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SIZING STRESS CORROSION CRACKING USING LASER ULTRASONICS

机译:使用激光超声波施加应力腐蚀裂纹

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Managing Stress Corrosion Cracking (SCC) damaged pipe has been a formidable challenge to the pipeline industry. Development of a practical solution for measurement and evaluation of SCC has been marred by the complexity of crack shapes, their distribution within a crack colony, and the lack of non-destructive technology capable of reliably measuring the crack depths. Laser Ultrasonics is an inspection technology wherein lasers are used for generation and detection of ultrasonic waves in the pipeline steel to be inspected. Unlike conventional ultrasonic testing, Laser Ultrasonics has a large frequency bandwidth and a tiny (~0.5mm) footprint. These characteristics make it ideally suited for application as a depth sizing tool for closely-spaced cracks in a colony. It has been conclusively proved that laser ultrasonic inspection using the time of flight diffraction (TOFD) technique can reliably and accurately measure the depth of naturally occurring SCC and potentially other cracks and seam weld anomalies. This presentation describes the results of this co-sponsored project, including recent full scale demonstrations where a laser ultrasonic measurement subsystem has been built onto a prototype scanner.
机译:管理压力腐蚀开裂(SCC)受损管道对管道行业来说是一个强大的挑战。开发SCC的测量和评估的实际解决方案已经受到裂缝形状的复杂性的影响,它们在裂缝群体内的分布,以及能够可靠地测量裂纹深度的非破坏性技术。激光超声波是一种检查技术,其中激光器用于产生和检测待检查管道钢中的超声波。与传统的超声波测试不同,激光超声波具有大的频率带宽和微小(〜0.5mm)的占地面积。这些特性使其理想地适用于应用作为深度尺寸的工具,用于殖民地中的紧密间隔裂缝。已经得出结论,使用飞行衍射时间(TOFD)技术的激光超声检查可以可靠地精确地测量天然存在的SCC和潜在的其他裂缝和接缝焊缝异常的深度。本演示文稿描述了本协助项目的结果,包括最近的全规模示范,其中激光超声测量子系统已经建立在原型扫描仪上。

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