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Static Immersion Tests of Corrosion-Resistant Steel Alloyed with Silver and Titanium: Ion Outflow

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Russian Metallurgy (Metally) Aims and scope

Abstract—Corrosion-resistant steel alloyed with silver and titanium to give it antibacterial properties for medical purposes is designed. Several compositions are investigated under static conditions by holding them in solutions with 1.68–9.18 pH for a long time. The metal concentration in the solution is determined by inductively coupled plasma atomic emission spectrometry. A nonlinear increase in the element concentration in the solutions in time is observed during prolonged holding of steel in different media. No obvious changes in the silver concentration depending on a sample, medium, and even the holding time are revealed: the element concentration in the solution is <0.001 mg/L.

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REFERENCES

  1. D. Grabco, O. Shikimaka, C. Pyrtsac, A. Prisacaru, Z. Barbos, M. Bivol, S. Alexandrov, D. Vilotic, and M. Vilotic, “Microstructures generated in AISI 316L stainless steel by Vickers and Berkovich indentations,” Mater. Sci. Eng. A 805, 140597 (2020).

  2. S. Virtanen, I. Milošev, E. Gomez-Barrena, R. Trebše, J. Salo, and Y. T. Konttinen, “Special modes of corrosion under physiological and simulated physiological conditions,” Acta Biomater. 4 (3), 468–476 (2008).

  3. E. K. Brooks, R. P. Brooks, and M. T. Ehrensberger, “Effects of simulated inflammation on the corrosion of 316L stainless steel,” Mater. Sci. Eng. C 71, 200–205 (2017).

  4. A. A. Kirsankin, T. A. Kalaida, M. A. Kaplan, M. A. Smirnov, A. Y. Ivannikov, and M. A. Sevostyanov, “Characterization of spherical stainless steel powders prepared by electric arc spraying process,” Mater. Sci. Eng. 848, 012033 (2020).

  5. M. A. Kaplan, A. A. Kirsankin, M. A. Smirnov, T. A. Kalaida, E. E. Baranov, Yo. O. Ustinova, and M. A. Sevostyanov, “Properties of spherical stainless steel powders,” Mater. Sci. Eng. 525, 012075 (2019).

  6. Q. Chen and G. A. Thouas, “Metallic implant biomaterials,” Mater. Sci. Eng. R 87, 1–57 (2015).

  7. A. G. Kolmakov, A. Yu. Ivannikov, M. A. Kaplan, A. A. Kirsankin, and M. A. Sevost’yanov, “Corrosion-resistant steels in additive manufacturing,” Izv. Vyssh. Uchebn. Zaved., Chern. Metall. 65 (9), 619–650 (2021).

  8. GOST (State Standard) 30208–94: Surgery Tools. Metallic Materials. Part 1. Stainless Steel (Izd. Standartov, Moscow, 2002).

  9. K. R. Sreekumari, K. Nandakumar, K. Takao, and Y. Kikuchi, “Silver containing stainless steel as a new outlook to abate bacterial adhesion and microbiologically influenced corrosion,” ISIJ Intern. 43 (11), 1799–1806 (2003).

  10. B. A. Rogers and N. J. Little, “Surgical site infection with methicillinresistant Staphylococcus aureus after primary total hip replacement,” J. Bone Jt. Surg. 90, 1537–1538 (2008).

  11. M. K. Rai, S. D. Deshmukh, A. P. Ingle, and A. K. Gade, “Silver nanoparticles: the powerful nanoweapon against multidrug-resistant bacteria,” Appl. Microbiol. 112, 841–852 (2012).

  12. M. Mirzaee, M. Vaezi, and Y. Palizdar, “Synthesis and characterization of silver doped hydroxyapatite nanocomposite coatings and evaluation of their antibacterial and corrosion resistance properties in simulated body fluid,” Mater. Sci. Eng. C 69, 675–684 (2016).

  13. S.-M. Yang, Y.-C. Chen, Y.-T. Pan, and D.-Y. Lin, “Effect of silver on microstructure and antibacterial property of 2205 duplex stainless steel,” Mater. Sci. Eng. 63, 376–383 (2016).

  14. J.-K. Du, C.-Y. Chao, L.-L. Wei, C.-H. Wang, J.‑H. Chen, K.-K. Chen, and R.-B. Huang, “Effects of Ag-rich nano-precipitates on the antibacterial properties of 2205 duplex stainless steel,” Metals 11, 23 (2021).

  15. M. A. Kaplan, A. Yu. Ivannikov, S. V. Konushkin, E. O. Nasakina, A. S. Baikin, B. B. Kartabaeva, A. D. Gorbenko, A. G. Kolmakov, and M. A. Sevost’yanov, “Study of structure, mechanical, and antibacterial properties of corrosion-resistant steel alloyed with silver and titanium,” Dokl. Russ. Acad. Nauk. Khimiya, Nauki Mater. 502, 41–49 (2022).

  16. E. O. Nasakina, M. A. Sudarchikova, K. V. Sergienko, S. V. Konushkin, and M. A. Sevost’yanov, “Ion release and surface characterization of nanostructured nitinol during long-term testing,” Nanomater. 9 (11), 1569 (2019).

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This work was carried out in terms of state assignment no. 075-00715-22-00.

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Correspondence to E. O. Nasakina.

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Translated by T. Gapontseva

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Nasakina, E.O., Kaplan, M.A., Gorbenko, A.D. et al. Static Immersion Tests of Corrosion-Resistant Steel Alloyed with Silver and Titanium: Ion Outflow. Russ. Metall. 2022, 746–752 (2022). https://doi.org/10.1134/S0036029522070096

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  • DOI: https://doi.org/10.1134/S0036029522070096

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