JOURNAL ARTICLE

Microstructures of mechanically activated Ti-46at.%Al powders and spark plasma sintered ultrafine TiAl alloy

L. XiaHao DingXiangdong RuanYongshun Ren

Year: 2007 Journal:   Rare Metals Vol: 26 (6)Pages: 572-577   Publisher: Springer Science+Business Media

Abstract

Powder of Ti-46at.%Al was synthesized through mechanical activation (MA) for different milling times, and the 16 h MAed powder was sintered by using a spark plasma sintering (SPS) process at different sintering temperatures. The XRD profiles showed that the MAed Ti-46at%Al powder for 12, 16, and 20 h contained initial α-Ti and Al phases, and that the SPSed TiAl alloys contained the gamma TiAl and α2-Ti3Al phases. The TEM showed two different types of regions in the 16 h MAed Ti-46at.%Al powder. One type consisted of only Al with a grain size about 80 nm, and the other type a mixture of Al and Ti with a grain size of 30 nm. According to the optical micrographs of MA-SPSed samples, the alloys sintered at higher temperatures showed a coarser microstructure. In the case of the 1473 K sintering, typical duplex structures (α2 + γ) lamella and γ phases) with interlamellar spacings of 50–400 nm and the grain size either less than 100 nm, or 1000 nm were observed.

Keywords:
Materials science Spark plasma sintering Microstructure Alloy Lamella (surface anatomy) Metallurgy Grain size Sintering Powder metallurgy Composite material

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Topics

Intermetallics and Advanced Alloy Properties
Physical Sciences →  Engineering →  Mechanical Engineering
MXene and MAX Phase Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Advanced ceramic materials synthesis
Physical Sciences →  Materials Science →  Ceramics and Composites

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