Features of the Synthesis of TiCAl (Fe2O3/TiO2) Metal Matrix Composites under Nonequilibrium Conditions / A. G. Knyazeva, E. N. Korosteleva, I. Nikolaev

Main Author: Knyazeva, A. G., Russian physicist, Professor of Tomsk Polytechnic University, doctor of physico-mathematical Sciences, 1962-, Anna GeorgievnaCoauthor: Korosteleva, E. N., physicist, Associate Professor of Tomsk Polytechnic University, Candidate of technical sciences, 1962-, Elena Nikolaevna;Nikolaev, I., IvanCorporate Author (Secondary): Национальный исследовательский Томский политехнический университет, Инженерная школа новых производственных технологий, Отделение материаловеденияLanguage: английский.Abstract: In this study, the structure formation of multicomponent composites based on Ti-C-Al, Ti-Al-C-Fe2O3 and Ti-Al-C-TiO2 powder mixtures under combine synthesis are considered. The features of Ti-C-Al, Ti-Al-C-Fe2O3 and Ti-Al-C-TiO2 composition synthesis that was accompanied by the formation of MAX phases and intermetallic compounds with different properties is studied theoretically and experimentally. An attempt is made to determine conditions and compositions of the starting powder mixtures for the powders composite materials with a complex multiphase structure. It is shown that during simultaneous process of wave combustion and metallothermy the inclusion and a matrix structure are formed with fundamentally different properties. Depending on the combination of the initial powder mixtures a metal matrix composite or ceramic composite can be formed. Metallothermal reactions initiated to obtain composites with oxide inclusions (in Ti-Al-C-Fe2O3 and Ti-Al-C-TiO2 powder systems) results in the occurrence of the non-equilibrium phases. These phases are not predicted from the preliminary thermodynamic evaluation but can be predicted based on thermokinetic models that include a set of possible chemical stages. It was shown that, in addition to intermetallic phases, the composition of the synthesis products includes the Ti2AlC phase which could be synthesized both in the combination with Fe2O3 and using TiO2..Bibliography: [References: p. 1221 (19 tit.)].Audience: .Subject: электронный ресурс | труды учёных ТПУ | multicomponent composites | synthesis | MAX phase | intermetallic compound | metallothermal reactions | композиты | синтез | интерметаллиды | неравновесные условия Online Resources:Click here to access online
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[References: p. 1221 (19 tit.)]

In this study, the structure formation of multicomponent composites based on Ti-C-Al, Ti-Al-C-Fe2O3 and Ti-Al-C-TiO2 powder mixtures under combine synthesis are considered. The features of Ti-C-Al, Ti-Al-C-Fe2O3 and Ti-Al-C-TiO2 composition synthesis that was accompanied by the formation of MAX phases and intermetallic compounds with different properties is studied theoretically and experimentally. An attempt is made to determine conditions and compositions of the starting powder mixtures for the powders composite materials with a complex multiphase structure. It is shown that during simultaneous process of wave combustion and metallothermy the inclusion and a matrix structure are formed with fundamentally different properties. Depending on the combination of the initial powder mixtures a metal matrix composite or ceramic composite can be formed. Metallothermal reactions initiated to obtain composites with oxide inclusions (in Ti-Al-C-Fe2O3 and Ti-Al-C-TiO2 powder systems) results in the occurrence of the non-equilibrium phases. These phases are not predicted from the preliminary thermodynamic evaluation but can be predicted based on thermokinetic models that include a set of possible chemical stages. It was shown that, in addition to intermetallic phases, the composition of the synthesis products includes the Ti2AlC phase which could be synthesized both in the combination with Fe2O3 and using TiO2.

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