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Fatigue Crack Propagation Analysis of Rib-to-deck Welded Joint in OSDs using Linear Elastic Fracture Mechanics

机译:使用线性弹性断裂力学的OSD肋对甲板焊接接头疲劳裂纹扩展分析

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The orthotropic steel decks are one of the most widely used bridge decks, especially in moveable and long span bridges. Numerous cracks have been detected in existing bridges, mainly in the welded connections. Fatigue performance of the bridge decks governs the design. The crack at the rib-to-deck joint is one of the most representative types. Strict requirements of the configuration of this joint are given in design codes resulting in classification categories based on experimental findings. Fatigue life of the crack initiation and changes of the stress conditions are usually experimentally investigated. However, prediction of the crack propagation and the effect of the cracks on the local stress fields are not possible to be fully understood based on experiments only. In this paper, finite element models are refined around the crack tip using software programs Abaqus and FRANC3D to study the crack propagation of rib-to-deck joint between crossbeams. The results is compared with beach marking tests in literature. Good agreement is found between predicted results and test data for both the crack shapes and loading cycles. The largest SIF range is predicted in the middle of the developed crack. It is then moved to the position 0.19 (relative distance, normalized by the width of the specimen) away from the crack priori to the fracture. During propagation period, structural integrity is affected by the crack and stress redistribution phenomenon is observed.
机译:正交异性钢桥面是使用最广泛的桥面之一,特别是在活动式和大跨度桥中。在现有桥梁中,主要是在焊接连接中,发现了许多裂缝。桥面板的疲劳性能决定了设计。肋骨-甲板接合处的裂纹是最具代表性的类型之一。在设计规范中对这种接头的配置提出了严格的要求,从而根据实验结果得出了分类类别。通常通过实验研究裂纹萌生的疲劳寿命和应力条件的变化。但是,仅基于实验不可能完全理解裂纹扩展的预测以及裂纹对局部应力场的影响。在本文中,使用软件程序Abaqus和FRANC3D对裂纹尖端周围的有限元模型进行了细化,以研究横梁之间肋对甲板节点的裂纹扩展。将结果与文献中的海滩标记测试进行比较。在裂纹形状和加载周期的预测结果和测试数据之间发现了很好的一致性。预计最大的SIF范围将出现在裂缝的中间。然后将其移动到远离裂纹先于裂纹的位置0.19(相对距离,通过试样的宽度归一化)。在传播期间,结构完整性受裂纹影响,并且观察到应力重新分布现象。

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