Structural evolution during mechanical alloying and annealing of a Nb-25at%Al alloy

Authors
KIM, HYE SUNGKum, Dong whaHanada, S
Issue Date
2000-01
Publisher
Kluwer Academic Publishers
Citation
Journal of Materials Science, v.35, no.1, pp.235 - 239
Abstract
Mixtures of pure elemental Al and Nb powders of Nb-25at%Al composition was mechanically alloyed, and structural evolution during high energy ball milling has been examined. Al dissolved in Nb from the early stage of the ball milling, and amorphization became noticeable after longer than five hours of milling. However the dissolution of Al in Nb was not completed before the amorphization. No intermetallic phase formed during the mechanical alloying. Before complete amorphization, metastable nitride of Nb4.62N2.14 (i.e., beta-NbN) with hexagonal structure has formed in nanocrystalline size through nitrogen incorporation from ambient environment. The lattice parameter of Nb increased significantly (up to 3.3433 Angstrom after 5 hours of milling) during the milling. Upon annealing above 950 degrees C, Nb2Al became the dominant feature with the beta-NbN, and Nb3Al did not form from the samples milled at ambient environment. Nb3Al appeared only from a sample milled at Ar environment. Structural evolution during mechanical alloying of the Nb-Al system is critically dependent the upon milling environment. (C) 2000 Kluwer Academic Publishers.
Keywords
NB-AL POWDERS; PHASE FORMATION
ISSN
0022-2461
URI
https://pubs.kist.re.kr/handle/201004/141623
DOI
10.1023/A:1004737926209
Appears in Collections:
KIST Article > 2000
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