May 2026

Journal

High-temperature mechanical properties of a γ′-strengthened Co-based superalloy designed for additive manufacturing

By:
Holtham, Noah W; Fernandez-Zelaia, Patxi ; Fancher, Christopher M; Ledford, John C; Brinkley, Frank M; Yu, Dunji ; An, Ke ; Zhou, Ning; Forsik, Stephane; Pollock, Tresa; Kirka, Michael M
Journal Name:
Scripta Materialia
Page Number:
117369
Volume:
281
Publication Date:
May 18, 2026
View DOI Listing:
https://doi.org/10.1016/j.scriptamat.2026.117369

Abstract

GammaPrint®-7001 is a recently developed high γ′ (∼70% volume fraction) CoNi-based superalloy designed to combine high-temperature mechanical performance with laser powder bed fusion processability. Room-temperature yield strength ranged from 610 to 658 MPa and increased to 661 MPa (longitudinal) and 730 MPa (transverse) at 760 °C. The creep behavior compared favorably to high-γ′ Ni-based superalloys manufactured via laser powder bed fusion such as Incoloy® 939 and Inconel® 738LC.2 In-situ neutron diffraction data measured during creep revealed that plastic deformation was largely localized to the γ phase at 760 °C, allowing the γ’ phase to elastically compensate and maintain creep strain resistance. However, at 900 °C, this load sharing behavior was weakened, contributing to accelerated creep rate and rupture.