DocumentCode :
1509943
Title :
Modification in the microstructure of materials with air-break switching at high currents
Author :
Ambier, Jean ; Bourda, Christine ; Jeannot, Didier ; Pinard, Jacques ; Ramoni, Pierre
Author_Institution :
Merlin-Gerin, Grenoble, France
Volume :
14
Issue :
1
fYear :
1991
fDate :
3/1/1991 12:00:00 AM
Firstpage :
153
Lastpage :
161
Abstract :
Since electrical performance depends, to a great measure, on the surface structure of the material, it is essential to understand the mechanism by which rearrangements take place under conditions of extreme thermal constraints which modify its microstructure. Sections and surfaces of disrupted areas were examined by a scanning electron microscope. AgZnO, AgC, AgNi, AgSnO2, and AgCdO were tested for high current separation (2000 A) on a testing apparatus which simulated the operation of a low-voltage circuit breaker. AgZnO was the primary material investigated. With respect to this material, it is ascertained that the structures after a single separation at 2000 A or after life tests AC4-type electrical are similar and can be reproduced by simulating the thermal effect of an arc on the superficial layer by laser fusion or by melting in a furnace. The results obtained in these tests explain the structural modifications by correlating them to composition, granulometry, and the physical and chemical properties of the material, and thus gain a better understanding the electrical properties of AgZnO
Keywords :
electrical contacts; life testing; melting; scanning electron microscope examination of materials; silver alloys; zinc compounds; AgC; AgCdO; AgNi; AgSnO2; AgZnO; air-break switching; composition; extreme thermal constraints; granulometry; high current separation; laser fusion; life tests; melting; scanning electron microscope; surface structure; testing apparatus; thermal effect; Circuit breakers; Circuit simulation; Circuit testing; Electric variables measurement; Life testing; Materials testing; Microstructure; Optical materials; Scanning electron microscopy; Surface structures;
fLanguage :
English
Journal_Title :
Components, Hybrids, and Manufacturing Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0148-6411
Type :
jour
DOI :
10.1109/33.76525
Filename :
76525
Link To Document :
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