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Testing and evaluation of nonchromated coating systems for aerospace applications
Authors:Joseph H Osborne  Kay Y Blohowiak  S Ray Taylor  Chad Hunter  Gordon Bierwagon  Brendon Carlson  Dan Bernard  Michael S Donley
Affiliation:

a The Boeing Company, P.O. Box 3999, M/S 73-09, Seattle, WA 98124-2499, USA

b University of Virginia, Department of Materials Science, Charlottesville, VA 22903, USA

c North Dakota State University, Department of Polymers and Coatings, Fargo, ND 58105, USA

d Deft Inc.,Industrial Division, Irvine, CA 92714, USA

e Air Force Research Laboratory, Nonmetallic Materials Directorate, WPAFB, OH 45433-7750, USA

Abstract:The advanced corrosion resistant aircraft coatings program (ACRAC) is part of the Air Force strategy to improve performance and reduce environmental impact of coatings used on Air Force weapon systems. The program addresses the Air Force near and mid-term strategies to eliminate chromate corrosion inhibitors and reduce steps in the outer mold line coating process. Evaluation of the coating process (surface preparation, conversion coating, primer, topcoat) as a system is a key feature of the ACRAC program. Results to date indicate that the current-state-of-the-art nonchromated coating systems are significantly less effective than those with chromate. A chromate conversion coating is required for the nonchromate primer system to meet minimum requirements. Sol–gel-process based conversion coatings can replace chromate conversion coatings provided a chromated primer is used. Several approaches to incorporating inhibitors into sol–gel coatings are discussed. Electrochemical methods for testing coating performance are discussed and a new procedure based on impedance spectroscopy for evaluating active damage repair is presented.
Keywords:Chromated  Coatings  Primer  Sol–gel process  Electrochemical impendance spectroscopy (EIS)  Electrochemical noise method (ENM)  Corrosion  Corrosion inhibitors
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