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Fatigue Performance of Rib-to-deck Joint in Orthotropic Steel Bridge Deck with New Type of Both-Side Fillet Welded Joints

机译:新型双侧角焊缝在正交异性钢桥面板中肋对甲板节点的疲劳性能

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The key fatigue failure modes of rib-to-deck welded joints in orthotropic steel bridge deck (OSD) are fatigue cracks that initiate from toe and root and propagate toward the deck plate. To enhance the fatigue durability of rib-to-deck welded joints, an innovative rib-to-deck joint in OSD with both-side fillet welded joints was proposed. Fatigue performance of the proposed detail was evaluated by the effective notch stress approach, which was compared with the fatigue performance of conventional single-side welding with partial penetration weld detail. The stress range of different penetration rates of both-side fillet welded joints was discussed by finite-element method. The analytical results indicate that both-side fillet welded joints can reduce the maximum effective notch stress amplitude of the weld root and improve the fatigue resistance of rib-to-deck welded joints significantly. Compared with single-side welded joints initiating from weld root, the dominant fatigue failure mode of both-side welded joints is the crack initiating from the weld toe and propagating to deck plate. The results of parametric study indicate the fatigue resistance of novel rib-to-deck welded joints was not distinctly improved by increasing weld penetration ratio.
机译:正交异性钢桥面板(OSD)中肋骨到甲板焊接接头的关键疲劳破坏模式是从脚趾和根部开始并向甲板传播的疲劳裂纹。为了提高肋骨到甲板的焊接接头的疲劳耐久性,提出了一种在OSD中带有双面角焊缝的创新的肋骨到甲板的焊接接头。通过有效的缺口应力方法评估了所提议零件的疲劳性能,并将其与具有部分熔透焊缝细节的传统单面焊接的疲劳性能进行了比较。采用有限元方法对两侧角焊缝不同熔深率的应力范围进行了讨论。分析结果表明,双面角焊缝可以减小焊缝根部的最大有效缺口应力幅度,并显着提高肋骨到甲板焊缝的抗疲劳性。与从焊缝根部开始的单面焊接接头相比,两面焊接接头的主要疲劳破坏模式是裂纹从焊趾开始并扩展到甲板。参数研究的结果表明,新型的肋骨-甲板焊接接头的抗疲劳性并未通过增加焊接熔深比而得到明显改善。

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