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Experimental verification of long-range microwave pipe inspection using straight pipes with lengths of 19-26.5 m

机译:使用长度为19-26.5 m的直管进行远距离微波管检查的实验验证

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摘要

This study demonstrated the applicability of a nondestructive microwave testing method for the long-range inspection of pipe inner surfaces. Experimental verifications were conducted using pipes with lengths of 19–26.5 m, inner diameters of 11, 19, or 39 mm, and made of either brass or austenitic stainless steel. Microwaves were emitted from a probe attached to one of the pipe ends, and the reflections due to full circumferential wall thinning 50 mm in length and 1 mm in depth situated at various distances from the end were measured. The frequency range and the probe characteristics were decided so that microwaves propagating only in TM01mode affect signals. After signal processing to compensate for microwave dispersion, the measured signals showed clear reflections caused by wall thinning situated 23.5 m from the pipe end at which microwaves were emitted. This study also discussed the attenuation of microwave reflection with the distance between a probe and wall thinning. The experimental results agreed well with a theoretical model describing the attenuation of microwave propagating inside a pipe, although the model did not consider the reflection of microwaves due to a flaw, the dependence of the reflection on the frequency of microwaves, or mode conversion of the microwave due to the reflection. The agreement revealed that not only frequency but also the inner diameter, electromagnetic property, and surface roughness of a pipe are needed to evaluate the length of the pipe that can be inspected by the method.
机译:这项研究证明了无损微波测试方法在管道内表面的远程检查中的适用性。使用长度为19–26.5µm,内径为11、19或39µmm的,由黄铜或奥氏体不锈钢制成的管进行了实验验证。微波从安装在管道末端之一上的探针发出,并测量了由于整个圆周壁变薄而导致的反射,该壁在距离末端不同距离处的长度分别为50mm和1mm。确定频率范围和探头特性,以便仅在TM01模式下传播的微波会影响信号。经过信号处理以补偿微波散射后,测得的信号显示出清晰的反射,该反射是由距发射微波的管道末端23.5μm处的壁变薄引起的。这项研究还讨论了随着探头与壁变薄之间的距离,微波反射的衰减。实验结果与描述管道内微波传播衰减的理论模型非常吻合,尽管该模型并未考虑由于缺陷引起的微波反射,反射对微波频率的依赖性或微波的模式转换。微波由于反射。该协议表明,不仅需要频率,而且还需要管道的内径,电磁性能和表面粗糙度,以评估可以通过该方法检查的管道的长度。

著录项

  • 来源
    《NDT & E international》 |2018年第6期|47-57|共11页
  • 作者单位

    Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku University;

    Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku University;

    Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku University;

    Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electromagnetic nondestructive testing; Wall thinning; Time of flight; Signal processing;

    机译:电磁无损检测;壁变薄;飞行时间;信号处理;

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