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首页> 外文期刊>Latin American Journal of Solids and Structures >Fatigue analysis and life prediction of composite highway bridge decks under traffic loading
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Fatigue analysis and life prediction of composite highway bridge decks under traffic loading

机译:交通荷载下复合公路桥梁桥面疲劳分析与寿命预测

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Steel and composite (steel-concrete) highway bridges are currently subjected to dynamic actions of variable magnitude due to convoy of vehicles crossing on the deck pavement. These dynamic actions can generate the nucleation of fractures or even their propagation on the bridge deck structure. Proper consideration of all of the aspects mentioned pointed our team to develop an analysis methodology with emphasis to evaluate the stresses through a dynamic analysis of highway bridge decks including the action of vehicles. The design codes recommend the application of the curves S-N associated to the Miner's damage rule to evaluate the fatigue and service life of steel and composite (steel-concrete) bridges. In this work, the developed computational model adopted the usual mesh refinement techniques present in finite element method simulations implemented in the ANSYS program. The investigated highway bridge is constituted by four longitudinal composite girders and a concrete deck, spanning 40.0m by 13.5m. The analysis methodology and procedures presented in the design codes were applied to evaluate the fatigue of the bridge determining the service life of the structure. The main conclusions of this investigation focused on alerting structural engineers to the possible distortions, associated to the steel and composite bridge's service life when subjected to vehicle's dynamic actions.
机译:钢和复合(钢-混凝土)公路桥梁由于车辆在甲板上人行横道而行驶,目前受到不同程度的动力作用。这些动态作用会产生裂缝的形核,甚至在桥面板结构上传播。适当考虑上述所有方面,我们的团队将开发一种分析方法,重点是通过对公路桥梁桥面(包括车辆的作用)进行动态分析来评估应力。设计规范建议应用与Miner破坏规则相关的曲线S-N来评估钢桥和复合桥(钢-混凝土)的疲劳度和使用寿命。在这项工作中,开发的计算模型采用了ANSYS程序中实施的有限元方法仿真中常用的网格细化技术。被调查的公路桥梁由四个纵向复合大梁和一个混凝土面板组成,跨度为40.0m x 13.5m。设计规范中介绍的分析方法和程序用于评估桥梁的疲劳程度,从而确定结构的使用寿命。这项研究的主要结论集中在提醒结构工程师注意可能发生的变形,这种变形与钢和复合材料桥梁在承受车辆动态作用时的使用寿命有关。

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