Nanostructure Changes in Iron-Carbon Alloys as a Result of Impulse Deformation Wave Action

The paper discusses possibilities and conditions needed to obtain a super small grain and nanocrystal structures by means of deformation shock waves that are displaced in relation to each other in time and space. Investigations demonstrated that with shock wave loading plastic deformation can spread...

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Main Authors: A.V. Kirichek, D.L. Soloviyev
Format: Article
Language:English
Published: Sumy State University 2013-12-01
Series:Журнал нано- та електронної фізики
Subjects:
Online Access:http://jnep.sumdu.edu.ua/download/numbers/2013/4/articles/jnep_2013_V5_04009.pdf
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author A.V. Kirichek
D.L. Soloviyev
author_facet A.V. Kirichek
D.L. Soloviyev
author_sort A.V. Kirichek
collection DOAJ
description The paper discusses possibilities and conditions needed to obtain a super small grain and nanocrystal structures by means of deformation shock waves that are displaced in relation to each other in time and space. Investigations demonstrated that with shock wave loading plastic deformation can spread over a bigger material volume as compared with other hardening methods and can be classified as an intensive plastic deformation method and as a gradient hardening method that are both applied to homogeneous metals and alloys to obtain micro- and nanocrystal structures characterized by improved mechanical properties. Deformation shock wave hardening used to create super small grain and nanocrystal structures in metal alloys is able to facilitate a wider introduction of nanostructured materials into industry.
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id doaj-art-62d36d25a0df431cb4eefb659f502d01
institution DOAJ
issn 2077-6772
language English
publishDate 2013-12-01
publisher Sumy State University
record_format Article
series Журнал нано- та електронної фізики
spelling doaj-art-62d36d25a0df431cb4eefb659f502d012025-08-20T03:19:31ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722013-12-015404009-104009-4Nanostructure Changes in Iron-Carbon Alloys as a Result of Impulse Deformation Wave ActionA.V. Kirichek0D.L. Soloviyev1Southwest State University, 94, 50 Let Oktyabrya Str., 305040 Kursk, RussiaMurom Institute (Branch) of Vladimir State University, 23, Orlovskaya Str., 602264 Murom, RussiaThe paper discusses possibilities and conditions needed to obtain a super small grain and nanocrystal structures by means of deformation shock waves that are displaced in relation to each other in time and space. Investigations demonstrated that with shock wave loading plastic deformation can spread over a bigger material volume as compared with other hardening methods and can be classified as an intensive plastic deformation method and as a gradient hardening method that are both applied to homogeneous metals and alloys to obtain micro- and nanocrystal structures characterized by improved mechanical properties. Deformation shock wave hardening used to create super small grain and nanocrystal structures in metal alloys is able to facilitate a wider introduction of nanostructured materials into industry.http://jnep.sumdu.edu.ua/download/numbers/2013/4/articles/jnep_2013_V5_04009.pdfSurface layerGradient hardeningNanocrystal structureNanostructuringStrain waveSurface plastic deformationIron-carbon alloy
spellingShingle A.V. Kirichek
D.L. Soloviyev
Nanostructure Changes in Iron-Carbon Alloys as a Result of Impulse Deformation Wave Action
Журнал нано- та електронної фізики
Surface layer
Gradient hardening
Nanocrystal structure
Nanostructuring
Strain wave
Surface plastic deformation
Iron-carbon alloy
title Nanostructure Changes in Iron-Carbon Alloys as a Result of Impulse Deformation Wave Action
title_full Nanostructure Changes in Iron-Carbon Alloys as a Result of Impulse Deformation Wave Action
title_fullStr Nanostructure Changes in Iron-Carbon Alloys as a Result of Impulse Deformation Wave Action
title_full_unstemmed Nanostructure Changes in Iron-Carbon Alloys as a Result of Impulse Deformation Wave Action
title_short Nanostructure Changes in Iron-Carbon Alloys as a Result of Impulse Deformation Wave Action
title_sort nanostructure changes in iron carbon alloys as a result of impulse deformation wave action
topic Surface layer
Gradient hardening
Nanocrystal structure
Nanostructuring
Strain wave
Surface plastic deformation
Iron-carbon alloy
url http://jnep.sumdu.edu.ua/download/numbers/2013/4/articles/jnep_2013_V5_04009.pdf
work_keys_str_mv AT avkirichek nanostructurechangesinironcarbonalloysasaresultofimpulsedeformationwaveaction
AT dlsoloviyev nanostructurechangesinironcarbonalloysasaresultofimpulsedeformationwaveaction