不同直径P235TR1缝钢管的显微组织、硬度和抗断裂性能

Walid Musrati, B. Medjo, I. Cvijović-Alagić, N. Gubeljak, Primož Štefane, Z. Radosavljevic, M. Rakin
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引用次数: 0

摘要

工业工厂中的钢管由不同的部件组成,包括无缝和/或焊接(接缝)管。焊管的性能,包括其断裂行为,取决于母材和焊缝金属的特性。在本工作中,假设两根缝管直径不同,材质为P235TR1钢。对含焊缝的试样进行硬度和显微组织检测,以了解非均质性对试样的影响。通过对新近提出的带尖锐应力集中器的管环缺口弯曲试样的实验检验,确定了管道材料(即贱金属和接缝)的抗断裂性能。通过裂纹扩展阻力曲线的比较,确定了两种测试管道的差异,包括焊接接头引起的非均质性的影响。讨论了初始应力集中器形状、尖锐的加工缺口或疲劳预裂纹的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microstructure, hardness and fracture resistance of P235TR1 seam steel pipes of different diameters
Steel pipelines in industrial plants consist of different elements, including seamless and/or welded (seam) pipes. Properties of welded pipes, including their fracture behaviour, depend on the characteristics of both, the base metal, and the weld metal. In this work, two seam pipes are considered having different diameters and manufactured of P235TR1 steel. Hardness and microstructure were examined on the samples which contained the seam zone, to capture the influence of heterogeneity. Fracture resistance of the pipeline material, i.e. of both base metals and both seams, was determined by experimental examination of the recently proposed Pipe ring notch bending specimens with sharp stress concentrators. Differences between the two tested pipes, including the influence of the heterogeneity caused by the welded joint, were determined by comparison of the crack growth resistance curves. Effects of the initial stress concentrator shape, sharp machined notch or fatigue pre-crack are discussed.
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