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Fracture Characteristics Analysis of Pressured Pipeline with Crack Using Boundary Element Method

机译:含裂纹的压力管道断裂特征的边界元分析

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Metal materials can inevitably show deteriorated properties by the factors of stress, temperature, and environmental erosion in distinct operating environments. Without proper protection, the service life would be shortened or even deadly danger would be caused. This study aims to apply Finite Element Method and Boundary Element Method to analyzing the effects of corroded petrochemical pipes on the fatigue life and the fracture form. The research results of nondestructive testing and software analyses show that cracked oil pipes with uniform corrosion bear larger stress, mainly internal pressure, on the longitudinal direction than the circumferential direction. As a result, the maximal fatigue loading cycle of a circumferential crack is higher than that of a longitudinal one. From the growing length and depth of a crack, the final aspect ratio of crack growth appears in 2.42–3.37 and 2.71–3.42 on the circumferential and longitudinal direction, respectively. Meanwhile, the ratios of loading cycles of circumferential and longitudinal crack are 26.23 on uncorroded and 20.54 on general metal loss oil pipe. The complete crack growth and the correspondent fatigue loading cycle could be acquired to determine the service life of the oil pipe being operated as well as the successive recovery time.
机译:在不同的操作环境中,金属材料不可避免地会受到应力,温度和环境侵蚀等因素的影响而导致性能下降。没有适当的保护,使用寿命会缩短,甚至会造成致命的危险。本研究旨在运用有限元法和边界元法分析腐蚀的石油化工管道对疲劳寿命和断裂形态的影响。无损检测和软件分析的研究结果表明,具有均匀腐蚀作用的破裂油管在纵向上比圆周方向承受更大的应力,主要是内部压力。结果,圆周裂纹的最大疲劳载荷循环高于纵向裂纹的最大疲劳载荷循环。从裂纹的扩展长度和深度来看,裂纹扩展的最终长宽比分别在圆周方向和纵向方向上分别为2.42–3.37和2.71–3.42。同时,周向和纵向裂纹的载荷循环比在未腐蚀的情况下为26.23,在一般的金属损耗油管中为20.54。可以获取完整的裂纹扩展和相应的疲劳载荷循环,从而确定所操作的油管的使用寿命以及相继的恢复时间。

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