Please use this identifier to cite or link to this item: https://er.knutd.edu.ua/handle/123456789/16979
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dc.contributor.authorГапон, Ю. К.uk
dc.contributor.authorКалугін, В. Д.uk
dc.contributor.authorКустов, М. В.uk
dc.contributor.authorКамишан, І. І.uk
dc.date.accessioned2021-01-21T22:45:14Z-
dc.date.available2021-01-21T22:45:14Z-
dc.date.issued2020
dc.identifier.citationМеханізм внутрішньої корозії сплаву цирконію Zr1Nb в ТВЕЛах [Текст] / Ю. К. Гапон, В. Д. Калугін, М. В. Кустов, І. І. Камишан // Promising materials and processes in applied electrochemistry – 2020 : monograph / ed.: V. Z. Barsukov, Yu. V. Borysenko, V. G. Khomenko, O. V. Linyucheva ; editor-in-chief V. Z. Barsukov. - Kyiv : KNUTD, 2020. - С. 139-142.uk
dc.identifier.urihttps://er.knutd.edu.ua/handle/123456789/16979-
dc.description.abstractThe presented ideas about kinetics of zirconium alloy dissolution under conditions of hydrodynamic mass transfer of reagents and products in the interphase layer. Modeling of the process of electrochemical corrosion of Zirconium alloys in the hydrodynamic mode allows the most reliable quantitative study of the transfer of reagents and metal products in the liquid medium and to analyze the electrochemical processes of interaction of medium components with the material of fuel elements in an atomic reactor.Therefore the purpose of researches is to establish conditions of critical kinds of electrochemical destructions which take place on external and internal surfaces of fuel elements during their operation.en
dc.languageuk
dc.subjectatomic reactoren
dc.subjectelectrochemical corrosionen
dc.subjectfuel elementsen
dc.subjectZirconium alloysen
dc.titleМеханізм внутрішньої корозії сплаву цирконію Zr1Nb в ТВЕЛахuk
dc.title.alternativeMechanism of internal corrosion of Zirconium alloy Zr1Nb in fuel elements
dc.typeArticle
local.contributor.altauthorHapon, Yu. K.en
local.contributor.altauthorKalugin, V. D.en
local.contributor.altauthorKustov, M. V.en
local.contributor.altauthorKamyshan, I. I.en
local.sourcePromising materials and processes in applied electrochemistry – 2020uk
local.subject.method0
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