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 …

[HTML][HTML] Multi-field coupling fatigue behavior of laser additively manufactured metallic materials: a review

F Liu, H Xie, W He - Journal of materials research and technology, 2023 - Elsevier
Laser additive manufacturing (AM) is an advanced green shaping technology that enables
fast and flexible fabrication or repair of high-performance metallic materials. Since the …

Fatigue characterization and modeling of additively manufactured Hastelloy-X superalloy

R Esmaeilizadeh, A Keshavarzkermani… - Journal of Materials …, 2022 - Springer
Quasi-static and fatigue behavior of laser powder-bed fusion Hastelloy X (LPBF-HX)
specimens were studied. Tension–compression asymmetry was evaluated through a wide …

Creep–Fatigue Interaction of Inconel 718 Manufactured by Electron Beam Melting

S Guth, T Babinský, S Antusch, A Klein… - Advanced …, 2023 - Wiley Online Library
Electron beam melting of Ni‐base superalloy Inconel 718 allows producing a columnar‐
grained microstructure with a pronounced texture, which offers exceptional resistance …

Role of defects and microstructure on the fatigue durability of Inconel 718 obtained by additive layer manufacturing route

CM Sanchez‐Camargo, Y Nadot… - Fatigue & Fracture of …, 2023 - Wiley Online Library
Abstract A Laser Powder Bed Fusion Inconel 718 produced with intentionally non‐optimized
parameters is investigated to understand the role of defects and microstructure on the high …

Effect of dwell (hold) time on high temperature fatigue crack growth of AM components

H Venkatesan - 2023 - diva-portal.org
GKNAerospaceAB, Sweden (GAS) isoneoftheleadingcompaniestakingupthech… in
manufacturing components using Additive Manufacturing (ed)(AM) techniques in the …

[引用][C] Multi-field coupling fatigue behavior of laser additively manufactured metallic materials: A

F Liua, H Xiea, W Heb