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The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side

A real modelling of the mass transfer process in a crystal by visualization of the crystal material motion under deformatioin using markers as well as structure studied have revealed inhomogeneity in the stress fields and in the crystal dislocation structure. Four crystal regions have been distingui...

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Bibliographic Details
Main Authors: Boyarintsev, A.Yu., Gektin, A.V., Shlyakhturov, V.V.
Format: Article
Language:English
Published: НТК «Інститут монокристалів» НАН України 2006
Series:Functional Materials
Online Access:http://dspace.nbuv.gov.ua/handle/123456789/135077
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spelling irk-123456789-1350772018-06-15T03:07:03Z The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side Boyarintsev, A.Yu. Gektin, A.V. Shlyakhturov, V.V. A real modelling of the mass transfer process in a crystal by visualization of the crystal material motion under deformatioin using markers as well as structure studied have revealed inhomogeneity in the stress fields and in the crystal dislocation structure. Four crystal regions have been distinguished differing in the dislocation structures and the dislocation interaction mechanisms. For each region, the structure evolution has been studied and the structure state diagram has been constructed as a function of the prestrainin rate. 2006 Article The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side / A.Yu. Boyarintsev, A.V. Gektin, V.V. Shlyakhturov // Functional Materials. — 2006. — Т. 13, № 4. — С. 608-612. —Бібліогр.: 6 назв. — англ. 1027-5495 http://dspace.nbuv.gov.ua/handle/123456789/135077 en Functional Materials НТК «Інститут монокристалів» НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
description A real modelling of the mass transfer process in a crystal by visualization of the crystal material motion under deformatioin using markers as well as structure studied have revealed inhomogeneity in the stress fields and in the crystal dislocation structure. Four crystal regions have been distinguished differing in the dislocation structures and the dislocation interaction mechanisms. For each region, the structure evolution has been studied and the structure state diagram has been constructed as a function of the prestrainin rate.
format Article
author Boyarintsev, A.Yu.
Gektin, A.V.
Shlyakhturov, V.V.
spellingShingle Boyarintsev, A.Yu.
Gektin, A.V.
Shlyakhturov, V.V.
The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side
Functional Materials
author_facet Boyarintsev, A.Yu.
Gektin, A.V.
Shlyakhturov, V.V.
author_sort Boyarintsev, A.Yu.
title The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side
title_short The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side
title_full The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side
title_fullStr The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side
title_full_unstemmed The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side
title_sort stress-strain state of deformed naci type single crystals with the sample height smaller than the base side
publisher НТК «Інститут монокристалів» НАН України
publishDate 2006
url http://dspace.nbuv.gov.ua/handle/123456789/135077
citation_txt The stress-strain state of deformed NaCI type single crystals with the sample height smaller than the base side / A.Yu. Boyarintsev, A.V. Gektin, V.V. Shlyakhturov // Functional Materials. — 2006. — Т. 13, № 4. — С. 608-612. —Бібліогр.: 6 назв. — англ.
series Functional Materials
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first_indexed 2023-10-18T21:09:27Z
last_indexed 2023-10-18T21:09:27Z
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