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Evolution of gamma/gamma-prime Microstructure in Ternary Co-Al-W Alloys
Published
Author(s)
Eric Lass, Yaakov S. Idell, Carelyn E. Campbell, Ursula R. Kattner
Abstract
The discovery of a two-phase γ (FCC)-γ' (L12) field in the ternary Co-Al-W phase diagram has sparked significant research interest into possible Co-based analogs to traditional Ni-based superalloys used in turbine engine applications. This work experimentally investigates microstructural evolution ternary Co-Al-W alloys. Nucleation of ordered γ' precipitates 2 nm to 10 nm in diameter cannot be suppressed even under rapid solidification conditions. Upon subsequent annealing, growth of these nuclei into irregular, non-cube shaped precipitates is very rapid, resulting in a volume fraction of γ' roughly equal to that in metastable equilibrium with the γ phase after only a few minutes. The microstructure then slowly coarsens to reveal the familiar cuboidal γ-γ' microstructure similar to that found in Ni-based superalloys. The two-phase microstructure is ultimately destroyed by the nucleation and growth of the additional phases Co3W (D019) indicating γ' is metastable in ternary Co-Al-W.
Proceedings Title
PTM 2015: International Conference on Solid-Solid Phase Transformations in Inorganic Materials, Conference Proceedings
Conference Dates
June 28-July 3, 2015
Conference Location
Whistler
Conference Title
PTM 2015: International Conference on Solid-Solid Phase Transformations in Inorganic Materials
Lass, E.
, Idell, Y.
, Campbell, C.
and Kattner, U.
(2015),
Evolution of gamma/gamma-prime Microstructure in Ternary Co-Al-W Alloys, PTM 2015: International Conference on Solid-Solid Phase Transformations in Inorganic Materials, Conference Proceedings, Whistler, -1, [online], https://tsapps.nist.gov/publication/get_pdf.cfm?pub_id=918086
(Accessed October 8, 2025)