Laser directed energy deposited Ti-48Al-2Cr-2Nb alloy: An investigation of high temperature oxidation behavior

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Date

2024

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Elsevier B.V.

Abstract

This study investigates high-temperature oxidation behavior and kinetics of Laser Directed Energy Deposited (LDED) Ti-48Al-2Cr-2Nb (Ti-48-2-2) alloy at 750 °C, 850 °C, and 950 °C, for 30, 60 and 100 h. Results reveal that the oxide-scale consists of alternating bands of TiO<inf>2</inf> and Al<inf>2</inf>O<inf>3</inf> and its stability is strongly dependent on the oxidation temperature and duration. At 850 °C and 950 °C, the oxide-scale delaminated following 100-h exposure. LDED Ti-48-2-2 exhibited an oxidation rate constant of 0.984 mg2 cm−4 h−1 at 850 °C (100 h) and 2.09 mg2 cm−4 h−1 at 950 °C (100 h), and an activation energy of 83.7 kJ mol−1 (850°–950 °C). LDED Ti-48-2-2 exhibited poor oxidation resistance compared to conventionally processed Ƴ-TiAl alloys. This can be attributed to the absence of N-rich layer and the typical nano-scale α<inf>2</inf>/γ banded lamellar microstructure observed in other processing routes. Post-process heat treatments can be utilized to obtain the desired microstructural features. © 2024 Elsevier B.V.

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Keywords

Activation energy, Alumina, Aluminum alloys, Aluminum oxide, Chromium alloys, Intermetallics, Nanotechnology, Niobium alloys, Oxidation resistance, Rate constants, Thermooxidation, Titanium alloys, Titanium dioxide, 950° C, Directed energy, High temperature oxidation Behavior, Intermetallic alloys and compounds, Laser process, Mg 2, Oxidation kinetics, Oxidation temperature, Oxide scale, 3D printing

Citation

Materials Letters, 2024, 361, , pp. -

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