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Influence of nanosized incoherent particles on dislocation annihilation in heterophase aluminum-matrix crystalline alloys O. I. Daneyko, T. A. Kovalevskaya, Т. А. Shalygina, V. G. Simonenko

Contributor(s): Daneyko, Olga I | Kovalevskaya, Tatiana A | Shalygina, Т. А | Simonenko, V. GMaterial type: ArticleArticleContent type: Текст Media type: электронный Subject(s): математическое моделирование | пластическая деформация | дисперсионно-упрочненные материалы | наноразмерные частицы | плотность дислокацийGenre/Form: статьи в журналах Online resources: Click here to access online In: Russian physics journal Vol. 64, № 10. P. 1893-1898Abstract: Using mathematical modeling, patterns of changing the densities of dislocation subsystem components in dispersion hardened materials have been revealed depending on the volume fraction and scale characteristics of the hardening phase at different deformation temperatures. It has been shown that in all examined materials with hardening particles of different sizes, the dislocation annihilation significantly decreases with the volume fraction of nanosized incoherent particles. It has been found that the dislocation density in prismatic loops is largely determined by the particle sizes and the volume fraction of the hardening phase.
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Using mathematical modeling, patterns of changing the densities of dislocation subsystem components in dispersion hardened materials have been revealed depending on the volume fraction and scale characteristics of the hardening phase at different deformation temperatures. It has been shown that in all examined materials with hardening particles of different sizes, the dislocation annihilation significantly decreases with the volume fraction of nanosized incoherent particles. It has been found that the dislocation density in prismatic loops is largely determined by the particle sizes and the volume fraction of the hardening phase.

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