FEATURES OF COURSE MARTENSITE TRANSFORMATION IN STEEL AT HARDENING IN THE CONSTANT MAGNETIC FIELD

Using the method of electroresistance obtains data about course martensite transformations in steel under action of the magnetic field, formations specifying an opportunity stress-assisted martensite in temperature interval МS-МF in which superplasticity is shown. 208 Вестник ДГТУ, 2007. Т.7. №4(35)...

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Main Authors: V.N. PUSTOWOIT, Y.V. DOLGACHEV
Format: Article
Language:Russian
Published: Don State Technical University 2007-12-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/1327
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author V.N. PUSTOWOIT
Y.V. DOLGACHEV
author_facet V.N. PUSTOWOIT
Y.V. DOLGACHEV
author_sort V.N. PUSTOWOIT
collection DOAJ
description Using the method of electroresistance obtains data about course martensite transformations in steel under action of the magnetic field, formations specifying an opportunity stress-assisted martensite in temperature interval МS-МF in which superplasticity is shown. 208 Вестник ДГТУ, 2007. Т.7. №4(35)This opportunity is caused by magnetic heterogeneity austenite, presence in a paramagnetic matrix nanostrustural ensemble ferromagnetic ordering clusters which perceiving energy of an external magnetic field through magnetostrictive pressure, change fields of elastic forces in microvolumes of a nuclear lattice of a matrix, that causes to decrease in energy of formation germinal center of the critical size.
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spelling doaj.art-7780566cd9c0405faec7fefbd4c945762023-03-13T07:31:17ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532007-12-01744594651312FEATURES OF COURSE MARTENSITE TRANSFORMATION IN STEEL AT HARDENING IN THE CONSTANT MAGNETIC FIELDV.N. PUSTOWOIT0Y.V. DOLGACHEV1Донской государственный технический университетДонской государственный технический университетUsing the method of electroresistance obtains data about course martensite transformations in steel under action of the magnetic field, formations specifying an opportunity stress-assisted martensite in temperature interval МS-МF in which superplasticity is shown. 208 Вестник ДГТУ, 2007. Т.7. №4(35)This opportunity is caused by magnetic heterogeneity austenite, presence in a paramagnetic matrix nanostrustural ensemble ferromagnetic ordering clusters which perceiving energy of an external magnetic field through magnetostrictive pressure, change fields of elastic forces in microvolumes of a nuclear lattice of a matrix, that causes to decrease in energy of formation germinal center of the critical size.https://www.vestnik-donstu.ru/jour/article/view/1327магнитное полезакалкамартенсит напряжения
spellingShingle V.N. PUSTOWOIT
Y.V. DOLGACHEV
FEATURES OF COURSE MARTENSITE TRANSFORMATION IN STEEL AT HARDENING IN THE CONSTANT MAGNETIC FIELD
Advanced Engineering Research
магнитное поле
закалка
мартенсит напряжения
title FEATURES OF COURSE MARTENSITE TRANSFORMATION IN STEEL AT HARDENING IN THE CONSTANT MAGNETIC FIELD
title_full FEATURES OF COURSE MARTENSITE TRANSFORMATION IN STEEL AT HARDENING IN THE CONSTANT MAGNETIC FIELD
title_fullStr FEATURES OF COURSE MARTENSITE TRANSFORMATION IN STEEL AT HARDENING IN THE CONSTANT MAGNETIC FIELD
title_full_unstemmed FEATURES OF COURSE MARTENSITE TRANSFORMATION IN STEEL AT HARDENING IN THE CONSTANT MAGNETIC FIELD
title_short FEATURES OF COURSE MARTENSITE TRANSFORMATION IN STEEL AT HARDENING IN THE CONSTANT MAGNETIC FIELD
title_sort features of course martensite transformation in steel at hardening in the constant magnetic field
topic магнитное поле
закалка
мартенсит напряжения
url https://www.vestnik-donstu.ru/jour/article/view/1327
work_keys_str_mv AT vnpustowoit featuresofcoursemartensitetransformationinsteelathardeningintheconstantmagneticfield
AT yvdolgachev featuresofcoursemartensitetransformationinsteelathardeningintheconstantmagneticfield