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Method for Controlling the Straightness of the Channels of the Cooling System of the ITER Fusion Reactor Diagnostic Ports. / Gavrilenko, D. E.; Burdakov, A. V.; Ivantsivskiy, M. V. и др.

в: Physics of Atomic Nuclei, Том 89, № Suppl 2, 30.08.2026, стр. S226-S234.

Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование

Harvard

Gavrilenko, DE, Burdakov, AV, Ivantsivskiy, MV, Serdakov, LE, Polyanskiy, AV, Krapivin, VS, Shoshin, AA & Sulyaev, YS 2026, 'Method for Controlling the Straightness of the Channels of the Cooling System of the ITER Fusion Reactor Diagnostic Ports', Physics of Atomic Nuclei, Том. 89, № Suppl 2, стр. S226-S234. https://doi.org/10.1134/S1063778826140024

APA

Gavrilenko, D. E., Burdakov, A. V., Ivantsivskiy, M. V., Serdakov, L. E., Polyanskiy, A. V., Krapivin, V. S., Shoshin, A. A., & Sulyaev, Y. S. (2026). Method for Controlling the Straightness of the Channels of the Cooling System of the ITER Fusion Reactor Diagnostic Ports. Physics of Atomic Nuclei, 89(Suppl 2), S226-S234. https://doi.org/10.1134/S1063778826140024

Vancouver

Gavrilenko DE, Burdakov AV, Ivantsivskiy MV, Serdakov LE, Polyanskiy AV, Krapivin VS и др. Method for Controlling the Straightness of the Channels of the Cooling System of the ITER Fusion Reactor Diagnostic Ports. Physics of Atomic Nuclei. 2026 авг. 30;89(Suppl 2):S226-S234. doi: 10.1134/S1063778826140024

Author

Gavrilenko, D. E. ; Burdakov, A. V. ; Ivantsivskiy, M. V. и др. / Method for Controlling the Straightness of the Channels of the Cooling System of the ITER Fusion Reactor Diagnostic Ports. в: Physics of Atomic Nuclei. 2026 ; Том 89, № Suppl 2. стр. S226-S234.

BibTeX

@article{bc646d098208462c9f0d466c378b924d,
title = "Method for Controlling the Straightness of the Channels of the Cooling System of the ITER Fusion Reactor Diagnostic Ports",
abstract = "Abstract: The article describes a method for controlling the geometric parameters of the cooling system channels of the diagnostic shielding modules of the equatorial port no. 11 of the ITER nuclear installation made using counter deep drilling technology. The technique is based on the use of an angular reflector moving through the test channel and a laser tracker. The results of the qualification of the methodology on a full-size test product modeling the deepest channels in the diagnostic shielding module are presented.",
keywords = "ITER, deep drilling, diagnostic shielding module, nondestructive testing, quality control, глубокое бурение, неразрушающий контроль, контроль качества, ITER, диагностический экранирующий модуль",
author = "Gavrilenko, {D. E.} and Burdakov, {A. V.} and Ivantsivskiy, {M. V.} and Serdakov, {L. E.} and Polyanskiy, {A. V.} and Krapivin, {V. S.} and Shoshin, {A. A.} and Sulyaev, {Yu. S.}",
note = "Gavrilenko, D.E., Burdakov, A.V., Ivantsivskiy, M.V. et al. Method for Controlling the Straightness of the Channels of the Cooling System of the ITER Fusion Reactor Diagnostic Ports. Phys. Atom. Nuclei 89 (Suppl 2), S226–S234 (2026). https://doi.org/10.1134/S1063778826140024",
year = "2026",
month = aug,
day = "30",
doi = "10.1134/S1063778826140024",
language = "English",
volume = "89",
pages = "S226--S234",
journal = "Physics of Atomic Nuclei",
issn = "1063-7788",
publisher = "Maik Nauka-Interperiodica Publishing",
number = "Suppl 2",

}

RIS

TY - JOUR

T1 - Method for Controlling the Straightness of the Channels of the Cooling System of the ITER Fusion Reactor Diagnostic Ports

AU - Gavrilenko, D. E.

AU - Burdakov, A. V.

AU - Ivantsivskiy, M. V.

AU - Serdakov, L. E.

AU - Polyanskiy, A. V.

AU - Krapivin, V. S.

AU - Shoshin, A. A.

AU - Sulyaev, Yu. S.

N1 - Gavrilenko, D.E., Burdakov, A.V., Ivantsivskiy, M.V. et al. Method for Controlling the Straightness of the Channels of the Cooling System of the ITER Fusion Reactor Diagnostic Ports. Phys. Atom. Nuclei 89 (Suppl 2), S226–S234 (2026). https://doi.org/10.1134/S1063778826140024

PY - 2026/8/30

Y1 - 2026/8/30

N2 - Abstract: The article describes a method for controlling the geometric parameters of the cooling system channels of the diagnostic shielding modules of the equatorial port no. 11 of the ITER nuclear installation made using counter deep drilling technology. The technique is based on the use of an angular reflector moving through the test channel and a laser tracker. The results of the qualification of the methodology on a full-size test product modeling the deepest channels in the diagnostic shielding module are presented.

AB - Abstract: The article describes a method for controlling the geometric parameters of the cooling system channels of the diagnostic shielding modules of the equatorial port no. 11 of the ITER nuclear installation made using counter deep drilling technology. The technique is based on the use of an angular reflector moving through the test channel and a laser tracker. The results of the qualification of the methodology on a full-size test product modeling the deepest channels in the diagnostic shielding module are presented.

KW - ITER

KW - deep drilling

KW - diagnostic shielding module

KW - nondestructive testing

KW - quality control

KW - глубокое бурение

KW - неразрушающий контроль

KW - контроль качества

KW - ITER

KW - диагностический экранирующий модуль

UR - https://www.mendeley.com/catalogue/1383eddf-4652-37e0-b597-1ef47c921099/

UR - https://www.scopus.com/pages/publications/105048796456

U2 - 10.1134/S1063778826140024

DO - 10.1134/S1063778826140024

M3 - Article

VL - 89

SP - S226-S234

JO - Physics of Atomic Nuclei

JF - Physics of Atomic Nuclei

SN - 1063-7788

IS - Suppl 2

ER -

ID: 83293558