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X-RAY DIFFRACTION STUDY OF MICROSTRUCTURAL CHANGES DURING FATIGUE DAMAGE IN STEEL PIPELINES

机译:钢管道疲劳损伤过程中微观结构变化的X射线衍射研究

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Steel pipes used for oil and gas exploitation undergo the action of cyclic loads that can cause their failure by fatigue. A consistent evaluation of the fatigue behavior should take into account the micromechanisms of fatigue damage initiation, which precede macroscopic cracking and macrocrack propagation. In this work, microstructural changes in terms of variations in microdeformations and residual stresses (macrostresses) are evaluated by X-ray diffraction in real time during alternating bending fatigue tests performed on samples taken from an API 5L X60 grade steel pipe. Three stages of microstructural changes are detected. It is found that their amplitudes and durations are proportional to the level of alternating stress applied. Changes in density and distribution of dislocations are observed by transmission electron microscopy combined with the technique of focused ion beam. To understand the role of the initial dislocation structure, fatigue tests on annealed samples are performed under the same test conditions. Again, three stages of changes are observed, but with an increase in microdeformations during the first stage instead of a decrease as found for as-machined samples, suggesting the influence of the initial state of the dislocation network. The results obtained are very encouraging for the consideration of microstructural evolutions in the development of an indicator of fatigue damage initiation in steel pipes.
机译:石油和天然气开采所用的钢管承受周期性载荷的作用,可能会因疲劳而导致其失效。对疲劳行为的一致评估应考虑在宏观裂纹和宏观裂纹扩展之前引起疲劳破坏的微观机制。在这项工作中,在对从API 5L X60级钢管获取的样品进行交替弯曲疲劳试验期间,通过X射线衍射实时评估了微观变形和残余应力(宏观应力)变化的微观结构变化。检测到三个阶段的微结构变化。发现它们的振幅和持续时间与所施加的交替应力水平成正比。通过透射电子显微镜结合聚焦离子束技术观察到位错的密度和分布的变化。为了了解初始位错结构的作用,在相同的测试条件下对退火样品进行了疲劳测试。再次,观察到三个阶段的变化,但是在第一阶段中微变形增加,而不是如机械加工的样品那样减少,表明位错网络的初始状态的影响。考虑到微观结构的演变,在钢管疲劳损伤引发指标的发展中,获得的结果令人鼓舞。

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