Presentation 2005/11/10
Spectroscopic Temperature Measurement of Breaking Arcs near the Cathode and Anode Surfaces of Copper Contacts(Arc Discharges & Related Phenomena)
Naoki MORIYAMA, Junya SEKIKAWA, Takayoshi KUBONO,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) The breaking arc is generated between Cu electrical contact pairs in a D.C.42V/10.5A circuit, and, the arc voltage, the arc current and the arc spectral intensity near the fixed contact are measured. The arc temperature is calculated from the spectral intensity by using the Boltzmann plot. The results are as follows. In the breaking arc between Cu electrical contact pairs, (1) time change in the spectral intensity and time change in the arc temperature have similar properties. (2) There are no relations between the spectral intensity and the arc voltage. (3) As for the spectral intensity near the cathode and anode surfaces, the spectrum intensity near the anode surface is strong. (4) As for the arc temperature, the arc temperature near the anode surface is higher than that near the cathode surface, and the temperature change near the anode surface is more extreme. (5) While the arc temperature near the cathode surface when the arc discharge disappears is constant, that near the anode surface has width.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Breaking arc / Cu contact / Spectral intensity / Boltzmann plot / Arc temperature
Paper # EMD2005-73
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Committee EMD
Conference Date 2005/11/10(1days)
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Registration To Electromechanical Devices (EMD)
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Spectroscopic Temperature Measurement of Breaking Arcs near the Cathode and Anode Surfaces of Copper Contacts(Arc Discharges & Related Phenomena)
Sub Title (in English)
Keyword(1) Breaking arc
Keyword(2) Cu contact
Keyword(3) Spectral intensity
Keyword(4) Boltzmann plot
Keyword(5) Arc temperature
1st Author's Name Naoki MORIYAMA
1st Author's Affiliation Graduate School of Science and Technology, Shizuoka University()
2nd Author's Name Junya SEKIKAWA
2nd Author's Affiliation Faculty of Engineering, Shizuoka University
3rd Author's Name Takayoshi KUBONO
3rd Author's Affiliation Faculty of Engineering, Shizuoka University
Date 2005/11/10
Paper # EMD2005-73
Volume (vol) vol.105
Number (no) 412
Page pp.pp.-
#Pages 6
Date of Issue