[HTML][HTML] In Situ Reactive Formation of Mixed Oxides in Additively Manufactured Cobalt Alloy

J Lopez, R Cerne, D Ho, D Madigan, Q Shen, B Yang… - Materials, 2023 - mdpi.com
Oxide-dispersion-strengthened (ODS) alloys have long been considered for high
temperature turbine, spacecraft, and nuclear reactor components due to their high …

[HTML][HTML] Towards enhancing ODS composites in laser powder bed fusion: Investigating the incorporation of laser-generated zirconia nanoparticles in a model iron …

M Goßling, SK Rittinghaus, S Bharech, Y Yang… - Journal of Materials …, 2024 - Springer
Oxide dispersion-strengthened (ODS) steel is a sought-after composite material known for
its high demand in high-temperature and corrosive environments. Achieving the desired …

[HTML][HTML] Laser additive manufacturing of oxide dispersion-strengthened copper–chromium–niobium alloys

MB Wilms, SK Rittinghaus - Journal of Manufacturing and Materials …, 2022 - mdpi.com
Copper is a key material for cooling of thermally stressed components in modern aerospace
propulsion systems, due to its high thermal conductivity. The use of copper materials for …

From raw elements to 3D samples: An economical route for Co-Cr-Mo alloy fabrication

MA Khimich, EA Ibragimov, VV Chebodaeva… - Journal of Alloys and …, 2024 - Elsevier
This study explores an efficient and feasible method for production of non-commercial Co-Cr-
Mo powder feedstock for Laser Powder Bed Fusion (LPBF), employing mechanical alloying …

[HTML][HTML] Evolution of Y2O3 dispersoids during laser powder bed fusion of oxide dispersion strengthened Ni-Cr-Al-Ti γ/γ'superalloy

C Kenel, A De Luca, SS Joglekar, C Leinenbach… - Additive …, 2021 - Elsevier
The successful synthesis of oxide-dispersion-strengthened (ODS) alloys via laser powder
bed fusion (L-PBF) requires a better understanding of the interaction of the oxide …

In-situ synthesis of oxides by reactive process atmospheres during L-PBF of stainless steel

MP Haines, NJ Peter, SS Babu, EA Jägle - Additive Manufacturing, 2020 - Elsevier
Traditionally, reactive gases such as oxygen (O 2) and carbon dioxide (CO 2) have been
avoided during laser powder bed fusion (L-PBF) of metals and alloys based on the notion …

Effect of oxide dispersoids on precipitation-strengthened Al-1.7 Zr (wt%) alloys produced by laser powder-bed fusion

JA Glerum, A De Luca, ML Schuster, C Kenel… - Additive …, 2022 - Elsevier
Abstract Binary Al-1.7 wt% Zr (Al-0.5 at% Zr) alloys, with and without 1 wt%(0.7 vol%) Al 2 O
3 nanoparticle additions (80–100 nm), are fabricated by laser powder-bed fusion (L-PBF) …

[HTML][HTML] Laser powder bed fusion additive manufacturing of oxide dispersion strengthened steel using gas atomized reaction synthesis powder

T Horn, C Rock, D Kaoumi, I Anderson, E White… - Materials & Design, 2022 - Elsevier
Mechanically alloyed Fe-based alloys with oxide dispersion strengthening have largely
dropped out of the marketplace due to high cost related to problems with complex and …

[HTML][HTML] Effect of HfO2 dispersoids on the microstructure of a Ni-Cr-Al-Ti superalloy processed by laser-based powder-bed fusion

A De Luca, C Kenel, DC Dunand… - Additive Manufacturing …, 2023 - Elsevier
The effects of 1 wt% HfO 2 nano-dispersoid addition on the microstructure of a high-γ'Ni-8.5
Cr-5.5 Al-1Ti (wt%) model superalloy are investigated after manufacturing via laser-based …

[HTML][HTML] Laser powder bed fusion of ODS 14YWT from gas atomization reaction synthesis precursor powders

S Saptarshi, M DeJong, C Rock, I Anderson… - JOM, 2022 - Springer
Laser powder bed fusion (LPBF) additive manufacturing (AM) is a promising route for the
fabrication of oxide dispersion strengthened (ODS) steels. In this study, 14YWT ferritic steel …