Interrelation diffusion and mechanical waves at the initial stage of ion beam action on the metallic surface

Результат исследований: Материалы для книги/типы отчетовМатериалы для конференции

1 Цитирования (Scopus)

Аннотация

The paper presents a coupling non-isothermal mathematical model of the initial stage of ion implantation into the metallic surface. The model takes into account the finiteness of relaxation times of heat and mass fluxes, the stresses and strains arising as the result of particle impact on the substrate surface. The mathematical model was solved numerically. It was shown that impurity distribution differs essentially on the forecast of pure diffusion theory. This model could be useful for better understanding the interacting processes accompanying the mechanical and thermal fields evolution in treated materials.

Язык оригиналаАнглийский
Название основной публикацииProceedings of the XXV Conference on High-Energy Processes in Condensed Matter, HEPCM 2017
Подзаголовок основной публикацииDedicated to the 60th Anniversary of the Khristianovich Institute of Theoretical and Applied Mechanics SB RAS
ИздательAmerican Institute of Physics Inc.
Том1893
ISBN (электронное издание)9780735415782
DOI
СостояниеОпубликовано - 26 окт 2017
Событие25th Conference on High-Energy Processes in Condensed Matter, HEPCM 2017 - Novosibirsk, Российская Федерация
Продолжительность: 5 июн 20179 июн 2017

Конференция

Конференция25th Conference on High-Energy Processes in Condensed Matter, HEPCM 2017
СтранаРоссийская Федерация
ГородNovosibirsk
Период5.6.179.6.17

ASJC Scopus subject areas

  • Physics and Astronomy(all)

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  • Цитировать

    Parfenova, E. S., & Knyazeva, A. G. (2017). Interrelation diffusion and mechanical waves at the initial stage of ion beam action on the metallic surface. В Proceedings of the XXV Conference on High-Energy Processes in Condensed Matter, HEPCM 2017: Dedicated to the 60th Anniversary of the Khristianovich Institute of Theoretical and Applied Mechanics SB RAS (Том 1893). [030109] American Institute of Physics Inc.. https://doi.org/10.1063/1.5007567