том 9 издание 6 страницы 449-463

The characteristics of microplasma discharge propagation over the titanium surface covered with a thin oxide film

Тип публикацииJournal Article
Дата публикации2021-12-22
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ISSN23074469, 13147617, 23675632
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The propagation and structure of a microplasma discharge initiated in vacuum by a pulsed plasma flow with a density of 1013 cm–3 on the surface of a titanium sample covered with a thin continuous dielectric titanium oxide film with a shickness of 2–6 nm were studied experimentally when the electric current of the discharge changes from 50 A to 400 A. It was found that the microplasma discharge glow visually at the macroscale has a branched structure of the dendrite type, which at the microscale consists of a large number of brightly glowing “point” formations – cathode spots localized on the metal surface. The resulting erosion structure on the titanium surface is visually “identical” to the structure of the discharge glow and consists of a large number of separate non-overlapping microcraters with characteristic sizes from 0.1–3 μm, which are formed at the sites of localization of cathode spots at distances of up to 20 μm from each other. It was found that the propagation of a single microplasma discharge over the titanium surface covered with a thin oxide film a thickness of 2–6 nm occurs at an average velocity of 15–70 m/s when the amplitude of the discharge electric current changes in the range of 50–400 A. In this case, the microplasma discharge propagation on the microscale has a “jumping” character: the plasma of “motionless” burning cathode spots, during their lifetime 1 μs, initiates the excitation of new microdischarges, which create new cathode spots at localization distances of 1–20 μm from the primary cathode spots. This process repeated many times during a microplasma dis- charge pulse with a duration from 0.1 ms to 20 ms.

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Ivanov V. et al. The characteristics of microplasma discharge propagation over the titanium surface covered with a thin oxide film // ADVANCES IN APPLIED PHYSICS. 2021. Vol. 9. No. 6. pp. 449-463.
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Ivanov V., Konyzhev M., Kamolova T., Dorofeyuk A. The characteristics of microplasma discharge propagation over the titanium surface covered with a thin oxide film // ADVANCES IN APPLIED PHYSICS. 2021. Vol. 9. No. 6. pp. 449-463.
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TY - JOUR
DO - 10.51368/2307-4469-2021-9-6-449-463
UR - https://doi.org/10.51368/2307-4469-2021-9-6-449-463
TI - The characteristics of microplasma discharge propagation over the titanium surface covered with a thin oxide film
T2 - ADVANCES IN APPLIED PHYSICS
AU - Ivanov, Vyacheslav
AU - Konyzhev, Mikhail
AU - Kamolova, Tatyana
AU - Dorofeyuk, Anna
PY - 2021
DA - 2021/12/22
PB - Joint-Stock Company Scientific and Production Association - ORION
SP - 449-463
IS - 6
VL - 9
SN - 2307-4469
SN - 1314-7617
SN - 2367-5632
ER -
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@article{2021_Ivanov,
author = {Vyacheslav Ivanov and Mikhail Konyzhev and Tatyana Kamolova and Anna Dorofeyuk},
title = {The characteristics of microplasma discharge propagation over the titanium surface covered with a thin oxide film},
journal = {ADVANCES IN APPLIED PHYSICS},
year = {2021},
volume = {9},
publisher = {Joint-Stock Company Scientific and Production Association - ORION},
month = {dec},
url = {https://doi.org/10.51368/2307-4469-2021-9-6-449-463},
number = {6},
pages = {449--463},
doi = {10.51368/2307-4469-2021-9-6-449-463}
}
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Ivanov, Vyacheslav, et al. “The characteristics of microplasma discharge propagation over the titanium surface covered with a thin oxide film.” ADVANCES IN APPLIED PHYSICS, vol. 9, no. 6, Dec. 2021, pp. 449-463. https://doi.org/10.51368/2307-4469-2021-9-6-449-463.