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Magnetic Flux Leakage Principle [1]. Magnetic flux leakage (TFI or Transverse Field Inspection technology) is a magnetic method of nondestructive testing to detect corrosion and pitting in steel structures, for instance: pipelines and storage tanks.
Main article – Magnetic flux leakage. Magnetic flux leakage (MFL) tools use a sensor sandwiched between multiple powerful magnets to create and measure the flow of magnetic flux in the pipe wall. Structurally-sound steel has a uniform structure that allows regular flow of the magnetic flux, while anomalies and features interrupt the flow of ...
The presence of a surface or subsurface discontinuity in the material allows the magnetic flux to leak, since air cannot support as much magnetic field per unit volume as metals. To identify a leak, ferrous particles, either dry or in a wet suspension, are applied to a part.
They involved the development of numerical forward models that mimic processes underlying several nondestructive testing methods. He has developed methods for rendering magnetic flux leakage (MFL) signals invariant to permeability and sensor velocity variations. [11]
Magnetic flux leakage testing (MFL) is also used for nondestructive testing (NDT) of steel tubes and pipes. At present RFT is more commonly used in small diameter tubes and MFL in larger diameter pipes over long travel distances. Wire rope testing is MFL applied to steel cables, to detect broken strands of wire.
Hall effect magnetometers (also called tesla meters or gauss meters) use a Hall probe [23] with a Hall element to measure magnetic fields or inspect materials (such as tubing or pipelines) using the principles of magnetic flux leakage. A Hall probe is a device that uses a calibrated Hall effect sensor to directly measure the strength of a ...