Page 325 - Докторська дисертація_Ткачук
P. 325

325

                      11. Leinenbach C., Eifler D. Fatigue and cyclic deformation behaviour of surface-

                         modified  titanium  alloys  in  simulated  physiological  media.  Biomaterials.

                         2006. Vol. 27. P. 1200–1208.

                      12. Lin  Y.-C.,  Hu  C.-C.,  Nguyen  T.-T.  et  al.  Study  on  surface  hydrogenated

                         Ti6Al4V alloy for orthopedic implants. Journal of Materials Research and

                         Technology. 2023. Vol. 10. Article No. 12066.

                      13. Variola  F.,  Yi  J.H.,  Richert  L.  et  al.  Tailoring  the  surface  properties  of

                         Ti6Al4V  by  controlled  chemical  oxidation.  Biomaterials.  2008.  Vol.  29.

                         P. 1285–1298.

                      14. Spoerke E.D., Murray N.G., Li H. et al. A bioactive titanium foam scaffold

                         for bone repair. Acta Biomaterialia. 2005. Vol. 1. P. 523–533.

                      15. Mahlobo  M.G.R.,  Chikosha  L.,  Olubambi  P.A.  Study  of  the  corrosion

                         properties  of  powder  rolled  Ti-6Al-4V  alloy  applied  in  the  biomedical

                         implants.  Journal  of  Materials  Research  and  Technology.  2022.  Vol.  18.

                         P. 3631–3639.

                      16. Liu G., Leng K., He X. et al. Microstructure evolution of Ti–6Al–4V under

                         cold rolling + low temperature nitriding process. Progress in Natural Science:

                         Materials International. 2022. Vol. 32. P. 424–432.

                      17. González de Arrieta I., González-Fernández L., Risueño E. et al. Isothermal

                         oxidation  kinetics  of  nitrided  Ti-6Al-4V  studied  by  infrared  emissivity.

                         Corrosion Science. 2020. Vol. 173. Article No. 108723.

                      18. Singh  S.,  Pandey  K.K.,  Balla  V.K.  et  al.  Corrosion,  wear  and  in-vitro

                         biocompatibility property of surface mechanical attrition treatment processed

                         Ti-6Al-4V alloy. JOM. 2021. Vol. 73. P. 4387–4396.

                      19. Vasilescu  E.,  Drob  P.,  Raducanu  D.  et  al.  Effect  of  thermo-mechanical

                         processing  on  the  corrosion  resistance  of  Ti6Al4V  alloys  in  biofluids.

                         Corrosion Science. 2009. Vol. 51. 2885–2896.

                      20. Ahuir-Torres J.I., Kotadia H.R., Öpöz T.T. Effect of the electrical discharge

                         machining on Ti6Al4V corrosion behaviour in simulated body fluid. Surface

                         and Coatings Technology. 2023. Vol. 470. Article No. 129830.
   320   321   322   323   324   325   326   327   328   329   330