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Experimental study of cathode spot motion and burning voltage of low-current vacuum arc in magnetic field | IEEE Journals & Magazine | IEEE Xplore

Experimental study of cathode spot motion and burning voltage of low-current vacuum arc in magnetic field


Abstract:

This experimental study dealt with cathode spot (CS) motion and the burning voltage of a low-current vacuum arc with electrodes of HCOF Cu and with a composition of CuCr3...Show More

Abstract:

This experimental study dealt with cathode spot (CS) motion and the burning voltage of a low-current vacuum arc with electrodes of HCOF Cu and with a composition of CuCr30, subjected to a magnetic field. Arcs with current of I/spl ap/30 A burned in axial and transverse fields as well as with the induction vector inclined at an angle 5/spl deg/
Published in: IEEE Transactions on Plasma Science ( Volume: 33, Issue: 5, October 2005)
Page(s): 1553 - 1559
Date of Publication: 17 October 2005

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I. Introduction

Some integral characteristics of a low-current arc in vacuum are yet to be studied in detail, notwithstanding the hundred years' history of research into this kind of arc discharge. Among numerous works, whose results are summarized in a number of monographs and reviews, in particular [1]–[4], we note those where the study concerned the results of the action of a magnetic field on the burning voltage of an arc on a cold cathode and the motion of its cathode attachment, the so called “cathode spot” (CS). Schematic of the geometry of the experiment.

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1.
I. G. Kesaev, Cathode Processes in Electric Arcs, U.S.S.R., Moscow:Nauka, 1968.
2.
G. A. Lubimov and V. I. Rakhovsky, "Cathode spot of the vacuum arc", Sov.Phys.̵Uspekhy Phys. Sci., vol. 125, no. 4, pp. 665-706, 1978.
3.
G. A. Mesyats, Cathode Phenomena in a Vacuum Discharge: The Breakdown the Spark and the Arc, Russia, Moscow:Nauka, 2000.
4.
B. Juttner, "Cathode spots of electric arcs", J. Phys. D Appl. Phys., vol. 34, no. 17, pp. R103-R123, Sep. 2001.
5.
N. E. Perskiy, V. I. Sysun and Y. D. Khromoy, "The dynamics of cathode spots in vacuum discharge", High Temp., vol. 27, no. 6, pp. 832-836, 1989.
6.
Y. H. Fu, Cathode surface effects and H.F.-behavior of vacuum arcs, 1990.
7.
A. E. Robson, "The motion of an arc in magnetic field", Proc. IV Int. Conf. Phen. Ionised Gases, vol. IIb, pp. 346-349, 1959.
8.
B. Juttner, Cathode processes of electric discharge in vacuum, 1983.
9.
H. C. W. Gundlach, "Interaction between a vacuum arc and an axial magnetic field", Proc. VII ISDEIV, vol. 1𔂿, pp. A.2., 1978.
10.
M. S. Agarwal and R. Holms, "Arcing voltage of the metal vapor vacuum arc", J. Phys. D Appl. Phys., vol. 17, pp. 757-767, 1984.
11.
D. Y. Fang, "Cathode spot velocity of vacuum arcs", J. Phys. D Appl. Phys., vol. 15, pp. 833-844, 1982.
12.
A. M. Chaly, A. A. Logatchev, K. K. Zabello and S. M. Shkol'nik, "High current vacuum arc appearance in nonhomogeneous axial magnetic field", IEEE Trans. Plasma Sci., vol. 31, no. 5, pp. 884-889, Oct. 2003.
13.
A. M. Chaly, "Magnetic control of high current vacuum arcs with the aid of an axial magnetic field: A review", IEEE Trans. Plasma Sci., vol. 33, no. 5, pp. 1497-1503, Oct. 2005.
14.
A. M. Chaly, A. A. Logatchev and S. M. Shkol'nik, "Cathode processes in free burning and stabilized by axial magnetic field vacuum arcs", IEEE Trans. Plasma Sci., vol. 27, no. 4, pp. 827-835, Aug. 1999.
15.
M. Keidar and M. B. Schulman, "Modeling the effects of an axial magnetic field on the vacuum arc", IEEE Trans. Plasma Sci., vol. 29, no. 5, pp. 684-689, Oct. 2001.
16.
E. D. Taylor and M. Keidar, "Transition made of the vacuum arc in an axial magnetic field: Comparison of experimental results and theory", Proc. XXI ISDEIV, vol. 1, pp. 189-192, 2004.
17.
M. S. Agarwal and R. Holmes, "Cathode spot motion in high-current vacuum arcs under self-generated azimuthal and applied axial magnetic fields", J. Phys. D Appl. Phys., vol. 17, pp. 743-756, 1984.
18.
A. M. Chaly, A. A. Logatchev and S. M. Shkol'nik, "Cathode spots dynamics on pure metals and composite materials in high-current vacuum arcs", IEEE Trans. Plasma Sci., vol. 25, no. 4, pp. 564-570, Aug. 1997.

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References

References is not available for this document.