Heat treatment for metal additive manufacturing

M Laleh, E Sadeghi, RI Revilla, Q Chao… - Progress in Materials …, 2023 - Elsevier
Metal additive manufacturing (AM) refers to any process of making 3D metal parts layer-
upon-layer via the interaction between a heating source and feeding material from a digital …

Additive manufacturing of ultra-high strength steels: A review

K Li, T Yang, N Gong, J Wu, X Wu, DZ Zhang… - Journal of Alloys and …, 2023 - Elsevier
Ultra-high strength steels (UHSSs) have excellently comprehensive mechanical properties,
which has attracted significant interest in their advanced manufacturing. Additively …

Laser additive manufacturing of steels

Y Yin, Q Tan, M Bermingham, N Mo… - International …, 2022 - Taylor & Francis
Despite strong interest from many industrial sectors driving demand and advancements in
laser additive manufacturing (LAM) of steels, some issues remain as barriers limiting the …

Additive manufacturing of 18% nickel maraging steels: Defect, structure and mechanical properties: A review

L Guo, L Zhang, J Andersson, O Ojo - Journal of Materials Science & …, 2022 - Elsevier
This paper reviews the latest research progress in the additive manufacturing (AM) process
of 18% nickel maraging steels, which involves laser-based powder bed fusion (L-PBF), laser …

Additive manufacturing post-processing treatments, a review with emphasis on mechanical characteristics

A Diniță, A Neacșa, AI Portoacă, M Tănase, CN Ilinca… - Materials, 2023 - mdpi.com
Additive manufacturing (AM) comes in various types of technologies and comparing it with
traditional fabrication methods provides the possibility of producing complex geometric parts …

Microstructure and machinability of selective laser melted high-strength maraging steel with heat treatment

Y Bai, C Zhao, J Yang, R Hong, C Weng… - Journal of Materials …, 2021 - Elsevier
Additive manufacturing (AM) provides a higher degree-of-freedom manufacturing process
for high-mix low-volume manufacturing. However, the as-built surface quality by AM …

Austenite reversion kinetics and stability during tempering of an additively manufactured maraging 300 steel

FF Conde, JD Escobar, JP Oliveira, AL Jardini… - Additive …, 2019 - Elsevier
Reverted austenite is a metastable phase that can be used in maraging steels to increase
ductility via transformation-induced plasticity or TRIP effect. In the present study, 18Ni …

Effect of heat treatment on the strength and fracture resistance of a laser powder bed fusion-processed 18Ni-300 maraging steel

MJ Paul, Y Muniandy, JJ Kruzic, U Ramamurty… - Materials Science and …, 2022 - Elsevier
Engineering materials processed using additive manufacturing (AM) techniques such as
laser powder bed fusion (LPBF) often exhibit unique microstructures and defects that must …

Effect of the as-built microstructure on the martensite to austenite transformation in a 18Ni maraging steel after laser-based powder bed fusion

FF Conde, JA Avila, JP Oliveira, N Schell… - Additive …, 2021 - Elsevier
During laser-based powder bed fusion, the non-equilibrium solidification conditions promote
local elemental segregation, leading to a characteristic microstructure composed of cellular …

Influence of selective laser melting process parameters on the surface integrity of difficult-to-cut alloys: comprehensive review and future prospects

DY Pimenov, LF Berti, G Pintaude, GX Peres… - … International Journal of …, 2023 - Springer
Difficult-to-cut alloys, which include titanium, cobalt, nickel alloys, and high-strength and
heat-resistant steels, can nowadays be manufactured using selective melting (SLM), and …