Mobility of edge dislocations in stressed iron crystals during irradiation

The behavior of a/2(111){110} edge dislocations in iron in shear loading and irradiation conditions was studied by means of molecular dynamics simulation. Edge dislocations were exposed to shock waves formed by atomic displacement cascades of different energies. It was shown that starting from a cer...

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Bibliographic Details
Published in:AIP Conference Proceedings Vol. 1683. P. 020095-1-020095-4
Other Authors: Korchuganov, Aleksandr V., Kryzhevich, Dmitrij S., Chernov, Vyacheslav M., Psakhie, Sergey G. 1952-2018, Zolnikov, Konstantin P.
Format: Article
Language:English
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Online Access:http://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000578127
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Summary:The behavior of a/2(111){110} edge dislocations in iron in shear loading and irradiation conditions was studied by means of molecular dynamics simulation. Edge dislocations were exposed to shock waves formed by atomic displacement cascades of different energies. It was shown that starting from a certain threshold amplitude shock waves cause displacement of edge dislocations in the loaded samples. Calculations showed that the larger the shear load and the amplitude of the shock wave, the greater the displacement of dislocations in the crystallite.
Bibliography:Библиогр.: 20 назв.
ISSN:0094-243X