 현행, 도로교설계기준에서는 교량바닥판에 대해 지간이 짧은 다거더 플레이트 거더교 위주의 규정을 두고 있으며, 강합성 소수 거더교에 적용되는 장지간 바닥판에 대한 설계규정은 명확하게 없는 실정이다. 이는 소수 거더교의 장지간 바닥판에 적용하기에는 한계가 있으므로 합리적인 설계를 위해서는 관련 규정을 보완할 필요가 있다. 따라서, 본 연구에서는 내측부 교량바닥판의 지간 6.0~12.0m 범위를 대상으로 도로교설계기준의 KL-510 하중을 적용하여 교축방향(종방향)과 교축직각방향(횡방향)에 대한 설계휨모멘트를 제안하였다. 설계휨모멘트는 바닥판의 직교 이방성, 거더의 강성, 그리고 다차로재하계수의 영향이 반영되었으며, 이를 기존의 DB-24 하중에 대한 설계휨모멘트와 비교하였다.

장경간 강바닥판 교량용 에폭시 아스팔트 혼합물의 적용성 평가 (An Evaluation of Epoxy Asphalt Mixtures for Long-Span Steel Bridge Deck)

  • 백유진;박창우;김낙석
    • 대한토목학회논문집
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    • 제32권6D호
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    • pp.579-586
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    • 2012
  • 본 연구의 목적은 장경간 강바닥판 교량의 교면포장 재료로서 에폭시 아스팔트 혼합물을 평가하고, 현장에 적용하는 것에 있다. 에폭시 아스팔트 혼합물의 국내 적용을 위한 골재입도를 제시하였고, 실내 공용성 실험을 수행한 결과 내구성능 면에서 매우 우수함을 알 수 있었다. 또한, 온도에 따른 회복탄성계수와 전단부착강도 시험결과를 활용하여 구조해석을 실시 후 전단응력 검토결과 전단부착강도의 9%로도 충분한 접착 성능을 확보할 수 있는 것으로 나타났다. 에폭시 아스팔트 교면 포장에 발생하는 인장응력의 경우 중국에 시공되어 검증된 난징대교 실내시험결과와 비교 시 유사하거나 작은 값을 나타내어 충분한 공용 성능을 확보할 수 있는 것으로 나타났다. 결과적으로 에폭시 아스팔트 혼합물은 일반 아스팔트에 비해 매우 우수한 내구성능을 확보할 수 있는 것으로 나타났다. 하지만 현장에서 장경간 강바닥판 교량의 교면포장 재료로서 에폭시 아스팔트 혼합물을 적용할 경우 온도와 양생기간에 따른 강도발현에 차이가 있을 수 있으므로 현장 적용 시, 생산 시료로 제작한 혼합물에 대한 평가가 이루어져야 한다.

PSC 바닥판의 정적거동특성에 관한 연구 (A Study on the Static Behavior of PSC Bridge Decks)

  • 주봉철;김영진;이정우;김병석;박성용;이필구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2002년도 봄 학술발표회 논문집
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    • pp.519-524
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    • 2002
  • The long span PSC deck of composite girder bridge should be needed in order to improve the endurance and to simplify the structure of the steel bridge. However, there have been few domestic research activities about long-span PSC decks for the steel bridges with a small number of girders. In this study, a literature survey is performed to develop a new deck system for the steel bridge with a small number of girders. By considering the characteristics of a small number of girders bridge system, a cast-in-place long span PSC deck is proposed for a small number of girders bridges. To examine structural behavior and safety of the proposed PSC deck, the real scale partial models of the deck(12m$\times$3.2m) are tested under the static loading. In the test, the failure mode and behavior of each specimen, and ultimate load carrying capacity of the proposed PSC deck are identified.

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Evaluation of typhoon induced fatigue damage using health monitoring data for the Tsing Ma Bridge

  • Chan, Tommy H.T.;Li, Z.X.;Ko, J.M.
    • Structural Engineering and Mechanics
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    • 제17권5호
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    • pp.655-670
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    • 2004
  • This paper aims to evaluate the effect of typhoons on fatigue damage accumulation in steel decks of long-span suspension bridges. The strain-time histories at critical locations of deck sections of long-span bridges during different typhoons passing the bridge area are investigated by using on-line strain data acquired from the structural health monitoring system installed on the bridge. The fatigue damage models based on Miner's Law and Continuum Damage Mechanics (CDM) are applied to calculate the increment of fatigue damage due to the action of a typhoon. Accumulated fatigue damage during the typhoon is also calculated and compared between Miner's Law and the CDM method. It is found that for the Tsing Ma Bridge case, the stress spectrum generated by a typhoon is significantly different than that generated by normal traffic and its histogram shapes can be described approximately as a Rayleigh distribution. The influence of typhoon loading on accumulative fatigue damage is more significant than that due to normal traffic loading. The increment of fatigue damage generated by hourly stress spectrum for the maximum typhoon loading may be much greater than those for normal traffic loading. It is, therefore, concluded that it is necessary to evaluate typhoon induced fatigue damage for the purpose of accurately evaluating accumulative fatigue damage for long-span bridges located within typhoon prone regions.

Experimental and numerical study on shear studs connecting steel girder and precast concrete deck

  • Xia, Ye;Chen, Limu;Ma, Haiying;Su, Dan
    • Structural Engineering and Mechanics
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    • 제71권4호
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    • pp.433-444
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    • 2019
  • Shear studs are often used to connect steel girders and concrete deck to form a composite bridge system. The application of precast concrete deck to steel-concrete composite bridges can improve the strength of decks and reduce the shrinkage and creep effect on the long-term behavior of structures. How to ensure the connection between steel girders and concrete deck directly influences the composite behavior between steel girder and precast concrete deck as well as the behavior of the structure system. Compared with traditional multi-I girder systems, a twin-I girder composite bridge system is more simplified but may lead to additional requirements on the shear studs connecting steel girders and decks due to the larger girder spacing. Up to date, only very limited quantity of researches has been conducted regarding the behavior of shear studs on twin-I girder bridge systems. One convenient way for steel composite bridge system is to cast concrete deck in place with shear studs uniformly-distributed along the span direction. For steel composite bridge system using precast concrete deck, voids are included in the precast concrete deck segments, and they are casted with cast-in-place concrete after the concrete segments are erected. In this paper, several sets of push-out tests are conducted, which are used to investigate the heavier of shear studs within the voids in the precast concrete deck. The test data are analyzed and compared with those from finite element models. A simplified shear stud model is proposed using a beam element instead of solid elements. It is used in the finite element model analyses of the twin-I girder composite bridge system to relieve the computational efforts of the shear studs. Additionally, a parametric study is developed to find the effects of void size, void spacing, and shear stud diameter and spacing. Finally, the recommendations are given for the design of precast deck using void for twin I-girder bridge systems.

강바닥판교의 종리브-횡리브 교차연결부의 피로균열 개선방안 연구 (Study for the Improvement of Fatigue Crack on Intersection of Longitudinal- Transversal Rib in Orthotropic Steel Deck Bridge)

  • 공병승;윤성운
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2004년도 춘계학술대회 논문집
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    • pp.1084-1089
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    • 2004
  • Recently, Orthotropic steel deck bridges, which have long span decks, have been regarded as one of economical as well as durable bridge types. However, Orthotropic steel deck bridge is used by a lot of welding, which may cause welding defect and deformation of connections. This kind of system happens some damages by the fatigue cracks of welding. The cross-connection of longitudinal rib and transversal rib is one of the weakest point because of the fatigue. The secondary stresses which are from the out-plane deformation of transversal rib and the torsion of longitudinal rib make the topical stress concentration phenomenon. But, it is principle that a Bulkhead Plate is not established in the domestic design standard. Therefore, it is estimated that a study for the installing of Bulkhead Plate is needed. This study with considering these circumstances proves efficiency of Bulkhead Plate and will be presented optimal design details through finite element analysis according to change the geometrical system of Bulkhead Plate and the cross-connection area of longitudinal and transversal rib

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Recommended properties of elastic wearing surfaces on orthotrotropic steel decks

  • Fettahoglu, Abdullah
    • Steel and Composite Structures
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    • 제18권2호
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    • pp.357-374
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    • 2015
  • Orthotropic decks composed of deck plate, ribs, cross beams and wearing surface are frequently used in industry to span long distances due to their light structures and load carrying capacities. As a result they are broadly preferred in industry and there are a lot of bridges of this type exist in the world. Nevertheless, some of them cannot sustain the anticipated service life and damages in form of cracks develop in steel components and wearing surface. Main reason to these damages is seen as the repetitive wheel loads, namely the fatigue loading. Solutions to this problem could be divided into two categories: qualitative and quantitative. Qualitative solutions may be new design methodologies or innovative materials, whereas quantitative solution should be arranging dimensions of deck structure in order to resist wheel loads till the end of service life. Wearing surface on deck plate plays a very important role to avoid or mitigate these damages, since it disperses the load coming on deck structure and increases the bending stiffness of deck plate by forming a composite structure together with it. In this study the effect of Elastic moduli, Poisson ratio and thickness of wearing surface on the stresses emerged in steel deck and wearing surface itself is investigated using a FE-model developed to analyze orthotropic steel bridges.

2거더 연속강합성 교량의 프리캐스트 바닥판 종방향 프리스트레스 설계 (Design of longitudinal prestress of precast decks in twin-girder continuous composite bridges)

  • 심창수;김현호;하태열;전승민
    • 한국강구조학회 논문집
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    • 제18권5호
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    • pp.633-642
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    • 2006
  • 연속 강합성 교량에 종방향 프리스트레스를 도입해야 하는 프리캐스트 바닥판을 적용하기 위해서는 균열제어를 위한 사용성 설계가 이루어져야 한다. 특히, 2거더 교량의 경우에는 장지간 바닥판의 설계에서 요구되는 주철근 및 횡방향 프리스트레스와 합성설계를 위해 요구되는 전단포켓의 존재로 인해서 상세가 복잡해지게 된다. 이 논문에서는 2거더 연속강합성 교량의 프리캐스트 바닥판 채용을 위해서 필요한 유효 프리스트레스 크기의 산정과 상세의 단순화를 이루기 위해서 부착강도를 인정할 수 있는 채움재료의 선정 및 그 기준을 제시하였다. 또한, 장기거동에 대한 평가 방안을 제시하고 그 결과로부터 초기 프리스트레스의 크기 결정을 수행하여 기존의 설계의 개선 정도를 평가하였다. 일정 수준이상의 부착강도를 갖는 채움재료를 부모멘트가 크게 발생하는 영역에 사용하면 연속 강합성 교량의 전구간에 걸쳐서 일정한 종방향 프리스트레스 도입이 가능하고 이로 인해 상세의 단순화 및 경제성을 높일 수 있다.

LRFD에 의한 강상판형교의 시스템 최적설계 (System Optimization of Orthotropic Steel-Deck Bridges by Load and Resistance Factor Design)

  • 조효남;민대홍;김현우
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1998년도 봄 학술발표회 논문집
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    • pp.262-271
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    • 1998
  • Recent, more and more steel deck bridges are adopted for the design of long span bridges and the upgrading of existing concrete deck bridges, mainly because of reduced self weight, higher stiffness and efficient erection compared to concrete decks. The main objective of this study is to propose on formulation of the design optimizations to develop an optimal desist program required for optimum desist for orthotropic steel-deck bridges. The objective function of the optimization is formulated as a minimum initial cost design problem. The behavior and design constraints are formulated based on the ASD and LRFD criteria of the Korean Bridge Design Code(1996). The optimum design program developed in this study consists of two steps. In the first step the system optimization of the steel box girder bridges is carried out. And in the second step the program provided the optimum design of the orthotropic steel-deck with close ribs. In the optimal design program the analysis module for the deck optimization is based on the Pelican Esslinger method. The optimizer module of the program utilizes the ADS(Automated Desist Synthesis) routines using the optimization techniques fuor constrained optimization. From the results of real application examples, The cost effectiveness of optimum orthotropic steel-deck bridges designs based on both ASD and LRFD methods is investigated by comparing the results with those of conventional designs, and it may be concluded that the design developed in this study seems efficient and robust for the optimization of orthotropic steel-deck bridges

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Analysis of composite girders with hybrid GFRP hat-shape sections and concrete slab

  • Alizadeh, Elham;Dehestani, Mehdi
    • Structural Engineering and Mechanics
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    • 제54권6호
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    • pp.1135-1152
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    • 2015
  • Most of current bridge decks are made of reinforced concrete and often deteriorate at a relatively rapid rate in operational environments. The quick deterioration of the deck often impacts other critical components of the bridge. Another disadvantage of the concrete deck is its high weight in long-span bridges. Therefore, it is essential to examine new materials and innovative designs using hybrid system consisting conventional materials such as concrete and steel with FRP plates which is also known as composite deck. Since these decks are relatively new, so it would be useful to evaluate their performances in more details. The present study is dedicated to Hat-Shape composite girder with concrete slab. The structural performance of girder was evaluated with nonlinear finite element method by using ABAQUS and numerical results have been compared with experimental results of other researches. After ensuring the validity of numerical modeling of composite deck, parametric studies have been conducted; such as investigating the effects of constituent properties by changing the compressive strength of concrete slab and Elasticity modulus of GFRP materials. The efficacy of the GFRP box girders has been studied by changing GFRP material to steel and aluminum. In addition, the effect of Cross-Sectional Configuration has been evaluated. It was found that the behavior of this type of composite girders can be studied with numerical methods without carrying out costly experiments. The material properties can be modified to improve ultimate load capacity of the composite girder. strength-to-weight ratio of the girder increased by changing the GFRP material to aluminum and ultimate load capacity enhanced by deformation of composite girder cross-section.