Corrosion performance of additively manufactured stainless steel parts: A review

AH Ettefagh, S Guo, J Raush - Additive manufacturing, 2021 - Elsevier
The application of additively manufactured (AM) stainless steel (SS) parts is rapidly
emerging in a broad spectrum of industries. Laser powder bed fusion (LPBF) and direct …

Process-microstructure-corrosion of additively manufactured steels: a review

MH Ghoncheh, A Shahriari, N Birbilis… - Critical Reviews in …, 2023 - Taylor & Francis
Among the alloy systems for the fabrication of metallic components using additive
manufacturing (AM), steels as a broad family of alloys attract significant attention owing to …

Cell boundary engineering of ferrous medium-entropy alloy fabricated by laser powder bed fusion

JM Park, H Kwon, J Choe, KT Kim, JH Yu, YU Heo… - Scripta Materialia, 2023 - Elsevier
The concept of cell boundary (CB) engineering was proposed to explore the potential
benefits of segregation engineering in obtaining superior mechanical properties in materials …

Ambient pressure fabrication of Ni-free high nitrogen austenitic stainless steel using laser powder bed fusion method

B Cheng, F Wei, WH Teh, JJ Lee, TL Meng, KB Lau… - Additive …, 2022 - Elsevier
A novel one-step method for fabricating Ni-free high N austenitic stainless steel components
at ambient pressure using metal nitride powders as the nitrogen source by the additive …

[HTML][HTML] In-situ synthesis of nitrides and oxides through controlling reactive gas atmosphere during laser-powder bed fusion of Fe-12Cr-6Al

O Cakmak, SH Lee, SG Chung, DR Eo, H Yeom… - Materials & Design, 2024 - Elsevier
This study endeavors to investigate the feasibility of in situ synthesis of nitrides and oxides
within Fe-12Cr-6Al alloys through precise modulation of reactive gas atmosphere during the …

[HTML][HTML] Cyclic behaviour and microstructural evolution of metastable austenitic stainless steel 304l produced by laser powder bed fusion

M Šmíd, D Koutný, K Neumannová, Z Chlup… - Additive …, 2023 - Elsevier
It has been documented that the hierarchical character of microstructure produced by laser
powder bed fusion (L-PBF) is the key to superior mechanical properties. Especially …

[HTML][HTML] Tribological behavior and biocompatibility of novel Nickel-Free stainless steel manufactured via laser powder bed fusion for biomedical applications

C Nayak, A Anand, N Kamboj, T Kantonen… - Materials & Design, 2024 - Elsevier
Due to the risk of releasing carcinogenic nickel ions from conventional 316L stainless steel
under a corrosive human body environment, a new variant of steel termed nickel-free …

Electron-beam welding of high-entropy alloy and stainless steel: microstructure and mechanical properties

R Sokkalingam, P Mastanaiah… - Materials and …, 2020 - Taylor & Francis
ABSTRACT An autogenously dissimilar Al0. 1CoCrFeNi-high entropy alloy/stainless steel
(ie, AISI 304) weld joint was produced by an electron-beam welding technique. The weld …

Коррозионностойкие стали в аддитивном производстве

АГ Колмаков, АЮ Иванников, МА Каплан… - Известия высших …, 2021 - fermet.misis.ru
Аннотация В данном обзоре рассмотрены основные методы получения сферических
частиц порошка коррозионностойких сталей как материала, широко применяемого во …

Processing of a newly developed nitrogen-alloyed ferritic-austenitic stainless steel by laser powder bed fusion–microstructure and properties

L Becker, A Röttger, J Boes, S Weber, W Theisen - Additive Manufacturing, 2021 - Elsevier
In this work, a novel alloy design of a stainless steel with a ferritic-austenitic microstructure is
derived for PBF-LB/M (powder bed fusion-laser beam/metal). The alloy was developed …