IP Library Granted Patent US 7,572,360
Granted Patent B2
US 7,572,360 · App. 11/240,677 · Granted Aug 11, 2009

Electrochemical fatigue sensor systems and methods

Assignee: Fatigue Solutions Corp.
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Quick Facts
Patent No.
US 7,572,360
App. No.
11/240,677
Granted
Aug 11, 2009
Kind
B2
Abstract

A method for determining a fatigue status of a growing crack in a substrate. An electrochemical sensor device is provided and includes an electrode formed from a stainless steel mesh. The electrochemical device has a bottom surface that contacts the substrate. The bottom surface is coated with an adhesive layer, and a release paper is attached to the adhesive layer. The release paper is separated from the adhesive layer, thereby exposing the adhesive layer. The electrochemical sensor device is secured to the substrate by bringing the adhesive layer in contact with the substrate and thereby forming an electrolyte cavity bounded in part by the substrate. The adhesive seals the bottom surface of the device to the substrate in order to prevent leakage of electrolyte from the cavity. The cavity is filled with the electrolyte. When the substrate is subjected to cyclic loading, the fatigue status of the growing crack in the substrate is determined in accordance with a measured current between the reference electrode and the substrate.

Claims (17)

1. A sensor assembly for an electrochemical fatigue sensor system for determining the fatigue status of a crack in an electroconductive substrate, comprising:

a body with interior and exterior faces;

a cavity within the body confining an electrolytic fluid;

an electrode positioned within the cavity, configured so that the electrolyte is on both sides of the electrode;

an adhesive that affixes the interior face of the body to the substrate and a second adhesive that affixes a cover plate to the exterior face of the body; and

a means for adding the electrolyte to the cavity after the sensor assembly is affixed to a substrate.

2. The sensor assembly of claim 1 , wherein the body further comprises a plurality of layers that may be assembled on the surface of the substrate.

3. The sensor assembly of claim 1 , wherein the electrode is selected from a mesh or sheet of a conductive metal.

4. The sensor assembly of claim 1 , wherein the electrode is stainless steel.

5. A method for determining the fatigue status of a crack in a substrate, comprising a set of two sensor assemblies according to claim 4 , and the fatigue status of a crack is determined by comparing a measured electric current from the two sensor assemblies.

6. The method of claim 5 , wherein each sensor assembly is coupled to a potentiostat that measures current passing through the sensor assembly when a constant voltage is applied to the substrate during cyclic loading of the substrate.

7. The method of claim 5 , wherein one sensor assembly is positioned over a suspected fatigue location on the substrate, and the other sensor assembly is positioned where a fatigue crack is unlikely, and the fatigue status of the substrate is assessed by measuring the difference between the electrical signals between the two sensor assemblies.

8. The method of claim 5 , wherein data from the potentiostat measurements of current from the sensor assemblies during cyclic loading is transferred to a computer for signal processing to determine the fatigue status of the substrate.

9. A method for determining the fatigue status of a crack in a substrate, comprising a set of two sensor assemblies according to claim 1 , wherein

one sensor assembly is positioned over a suspected fatigue location on the substrate, and the other sensor assembly is positioned where a fatigue crack is unlikely; and

the fatigue status of a crack is determined by measuring an electric current from each sensor assembly, wherein each measurement is from a potentiostat that measures current passing through the sensor assembly when a constant voltage is applied to the substrate during cyclic loading of the substrate; and

performing a signal analysis of the potentiostat current measurements to determine the fatigue status of the substrate.

Assignments (7)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2012
From: PALISADES CAPITAL, LLC; CORPORATE LEGAL SERVICES, LLP; KREUZFELD LTD.
To: EFS INTERNATIONAL S.A.
Reel/Frame 028068/0448 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2010
From: MATECH CORPORATION
To: PALISADES CAPITAL, LLC; CORPORATE LEGAL SERVICES, LLP; KREUZFELD, LTD.
Reel/Frame 025368/0878 →
SECURITY AGREEMENT Recorded Dec 3, 2009
From: MATECH CORP.
To: PALISADES CAPITAL, LLC; KRUEZFELD, LTD.; CORPORATE LEGAL SERVICES, LLP.
Reel/Frame 023594/0449 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2009
From: FATIGUE SOLUTIONS CORP.
To: MATERIAL TECHNOLOGIES, INC.
Reel/Frame 023594/0345 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S ADDRESS PREVIOUSLY RECORDED ON REEL 021537 FRAME 0194. ASSIGNOR(S) HEREBY CONFIRMS THE COMPLETE ASSIGNEE'S ADDRESS IS 11661 SAN VICENTE BLVD., SUITE 707, LOS ANGELES, CALIFORNIA 90049. Recorded Oct 2, 2008
From: MATERIAL TECHNOLOGIES, INC.
To: FATIGUE SOLUTIONS CORP.
Reel/Frame 021624/0785 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2008
From: MATERIAL TECHNOLOGIES, INC.
To: FATIGUE SOLUTIONS CORP.
Reel/Frame 021537/0194 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2006
From: MOSHIER, MONTY; BERKS, WILLIAM I.
To: MATERIAL TECHNOLOGIES, INC.
Reel/Frame 017740/0832 →
Continuity (1)
Related Publication 20070074976A1 · Apr 5, 2007