首页> 外文期刊>Journal of bridge engineering >Fatigue Performance of Roof and U-Rib Weld of Orthotropic Steel Bridge Deck with Different Penetration Rates
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Fatigue Performance of Roof and U-Rib Weld of Orthotropic Steel Bridge Deck with Different Penetration Rates

机译:不同渗透率的正交异性钢桥面板屋盖和U型肋焊接疲劳性能

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Forty specimens were tested under different stress amplitudes to study the roof and U-rib weld fatigue performances of orthotropic steel bridge decks, considering different penetration rates and thicknesses. Nominal and hot-spot stresses were measured. The crack propagation and microstructure were analyzed, and the cracked sections were cut out to observe the metallographic means. On the basis of test results, the fatigue life and strength were investigated. In addition, crack-propagation processes and stress-intensity factors were analyzed by the finite-element method (FEM). The results reveal that an increased penetration rate can decrease the crack-propagation rate and enhance fatigue life. An increase in deck thickness can cause a more obvious improvement in slowing the rate of crack propagation and the fatigue life under high-stress amplitudes. A lower penetration rate resulted in a larger decrease in bearing capacity after cracking, especially in a thicker deck. The increased penetration rate contributed to a decrease in the local stress-intensity factor but had little effect on crack angle and path. The fatigue strengths of nominal and hot-spot stress methods were suggested to be 70 and 75MPa, respectively. (C) 2017 American Society of Civil Engineers.
机译:考虑到不同的穿透率和厚度,在不同的应力振幅下测试了40个试样,以研究正交异性钢桥面板的屋顶和U型肋焊接疲劳性能。测量了名义应力和热点应力。分析了裂纹的扩展和显微组织,切开了裂纹的截面,观察了金相。根据测试结果,研究了疲劳寿命和强度。此外,通过有限元方法(FEM)分析了裂纹扩展过程和应力强度因子。结果表明,增加的渗透速率可以降低裂纹扩展速率并延长疲劳寿命。在高应力振幅下,甲板厚度的增加会导致裂纹扩展速率和疲劳寿命的更明显改善。较低的渗透率会导致开裂后承载力的较大下降,尤其是在较厚的甲板上。渗透率的增加有助于减小局部应力强度因子,但对裂纹角度和路径影响很小。建议的名义应力和热点应力方法的疲劳强度分别为70和75MPa。 (C)2017年美国土木工程师学会。

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