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The Evolution of Residual Stress in Rib-Diaphragm Joints of Orthotropic Steel Decks Subjected to Thermal Cutting and Welding

机译:热切割和焊接焊接肋骨肋骨肋关节残留应力的演变

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摘要

Residual stresses change the stress ratio of fluctuating stresses, hence seriously affect the fatigue life of orthotropic steel decks (OSDs) under traffic loading. Residual stress distributions near the U rib-diaphragm joints are very complicated and need to be investigated further. In this paper, a systematic method has been proposed for calculating the residual stress field in the joint of U rib and diaphragm due to thermal cutting and welding. Firstly, a mathematical model of cutting heat sources was established to predict the temperature field. Then, a numerical elastoplastic thermomechanical model was built to predict the residual stress evolutions in a diaphragm-rib joint through the whole fabrication process involving flame cutting and welding. Moreover, the simulated temperature contours at the fusion zone and the residual stress distributions in the rib-diaphragm joint were compared and verified against the experimental ones. The numerical results showed a great agreement with the experimental ones, indicating that the heat source model can be used to accurately predict the temperature field during flame cutting. Finally, the validated numerical model was utilized to conduct parametrical analyses on the effects of thermal processing rates, e.g., the cutting and welding speeds and on the residual stress distribution in the rib-diaphragm joint. The results indicate that a faster cutting speed and a slower welding speed can decrease the residual stress magnitude at the rib-diaphragm joints and reduce the high-stress zone near the diaphragm cutouts.
机译:残余应力改变波动应力的应力比,从而严重影响交通负荷下的正交钢甲板(OSDs)的疲劳寿命。 U Rib-膜片关节附近的残余应力分布非常复杂,需要进一步研究。本文已经提出了一种用于计算U肋和隔膜接头的残余应力场的系统方法,由于热切割和焊接。首先,建立了切割热源的数学模型以预测温度场。然后,建立了数值弹塑性热机械模型,以通过涉及火焰切割和焊接的整个制造过程预测隔膜肋骨接头中的残余应力演进。此外,比较了融合区的模拟温度轮廓和肋腔肋关节中的残余应力分布并验证了实验组。数值结果表明,与实验结果非常吻合,表明热源模型可用于精确地预测火焰切割期间的温度场。最后,利用验证的数值模型对热处理速率,例如切割和焊接速度的影响以及肋膜关节中的残余应力分布进行参数分析。结果表明,更快的切割速度和较慢的焊接速度可以降低肋条膜片关节的残余应力幅度,并减少隔膜切口附近的高应力区。

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