Progress and perspectives in laser additive manufacturing of key aeroengine materials

C Tan, F Weng, S Sui, Y Chew, G Bi - International Journal of Machine …, 2021 - Elsevier
Aerospace is a key market driver for the advancement of additive manufacturing (AM) due to
the huge demands in high-mix low-volume production of high-value parts, integrated …

[HTML][HTML] Clustering, nano-scale precipitation and strengthening of steels

Z Xiong, I Timokhina, E Pereloma - Progress in Materials Science, 2021 - Elsevier
Continuous innovations in design of advanced structural steels are essential for future
progress in manufacturing, automotive and construction industries. Events taking place at …

Microstructural evolution, nanoprecipitation behavior and mechanical properties of selective laser melted high-performance grade 300 maraging steel

C Tan, K Zhou, W Ma, P Zhang, M Liu, T Kuang - Materials & Design, 2017 - Elsevier
High-performance grade 300 maraging steels were fabricated by selective laser melting
(SLM) and different heat treatments were applied for improving their mechanical properties …

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 …

Microstructural characterization and properties of selective laser melted maraging steel with different build directions

C Tan, K Zhou, M Kuang, W Ma… - Science and technology of …, 2018 - Taylor & Francis
ABSTRACT A nearly fully dense grade 300 maraging steel was fabricated by selective laser
melting (SLM) additive manufacturing with optimum laser parameters. Different heat …

High-density nanoprecipitates and phase reversion via maraging enable ultrastrong yet strain-hardenable medium-entropy alloy

H Kwon, P Sathiyamoorthi, MK Gangaraju, A Zargaran… - Acta Materialia, 2023 - Elsevier
Maraging steels, known for ultrahigh strength and good fracture toughness, derive their
superior properties from lath martensite structure with high-density nanoprecipitates. In this …

Tensile, fracture, and fatigue crack growth properties of a 3D printed maraging steel through selective laser melting

J Suryawanshi, KG Prashanth, U Ramamurty - Journal of alloys and …, 2017 - Elsevier
The microstructure and room temperature mechanical properties of a18Ni (300) grade
maraging steel (MS) fabricated using the selective laser melting (SLM) technique were …

Precipitation and austenite reversion behavior of a maraging steel produced by selective laser melting

EA Jägle, PP Choi, J Van Humbeeck… - Journal of Materials …, 2014 - cambridge.org
Materials produced by selective laser melting (SLM) experience a thermal history that is
markedly different from that encountered by conventionally produced materials. In particular …

Comparison of maraging steel micro-and nanostructure produced conventionally and by laser additive manufacturing

EA Jägle, Z Sheng, P Kürnsteiner, S Ocylok, A Weisheit… - Materials, 2016 - mdpi.com
Maraging steels are used to produce tools by Additive Manufacturing (AM) methods such as
Laser Metal Deposition (LMD) and Selective Laser Melting (SLM). Although it is well …

Nanolaminate transformation-induced plasticity–twinning-induced plasticity steel with dynamic strain partitioning and enhanced damage resistance

MM Wang, CC Tasan, D Ponge, AC Dippel, D Raabe - Acta Materialia, 2015 - Elsevier
Conventional martensitic steels have limited ductility due to insufficient microstructural strain-
hardening and damage resistance mechanisms. It was recently demonstrated that the …