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      Magnetic Permeability Perturbation Testing for Internal Axial Cracks in Small-Diameter Thick-Walled Steel Pipes

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      Applied Sciences
      MDPI AG

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          Abstract

          Special geometric features and complex working environments render the internal defects of small-diameter thick-walled steel pipes “easy to expand, difficult to detect”. In this paper, a magnetic permeability perturbation testing (MPPT) method is proposed to assess the internal axial cracks of small-diameter thick-walled steel pipes. The mechanism of the MPPT method and its corresponding probe and magnetizer are introduced, and its feasibility is verified through a series of simulations and experiments. Experiments conducted using different sizes of small-diameter thick-walled pipes show that this method offers good performance with respect to the detection of internal axial cracks. Additionally, both diameter and wall thickness significantly affect the MPPT signal. To a certain extent, a greater wall thickness or a smaller diameter brings about a weaker signal. This method does not benefit from the lift-off effect, nor is it limited by the skin effect, which has great practical value as a supplement to the evaluation of thick-walled steel pipes.

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          Safety and security of oil and gas pipeline transportation: A systematic analysis of research trends and future needs using WoS

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            Pulsed Eddy Current Non-destructive Testing and Evaluation: A Review

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                Author and article information

                Contributors
                Journal
                ASPCC7
                Applied Sciences
                Applied Sciences
                MDPI AG
                2076-3417
                June 2023
                June 14 2023
                : 13
                : 12
                : 7107
                Article
                10.3390/app13127107
                f848b344-1a2a-48ea-bf9f-2cfa16703aea
                © 2023

                https://creativecommons.org/licenses/by/4.0/

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