The mechanisms underlying the enhanced high-temperature properties of GRX-810

T Timothy M. Smith C Christopher A. Kantzos B Bryan J. Harder A Andreas Bezold M Milan Heczko J Jiashi Miao G Gabriel Plummer (Intelligent Systems Division, NASA Ames Research Center 1 , Moffett Field, California 94035,) M Mikhail I. Mendelev (Intelligent Systems Division, NASA Ames Research Center 1 , Moffett Field, California 94035,) A Aaron C. Thompson B Bernadette J. Puleo A Austin J. Whitt A Andreas Stark S Steffen Neumeier T Timothy P. Gabb J John W. Lawson (Intelligent Systems Division) M Michael J. Mills P Paul R. Gradl

Abstract

Abstract The demand for metal alloys that can perform at extreme temperatures above 1100 °C while remaining manufacturable has sparked renewed interest in printable oxide dispersion strengthened (ODS) alloys. Recently, NASA developed an ODS alloy designed for additive manufacturing, known as GRX-810, which has demonstrated exceptional tensile and creep performance at temperatures of 1093 °C and higher. In the present study, tensile tests of GRX-810 are conducted up to 1316 °C and creep tests are performed in both the horizontal and vertical orientations, relative to the build direction. Thermal cycling is executed at 1100 °C, 1200 °C, and 1300 °C in air. The oxidation behavior of GRX-810 is compared to that of alumina forming single crystal Ni-base superalloys and chromia-forming wrought alloys such as superalloys 718 and 625. High resolution atomic-scale characterization and atomistic modeling are employed to explain the exceptional high temperature properties observed in GRX-810, particularly in relation to the unique, finer trigonal yttrium oxides produced during the additive manufacturing process.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 14, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

T

Timothy M. Smith

C

Christopher A. Kantzos

B

Bryan J. Harder

A

Andreas Bezold

M

Milan Heczko

J

Jiashi Miao

G

Gabriel Plummer

Intelligent Systems Division, NASA Ames Research Center 1 , Moffett Field, California 94035,

M

Mikhail I. Mendelev

Intelligent Systems Division, NASA Ames Research Center 1 , Moffett Field, California 94035,

A

Aaron C. Thompson

B

Bernadette J. Puleo

A

Austin J. Whitt

A

Andreas Stark

S

Steffen Neumeier

T

Timothy P. Gabb

J

John W. Lawson

Intelligent Systems Division

M

Michael J. Mills

P

Paul R. Gradl