Investigation of Arc Behavior and Temperature Distribution Corresponding to Electrode and Phase Configurations in a Multiphase AC Arc
Author:
Affiliation:
1. Center of Plasma Nano-Interface Engineering, Kyushu University
2. Manufacturing Innovation Division, Panasonic Corporation
3. Department of Chemical Engineering, Kyushu University
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
https://www.jstage.jst.go.jp/article/jcej/53/9/53_20we001/_pdf
Reference21 articles.
1. Bachmann, B., R. Kozakov, G. Gött, K. Ekkert, J.-P. Bachmann, J.-L. Marques, H. Schöpp, D. Uhrlandt and J. Schein; “High-Speed Three-Dimensional Plasma Temperature Determination of Axially Symmetric Free-Burning Arcs,” J. Phys. D, 46, 125203 (2013)
2. Hashizume, T., M. Tanaka and T. Watanabe; “Effect of Arc Current on Droplet Ejection from Tungsten-Based Electrode in Multiphase AC Arc,” Jpn. J. Appl. Phys., 56, 056101 (2017)
3. Heberlein, J. and A. B. Murphy; “Thermal Plasma Waste Treatment,” J. Phys. D, 41, 053001 (2008)
4. Heberlein, J., J. Mentel and E. Pfender; “The Anode Region of Electric Arcs: A Survey,” J. Phys. D, 43, 023001 (2010)
5. Kambara, M., A. Kitayama, K. Homma, T. Hideshima, M. Kaga, K.-Y. Sheem, S. Ishida and T. Yoshida; “Nano-Composite Si Particle Formation by Plasma Spraying for Negative Electrode of Li Ion Batteries,” J. Appl. Phys., 115, 143302 (2014)
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