Temperature Analysis on Contact Surface after High-Current Diffuse Vacuum Arc

Author:

Tsukima Mitsuru1,Abe Junichi1,Koga Hiromi2

Affiliation:

1. Advanced R&D Center, Mitsubishi Electric Corp

2. Power Distribution Systems Center, Mitsubishi Electric Corp

Publisher

Institute of Electrical Engineers of Japan (IEE Japan)

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology

Reference12 articles.

1. (2) C. W. Kimblin and R. E. Voshall: “Interruption ability of vacuum interrupter subjected to axial magnetic fields”, Proc. IEE, Vol. 119, pp. 1754-1758 (1972)

2. (3) M. B. Schulman and H. Schellekens: “Visualization and Characterization of High-Current Diffuse Vacuum Arcs on Axial Magnetic Contacts”, IEEE Trans. Plasma Sci., Vol. 28, No. 2 pp. 443-451 (2000)

3. (4) R. Renz: “Thermodynamic Models for RMF-and AMF-Vacuum Arcs”, XXIInd Int. Symp. on Discharges and Electrical Insulation in Vacuum-Matsue-2006, pp. 443-446 (2006)

4. (5) K. Watanabe, et al.: “The Anode Surface Temperature of CuCr Contacts at the Limit of Current Interruption”, IEEE Trans. Plasma Sci., Vol. 25, No. 4, pp. 637-641 (1997)

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