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51313-02720-Environmentally Friendly Corrosion Preventative Compounds in Aggressive Coastal Marine Environments

Product Number: 51313-02720-SG
ISBN: 02720 2013 CP
Author: Eliza Montgomery
Publication Date: 2013
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The shift to use environmentally friendly technologies throughout space-related launch programs prompted a study aimed at replacing current petroleum and solvent-based Corrosion Preventive Compounds (CPCs) with environmentally friendly alternatives. The work in this paper focused on the identification and evaluation of environmentally friendly CPCs for use in protecting flight hardware and ground support equipment from atmospheric corrosion. The CPCs while a temporary protective coating must survive in the aggressive coastal marine environment that exists throughout the Kennedy Space Center Florida. The different protection behaviors of fifteen different oily film CPCs both common petroleum-based and newer environmentally friendly types were evaluated on various steel and aluminum substrates. The CPC and substrate systems were subjected to atmospheric testing at the Kennedy Space Center’s Beachside Atmospheric Corrosion Test Site as well as cyclic accelerated corrosion testing. Each CPC also underwent physical characterization and launch-related compatibility testing. The results for the fifteen CPC systems are reported.

The shift to use environmentally friendly technologies throughout space-related launch programs prompted a study aimed at replacing current petroleum and solvent-based Corrosion Preventive Compounds (CPCs) with environmentally friendly alternatives. The work in this paper focused on the identification and evaluation of environmentally friendly CPCs for use in protecting flight hardware and ground support equipment from atmospheric corrosion. The CPCs while a temporary protective coating must survive in the aggressive coastal marine environment that exists throughout the Kennedy Space Center Florida. The different protection behaviors of fifteen different oily film CPCs both common petroleum-based and newer environmentally friendly types were evaluated on various steel and aluminum substrates. The CPC and substrate systems were subjected to atmospheric testing at the Kennedy Space Center’s Beachside Atmospheric Corrosion Test Site as well as cyclic accelerated corrosion testing. Each CPC also underwent physical characterization and launch-related compatibility testing. The results for the fifteen CPC systems are reported.

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