Electroplastic Deformation by Twinningmetals

The article deals with theoretical and experimental approaches to electroplastic deformation caused by twinning of metals. The author specifies physical fundamentals of Kinetics regarding the development of twinning caused by the excitation of electronic subsystem of metals. Physical models of new c...

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Main Author: Savenko Vladimir V.
Format: Article
Language:English
Published: Sciendo 2018-12-01
Series:Acta Mechanica et Automatica
Subjects:
Online Access:https://doi.org/10.2478/ama-2018-0039
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spelling doaj-980efba5fccf48ccae8162a1365e9c602021-09-06T19:41:06ZengSciendoActa Mechanica et Automatica 2300-53192018-12-0112425926410.2478/ama-2018-0039ama-2018-0039Electroplastic Deformation by TwinningmetalsSavenko Vladimir V.0Physics and Engineering Faculty, Mozyr State Pedagogical University named after I.P.Shamyakin, 28 Studencheskaya Str., 247760, Mozyr, Republic of BelarusThe article deals with theoretical and experimental approaches to electroplastic deformation caused by twinning of metals. The author specifies physical fundamentals of Kinetics regarding the development of twinning caused by the excitation of electronic subsystem of metals. Physical models of new channels for the realization of twinning aroused under conditions of electroplasticity have been discussed. Mechanisms of plasticized influence of a surface electric charge have been defined as well as the contribution of a dynamic pinch-effect in the elastic plastic deformation of metals with the participation of the intrinsic magnetic field of the current. The dynamic pinch effect creates ultrasonic vibration of the lattice system while Kinetics changes and plastic deformation are stimulated increasing the amplitude of the oscillations of rectilinear dislocations and the periodic change in the position of the dislocation loops with an increase in the probability of detachment of dislocations from the stoppers. When deformed above the yield point and due to the pinch effect the intrinsic magnetic field of the current diffuses into the crystal where the diffusion rate depends both on the conductivity of the metal and on the frequency of the current. It is necessary to take into account the physical conditions for the creation of ponderomotive effects in relation to specific technically important materials for the practical use of electroplastic deformation technology, especially when processing metals with pressure.https://doi.org/10.2478/ama-2018-0039electroplastic deformationponderomotive action currentpinch effectskin effectpulse currentmagnetic fieldelectric field vortex field hallmechanical pressuremaximum axial force
collection DOAJ
language English
format Article
sources DOAJ
author Savenko Vladimir V.
spellingShingle Savenko Vladimir V.
Electroplastic Deformation by Twinningmetals
Acta Mechanica et Automatica
electroplastic deformation
ponderomotive action current
pinch effect
skin effect
pulse current
magnetic field
electric field vortex field hall
mechanical pressure
maximum axial force
author_facet Savenko Vladimir V.
author_sort Savenko Vladimir V.
title Electroplastic Deformation by Twinningmetals
title_short Electroplastic Deformation by Twinningmetals
title_full Electroplastic Deformation by Twinningmetals
title_fullStr Electroplastic Deformation by Twinningmetals
title_full_unstemmed Electroplastic Deformation by Twinningmetals
title_sort electroplastic deformation by twinningmetals
publisher Sciendo
series Acta Mechanica et Automatica
issn 2300-5319
publishDate 2018-12-01
description The article deals with theoretical and experimental approaches to electroplastic deformation caused by twinning of metals. The author specifies physical fundamentals of Kinetics regarding the development of twinning caused by the excitation of electronic subsystem of metals. Physical models of new channels for the realization of twinning aroused under conditions of electroplasticity have been discussed. Mechanisms of plasticized influence of a surface electric charge have been defined as well as the contribution of a dynamic pinch-effect in the elastic plastic deformation of metals with the participation of the intrinsic magnetic field of the current. The dynamic pinch effect creates ultrasonic vibration of the lattice system while Kinetics changes and plastic deformation are stimulated increasing the amplitude of the oscillations of rectilinear dislocations and the periodic change in the position of the dislocation loops with an increase in the probability of detachment of dislocations from the stoppers. When deformed above the yield point and due to the pinch effect the intrinsic magnetic field of the current diffuses into the crystal where the diffusion rate depends both on the conductivity of the metal and on the frequency of the current. It is necessary to take into account the physical conditions for the creation of ponderomotive effects in relation to specific technically important materials for the practical use of electroplastic deformation technology, especially when processing metals with pressure.
topic electroplastic deformation
ponderomotive action current
pinch effect
skin effect
pulse current
magnetic field
electric field vortex field hall
mechanical pressure
maximum axial force
url https://doi.org/10.2478/ama-2018-0039
work_keys_str_mv AT savenkovladimirv electroplasticdeformationbytwinningmetals
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