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    Pulsed Eddy Current Response to General Corrosion in Concrete Rebar

    Source: Journal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems:;2020:;volume( 003 ):;issue: 004::page 044501-1
    Author:
    Eddy, Ian
    ,
    Underhill, P. R.
    ,
    Morelli, J.
    ,
    Krause, T. W.
    DOI: 10.1115/1.4047851
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Corrosion of carbon steel rebar in concrete structures, such as highway bridges and buildings, has a direct impact on their structural integrity since the rebar provides the tensile strength within the structure. Rebar strength depends on the remaining effective radius of a given rod. Long-time decay up to 0.1 s, in the transient response of pulsed eddy current (PEC), was examined as a potential method to quantify general corrosion in ferromagnetic rebar. The transient response of a coaxial solenoidal drive–receive coil pair, oriented parallel to the rebar axis, was analyzed over a range of distances into the concrete (liftoff) and rebar radii. At long times, the single exponential decay constant was largely independent of liftoff. A power law relationship for the characteristic decay time, consistent with long-time diffusion of electromagnetic fields into a rod, was observed. The intercept of a best-fit line to measured voltage decay decreased exponentially with liftoff and maintained a measurable response up to 110 mm distance for a 25 mm (1 in.) diameter rebar. This exponential decay was present in 22 mm (7/8 in.), 19 mm (3/4 in.), and 15 mm (5/8 in.) samples as well. Reported results demonstrate the potential for PEC to quantify remaining cross-sectional area of rebar in concrete structures.
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      Pulsed Eddy Current Response to General Corrosion in Concrete Rebar

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    contributor authorEddy, Ian
    contributor authorUnderhill, P. R.
    contributor authorMorelli, J.
    contributor authorKrause, T. W.
    date accessioned2022-02-04T22:10:54Z
    date available2022-02-04T22:10:54Z
    date copyright8/24/2020 12:00:00 AM
    date issued2020
    identifier issn2572-3901
    identifier otherbio_143_01_011001.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4275040
    description abstractCorrosion of carbon steel rebar in concrete structures, such as highway bridges and buildings, has a direct impact on their structural integrity since the rebar provides the tensile strength within the structure. Rebar strength depends on the remaining effective radius of a given rod. Long-time decay up to 0.1 s, in the transient response of pulsed eddy current (PEC), was examined as a potential method to quantify general corrosion in ferromagnetic rebar. The transient response of a coaxial solenoidal drive–receive coil pair, oriented parallel to the rebar axis, was analyzed over a range of distances into the concrete (liftoff) and rebar radii. At long times, the single exponential decay constant was largely independent of liftoff. A power law relationship for the characteristic decay time, consistent with long-time diffusion of electromagnetic fields into a rod, was observed. The intercept of a best-fit line to measured voltage decay decreased exponentially with liftoff and maintained a measurable response up to 110 mm distance for a 25 mm (1 in.) diameter rebar. This exponential decay was present in 22 mm (7/8 in.), 19 mm (3/4 in.), and 15 mm (5/8 in.) samples as well. Reported results demonstrate the potential for PEC to quantify remaining cross-sectional area of rebar in concrete structures.
    publisherThe American Society of Mechanical Engineers (ASME)
    titlePulsed Eddy Current Response to General Corrosion in Concrete Rebar
    typeJournal Paper
    journal volume3
    journal issue4
    journal titleJournal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems
    identifier doi10.1115/1.4047851
    journal fristpage044501-1
    journal lastpage044501-8
    page8
    treeJournal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems:;2020:;volume( 003 ):;issue: 004
    contenttypeFulltext
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