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A Study of Heat Resistance of Aluminized Coatings on Titanium

  • THERMOCHEMICAL TREATMENT AND COATINGS
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Metal Science and Heat Treatment Aims and scope

The heat resistance of titanium with coatings based on titanium aluminides deposited by liquid-phase aluminizing followed by a high-temperature hold is studied. The effect of the duration of the hold of titanium specimens in an aluminum melt and of the duration of the high-temperature exposure of the aluminized specimens on the chemical and phase composition, structure and heat resistance of the coatings is determined.

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References

  1. B. A. Kolachev, V. I. Elagin, and V. A. Livanov, Physical Metallurgy and Heat Treatment of Nonferrous Metals and Alloys [in Russian], MISiS, Moscow (2005), 432 p.

  2. Yu. B. Egorova, L. V. Davydenko, S. B. Belova, and E. N. Egorov, “Titanium alloys for the automotive industry,” Sovr. Mashinostr., Nauka Obraz., No. 3, 1137 – 1146 (2013).

  3. I. S. Pol’kin, O. N. Grebenyuk, and V. S. Salenko, “Titanium-based intermetallics,” Tekhnol. Legk. Splavov, No. 2, 5 – 15 (2010).

  4. S. A. Pyachin, A. A. Burkov, and V. S. Komarova, “Formation and study of electrospark coatings based on titanium aluminides,” Poverh., Rentgen., Sinkhr. Neitr. Issled., No. 6, 16 – 24 (2013).

  5. A. I. Kovtunov, A. G. Bochkarev, and D. I. Plakhotny, “A study of the structure and properties of clad titanium-based intermetallic alloys,” Materialovedenie, No. 5, 13 – 18 (2021).

  6. P. G. Ovcharenko, T. M. Makhneva, I. N. Shabanova, and I. S. Terebova, “Composition of surface layers of titanium after electrospark alloying,” Metalloved. Term. Obrab. Met., No. 3(777), 15 – 18 (2020).

  7. V. S. Muratov and E. A. Morozova, “Formation of structure and properties of titanium under laser surface alloying with nickel and manganese,” Metalloved. Term. Obrab. Met., No. 9(759), 36 – 40 (2018).

  8. V. A. Il’in and A. V. Panarin, “Aluminum coatings and methods of their deposition,” Aviats. Mater. Tekhnol., No. 4, 37 – 42 (2014).

  9. A. I. Kovtunov and Yu. Yu. Khokhlov, “Structure of coatings in liquid-phase aluminizing of titanium,” Tekhnol. Met., No. 9, 22 – 26 (2021).

  10. A. I. Kovtunov, Yu. Yu. Khokhlov, and S. V. Myamin, “A study of the processes of wetting and spreading of aluminum over titanium on formation of composite foam aluminum – titanium materials,” Tsvet. Met., No. 6, 74 – 78 (2017).

  11. O. V. Shishkin, Vacuum Container Soldering of Titanium and Titanium-Aluminum Structures with Aluminum-Base Solders, Author’s Abstract of Candidate’s Thesis [in Russian], TGU, Tolyatti (2006), 164 p.

  12. L. M. Gurevich, “Mechanisms of structure formation in interaction between titanium and aluminum melt,” Izv. Volgograd. Tekh. Univ., No. 6, 6 – 13 (2013).

  13. L. M. Gurevich, Yu. P. Trykov, A. N. Zhorov, et al., “Diffusion interaction in titanium-aluminum bimetal VT1–AD1 in the presence of liquid phase,” Izv. VGTU, Ser. Materialoved. Proch. Elem. Konstr., Volgograd, No. 3, Is. 1, pp. 9 – 12 (2005).

  14. P. A. Rebinder and E. D. Shchukin, “Surface phenomena in solids during their deformation and fracture,” Usp. Fiz. Nauk, 108(1), 3 – 42 (1972).

    Article  CAS  Google Scholar 

  15. C. Leyens and M. Peters, Titanium and Titanium Alloys. Fundamentals and Applications, WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim (2003), 532 p.

  16. S. S. Dautov, Degradation of the Surface of Blades of GTE Aircraft Engines from Intermetallic Alloy TNM-B1 and development of Methods for Their Protection, Author’s Abstract of Candidate’s Thesis [in Russian], Ufa (2005), 135 p.

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Correspondence to Yu. Yu. Khokhlov.

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Translated from Metallovedenie i Termicheskaya Obrabotka Metallov, No. 1, pp. 19 – 22, January, 2023.

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Kovtunov, A.I., Khokhlov, Y.Y. & Zhuravel, V.S. A Study of Heat Resistance of Aluminized Coatings on Titanium. Met Sci Heat Treat 65, 18–21 (2023). https://doi.org/10.1007/s11041-023-00885-3

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  • DOI: https://doi.org/10.1007/s11041-023-00885-3

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