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Application of Flexible PAUT Probe for Weld Inspection of Piping Elbows

机译:柔性PAUT探针在管道弯头焊缝检查中的应用

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Nondestructive testing (NDT), which is applied to the manufacturing/installation of power generation facilities andpreventive maintenance, is one of the key element technologies that are essential for "safety and quality assurance" asdiagnosis and maintenance technology. Radiography testing (RT) is the main testing method; however, ultrasonic testing(UT) is applied together with RT in most cases. This significantly impacts process delays and economic losses.Therefore, in the industrial field, the introduction and utilization of phased array UT (PAUT) have been aggressivelydemanded as a new nondestructive volumetric examination technology that can reduce the dependency on RT andpossibly replace it.PAUT not only makes it easier to test specimens with complex shapes that are difficult to test with conventional UT, butit also enables high-speed testing because it can electronically control the scanning of the ultrasonic beam. However, inthe case of applying PAUT to the testing of a weld zone with a curved shape, such as a piping elbow weld zone, it is noteasy to secure the objective and achieve reliable test data because contact with the probe is difficult.Therefore, in this study, flexible PAUT probe was developed that was capable of testing piping elbow weld zones, andits effectiveness was verified by comparing it with the use of a wedge, which is normally used for the testing of pipeswith curved structures. Welding specimens were fabricated (including natural defects) in accordance with ASMEstandards, and artificial notches were machined. The possibility of overcoming the application limit of the current PAUTtechnology and further improving the reliability of the inspection results were confirmed through signal acquisition andan analysis according to the probe contact position (elbow or pipe surface).
机译:非破坏性测试(NDT),应用于发电设施的制造/安装预防性维护是关键元素技术之一,对于“安全和质量保证”至关重要诊断和维护技术。射线照相测试(RT)是主要的测试方法;但是,超声波测试(UT)在大多数情况下与室温一起应用。这显着影响过程延误和经济损失。因此,在工业领域,分阶段阵列UT(PAUT)的引入和利用是积极的要求作为一种新的非破坏性体积检查技术,可以减少对RT的依赖性和可能更换它。PAUT不仅可以更容易测试具有复杂形状的标本,难以使用传统的UT测试,但是它还可以实现高速测试,因为它可以电子方式控制超声波束的扫描。但是,在将PAUT施加到具有弯曲形状的焊接区域的测试的情况,例如管道弯头焊接区域,它不是易于保护目标并实现可靠的测试数据,因为与探头接触很难。因此,在本研究中,开发了灵活的PAUT探针,该探针能够测试管道弯头焊接区,以及通过将其使用楔子与楔子进行比较来验证其有效性,该楔通常用于测试管道的测试弯曲结构。根据ASME制造焊接样品(包括自然缺陷)标准和人工缺口机械加工。克服当前PAUT的应用限制的可能性技术和进一步提高检查结果的可靠性通过信号采集确认根据探头接触位置(弯头或管道)的分析。

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