Laser Plasmatron Application for Diamond Coatings Deposition on a Carbide Cutting Tool

The spatial distributions of the electron temperature and the emission intensity of the C 2 molecular complex in a plasma jet of a continuous optical discharge in the mode of a laser plasmatron supported by the radiation of a cw CO 2 laser operating on a mixture of Ar with molecular additives have b...

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Veröffentlicht in:Physics of atomic nuclei 2022-12, Vol.85 (10), p.1766-1772
Hauptverfasser: Glova, A. F., Klochkov, I. D., Lysikov, A. Yu, Knyazeva, L. I., Kirichenko, A. N., Barsuk, V. A.
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container_end_page 1772
container_issue 10
container_start_page 1766
container_title Physics of atomic nuclei
container_volume 85
creator Glova, A. F.
Klochkov, I. D.
Lysikov, A. Yu
Knyazeva, L. I.
Kirichenko, A. N.
Barsuk, V. A.
description The spatial distributions of the electron temperature and the emission intensity of the C 2 molecular complex in a plasma jet of a continuous optical discharge in the mode of a laser plasmatron supported by the radiation of a cw CO 2 laser operating on a mixture of Ar with molecular additives have been measured. Diamond coatings have been obtained on the cutting inserts of a turning tool made of WC8 hard alloy; diagnostics of the coatings have been carried out.
doi_str_mv 10.1134/S1063778822100180
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subjects Additives
Carbide tools
Carbon dioxide
Carbon dioxide lasers
Coatings
Cutting tools
Diamond films
Diamond machining
Diamond tools
Electron energy
Inserts
Interaction of Plasma
Particle and Nuclear Physics
Particle Beams
Physics
Physics and Astronomy
Plasma jets
Plasma physics
Radiation with Matter
Spatial distribution
Tool industry
Turning (machining)
title Laser Plasmatron Application for Diamond Coatings Deposition on a Carbide Cutting Tool
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