Literature DB >> 30855251

In situ synchrotron research of phase formation in mechanically activated 3Ti + Al powder composition during high-temperature synthesis under the condition of heating with high-frequency electromagnetic fields.

Marina Loginova1, Alexey Sobachkin1, Alexander Sitnikov1, Vladimir Yakovlev1, Valeriy Filimonov1, Andrey Myasnikov1, Marat Sharafutdinov2, Boris Tolochko2.   

Abstract

An in situ synchrotron study of the specific features of the phase formation dynamics in mechanically activated 16 wt% Al + Ti powder composition is described, the high-temperature synthesis being carried out under the condition of high volume inflammation by means of inductive heating. The kinetics of the phase formation were registered with an experimental complex, especially designed, constructed and adjusted for the method of dynamic diffraction analysis in synchrotron radiation beams. It has been experimentally in situ shown that increasing the time of mechanical activation of the initial powder mixture reduces the temperature at which components start to react and the time of realization of the high-temperature synthesis. With the latter set at 1 min of mechanical activation, the temperature of the reaction in the mixture is T = 603°C; at 3 min of mechanical activation, T = 442°C; and at 7 min, T = 359°C. The maximum burning temperatures are: for 1 min of mechanical activation, Tmax = 1080°C; for 3 min, Tmax = 1003°C; and for 7 min, Tmax = 820°C. It was found that formation of both stable compounds Ti3Al, TiAl3, TiAl2, TiAl and metastable phases Ti9Al23, Ti5Al11, Ti2Al5, Ti3Al5 occurs at the stage of primary structure formation, before the system goes to thermal explosion. High-temperature synthesis of a mixture of the studied composition takes place without formation of a liquid phase, in the solid-phase combustion mode. It was found that the increase in the time of mechanical activation of the initial powder mixture contributes to the formation of a product with a dominant content of intermetallic compound Ti3Al. By synthesis of the powder mixture of composition 16 wt% Al + Ti, mechanically activated for 7 min, the content of Ti3Al in the final product was found to be 68%.

Entities:  

Keywords:  X-ray diffractometry; dynamics of phase formation; experimental complex; high-temperature synthesis; inductive heating; mechanically activated treatment; powder composition; titanium aluminide

Year:  2019        PMID: 30855251     DOI: 10.1107/S1600577518017691

Source DB:  PubMed          Journal:  J Synchrotron Radiat        ISSN: 0909-0495            Impact factor:   2.616


  1 in total

1.  In situ phase formation during high-temperature synthesis in clad mechanocomposites based on the Ti-Al system.

Authors:  Marina Loginova; Alexey Sobachkin; Alexander Sitnikov; Vladimir Yakovlev; Andrey Myasnikov; Marat Sharafutdinov; Boris Tolochko; Tatiana Golovina
Journal:  J Synchrotron Radiat       Date:  2022-03-15       Impact factor: 2.557

  1 in total

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