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首页> 外文期刊>International journal of structural integrity >Fatigue assessment of a high-speed railway composite steel-concrete bridge by the hot-spot stress method
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Fatigue assessment of a high-speed railway composite steel-concrete bridge by the hot-spot stress method

机译:基于热点应力法的高速铁路钢混混凝土桥梁疲劳评估

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Purpose - The purpose of this paper is to investigate the fatigue performance of a welded detail from a composite steel-concrete railway twin girder bridge caused by a passenger train circulating at varying speeds, by identifying the dynamic amplification scenarios induced by resonance. For this purpose, the hotspot stress method is used, instead of the traditional nominal stress methods. Design/methodology/approach - This paper assesses the fatigue behavior of a welded connection considering critical stress concentration locations (hotspot). Finite element analysis (FEA) is applied, utilizing both a global and a local submodel, made compatible by displacements field interpolation. The dynamic response is obtained through the modal superposition method. Stress cycles are extracted with the rainflow counting method and the fatigue damage is calculated with Palmgren-Miner's rule. The feasibility of five submodels with different mesh densities, i.e. 1,2,4,8 and 20 mm is verified. Findings - An increase in the fatigue damage due to the resonance effect was found for the train traveling at a speed of 225 km/h. A good agreement between the computed fatigue damage for the submodels is achieved. However, a non-monotonic hotspot stress/fatigue damage vs mesh density convergence was observed with a peak observed for the 4 mm model, which endorses the mesh sensitivity that could occur when using the surface stress extrapolation detailed rules specified in the standards for the hotspot stress method. Originality/value - Advanced dynamic analyses are proposed to obtain local stresses in order to apply a local method for the fatigue assessment of a bridge's structure subjected to high-speed railway traffic on the basis of the mode superposition technique resulting in much less computing times.
机译:目的-本文的目的是通过确定共振引起的动态放大情况,研究由旅客列车以不同速度循环引起的钢-混凝土复合铁路双梁桥焊接细节的疲劳性能。为此,使用热点应力法代替了传统的名义应力法。设计/方法/方法-本文根据临界应力集中位置(热点)评估焊接连接的疲劳性能。应用有限元分析(FEA),利用全局子模型和局部子模型,并通过位移场插值使之兼容。动态响应是通过模态叠加法获得的。用雨流计数法提取应力循环,并用Palmgren-Miner规则计算疲劳损伤。验证了五个具有不同网格密度(即1,2,4,8和20 mm)的子模型的可行性。研究发现-以225 km / h的速度行驶的火车,由于共振效应而导致的疲劳损伤增加。在计算出的子模型疲劳损伤之间实现了良好的一致性。但是,观察到非单调热点应力/疲劳损伤与网格密度会聚,在4 mm模型中观察到一个峰值,这证明了使用热点标准中指定的表面应力外推详细规则时可能发生的网格敏感性压力法。原创性/价值-提出了高级动态分析来获取局部应力,以便基于模式叠加技术将局部方法用于高速铁路交通桥梁结构的疲劳评估,从而减少计算时间。

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