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Modelling Magnetic Flux Leakage Signals from Dents

机译:从凹痕建模磁通量泄漏信号

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摘要

The Magnetic Flux Leakage (MFL) technique is sensitive both to pipe wall geometry and pipe wall strain, therefore MFL inspection tools have the potential to locate and characterize mechanical damage in pipelines. However, the combined influence of strain and geometry makes MFL signals from dents and gouges difficult to interpret for a number of reasons:rn1) the MFL signal from mechanical damage is a superposition of geometrical and strain effects,rn2) the strain distribution around a mechanically damaged region can be very complex, often consisting of plastic deformation and residual (elastic) strain,rn3) the effect of strain on magnetic behaviour is not well understood.rnAccurate magnetic models that can incorporate both strain and geometry effects are essential in order to understand MFL signals from mechanical damage. This paper reviews work conducted over the past few years involving magnetic finite element analysis (FEA) modeling of MFL dent signals and comparison with experimental results obtained both from laboratory-dented samples and dented pipe sections.
机译:磁通量泄漏(MFL)技术对管壁几何形状和管壁应变都敏感,因此MFL检查工具具有定位和表征管道机械损伤的潜力。然而,应变和几何形状的综合影响使得来自凹痕和凿子的MFL信号难以解释,原因有很多:rn1)来自机械损伤的MFL信号是几何效应和应变效应的叠加,rn2)机械附近的应变分布损坏的区域可能非常复杂,通常由塑性变形和残余(弹性)应变组成,rn3)应变对磁行为的影响尚不十分清楚。rn能够同时包含应变和几何效应的精确磁模型对于理解至关重要MFL信号来自机械损坏。本文回顾了过去几年中进行的工作,这些工作涉及MFL齿痕信号的磁性有限元分析(FEA)建模,并与从实验室齿痕样品和凹陷管段获得的实验结果进行比较。

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  • 来源
  • 会议地点 Calgary(CA);Calgary(CA);Calgary(CA)
  • 作者单位

    Applied Magnetics Group, Department of Physics, Queen's University, Kingston, Ontario, Canada;

    Applied Magnetics Group, Department of Physics, Queen's University, Kingston, Ontario, Canada;

    Applied Magnetics Group, Department of Physics, Queen's University, Kingston, Ontario, Canada;

    Now with Rosen North America, Houston, Tx;

    Gaz de France, Research and Development Division, St. Denis, France;

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