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Plastic distortion as a fundamental mechanism in nonlinear mesomechanics of plastic deformation and fracture


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Resumo

Any deformed solid represents two self-consistent functional subsystems: a 3D crystal subsystem and a 2D planar subsystem (surface layers and all internal interfaces). In the planar subsystem, which lacks thermodynamic equilibrium and translation invariance, a primary plastic flow develops as nonlinear waves of structural transformations. At the nanoscale, such planar nonlinear transformations create lattice curvature in the 3D subsystem, resulting in bifurcational interstitial states there. The bifurcational states give rise to a fundamentally new mechanism of plastic deformation and fracture—plastic distortion—which is allowed for neither in continuum mechanics nor in fracture mechanics. The paper substantiates that plastic distortion plays a leading role in dislocation generation and glide, plasticity and superplasticity, plastic strain localization and fracture.

Sobre autores

V. Panin

Institute of Strength Physics and Materials Science, Siberian Branch; National Research Tomsk Polytechnic University; National Research Tomsk State University

Autor responsável pela correspondência
Email: paninve@ispms.tsc.ru
Rússia, Tomsk, 634055; Tomsk, 634050; Tomsk, 634050

V. Egorushkin

Institute of Strength Physics and Materials Science, Siberian Branch; National Research Tomsk State University

Email: paninve@ispms.tsc.ru
Rússia, Tomsk, 634055; Tomsk, 634050

A. Panin

Institute of Strength Physics and Materials Science, Siberian Branch

Email: paninve@ispms.tsc.ru
Rússia, Tomsk, 634055

A. Chernyavskii

S.P. Korolev Rocket and Space Corporation “Energia”

Email: paninve@ispms.tsc.ru
Rússia, Korolev, Moscow area, 141070

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Declaração de direitos autorais © Pleiades Publishing, Ltd., 2016