Structure and phase composition of a coat synthesized from Ti-Ni-Ti laminate on TiNi substrate
A gradient coating was created on nickelide titanium substrate by a reaction synthesis method using magnetron sputtering of a three-layer Ti-Ni-Ti laminate. The synthesized coating is intended to study the formation patterns of structure and phase composition of coatings, which can be created by self-propagating reaction synthesis to improve the corrosion resistance of nickelide titanium implants. A comparative evaluation of the samples with coating and without it showed that the present nanocrystalline layers of titanium oxycarbonitrides in the coating effectively increase its cytocompatibility.
Keywords
никелид титана,
градиентное кристаллическое покрытие,
ламинат,
синтез,
структура,
диффузия,
nickelide titanium,
gradient crystal coating,
laminate,
synthesis,
structure,
diffusionAuthors
Marchenko E.S. | Research Institute of Medical Materials and Shape-Memory Implants | marchenko84@vtomske.ru |
Yasenchuk Yu.F. | Research Institute of Medical Materials and Shape-Memory Implants | yayuri2008@gmail.com |
Gunther S.V. | Research Institute of Medical Materials and Shape-Memory Implants | guntersv@inbox.ru |
Baigonakova G.A. | Research Institute of Medical Materials and Shape-Memory Implants | gat27@mail.ru |
Kokorev O.V. | Research Institute of Medical Materials and Shape-Memory Implants | kokorevov@yandex.ru |
Shishelova A.A. | National Research Tomsk State University | arina9906@rambler.ru |
Fatyushina O.A. | Siberian State Medical University | oksanafat.tomsk@gmail.com |
Всего: 7
References
Yoneyama T. and Miyazaki S. Shape Memory Alloys for Biomedical Applications. - Woodhead Publishing Limited. 2009. - 327 p.
Yasenchuk Yu., Marchenko E., Gunther V., et al. // Materials. - 2019. - V. 12. - P. 2405.
Potekaev A.I., Klopotov A.A., and Matyunin A.N. // Inorgan. Mater.: Appl. Res. - 2011. - V. 2. - No. 4. - P. 387-394.
Braz Fernandez F.M. Shape Memory Alloys. Processing, Characterization and Applications. - Intech, Portugal, 2013. - 278 p.
Jones DA. Principles and prevention of corrosion. - 2nd ed. - Upper Saddle River: Prentice Hall, 1996. - 572 p.
Кокорев О.В., Ходоренко В.Н., Байгонакова Г.А. и др. // Изв. вузов. Физика. - 2018. - Т. 61. - № 9. - С. 164-170.
Gunther V., Yasenchuk Y., Chekalkin T., et al. // Adv. Powder Technol. - 2019. - V. 30. - No. 4. - P. 673-680.
Barbee T.W. and Weihs T.P. Ignitable heterogeneous stratified structure for the propagation of an internal exothermic chemical reaction along an expanding wavefront and method of making same // Patent No. 5538795A, U.S. (07 July 1996).
Trenkle J.C., Wang J., Weihs T.P., and Hufnagel T.C. // Appl. Phys. Lett. - 2005. - V. 87. - No. 15. - P. 153108.
Besnoin E., Cerutti S., Knio O.M., and Weihs T.P. // J. Appl. Phys. - 2002. - V. 92. - No. 9. - P. 5474-5481.
Salloum M. and Knio O.M. // Combust. Flame. - 2010. - V. 157. - No. 2. - P. 288-295.
Alawieh L., Knio O.M., and Weihs T.P. // J. Appl. Phys. - 2011. - V. 110. - No. 1. - P. 013509.
Baras F. and Kondepudi D. // J. Phys. Chem. - 2007. - V. 111. - No. 23. - P. 6457-6468.
Хлусов И.А., Пичугин В.Ф., Пустовалова А.А. и др. // Бюл. Сибирской медицины. - 2015. - Т. 14. - № 2 - С. 55-66.
Lopez-Huerta F., Cervantes B., Gonzalez O., et al. // Materials (Basel). - 2014. - V. 7. - No. 6. -P. 4105-4117.