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IDENTIFYING AND SIZING AXIAL SEAM WELD FLAWS IN ERW PIPE SEAMS AND SCC IN THE PIPE BODY USING ULTRASONIC IMAGING

机译:超声成像识别和定尺寸ERW管道轴向缝隙和管体中的SCC

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A significant portion of the global energy pipeline infrastructure is constructed with pipe materials manufactured using the Electric Resistance Weld (ERW) process. The longitudinal seam of these ERW pipelines may contain manufacturing flaws and anomalies that can grow over time through pressure cycle fatigue and result in a pipeline integrity failure. These flaws/anomalies can be present in both vintage pipe (generally pre-1970) manufactured using a low frequency ERW process and more modern pipe that is manufactured using a high frequency ERW process. ERW seam anomalies are challenging to detect, discriminate, and size with current In-Line Inspection and In-Ditch NDE inspection technologies, which is driving the industry to better understand current inspection industry performance and to develop new technologies for ERW seam anomaly inspection. Ultrasonic (UT) imaging using inverse wave field extrapolation (IWEX) is an emerging NDE technique that is being applied to improve discrimination and sizing of anomalies in pipelines. This paper will describe the IWEX development, the challenges related to seam weld integrity and assessment and SCC assessment, and results from studies to evaluate performance. Ultrasonic imaging is also compared to the current state-of-the-art techniques such as ultrasonic phased array (PA). A goal of the project is to produce images capable of discriminating cold welds, surface breaking hook cracks, non-surface breaking upturned fiber indications, poor trim, offset plate edges, and anomalies with fatigue cracking. The goal is to size all of the cracks in a SCC colony and produce a three-dimensional map of the area. In mapping these anomalies the sizing needs to be sufficiently accurate to qualify in-line inspection tools used for crack inspection.
机译:全球能源管道基础设施的很大一部分是通过使用电阻焊(ERW)工艺制造的管道材料建造的。这些ERW管道的纵向接缝可能包含制造缺陷和异常现象,这些缺陷和异常现象会随着时间的推移而随着压力循环疲劳而增长,并导致管道完整性失效。这些缺陷/异常可能同时存在于使用低频ERW工艺制造的老式管道(通常为1970年前)和使用高频ERW工艺制造的更现代的管道中。使用当前的在线检查和沟内NDE检查技术,ERW焊缝异常很难检测,区分和确定尺寸,这正推动着行业更好地了解当前检查行业的性能并开发用于ERW焊缝异常检查的新技术。使用逆波场外推法(IWEX)的超声(UT)成像是一种新兴的NDE技术,已被用于改善对管道中异常现象的辨别力和尺寸。本文将描述IWEX的发展,与接缝焊缝完整性和评估以及SCC评估有关的挑战,以及评估性能的研究结果。还将超声成像与当前的最新技术(例如超声相控阵(PA))进行比较。该项目的目标是产生能够区分冷焊缝,表面断裂的钩裂纹,非表面断裂的上翘纤维痕迹,修整不良,板边缘偏移以及疲劳裂纹异常的图像。目的是确定SCC菌落中所有裂缝的大小,并生成该区域的三维地图。在绘制这些异常时,尺寸调整必须足够准确,以使用于裂纹检测的在线检测工具合格。

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