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ALUMINUM PITTING CORROSION IN AQUEOUS GLYCOL SOLUTIONS: CHARACTERISTICS AND RELEVANCE TO SOLAR THERMAL COLLECTOR SYSTEMS.

Publication ,  Journal Article
Wong, D; Cocks, FH
Published in: Corrosion
January 1, 1980

The maximum pit depths obtained for 1100 and 3003 alloys are shown. The cube root relation between pit depth and exposure time holds for aluminum exposed to a water/glycol mixture at elevated temperatures.

Duke Scholars

Published In

Corrosion

DOI

ISSN

0010-9312

Publication Date

January 1, 1980

Volume

36

Issue

9

Start / End Page

513 / 514

Related Subject Headings

  • Energy
  • 4016 Materials engineering
  • 4005 Civil engineering
  • 0912 Materials Engineering
  • 0905 Civil Engineering
  • 0904 Chemical Engineering
 

Citation

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Wong, D., & Cocks, F. H. (1980). ALUMINUM PITTING CORROSION IN AQUEOUS GLYCOL SOLUTIONS: CHARACTERISTICS AND RELEVANCE TO SOLAR THERMAL COLLECTOR SYSTEMS. Corrosion, 36(9), 513–514. https://doi.org/10.5006/0010-9312-36.9.513
Wong, D., and F. H. Cocks. “ALUMINUM PITTING CORROSION IN AQUEOUS GLYCOL SOLUTIONS: CHARACTERISTICS AND RELEVANCE TO SOLAR THERMAL COLLECTOR SYSTEMS.Corrosion 36, no. 9 (January 1, 1980): 513–14. https://doi.org/10.5006/0010-9312-36.9.513.
Wong, D., and F. H. Cocks. “ALUMINUM PITTING CORROSION IN AQUEOUS GLYCOL SOLUTIONS: CHARACTERISTICS AND RELEVANCE TO SOLAR THERMAL COLLECTOR SYSTEMS.Corrosion, vol. 36, no. 9, Jan. 1980, pp. 513–14. Scopus, doi:10.5006/0010-9312-36.9.513.

Published In

Corrosion

DOI

ISSN

0010-9312

Publication Date

January 1, 1980

Volume

36

Issue

9

Start / End Page

513 / 514

Related Subject Headings

  • Energy
  • 4016 Materials engineering
  • 4005 Civil engineering
  • 0912 Materials Engineering
  • 0905 Civil Engineering
  • 0904 Chemical Engineering