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Fatigue Damage Accumulation of Welded Bridge Member during Crack Growth Propagation with Initial Crack

机译:用初始裂纹裂纹桥梁构件疲劳损伤累积

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The crack growth behavior and the fatigue life of welded members with initial crack in bridges under traffic loading were investigated. Based on existed fatigue experiment results of welded members with initial crack and the fatigue experiment result of welded bridge member under constant stress cycle, the crack keeps semi-elliptical shape with variable ratio of a/c during crack propagation. The calculated method of the stress intensity factor necessary for welded bridge member crack propagation was discussed. The crack remained semi-elliptical shape with variable ratio of a/c during crack propagation. The fatigue crack propagation law suitable for welded steel bridge member fatigue crack propagation analysis was deduced based on the continuum damage mechanics and fracture mechanics. The proposed fatigue crack growth model was then applied to calculate the crack growth and the fatigue life of existed welded member with fatigue experimental result. The calculated and measured fatigue life was generally in good agreement, at suitable initial conditions of cracking, for welded member widely used in steel bridges.
机译:研究了交通负荷下桥梁初始裂缝的裂纹生长行为和焊接构件的疲劳寿命。基于焊接构件的初始裂纹存在疲劳实验结果,焊接桥构件在恒定应力循环下的疲劳实验结果,裂缝在裂纹繁殖期间保持半椭圆形状,可变比A / C。讨论了焊接桥构件裂纹传播所需的应力强度因子的计算方法。在裂纹繁殖期间,裂缝仍然具有A / C可变比率的半椭圆形。基于连续损伤力学和骨折力学推导出适用于焊接钢桥梁构件疲劳裂纹传播分析的疲劳裂纹繁殖法。然后应用所提出的疲劳裂纹生长模型以计算疲劳实验结果存在焊接构件的裂纹生长和疲劳寿命。计算和测量的疲劳寿命通常在钢结构广泛应用于焊接构件的合适初始条件下良好的一致性。

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