Reluctance change apparatus and method of detecting loss of cros

Electricity: measuring and testing – Magnetic – With means to create magnetic field to test material

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324228, 324262, G01N 2782, G01N 2790

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active

058217495

ABSTRACT:
A method and apparatus for detecting a loss in cross-sectional area of metallic reinforcing members having magnetic properties of a conductor indicating corrosion effects on the conductor. The method and apparatus comprises a tug component to provide the motive force to move a data collection component and a detector component along a length of conductor. The tug component further includes a rechargeable battery, a motor energizable by the rechargeable battery, a guide wheel and tensioner assembly. Linked to the tug is a data collection component. In turn, a detector is linked to the data collection unit. The tug, data collection unit and detector all ride along the same conductor by a series of guide wheels and tensioners. The detector further includes a magnetic source spaced apart from an electronic coil winding. In use, a conductor is interpositioned between the magnetic source and electronic coil winding. The magnetic source is preferably energized to produce a rotating magnetic field which is directed at the conductor. The amount of magnetic field passing through the conductor corresponds to the cross-sectional area of the steel reinforcing strands of a conductor. The magnetic field recognized by the coil induces a varying voltage depending upon the cross-sectional area of the steel strands of the conductor through which the rotating magnetic field passes. The electronic coil may also be linked to a recording system such that the change in magnetic field induces a change in voltage in the coil which can be recorded on a strip chart, graph, CPU or other suitable data collection unit. The data collection component therefore may also include a relay system comprising a transmitter and receiver sufficient to send data streams and information to a ground surface when the unit is used above ground to analyze and test overhead conductors.

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Article: Parts I & II; Havard et al., "AGED ACSR Conductors", IEEE; vol. 7, No. 2, Apr. 1992 pp. 581-594.
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Article: J.M. Ferguson et al., Overhead Transmission Lines--Refurbishment and Developments, Power Engineering Journal, Jun. 1994, pp. 109-118.

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