DocumentCode :
3611557
Title :
Evaporation Erosion of Contacts Under Static Arc by Gas Dynamics and Molten Pool Simulation
Author :
Xue Zhou ; Xinglei Cui ; Mo Chen ; Guofu Zhai
Author_Institution :
Sch. of Electr. Eng. & Autom., Harbin Inst. of Technol., Harbin, China
Volume :
43
Issue :
12
fYear :
2015
Firstpage :
4149
Lastpage :
4160
Abstract :
Two mass erosion mechanisms or mass loss modes for electrodes during the repetitive arcing processes should be responsible for the failure of electromagnetic relays, and there are evaporation erosion and sputter erosion. Of these two, the evaporation erosion is believed to be the main failure mechanism for the electrodes used in low-current relays. Unfortunately, there is still no straight-forward model to predict the characteristics of the evaporation process on the electrodes. In this paper, heat transfer and fluid dynamics in the molten pool in silver contacts are coupled with the gas dynamics in the vicinity of arc spot to determine the evaporation rate due to static arc. The influences of input parameters, such as arc current and material properties, on the evaporation rate are analyzed. Of all those parameters, boiling point and thermal conductivity of the electrode are found to be the most significant influences on the evaporation rate. The transfer direction of mass due to electrode evaporation is discussed on the assumption of zero net material loss, and it is found to be directly related to the current and heat flux from the arc to the electrodes. The method used in this paper to evaluate the evaporation erosion characteristics can serve for strategies to alleviate evaporation erosion for relay electrodes.
Keywords :
arcs (electric); boiling point; electrodes; evaporation; failure (mechanical); heat transfer; mass transfer; plasma simulation; plasma thermodynamics; plasma transport processes; relays; silver; thermal conductivity; Ag; arc current; arc spot; boiling point; electrode evaporation; electromagnetic relays; evaporation erosion characteristics; evaporation rate; failure mechanism; fluid dynamics; gas dynamics; heat flux; heat transfer; low-current relays; mass erosion mechanisms; mass loss modes; mass transfer direction; material properties; molten pool simulation; relay electrodes; repetitive arcing processes; silver contacts; sputter erosion; static arc; thermal conductivity; zero net material loss; Fluid flow; Heat transfer; Simulation; Temperature distribution; Arc; contact erosion; evaporation rate; gas dynamics; material transfer; molten pool; molten pool.;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2015.2497720
Filename :
7339470
Link To Document :
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