Processing and Mechanical Properties of Directionally Solidified NiAl/NiAlTa Alloys
David Johnson, B.F. Oliver, R.D. Noebe, J. Daniel Whittenberger
Abstract
Open-access reader
David Johnson, B.F. Oliver, R.D. Noebe, J. Daniel Whittenberger
Abstract
Open-access reader
Promising creep strengths were found for a directionally solidified NiAl-NiAlTa alloy when compared to other NiAl based intermetallics. The directionally solidified alloy had an off-eutectic composition that resulted in microstructures consisting of NiAl dendrites surrounded by aligned eutectic regions. The room temperature toughness of the two phase alloy was similar to that of polycrystalline NiAl even with the presence of the brittle Laves phase NiAlTa. Alloying additions that may improve the room temperature toughness by producing multiphase alloys are discussed.
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Promising creep strengths were found for a directionally solidified NiAl-NiAlTa alloy when compared to other NiAl based intermetallics. The directionally solidified alloy had an off-eutectic composition that resulted in microstructures consisting of NiAl dendrites surrounded by aligned eutectic regions. The room temperature toughness of the two phase alloy was similar to that of polycrystalline NiAl even with the presence of the brittle Laves phase NiAlTa. Alloying additions that may improve the room temperature toughness by producing multiphase alloys are discussed.
Key concepts: Nial, Materials science, Eutectic system, Intermetallic, Creep, Metallurgy, Alloy, Microstructure