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Corrosion resistance of titanium-chromium diboride and composite material based on it

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Refractories and Industrial Ceramics Aims and scope

The resistance to electrochemical corrosion and high-temperature oxidation of titanium-chromium diboride and materials with a metal binder based upon it is studied. The mechanism of processes that occur in compacted specimens and powders is studied, and the composition of reaction products in relation to specimen heating temperature is determined. It is established that the oxide films that form at a specimen surface during oxidation are protective and prevent further material oxidation.

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References

  1. G. V. Samsonov, L. Ya. Markovskii, A. F. Zhigach, et al., Boron, its Compounds and Alloys [in Russian], Akad. Nauk UkrSSR, Kiev (1960).

    Google Scholar 

  2. A. P. Umanskii, V. P. Konoval, A. D. Panasyuk, et al., “Contact reaction of binary titanium and chromium diboride with Fe–Cr alloys,” Poroshk. Metal., No. 1/2, 109 – 115 (2007).

  3. G. V. Samosonov, A. D. Panasyuk, G. K. Kozina, et al., “Reaction of binary titanium-chromium diboride with molten alloys,” in: Wear Resistance of Surfacing Materials Based on Refractory Compounds [in Russian], Naukova Dumka, Kiev (1977).

    Google Scholar 

  4. G. K. Kozina and N. V. Tsypin, “Mechanical properties of alloys based on binary titanium-chromium diboride,” in: Borides and Materials Based on Them: Coll. IPM UkrSSR [in Russian], IPM UkrSSR, Kiev (1986).

    Google Scholar 

  5. G. L. Zhunkovskii, P. V. Mazur, T. M. Evtushok, et al., “Filler of composite surfacing wear-resistant material based on titanium-chromium diboride,” Sverkhtverdye Materialy, No. 3, 14 – 21 (1996).

  6. G. K. Kozina, I. G. Grikhno, I. Ya. Dzykovich, et al., “Nanonfiller of composite surfacing wear-resistant material based on titaniumchromium diboride,” Sverkhtverdye Materialy, No. 4, 84 – 91 (2009).

  7. V. P. Konoval, A. P. Umanskii, A. D. Panasyuk, et al., “Formation of electric-spark coatings of composite materials based on titanium-chromium carbide and diboride.” Sverkhtverdye Materialy, No. 4, 84 – 91 (2009).

  8. V. A. Lavrenko, A. P. Umanskii, V. A. Shvets, et al., “Corrosion of composite materials based on titanium and chromium carbides in sea water,” Sverkhtverdye Materialy, No. 4, 41 – 46 (2005).

  9. A. P. Umanskii, V. A. Lavrenko, S. S. Chuprov, et al., “High-temperature oxidation of composite materials based on titanium carbonitride and binary titanium-chromium carbide,” Refractories and Industrial Ceramics, 47, No. 4, 246 – 250 (2006).

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Translated from Novye Ogneupory, No. 10, pp. 35 – 38, October 2010.

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Konoval, V.P. Corrosion resistance of titanium-chromium diboride and composite material based on it. Refract Ind Ceram 51, 370–373 (2011). https://doi.org/10.1007/s11148-011-9327-8

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  • DOI: https://doi.org/10.1007/s11148-011-9327-8

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