Structural parameters of mechanically alloyed cementite doped with nickel and chromium

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Variation ofstructural parameters of phases in the mechanically alloyed system (Fe100-x-yCrxNiy)75C25as a function of the annealing temperature and chromium andnickel concentrations is considered. The data obtained earlier by X-raydiffraction are considered here in combination; it is shown thatlattice parameters of the cementite phase in different samples shouldbe compared for samples with the best conditions of cementitepreparation. The lattice parameters of the phases formed after mechanicalalloying differ from the reference values and approach them asthe annealing temperature grows. The lattice parameters of cementite resultedfrom annealing also vary depending on the doping element anddiffer from both reference cementite and undoped mechanically alloyed cementite,which is explained by the influence of chromium and nickelon the lattice.

Sobre autores

L. Dobysheva

Udmurt Federal Research Center of the Ural Branch of the Russian Academy of Sciences, Izhevsk, 426067 Russia

Autor responsável pela correspondência
Email: lyuka17@mail.ru

Bibliografia

  1. Чулкина А.А., Ульянов А.И., Ульянов А.Л. и др. // Физика металлов и металловедение. 2015. Т. 116. № 1.С. 21. [Chulkina A.A., Ulyanov A.I., Ulyanov A.L., etal. // The Physics of Metals and Metallography. 2015. V. 116. № 1. P. 19. https://doi.org/13.1134/S0031918X14100056]
  2. Чулкина А.А., Ульянов А.И., Ульянов А.Л. и др. // Физика металлов и металловедение. 2015. Т. 116. № 3. С. 309. [Chulkina A.A., Ulyanov A.I., Zagainov A.V.,et al. // The Physics of Metals and Metallography. 2015.V. 116. № 3. P. 293. https://doi.org/10.1134/S0031918X15030035]
  3. Ульянов А.И.,Чулкина А.А., Волков В.А. и др. //Физика металлов и металловедение. 2017. Т. 118. № 7. С. 725. [Ul’yanovA.I., Chulkina A.A.,Volkov V.A., et al. // The Physics of Metals andMetallography.2017. V. 118. № 7. P. 691. https://doi.org/10.1134/S0031918X17050143]
  4. Чулкина А.А.,Ульянов А.И., Волков В.А. и др. // Физика металлов и металловедение. 2018. Т. 119. № 3. С. 271. [Chulkina A.A., Ul’yanov A.I.,Volkov V.A., et al. // The Physics of Metals andMetallography. 2018. V. 119. № 3. P. 258. https://doi.org/10.1134/S0031918X18030031]
  5. Волков В.А., Чулкина А.А., Елькин И.А., Елсуков Е.П. // Физикаметаллов и металловедение. 2016. Т. 117. № 2. С. 198.[Volkov V.A., Chulkina A.A., El’kin I. A., Elsukov E.P. // The Physics of Metals and Metallography. 2016. V. 117. № 2. P. 178. https://doi.org/10.1134/S0031918X15100142]
  6. Ульянов А.И., Чулкина А.А., Ульянов А.Л. и др. // Изв. Рос. акад. наук.Сер. физ. 2018. Т. 82. № 7. С. 922. [Ulyanov A.I., Chulkina A.A., Ulyanov A.L., et al. // Bulletin ofthe Russian Academy of Sciences: Physics. 2018. V. 82.№ 7. P. 830. https://doi.org/10.3103/S1062873818070420]
  7. Ульянов А.Л., Ульянов А.И., Чулкина А.А. и др. // Изв.Рос. акад. наук. Сер. физ. 2019. Т. 83. № 6.С. 778. [Ulyanov A.L., Ulyanov A.I., Chulkina A.A., etal. // Bulletin of the Russian Academy of Sciences: Physics.2019. V. 83. № 6. P. 705. https://doi.org/10.3103/S1062873819060352]
  8. Чулкина А.А., Ульянов А.Л., Ульянов А.И. //Изв. Рос. акад. наук. Сер. физ. 2020. Т. 84. № 9.С. 1325. [Chulkina A.A., Ulyanov A.L., Ulyanov A.I. // Bulletin of the Russian Academy of Sciences: Physics.2020. V. 84. № 9. P. 1131.] https://doi.org/10.3103/S1062873820090129
  9. Чулкина А.А., Ульянов А.И., Волков В.А. и др.//Журн. технической физики. 2020. Т. 90. № 5. С. 787. [Chulkina A.A., Ulyanov A.I., Volkov V.A., et al. // Technical Physics. 2020. V.65. № 5. P. 754. https://doi.org/10.1134/S1063784220050072]
  10. Дьяконова Н.П., Шелехов Е.В., Свиридова Т.А., Резников А.А. // Заводскаялаборатория. 1997. Т. 63. № 10. С. 17.
  11. Fasiska E.J., Jeffry G.A. // Acta Crystallogr. 1965. V. 19. P. 463. https://doi.org/10.1107/S0365110X65003602
  12. Khannanov A., KiiamovA., ValimukhametovaA., et al. // J. of the American Chemical Society.2018. V. 140. P. 9051. https://doi.org/10.1021/jacs.8b04829
  13. Dobysheva L.V. //Physica B: Condensed Matter. 2024. V. 690. P. 416279. https://doi.org/10.1016/j.physb.2024.416279

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