Long-Term Corrosivity at NASA Kennedy Space Center as a Function of Distance and Time from the Atlantic OceanLong-term data to record both seasonal and notional bounding values for corrosivity at multiple sites at NASA Kennedy Space Center was needed to make better materials choices for NASA-based ground and spaceflight programs. The data was valuable for two key reasons, 1) to measure corrosion rate and chloride concentration as a function of time and distance from the Atlantic Ocean, and 2) compare the corrosivity at launchpad and site-specific areas to the more accelerated conditions at the KSC Beachside Atmospheric Corrosion Test Site for coating and materials performance prediction. Sites were chosen from 45 meter (150 feet) to 8 kilometers (5 miles) from the Atlantic Ocean and corrosion variables at each site were measured throughout each year from June 2017 to April 2023, except the Beachside site, which includes data from November 2010. The summary includes corrosivity data and coating performance comparisons at select sites, which will be used as the updated NASA corrosivity standard for corrosion control requirements.
Document ID
20230008861
Acquisition Source
Kennedy Space Center
Document Type
Conference Paper
Authors
Eliza L Montgomery (Kennedy Space Center Merritt Island, Florida, United States)
Michelle S Pierre (Kennedy Space Center Merritt Island, Florida, United States)
Mya M McMullen (Bennett Aerospace (United States) Cary, North Carolina, United States)
Date Acquired
June 9, 2023
Subject Category
Engineering (General)
Meeting Information
Meeting: DoD Corrosion Prevention Technology and Innovation Symposium
Location: Tucson, AZ
Country: US
Start Date: August 14, 2023
End Date: August 17, 2023
Sponsors: United States Department of Defense
Funding Number(s)
WBS: 709031.02.11.02.01
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
Single Expert
Keywords
NASACorrosion Engineering LaboratoryKSCKennedy Space CenterAtlantic Oceanchloride concentrationremote atmospheric test siteatmospheric exposurecorrosion rate