DocumentCode :
1438476
Title :
Effect of surface reactivity of lubricants on the properties of aluminum electrical contacts
Author :
Timsit, Roland S. ; Bock, E.M. ; Corman, N.E.
Author_Institution :
Global Technol. Center, AMP of Canada Ltd., Markahm, Ont., Canada
Volume :
21
Issue :
3
fYear :
1998
fDate :
9/1/1998 12:00:00 AM
Firstpage :
500
Lastpage :
505
Abstract :
Lubricants are used in electrical contacts to minimize friction and mechanical wear and protect electrical interfaces against corrosion, This paper provides an example of the importance of differentiating between the lubrication and “electrical-contact protection” properties of lubricants. The paper reports on the frictional properties and the effect on contact resistance of stearic acid boundary films on aluminum. Stearic acid is an effective lubricant for aluminum because the long-chained acid molecules are chemically attached to the native aluminum oxide surface film. In an electrical contact, mechanical disruption of this native oxide film during sliding exposes the underlying aluminum metal to the stearic acid. The ensuing chemical reaction of the acid with the exposed metal leads to chemical breakdown of the lubricant and immediate surface oxidation of the aluminum. This reaction engenders a large increase in contact resistance. These observations provide unambiguous evidence that stearic acid is unacceptable as a lubricant for aluminum electrical contacts, although it is effective as a conventional lubricant for aluminum
Keywords :
aluminium; contact resistance; electrical contacts; friction; lubrication; oxidation; wear; Al; contact resistance; electrical contacts; electrical interfaces; friction; long-chained acid molecules; lubricants; mechanical wear; stearic acid boundary films; surface oxidation; surface reactivity; Aluminum; Chemicals; Contact resistance; Corrosion; Friction; Lubricants; Lubrication; Mechanical factors; Protection; Surface resistance;
fLanguage :
English
Journal_Title :
Components, Packaging, and Manufacturing Technology, Part A, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9886
Type :
jour
DOI :
10.1109/95.725214
Filename :
725214
Link To Document :
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