DocumentCode :
3486345
Title :
Limiting design parameters for future high speed, high current density sliding electrical contacts
Author :
Rylander, H.G. ; Gully, J.H. ; Eliezer, Z.
Author_Institution :
Texas Univ., Austin, TX, USA
fYear :
1988
fDate :
26-29 Sept. 1988
Firstpage :
247
Abstract :
Summary form only given. Most sliding contact designs are limited by a combination of electrical heating and sliding friction which produces an intense heat release in the small volume at the brush-rotor interface, thereby reaching upper temperature limits of concurrently available materials in a short time. As the brush temperature increases, wear increases rapidly while brush performance deteriorates. The authors describe a new consolidation method now being developed that uses an electrical high-energy/high-rate consolidation process for the manufacture of such high-temperature tribological materials. For copper-graphite, the high-current consolidation process induces local melting of the copper powder, resulting in a very high degree of geometrical conformability. At the same time, the short holding time at high temperature reduces the problems of oxidation at the copper-graphite interface.<>
Keywords :
brushes; composite materials; copper; electrical contacts; graphite; CuC sliding contacts; brush performance; brush temperature; brush-rotor interface; consolidation method; electrical heating; electrical high-energy/high-rate consolidation process; geometrical conformability; high current density; high speed; high-current consolidation process; high-temperature tribological materials; limiting design parameters; local melting; manufacture; short holding time; sliding contact designs; sliding electrical contacts; sliding friction; upper temperature limits; wear; Contacts; Current density; Performance loss; Pulse generation; Railguns; Resistance heating; Rotating machines; Temperature;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Contacts, 1988., Proceedings of the Thirty Fourth Meeting of the IEEE Holm Conference on
Conference_Location :
San Francisco, CA, USA
Type :
conf
DOI :
10.1109/HOLM.1988.16123
Filename :
16123
Link To Document :
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