Eddy current probe with foil sensor mounted on flexible probe tip and method of use
First Claim
Patent Images
1. An eddy current probe comprising:
- a housing;
a nose of deformable material attached to a tip of the housing;
a flexible strip wrapped over an outer surface of the nose, wherein the flexible strip includes an inducing coil and a sensing coil, a coupling for the inducing coil for connecting the inducing coil to a power supply, and for the sensing coil for connecting the sensing coil to an eddy current signal processing system.
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Abstract
A pair of copper coils are embedded in the foil strip. A first coil of the pair generates an electromagnetic field that induces eddy currents on the surface, and the second coil carries a current influenced by the eddy currents on the surface. The currents in the second coil are analyzed to obtain information on the surface eddy currents. An eddy current probe has a metal housing having a tip that is covered by a flexible conductive foil strip. The foil strip is mounted on a deformable nose at the probe tip so that the strip and coils will conform to the surface to which they are applied.
47 Citations
11 Claims
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1. An eddy current probe comprising:
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a housing;
a nose of deformable material attached to a tip of the housing;
a flexible strip wrapped over an outer surface of the nose, wherein the flexible strip includes an inducing coil and a sensing coil, a coupling for the inducing coil for connecting the inducing coil to a power supply, and for the sensing coil for connecting the sensing coil to an eddy current signal processing system. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9)
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10. A method for measuring an eddy current on a surface using an eddy current probe comprising the following steps:
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a) positioning a probe tip onto the surface of the object being inspected;
b) deforming the tip of the probe by pushing the probe tip against the surface;
c) as the tip of the probe is deformed, conforming inducing and sensing coils at the tip of the eddy current probe to the surface, and purging air gaps from between the coils and the surface;
d) applying a current to the inducing coil to generate an eddy current on the surface; and
e) detecting the surface eddy current by sensing currents generated by the eddy currents in the sensing coil of the probe. - View Dependent Claims (11)
f) determining the thickness of a non-conductive coating the object being measured by measuring the eddy currents induced by the inducing coil on a conductive surface underlying the coating.
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Specification