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Comparison of the effects of surface and uniform stresses on magnetic flux leakage patterns.

机译:比较表面应力和均匀应力对磁通泄漏模式的影响。

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摘要

Magnetic flux leakage (MFL) is a very common method of inspecting pipelines. To test the effects of stress on MFL signals in the laboratory some experiments have used bending of strips as the mechanism for stressing samples. If bending stress and uniform stress produce similar effects on MFL signals then this idea would be confirmed. However, if the response is different, then the use of bending stress would not be advisable as a method of simulating normal operating stress in pipelines.;The differences between through wall bending stress and uniform stress are examined using two separate arrangements. Test samples are long axial strips of pipeline steel cut from a section of pipe. One strip is bent as a single beam to produce bending stress or varying stress through the wall thickness while a pit machined in the pipe section was magnetized by a detector and scanned with a Hall probe. Another two strips were bonded together with a fibre-glass and wood core to produce a composite beam that was bent to produce near uniform stress in each strip. The radial flux leakage patterns over the area surrounding the defects were mapped and compared. Results showed that near uniform stress in the composite beam produced much greater MFL amplitude response with stress then the bending stress in the single beam. This refutes the idea that surface stress alone is sufficient for considering the effects of stress on MFL signal amplitudes. (Abstract shortened by UMI.)
机译:漏磁通(MFL)是检查管道的一种非常常见的方法。为了在实验室中测试压力对MFL信号的影响,一些实验已使用条带弯曲作为对样品施加压力的机制。如果弯曲应力和均匀应力对MFL信号产生相似的影响,则可以证实这一想法。但是,如果响应不同,则不建议使用弯曲应力作为模拟管道中正常工作应力的方法。通过两个单独的布置来检查贯穿壁弯曲应力和均匀应力之间的差异。测试样品是从一段钢管上切下的长条轴向钢管。一条钢带弯曲成单束,从而在壁厚上产生弯曲应力或变化的应力,同时在管段中加工出的凹坑被检测器磁化并用霍尔探头扫描。将另外两个条带与玻璃纤维和木芯粘结在一起,以产生复合梁,该复合梁弯曲后在每个条带中产生几乎均匀的应力。绘制并比较了缺陷周围区域的径向通量泄漏模式。结果表明,在复合梁中接近均匀的应力在应力作用下产生的MFL振幅响应要比在单梁中产生更大的弯曲应力。这驳斥了这样的观点,即仅表面应力足以考虑应力对MFL信号幅度的影响。 (摘要由UMI缩短。)

著录项

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Civil.;Physics General.
  • 学位 M.Sc.
  • 年度 1993
  • 页码 72 p.
  • 总页数 72
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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