Metastability, adiabatic shear bands initiation and plastic strain localization in the AMg6 alloy under dynamic loading

New conception of adiabatic shear bands (ASB) and adiabatic shear failure mechanisms are proposed as special type of critical phenomen, structural-scaling transition, in the ensembles of microshears, governed by the characteristic non-linearity (metastability) of stored (free) energy of solid with m...

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Main Authors: Mikhail Sokovikov, Sergey Uvarov, Mikhail Simonov, Vasiliy Chudinov, Oleg Naimark
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2024-04-01
Series:Fracture and Structural Integrity
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Online Access:https://www.fracturae.com/index.php/fis/article/view/4407/3995
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author Mikhail Sokovikov
Sergey Uvarov
Mikhail Simonov
Vasiliy Chudinov
Oleg Naimark
author_facet Mikhail Sokovikov
Sergey Uvarov
Mikhail Simonov
Vasiliy Chudinov
Oleg Naimark
author_sort Mikhail Sokovikov
collection DOAJ
description New conception of adiabatic shear bands (ASB) and adiabatic shear failure mechanisms are proposed as special type of critical phenomen, structural-scaling transition, in the ensembles of microshears, governed by the characteristic non-linearity (metastability) of stored (free) energy of solid with mesodefects. Corresponding free energy release kinetics provides experimentally observed ASB induced staging of plastic strain localization and transition to adiabatic shear failure. ASB staging follows to collective properties of microshears ensemble given by the self-similar solutions of evolution equation providing spatial-temporal microshears localization, momentum transfer and damage localization. The criticality of ASB induced plastic strain localization and failure allows us to avoid the discrepancy in the interpretation of ASB effects as thermo-plastic instability in the balance of the stored energy and structural DRX transformation. The microshear ensemble is considered as the second phase and initiation of collective modes provide different staging according to the metastability decomposition and ASB scaling properties following to the self-similar solutions. Self-similar nature of microshears collective modes providing the ASB dynamics is analyzed as the mechanism of steady plastic wave front unversality in shocked materials. The dynamic split Hopkinson pressure bar tests were conducted with AlMg6 alloy combined with �in-situ� imaging of temperature kinetics by CEDIP Silver 450M high-speed infrared camera with conclusion of the secondary role of thermoplastic instability at the ASB staging. The microstructural study performed by an electron microscopy revealed the correlated behavior of the ensemble of defects, which can be classified as a structural transition and precursor of ASB induced strain localization and failure. The modeling reflecting the links of self-similar solutions in microshear ensembles with relaxation properies and damage localization was applied for the comparative analysis of ASB staging and temperature dynamics given be the infrared imaging
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spelling doaj-art-c0b386655af643b0874215d2487357e32025-01-03T00:40:47ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932024-04-01186825526610.3221/IGF-ESIS.68.1710.3221/IGF-ESIS.68.17Metastability, adiabatic shear bands initiation and plastic strain localization in the AMg6 alloy under dynamic loadingMikhail SokovikovSergey UvarovMikhail SimonovVasiliy ChudinovOleg NaimarkNew conception of adiabatic shear bands (ASB) and adiabatic shear failure mechanisms are proposed as special type of critical phenomen, structural-scaling transition, in the ensembles of microshears, governed by the characteristic non-linearity (metastability) of stored (free) energy of solid with mesodefects. Corresponding free energy release kinetics provides experimentally observed ASB induced staging of plastic strain localization and transition to adiabatic shear failure. ASB staging follows to collective properties of microshears ensemble given by the self-similar solutions of evolution equation providing spatial-temporal microshears localization, momentum transfer and damage localization. The criticality of ASB induced plastic strain localization and failure allows us to avoid the discrepancy in the interpretation of ASB effects as thermo-plastic instability in the balance of the stored energy and structural DRX transformation. The microshear ensemble is considered as the second phase and initiation of collective modes provide different staging according to the metastability decomposition and ASB scaling properties following to the self-similar solutions. Self-similar nature of microshears collective modes providing the ASB dynamics is analyzed as the mechanism of steady plastic wave front unversality in shocked materials. The dynamic split Hopkinson pressure bar tests were conducted with AlMg6 alloy combined with �in-situ� imaging of temperature kinetics by CEDIP Silver 450M high-speed infrared camera with conclusion of the secondary role of thermoplastic instability at the ASB staging. The microstructural study performed by an electron microscopy revealed the correlated behavior of the ensemble of defects, which can be classified as a structural transition and precursor of ASB induced strain localization and failure. The modeling reflecting the links of self-similar solutions in microshear ensembles with relaxation properies and damage localization was applied for the comparative analysis of ASB staging and temperature dynamics given be the infrared imaginghttps://www.fracturae.com/index.php/fis/article/view/4407/3995plastic shear localizationdynamic loadingnumerical simulationevolution of the defect structurestructural studies
spellingShingle Mikhail Sokovikov
Sergey Uvarov
Mikhail Simonov
Vasiliy Chudinov
Oleg Naimark
Metastability, adiabatic shear bands initiation and plastic strain localization in the AMg6 alloy under dynamic loading
Fracture and Structural Integrity
plastic shear localization
dynamic loading
numerical simulation
evolution of the defect structure
structural studies
title Metastability, adiabatic shear bands initiation and plastic strain localization in the AMg6 alloy under dynamic loading
title_full Metastability, adiabatic shear bands initiation and plastic strain localization in the AMg6 alloy under dynamic loading
title_fullStr Metastability, adiabatic shear bands initiation and plastic strain localization in the AMg6 alloy under dynamic loading
title_full_unstemmed Metastability, adiabatic shear bands initiation and plastic strain localization in the AMg6 alloy under dynamic loading
title_short Metastability, adiabatic shear bands initiation and plastic strain localization in the AMg6 alloy under dynamic loading
title_sort metastability adiabatic shear bands initiation and plastic strain localization in the amg6 alloy under dynamic loading
topic plastic shear localization
dynamic loading
numerical simulation
evolution of the defect structure
structural studies
url https://www.fracturae.com/index.php/fis/article/view/4407/3995
work_keys_str_mv AT mikhailsokovikov metastabilityadiabaticshearbandsinitiationandplasticstrainlocalizationintheamg6alloyunderdynamicloading
AT sergeyuvarov metastabilityadiabaticshearbandsinitiationandplasticstrainlocalizationintheamg6alloyunderdynamicloading
AT mikhailsimonov metastabilityadiabaticshearbandsinitiationandplasticstrainlocalizationintheamg6alloyunderdynamicloading
AT vasiliychudinov metastabilityadiabaticshearbandsinitiationandplasticstrainlocalizationintheamg6alloyunderdynamicloading
AT olegnaimark metastabilityadiabaticshearbandsinitiationandplasticstrainlocalizationintheamg6alloyunderdynamicloading