Triple junctions and grain size Influence on oxygen diffusion into the surface layer of material | Izvestiya vuzov. Fizika. 2021. № 4. DOI: 10.17223/00213411/64/4/50

Triple junctions and grain size Influence on oxygen diffusion into the surface layer of material

The paper presents a model of grain-boundary diffusion, which can be used to describe the process of oxygen penetration from the surface into the depth of the material during oxidation. We believe that the sample temperature can be controlled over time. The sample material in the model is represented by alternating grains with a clear selection of triple junctions between them. The model includes the parameter of the ratio of grain sizes and the distance between them so that it allows studying diffusion in a material with a micro and nano structure.

Download file
Counter downloads: 50

Keywords

grain boundary diffusion, oxygen accumulation, mathematical modeling

Authors

NameOrganizationE-mail
Chepak-Gizbrekht M.V.Institute of Strength Physics and Materials Science of SB RASmv2016@mail.ru
Всего: 1

References

Astafurova E.G., Melnikov E.V., Astafurov S.V., et al. // Phys. Mesomech. - 2019. - V. 22, - No. 4. - P. 313-326.
Weng S., Qiao L., and Wang P. // Appl. Surf. Sci. - 2018. - V. 444. - P. 721-728.
Katsman A., Yaish Y., Rabkin E., and Beregovsky M. // J. Electron. Mater. - 2010. - V. 39. - No. 4. - P. 365-370.
Князева А.Г., Крюкова О.Н., Маслов А.Л. // Изв. вузов. Физика. - 2020. - Т. 63. - № 6. - С. 63-69.
Yu Y.J., Tian X.-G., and Xiong Q.-L. // Eur. J. Mech. A. Solids. - 2016. - V. 60. - P. 238-253.
Aoto T., Sato K., Mian Md.S., and Okimura K. // J. Alloys and Compounds. - 2018. - V. 748. - P. 87-92.
Desissa T.D., Haugsruda R., Wiikb K., and Norby T. // Solid State Ionics. - 2018. - V. 320. - P. 215-220.
Чумаков Ю.А., Князева А.Г. // Инженерно-физический журн. - 2008. - T. 81. - № 1. - С. 147-156.
Wang Y., Luo Y., Wang Z., et al. // JMMM. - 2018. - V. 458. - P. 85-89.
Olsén J., Shen Z., Liu L., et al. // Mater. Characterizat. - 2018. - V. 141. - P. 1-7.
Divinski S.V. // Part I. Materialovedenie. - 2008. - No. 8. - P. 42-49.
Klinger L. and Rabkin E. // Acta Mater. - 1999. - V. 47. - No. 3. - P. 725-734.
Перевезенцев В.Н. // ЖТФ. - 2001. - Т. 71. - Вып. 11. - P. 136-138.
Красильников В.В., Савотченко С.Е. // Известия РАН. Сер. физич. - 2009. - Т. 73. - № 9. - С. 1348-1354.
Herzig C. and Divinski S.V. // Mater. Trans. - 2003. - V. 44. - No. 1. - P. 14-27.
Belova I.V., Fiedler T., Kulkarni N., and Murch G.E. // Phil. Mag. - 2012. - V. 92. - No. 14. - P. 1748-1763.
Belova I.V. and Murch G.E. // Phil. Mag. - 2009. - V. 89. - No. 7. - P. 665-675.
Saha S. and Motalab M. // Comput. Mater. Sci. - 2018. - V. 149. - P. 360-372.
Lipnitskii A.G., Nelasov I.V., and Kolobov Yu.R. // Phys. Mesomech. - 2013. - V. 16. - No. 1. - P. 67-73.
Chepak-Gizbrekht M.V. and Knyazeva A.G. // Comput. Mater. Sci. - 2020. - V. 184. - P. 109896.
Knyazeva A.G. // AIP Conference Proceedings. - 2015. - V. 1683. - P. 020084.
Maslov A.L., Kryukova O.N., Knyazeva A.G., and Bukrina N.V. // AIP Conf. Proc. - 2018. - V. 2051. - P. 020188.
Knyazeva A.G., Kryukova O.N., and Maslov A.L. // AIP Conf. Proc. - 2019. - V. 2167. - P. 020162.
Landolt-Börnstein. Numerical Data and Functional Relationships in Science and Technology - New Series. Diffusion in Solid Metals and Alloys [Electronic resource] / ed. H. Mehrer. - Berlin: Springer, 1990. - 1360 p. URL: http://onlinelibrary.wiley.com/doi/10.1002/crat.2170231029/abstract. (access date: 14.12.2020). - DOI: 10.1002/crat.2170231029.
Колобов Ю.Р., Липницкий А.Г., Иванов М.Б., Голосов Е.В. // Композиты и наноструктуры. - 2009. - № 2. - С. 5-24.
Севидова Е.К., Симонова А.А. // Электронная обработка материалов. - 2011. - Т. 47. - № 2. - С. 70-75.
 Triple junctions and grain size Influence on oxygen diffusion into the surface layer of material | Izvestiya vuzov. Fizika. 2021. № 4. DOI: 10.17223/00213411/64/4/50

Triple junctions and grain size Influence on oxygen diffusion into the surface layer of material | Izvestiya vuzov. Fizika. 2021. № 4. DOI: 10.17223/00213411/64/4/50