Quasi-Particle Approach to the Autowave Physics of Metal Plasticity

This paper is the first attempt to use the quasi-particle representations in plasticity physics. The de Broglie equation is applied to the analysis of autowave processes of localized plastic flow in various metals. The possibilities and perspectives of such approach are discussed. It is found that t...

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Main Authors: Lev B. Zuev, Svetlana A. Barannikova
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/10/11/1446
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author Lev B. Zuev
Svetlana A. Barannikova
author_facet Lev B. Zuev
Svetlana A. Barannikova
author_sort Lev B. Zuev
collection DOAJ
description This paper is the first attempt to use the quasi-particle representations in plasticity physics. The de Broglie equation is applied to the analysis of autowave processes of localized plastic flow in various metals. The possibilities and perspectives of such approach are discussed. It is found that the localization of plastic deformation can be conveniently addressed by invoking a hypothetical quasi-particle conjugated with the autowave process of flow localization. The mass of the quasi-particle and the area of its localization have been defined. The probable properties of the quasi-particle have been estimated. Taking the quasi-particle approach, the characteristics of the plastic flow localization process are considered herein.
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spelling doaj.art-ed2ad4a937234f00816f4234650bd1c52023-11-20T19:04:47ZengMDPI AGMetals2075-47012020-10-011011144610.3390/met10111446Quasi-Particle Approach to the Autowave Physics of Metal PlasticityLev B. Zuev0Svetlana A. Barannikova1Institute of Strength Physics and Materials Science, Siberian Branch of Russian Academy of Sciences, 634055 Tomsk, RussiaInstitute of Strength Physics and Materials Science, Siberian Branch of Russian Academy of Sciences, 634055 Tomsk, RussiaThis paper is the first attempt to use the quasi-particle representations in plasticity physics. The de Broglie equation is applied to the analysis of autowave processes of localized plastic flow in various metals. The possibilities and perspectives of such approach are discussed. It is found that the localization of plastic deformation can be conveniently addressed by invoking a hypothetical quasi-particle conjugated with the autowave process of flow localization. The mass of the quasi-particle and the area of its localization have been defined. The probable properties of the quasi-particle have been estimated. Taking the quasi-particle approach, the characteristics of the plastic flow localization process are considered herein.https://www.mdpi.com/2075-4701/10/11/1446metalsplasticityautowavecrystal latticephononslocalization
spellingShingle Lev B. Zuev
Svetlana A. Barannikova
Quasi-Particle Approach to the Autowave Physics of Metal Plasticity
Metals
metals
plasticity
autowave
crystal lattice
phonons
localization
title Quasi-Particle Approach to the Autowave Physics of Metal Plasticity
title_full Quasi-Particle Approach to the Autowave Physics of Metal Plasticity
title_fullStr Quasi-Particle Approach to the Autowave Physics of Metal Plasticity
title_full_unstemmed Quasi-Particle Approach to the Autowave Physics of Metal Plasticity
title_short Quasi-Particle Approach to the Autowave Physics of Metal Plasticity
title_sort quasi particle approach to the autowave physics of metal plasticity
topic metals
plasticity
autowave
crystal lattice
phonons
localization
url https://www.mdpi.com/2075-4701/10/11/1446
work_keys_str_mv AT levbzuev quasiparticleapproachtotheautowavephysicsofmetalplasticity
AT svetlanaabarannikova quasiparticleapproachtotheautowavephysicsofmetalplasticity