I n t e g r i t y - S e r v i c e - E x c e l l e n c e Headquarters U.S. Air Force 1 JTEG Overview of Air Force Corrosion Prevention and Control Dr. David.

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I n t e g r i t y - S e r v i c e - E x c e l l e n c e Headquarters U.S. Air Force 1 JTEG Overview of Air Force Corrosion Prevention and Control Dr. David Robertson Air Force Corrosion Control and Prevention Executive SAF/AQR

I n t e g r i t y - S e r v i c e - E x c e l l e n c e 2 Agenda Impact to AF AF Organization Strategic Plan and Policies Technology Implementation Example

I n t e g r i t y - S e r v i c e - E x c e l l e n c e Impact 3 The depot portion of corrosion MX is $3.4B

I n t e g r i t y - S e r v i c e - E x c e l l e n c e Organization 4

I n t e g r i t y - S e r v i c e - E x c e l l e n c e AF Corrosion Strategic Plan 5 Skilled Workforce Specs/STDs R&D Metrics Communication Guidance Prevent, Predict, Detect, & Manage USAF CPC Program Program Published Aug 1, 2014

I n t e g r i t y - S e r v i c e - E x c e l l e n c e Acquisition Oversight Weapon Systems AF Policy AFI , Integrated Life Cycle Management Requires a CPCP approved by PEO (ACAT 1 to 3) (Table 4.1) Lead Systems Engineer is to ensure the RFP considers corrosion ( ) PM is to integrate CPC into the program integrity efforts ( ) CPC planning is to be integrated into the SEP and LCSP (5.4.6) For ACAT 1, PM must include CPC Planning in the MS A SEP under “Design Considerations” and prepare a CPC Plan at MS B and C. PM must provide the CPC Plan to the CCPE prior to PEO approval ( ) For new starts, the PM is to obtain early CCPE involvement ( ) PM must obtain PEO approval and CCPE coordination for Cr6+ use ( and DFARS reference) PSM is accountable to the PM for CPC (6.1.1) Mil-Std-1568C, Materials and Processes for CPC in Aerospace Weapon Systems Mil-Std-1530C, Aircraft Structural Integrity Program ASIP Reviews 6

I n t e g r i t y - S e r v i c e - E x c e l l e n c e Example of Focused Technology Implementation Effort The AF CPC enterprise recognizes that coating – decoating activities are among the biggest drivers of depot cost and risk CrVI is a big ESOH risk and cost for the depots CPC enterprise is utilizing a balanced, risk-based approach, to implement CrVI replacements Initial focus is on replacements for CrVI with biggest sustainability impacts and low corrosion risk 7

I n t e g r i t y - S e r v i c e - E x c e l l e n c e AF CPC Risk-Based Prioritization Framework (Hexavalent Chromium Replacement) Corrosion and Mishap Risk Posed by this Application Area (Green indicates application area will tolerate less capable alternatives) Risk Assessment of the Use of CrVI in this Application Area (Green indicates application poses lower ESOH risks to AF personnel and installation environment) Risk Assessment of the Use of Alternatives in this Application Area (Green indicates adoption of alternatives would not increase risk in these areas) CrVI Applications Life Cycle CorrosionLife Cycle Mishap DoD Worker Exposure Risk if CrVI Used ESOH Life Cycle Cost Corrosion Prevention Performance Technical Maturity RiskLife Cycle Cost Near -term Focus Areas for Implementation Primer on support equipment and infrastructure Visible and repairable Sometimes necessary to improve performance of outer mold line replacement Hidden, difficult to inspect or access Frequent corrosion; Known life cycle structural integrity risk Known life cycle mishap risk Larger source of worker CrVI exposure Limited or no expected worker exposure Larger source of installation ESOH costs Limited or no installation ESOH costs Some alternatives require more frequent inspection and application; alternatives still require exposure controls Higher life cycle probability of loss of aircraft or of availability Aircraft Outer Mold Line (OML) Primer Bare metal surface treatments/Conversio n Coatings/”Sealers” Sealants Longer-term Focus Areas Adhesive bonding primers Internal Structural primer Fuel tank primers, coatings, and sealants

I n t e g r i t y - S e r v i c e - E x c e l l e n c e CrVI Replacement Examples of OSD-funded AF CPC projects C-130 Non-Chrome Field Test Universal Primer on Ground Support Equipment F-16 Reduced Chrome Study Evaluation of Non-Chrome Paint Systems in Field Environments AF CPC enterprise partnering with lab, ESOH, product support, life cycle management communities to focus on AF aircraft outer mold line (OML) coating systems MIL-PRF-32239A, Coating System, Advanced Performance, for Aerospace Applications Supported by data from outdoor exposure testing 9

I n t e g r i t y - S e r v i c e - E x c e l l e n c e Summary The CPC enterprise in the AF encompasses many organizations and activities A strategic plan is in place along with policy to focus the efforts Technology transition and implementation is important to realize improved CPC and reduce costs 10

I n t e g r i t y - S e r v i c e - E x c e l l e n c e Questions? 11