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EXPERIMENTAL EVALUATION OF FATIGUE LIFE OF COKE DRUM MATERIALS WITH WELD SECTIONS

机译:焦炭鼓料焊接部位疲劳寿命的实验评估

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Coke drums are vertical pressure vessels used in the delayed coking process in petroleum refineries. Significant temperature variation during the delayed coking process causes damage in coke drums in the form of bulging and cracking. It was also observed that most cracks were near or within the weld seams. In order to better understand fatigue damage mechanisms of the coke drum materials with their weld sections, an experimental investigation of fatigue lives of these materials are carried out. It is a common consideration that the yield strength of the weld should be within a close percentage to that of base material in order to keep strength uniformity throughout the drum shell sections. However, this effect of the yield strength matching on the shell durability has not yet clarified quantitatively. From this point of view, two different types of specimens have been designed and manufactured: base material only, base with base weld. In addition, three groups of base with weld materials with different ratios of weld to base yield strengths are prepared. Low cycle fatigue tests at elevated temperature of 250°C are carried out on the above specimens. Through study on the recorded stress-strain hysteresis loops and observation on the fracture surfaces, damage mechanisms of different types of specimens are analyzed. Their strain range -fatigue life curves are also compared. Furthermore, finite element analyses based on the actual specimens' geometries and properties are conducted to help in understanding the experimental observations. This experimental evaluation of fatigue life of coke drum materials with welds may provide a good reference for better design of coke drums in the future.
机译:焦炭塔是在炼油厂的延迟焦化过程中使用的垂直压力容器。在延迟的焦化过程中,温度的显着变化会导致鼓形鼓鼓和开裂,从而损坏焦鼓。还观察到,大多数裂纹都在焊缝附近或之内。为了更好地了解焦炭鼓材料及其焊接部位的疲劳损伤机理,对这些材料的疲劳寿命进行了实验研究。通常的考虑是,焊缝的屈服强度应与基础材料的屈服强度相近,以在整个鼓壳部分保持强度均匀。但是,屈服强度匹配对壳体耐久性的这种影响尚未定量地阐明。从这个角度来看,已经设计和制造了两种不同类型的样品:仅基础材料,带基础焊缝的基础。此外,准备了三组具有不同焊接与基层屈服强度比的焊接材料基层。在上述样品上进行了250°C高温下的低循环疲劳测试。通过对记录的应力-应变滞后回线的研究以及对断裂表面的观察,分析了不同类型试样的损伤机理。还比较了它们的应变范围-疲劳寿命曲线。此外,根据实际样品的几何形状和特性进行了有限元分析,以帮助理解实验观察结果。焦炭鼓材料焊接疲劳寿命的实验评估可以为将来焦炭鼓的更好设计提供很好的参考。

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