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  • 1
    Publication Date: 2019-07-13
    Description: An atmospheric corrosion model and corrosion monitoring system has been developed for low cost solar arrays (LSA). The corrosion model predicts that corrosion rate is the product of the surface condensation probability of water vapor and the diffusion controlled corrosion current. This corrosion model is verified by simultaneous monitoring of weather conditions and corrosion rates at the solar array test site at Mead, Nebraska.
    Keywords: ENERGY PRODUCTION AND CONVERSION
    Type: International Corrosion Forum; Apr 06, 1981 - Apr 10, 1981; Toronto; Canada
    Format: text
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  • 2
    Publication Date: 2019-07-13
    Description: An atmospheric corrosion model was developed and verified by five months of corrosion rate and climatology data acquired at the Mead, Nebraska LSA test site. Atmospheric corrosion rate monitors (ACM) show that moisture condensation probability and ionic conduction at the corroding surface or interface are controlling factors in corrosion rate. Protection of the corroding surface by encapsulant was shown by the ACM recordings to be maintained, independent of climatology, over the five months outdoor exposure period. The macroscopic corrosion processes which occur at Mead are shown to be reproduced in the climatology simulator. Controlled experiments with identical moisture and temperature aging cycles show that UV radiation causes corrosion while UV shielding inhibits LSA corrosion.
    Keywords: ENERGY PRODUCTION AND CONVERSION
    Type: NASA-CR-163583 , DOE/JPL-954739-3 , SC5106.86AR , JPL-9950-416 , AR-1
    Format: application/pdf
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  • 3
    Publication Date: 2019-07-13
    Description: The service integrity of the bonded interface in solar cell modules used in solar arrays is addressed. The development of AC impedance as a nondestructive evaluation (NDE) methodology for solar arrays is reported along with development of corrosion models and materials selection criteria for corrosion resistant interfaces.
    Keywords: ENERGY PRODUCTION AND CONVERSION
    Type: NASA-CR-164328 , DOE/JPL-954739-4 , JPL-9950-535 , SC5106.104AR
    Format: application/pdf
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