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    Non-Contact Measurement of Residual Magnetization Caused by Plastic Deformation of Steel

    Source: Journal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems:;2020:;volume( 003 ):;issue: 003::page 031111-1
    Author:
    Saleem, Aroba
    ,
    Ross Underhill, P.
    ,
    Krause, Thomas W.
    DOI: 10.1115/1.4047292
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Pipelines are the primary means of land transportation of oil and gas globally, and pipeline integrity is, therefore, of high importance. Failures in pipelines may occur due to internal and external stresses that produce stress concentration zones, which may cause failure by stress corrosion cracking. Early detection of stress concentration zones could facilitate the identification of potential failure sites. Conventional non-destructive testing (NDT) methods, such as magnetic flux leakage, have been used to detect defects in pipelines; however, these methods cannot be effectively used to detect zones of stress concentration. In addition, these methods require direct contact, with access to the buried pipe. Metal magnetic memory (MMM) is an emerging technology, which has the potential to characterize the stress state of underground pipelines from above ground. The present paper describes magnetic measurements performed on steel components, such as bars and tubes, which have undergone changing stress conditions. It was observed that plastic deformation resulted in the modification of measured residual magnetization in steels. In addition, an exponential decrease in signal with the distance of the sensor from the sample was observed. Results are attributed to changes in the local magnetic domain structure in the presence of stress but in the absence of an applied field.
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      Non-Contact Measurement of Residual Magnetization Caused by Plastic Deformation of Steel

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    contributor authorSaleem, Aroba
    contributor authorRoss Underhill, P.
    contributor authorKrause, Thomas W.
    date accessioned2022-02-04T22:15:33Z
    date available2022-02-04T22:15:33Z
    date copyright6/8/2020 12:00:00 AM
    date issued2020
    identifier issn2572-3901
    identifier othernde_3_3_031111.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4275205
    description abstractPipelines are the primary means of land transportation of oil and gas globally, and pipeline integrity is, therefore, of high importance. Failures in pipelines may occur due to internal and external stresses that produce stress concentration zones, which may cause failure by stress corrosion cracking. Early detection of stress concentration zones could facilitate the identification of potential failure sites. Conventional non-destructive testing (NDT) methods, such as magnetic flux leakage, have been used to detect defects in pipelines; however, these methods cannot be effectively used to detect zones of stress concentration. In addition, these methods require direct contact, with access to the buried pipe. Metal magnetic memory (MMM) is an emerging technology, which has the potential to characterize the stress state of underground pipelines from above ground. The present paper describes magnetic measurements performed on steel components, such as bars and tubes, which have undergone changing stress conditions. It was observed that plastic deformation resulted in the modification of measured residual magnetization in steels. In addition, an exponential decrease in signal with the distance of the sensor from the sample was observed. Results are attributed to changes in the local magnetic domain structure in the presence of stress but in the absence of an applied field.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleNon-Contact Measurement of Residual Magnetization Caused by Plastic Deformation of Steel
    typeJournal Paper
    journal volume3
    journal issue3
    journal titleJournal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems
    identifier doi10.1115/1.4047292
    journal fristpage031111-1
    journal lastpage031111-4
    page4
    treeJournal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems:;2020:;volume( 003 ):;issue: 003
    contenttypeFulltext
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