In-situ alloyed ultrahigh strength steels via additive manufacturing

X Wang, W Li, Y Yao, L Fan, J Wang, W Wang… - Additive …, 2023 - Elsevier
Low-density ultrahigh-strength steels (LD-UHSS) have garnered significant interest for
lightweight design of automotive and aerospace components. However, their application …

Exploring chemistry and additive manufacturing design spaces: a perspective on computationally-guided design of printable alloys

S Sheikh, B Vela, V Attari, X Huang… - Materials Research …, 2024 - Taylor & Francis
Additive manufacturing (AM), especially Laser Powder-Bed Fusion (L-PBF), provides alloys
with unique properties, but faces printability challenges like porosity and cracks. To address …

[HTML][HTML] Recent Progress in Laser Powder Bed Fusions Processes of Advanced High-Strength Steels

A Królicka, J Malawska - Materials, 2024 - mdpi.com
This review is focused on the perspectives of the application of Advanced High Strength
Steels (AHSSs) in the field of additive technologies directed at the laser powder bed …

The Effect of Replacing Ni with Mn on the Microstructure and Properties of Al2O3-Forming Austenitic Stainless Steels: A Review

G Chen, S Du, Z Zhou - Materials, 2023 - mdpi.com
Al2O3-forming austenitic steel (AFA steel) is an important candidate material for advanced
reactor core components due to its excellent corrosion resistance and high temperature …

Triplex steel powder design to avoid hot cracking in laser-powder bed fusion using computational thermodynamics

M Sanchez-Poncela, Q **, R Hebert, M Aindow… - Additive …, 2024 - Elsevier
High manganese steels offer exceptional combinations of high strength and ductility,
resulting in weight reduction when utilized in structural applications. Nevertheless, the …

Exceptional cryogenic impact and fatigue properties of additively manufactured CrCoNi medium entropy alloy

SK Hwang, MT Tran, CH Dang, JM Heo, HW Lee… - International Journal of …, 2025 - Elsevier
For structural applications subjected to rapid and cyclic loading, impact toughness and
fatigue strength are critical properties that determine material suitability. CrCoNi medium …

Comprehensive analysis of austenitic Fe-Mn-Al-C lightweight steel: Hot deformation behavior, dynamic recrystallization mechanisms and numerical simulation

T Zhang, L Li, K Zhang, X Fu, Y Cao, X Zhang, Z Li - Vacuum, 2025 - Elsevier
Using the Gleeble-3800 thermal simulation tester, the hot deformation behavior of Fe-30Mn-
10Al-1C (wt.%) austenitic low-density steel was studied through hot compression …

Achieving strength ductility synergy of multiple hetero-structured Fe–24Mn–10Al–1C duplex lightweight steel

H Zhu, Q Gao, Y Zou, H Ding - Materials Science and Engineering: A, 2025 - Elsevier
Herein, a hetero-structured Fe-24Mn-10Al-1C (wt.%) lightweight steel is fabricated by a
novel two-stage heat treatment strategy. The hetero-structured sample showed excellent …

[HTML][HTML] Microstructure and mechanical properties of Fe–30Mn–9Al–C–3Ni low-density steel manufactured by selective laser melting

J Liu, T **e, Y **e, L **ao, Y Lin, Y Dai, J Wu - Journal of Materials …, 2024 - Elsevier
Abstract Low-density Fe–Mn–Al–C steels are widely used in the automotive and aerospace
industries as advanced lightweight materials. In this study, highly spherical Fe–30Mn–9Al–C …

[HTML][HTML] Additive manufacturing of Fe–Mn–Al–C lightweight steel by laser powder bed fusion: The role of laser scanning speed on forming quality, microstructure and …

T **e, J Liu, L **ao, Y **e, S Qian, Y Dai… - Journal of Materials …, 2024 - Elsevier
Abstract The Fe–Mn–Al–C lightweight steels have attracted great attention in the military,
aerospace, and automotive industries due to their high strength and lightweight design …