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    Vehicle-Induced Dynamic Performance of FRP versus Concrete Slab Bridge

    Source: Journal of Bridge Engineering:;2006:;Volume ( 011 ):;issue: 004
    Author:
    Yin Zhang
    ,
    C. S. Cai
    ,
    Xiaomin Shi
    ,
    Cheng Wang
    DOI: 10.1061/(ASCE)1084-0702(2006)11:4(410)
    Publisher: American Society of Civil Engineers
    Abstract: In the United States alone, about 30% of the bridges are classified as structurally deficient or functionally obsolete. To alleviate this problem, a great deal of work is being conducted to develop versatile, fully composite bridge systems using fiber-reinforced polymers (FRPs). To reduce the self-weight and also achieve the necessary stiffness, FRP bridge decks often employ hollow sandwich configurations, which may make the dynamic characteristics of FRP bridges significantly different from those of conventional concrete and steel bridges. Due to the geometric complexity of the FRP sandwich panels, dynamic analyses of FRP bridges are very overwhelming and rarely reported. The present study develops an analysis procedure for the vehicle-bridge interaction based on a three-dimensional vehicle-bridge coupled model. The vehicle is idealized as a combination of rigid bodies connected by a series of springs and dampers. A slab FRP bridge, the No-Name Creek Bridge in Kansas, is first modeled using the finite-element method to predict its modal characteristics, then the bridge and vehicle systems are integrated into a vehicle-bridge system based on the deformation compatibility. The bridge response is obtained in the time domain by using an iterative procedure employed at each time step, considering the deck surface roughness as a vertical excitation to the vehicle. The bridge dynamic response and the calculated impact factors are compared between the FRP slab bridge and a corresponding concrete slab bridge. Finally, the applicability of AASHTO impact factors to FRP bridges is discussed.
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      Vehicle-Induced Dynamic Performance of FRP versus Concrete Slab Bridge

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    contributor authorYin Zhang
    contributor authorC. S. Cai
    contributor authorXiaomin Shi
    contributor authorCheng Wang
    date accessioned2017-05-08T21:25:30Z
    date available2017-05-08T21:25:30Z
    date copyrightJuly 2006
    date issued2006
    identifier other%28asce%291084-0702%282006%2911%3A4%28410%29.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/50935
    description abstractIn the United States alone, about 30% of the bridges are classified as structurally deficient or functionally obsolete. To alleviate this problem, a great deal of work is being conducted to develop versatile, fully composite bridge systems using fiber-reinforced polymers (FRPs). To reduce the self-weight and also achieve the necessary stiffness, FRP bridge decks often employ hollow sandwich configurations, which may make the dynamic characteristics of FRP bridges significantly different from those of conventional concrete and steel bridges. Due to the geometric complexity of the FRP sandwich panels, dynamic analyses of FRP bridges are very overwhelming and rarely reported. The present study develops an analysis procedure for the vehicle-bridge interaction based on a three-dimensional vehicle-bridge coupled model. The vehicle is idealized as a combination of rigid bodies connected by a series of springs and dampers. A slab FRP bridge, the No-Name Creek Bridge in Kansas, is first modeled using the finite-element method to predict its modal characteristics, then the bridge and vehicle systems are integrated into a vehicle-bridge system based on the deformation compatibility. The bridge response is obtained in the time domain by using an iterative procedure employed at each time step, considering the deck surface roughness as a vertical excitation to the vehicle. The bridge dynamic response and the calculated impact factors are compared between the FRP slab bridge and a corresponding concrete slab bridge. Finally, the applicability of AASHTO impact factors to FRP bridges is discussed.
    publisherAmerican Society of Civil Engineers
    titleVehicle-Induced Dynamic Performance of FRP versus Concrete Slab Bridge
    typeJournal Paper
    journal volume11
    journal issue4
    journal titleJournal of Bridge Engineering
    identifier doi10.1061/(ASCE)1084-0702(2006)11:4(410)
    treeJournal of Bridge Engineering:;2006:;Volume ( 011 ):;issue: 004
    contenttypeFulltext
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