钢桥面板—纵肋双面焊缝疲劳裂纹应力强度因子
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U448.36

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国家自然科学基金(51908068);湖南省自然科学基金(2018JJ3540)


Fatigue crack stress intensity factor of double-sided welded rib-to-deck joints in steel bridge deck
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    摘要:

    双面焊有望改善顶板—纵肋焊接构造细节的疲劳抗力,而初始焊接缺陷是影响该类构造细节疲劳性能的关键因素。基于断裂力学理论,采用FRANC3D-ABAQUS交互技术建立了含初始裂纹的钢桥面板多尺度有限元模型,研究顶板—纵肋连接焊缝疲劳裂纹应力强度因子。分析了焊缝熔透率、顶板厚度、初始裂纹形状比等对双面焊缝疲劳裂纹应力强度因子的影响规律。结果表明:钢桥面板—纵肋连接焊缝细节处疲劳裂纹为Ⅰ型主导的Ⅰ-Ⅱ-Ⅲ复合型疲劳裂纹;双面焊缝顶板焊根处疲劳裂纹应力强度因子最大值比单面焊缝小64.3%,改善了顶板—纵肋焊缝的疲劳性能;焊缝熔透率对顶板—纵肋双面焊接细节疲劳裂纹应力强度因子影响较小;加厚顶板显著降低了顶板—纵肋双面焊接细节疲劳裂纹应力强度因子;随着初始裂纹形状比增大,裂纹应力强度因子减小。

    Abstract:

    Double-sided welding is expected to improve the fatigue resistance of rib-to-deck welded joints, and the initial welding defect is the key factor affecting the fatigue performance of these joints. A multi-scale finite element (FE) model of steel bridge decks with initial cracks was established by combining FRANC3D-ABAQUS based on the fracture mechanics theory. The stress intensity factor of fatigue crack in the rib-to-deck welded joints was studied. The influences of weld penetration rate, thickness of deck plate and initial crack shape ratio on the stress intensity factor were analyzed. The results showed that the fatigue cracks in rib-to-deck welded joints details are mixed mode cracks of sequenced Ⅰ-Ⅱ-Ⅲ. The maximum stress intensity factor of fatigue crack of rib-to-deck double-sided welded root was 64.3% lower than that of single-sided weld, which can effectively improve the fatigue performance. The weld penetration rate has marginal effect on the stress intensity factor of fatigue crack in the rib-to-deck double-sided welded joints. Thickening the deck can effectively reduce the stress intensity factor of the fatigue crack in the rib-to-deck double-sided welded joints. With increase of the initial crack shape ratio, the crack stress intensity factor decreases.

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张亚海,郭宝圣,张卫国,陈方怀.钢桥面板—纵肋双面焊缝疲劳裂纹应力强度因子[J].土木与环境工程学报(中英文),2022,44(3):62-70. ZHANG Yahai, GUO Baosheng, ZHANG Weiguo, CHEN Fanghuai. Fatigue crack stress intensity factor of double-sided welded rib-to-deck joints in steel bridge deck[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2022,44(3):62-70.10.11835/j. issn.2096-6717.2021.052

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  • 收稿日期:2020-10-16
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  • 在线发布日期: 2022-02-16
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