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Influence of themo-mechanical treatments and microstructural state on the fatigue behaviour of a weald seam: case of API X60 steel

机译:主题机械处理的影响和微观结构状态对WEALD接缝的疲劳行为:API X60钢的情况

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The aim of this work is the study of the fatigue behaviour of API X60 steel and the influence of thermal and mechanical treatments. The evaluation of the integrity and safety of welded structures dictates the approach taken in this research. The microstructural observations on the different zones of the weld seam indicates that the variation of heterogeneous structure is a progressive destruction of the strips of lamination which cause a new phase leading to a drop in the mechanical properties requiring treatment after welding. The fatigue cracking rate diverges beyond the threshold of DK, but no deviation of the crack from its propagation axis was noticed, which confirms the correct choice of filler metal over that of the base metal with an overmatching M = 1.1, and the treatments applied to the structure. This fatigue cracking rate transversal to the welding direction initially presents an aspect similar to that of BM but registers a delay as soon as the crack tip enters the second zone (HAZ) then it progresses rapidly. This evolution is characterized by a disturbance due to the repeated change of microstructure.
机译:这项工作的目的是研究API X60钢的疲劳行为以及热和机械处理的影响。对焊接结构的完整性和安全性的评价决定了本研究中采取的方法。焊缝的不同区域的微观结构观察表明异构结构的变化是层压条的逐渐破坏,这导致新阶段导致在焊接后需要处理的机械性能下降。疲劳裂缝率超出了DK的阈值,但是没有注意到裂缝的裂缝的偏差被识别,这证实了在基础金属的填充金属的正确选择,具有备m = 1.1,并且适用于施用的处理结构。这种疲劳裂解速率横向于焊接方向最初呈现与BM类似的方面,而是一旦裂缝尖端进入第二区域(HAZ),就会迅速进行延迟。这种进化的特征在于由于微结构的重复变化导致的扰动。

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