The Microstructural and Phase Evolution of the 3D Printed Ti–6Al–4V Alloy during Mechanical Loading

A. V. Panin, M. S. Kazachenok, L. A. Kazantseva, O. B. Perevalova,S. A. Martynov

PHYSICS OF METALS AND METALLOGRAPHY(2023)

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摘要
This paper presents the results of an in situ study on the evolution of the microstructure and phase composition of 3D-printed Ti–6Al–4V samples under tension in the transmission electron microscope column. The microstructure of Ti–6Al–4V specimens manufactured by wire-feed electron beam additive technology is shown to consist of columnar primary β-grains inside of which are α/α'-Ti laths separated by layers of the residual β-phase and gathered into packets. A characteristic feature of 3 D -printed Ti–6Al–4V samples is the concentration nonuniformity of the alloying elements due to the partial decomposition of the martensitic α'‑phase. The reorientation of the α/α'-Ti lattice near interfaces takes place during uniaxial tension. Deformation-induced α'→α" transformations can develop in the reoriented regions of the α/α'-Ti lattice, in places enriched in vanadium.
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关键词
additive technologies,titanium Ti–6Al–4V alloy,transmission electron microscopy,deformation-induced phase transformations,tension
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