DocumentCode
3176996
Title
Electrical fiber brushes-theory and observations
Author
Kuhlmann-Wilsdorf, Doris
Author_Institution
Dept. of Mater. Sci. & Eng., Virginia Univ., Charlottesville, VA, USA
fYear
1995
fDate
2-4 Oct. 1995
Firstpage
295
Lastpage
314
Abstract
The performance limits of electrical fiber brushes are assessed by means of an expanded, refined theory. Measurements back to 1979 are in accord with the theory, including 1993 measurements on a set of 64 fiber brushes in a homopolar motor at the US Navy Annapolis Laboratory. At v=7.6 m/sec velocity and j=1 MA/m/sup 2/ the electric loss was 0.026 watt per ampere, and after a 20 hr test the brushes showed no detectable wear. On the other end of the scale, electrical brushes are being developed for a Maglev train system to operate up to 150 m/sec. According to the theory, this will be possible in the open atmosphere with dimensionless wear rates smaller than 10/sup -8/ at current densities up to a few MA/m/sup 2/. At speeds to 300 m/sec, projected losses may range up to 4.3 watt/ampere at flash temperatures at and below 100/spl deg/C. The newest fiber brushes preserve the high contact spot density at the ends of individually flexible fibers, independent of amount of wear. Correspondingly, with 10 cm long brushes, for example, the projected Maglev brushes should last at least for a New York-Los Angeles return trip. Also, on account of the changed method of construction, manufacturing costs have decreased by more than a factor of ten in the past two years. Prospects are that with industrial manufacturing techniques the cost of fiber brushes, based on ampere hours conducted, will become easily competitive with monolithic graphite brushes. Pending further practical experience, it is therefore expected that: (1) metal fiber brushes will expand the range of sliding brush applicability; and (2) ultimately they will displace graphite brushes for most of their present applications.
Keywords
brushes; current density; electric resistance; fibres; homopolar machines; homopolar motors; losses; moisture; wear; Maglev train system; current densities; electrical fiber brushes; flash temperatures; high contact spot density; homopolar motor; losses; metal fibre brushes; sliding brush; wear rates; Atmosphere; Brushes; Costs; Current density; Homopolar machines; Laboratories; Magnetic levitation; Manufacturing; Optical fiber testing; Optical fiber theory;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical Contacts, 1995., Proceedings of the Forty-First IEEE Holm Conference on
Conference_Location
Montreal, Quebec, Canada
Print_ISBN
0-7803-2728-4
Type
conf
DOI
10.1109/HOLM.1995.482885
Filename
482885
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