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Fatigue cracks in railway bridge hangers due to wind induced vibrations - Failure analysis, measures and remaining service life estimation

机译:因风振引起的铁路桥架疲劳裂纹-失效分析,措施和剩余使用寿命估算

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Unexpected wind-induced vibrations of the hangers have caused an early fatigue crack on specific steel components and joints of a railway bridge over the Elbe River at Lutherstadt Wittenberg, Germany. During regular periodic inspection a fatigue crack of approximately 240 mm length was found near a butt weld of the longest hanger. The hanger was I immediately secured by welded butt straps across the crack. Based on experimental inves-tigations of hanger vibrations additional bracings were added between the hangers to avoid wind-induced vibrations. The weld heat influence zone which was affected by high cyclic stresses was replaced by new material.Nevertheless it was impossible to determine sufficient remaining service life for those remaining bridge components that were exposed to extreme high real load cycles. The grinding of the affected steel surfaces was the key element of the remedial actions. Furthermore, additional fracture mechanic calculations were carried out in order to assess the remaining service life of the welded joints. In this respect, the calculation approach used by Deutsche Bahn AG was compared to further procedures from the mechanical engineering field. These investigations showed that the studied, repaired components have both, bearing and fatigue capacities within the validity of standards.
机译:衣架的意外风致振动已导致德国Lutherstadt Wittenberg易北河上的铁路桥梁的特定钢构件和接头的早期疲劳裂纹。在定期的定期检查中,在最长的吊架的对接焊缝附近发现了大约240毫米长的疲劳裂纹。我立即用焊接的对接皮带将衣架固定在裂缝上。根据吊架振动的实验研究,在吊架之间增加了额外的支撑,以避免风引起的振动。受高循环应力影响的焊缝热影响区被新材料代替,但无法确定那些承受极高实际载荷循环的桥梁零件的剩余使用寿命。对受影响的钢表面进行打磨是补救措施的关键。此外,还进行了额外的断裂力学计算,以评估焊接接头的剩余使用寿命。在这方面,将德意志铁路公司使用的计算方法与机械工程领域的其他程序进行了比较。这些研究表明,所研究,维修的组件在标准的有效范围内既具有承载能力,又具有疲劳能力。

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