In this study, the concept of enhancing the in-situ oxide precipitation in laser powder-bed fusion processed parts is investigated using powder produced by water and gas atomization. By using water-atomized 316L powder, compared to gas-atomized powder, more oxide precipitates were introduced into the microstructure with the intent to enhance the strength of the material, as an alternative path to oxide dispersion strengthened materials. The results showed that oxide precipitation was homogenous, with higher-number densities of oxides in the sample built using the water-atomized powder. The oxides were observed to be amorphous and enriched in Si and Cr. The average size of the oxides was ~56 nm. After an annealing heat-treatment at 900 \ub0C...
The role of the inert gas during laser powder bed fusion (L-PBF) is to remove the process by-product...
Surface oxidation of metallic powders may significantly affect their melting and solidification beha...
One of the most common additive manufacturing techniques for fabricating metallic components is lase...
Laser based-powder bed fusion (LB-PBF) is one of the many techniques within additive manufacturing (...
The aim of the present work has been to widen the knowledge of how variations within powder manufact...
The use of gas-atomized powder as the feedstock material for the Laser Powder Bed Fusion (LPBF) pro...
The initial oxide state of powder is essential to the robust additive manufacturing of metal compone...
The development of the laser powder bed fusion (L-PBF) process to increase its robustness and produc...
International audienceIn order to assess the potentialities of additive manufacturing in nuclear ind...
This work concerns developing understanding of powder processing of oxide dispersion strengthened (O...
Copyright © The Author(s) 2021. The oxide evolution during the solidification of 316L stainless stee...
Oxide dispersion strengthened (ODS) ferritic steels have high creep strength and high irradiation re...
Copyright © The Author(s) 2021. Surface oxidation of metallic powders may significantly affect their...
The oxide evolution during the solidification of 316L stainless steel from additive manufacturing po...
The past 3-4 years has seen a transition in the use of Additive Manufacturing techniques from protot...
The role of the inert gas during laser powder bed fusion (L-PBF) is to remove the process by-product...
Surface oxidation of metallic powders may significantly affect their melting and solidification beha...
One of the most common additive manufacturing techniques for fabricating metallic components is lase...
Laser based-powder bed fusion (LB-PBF) is one of the many techniques within additive manufacturing (...
The aim of the present work has been to widen the knowledge of how variations within powder manufact...
The use of gas-atomized powder as the feedstock material for the Laser Powder Bed Fusion (LPBF) pro...
The initial oxide state of powder is essential to the robust additive manufacturing of metal compone...
The development of the laser powder bed fusion (L-PBF) process to increase its robustness and produc...
International audienceIn order to assess the potentialities of additive manufacturing in nuclear ind...
This work concerns developing understanding of powder processing of oxide dispersion strengthened (O...
Copyright © The Author(s) 2021. The oxide evolution during the solidification of 316L stainless stee...
Oxide dispersion strengthened (ODS) ferritic steels have high creep strength and high irradiation re...
Copyright © The Author(s) 2021. Surface oxidation of metallic powders may significantly affect their...
The oxide evolution during the solidification of 316L stainless steel from additive manufacturing po...
The past 3-4 years has seen a transition in the use of Additive Manufacturing techniques from protot...
The role of the inert gas during laser powder bed fusion (L-PBF) is to remove the process by-product...
Surface oxidation of metallic powders may significantly affect their melting and solidification beha...
One of the most common additive manufacturing techniques for fabricating metallic components is lase...