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 …

Heterostructured stainless steel: Properties, current trends, and future perspectives

L Romero-Resendiz, M El-Tahawy, T Zhang… - Materials Science and …, 2022 - Elsevier
The study of heterostructured materials (HSMs) answered one of the most pressing
questions in the metallurgical field:“is it possible to greatly increase both the strength and the …

[HTML][HTML] Review on corrosion performance of laser powder-bed fusion printed 316L stainless steel: Effect of processing parameters, manufacturing defects, post …

VB Vukkum, RK Gupta - Materials & Design, 2022 - Elsevier
The applications of laser-powder bed fusion (LPBF), an emerging additive manufacturing
(AM) technique, are rapidly growing in various industries. The superior and consistent …

Directed energy deposition of metals: processing, microstructures, and mechanical properties

SH Li, P Kumar, S Chandra… - International Materials …, 2023 - journals.sagepub.com
Amongst the many additive manufacturing (AM) techniques, directed energy deposition
(DED) is a prominent one, which can also be used for the repair of damaged components. In …

A micropillar compression investigation into the plastic flow properties of additively manufactured alloys

SH Li, Y Zhao, J Radhakrishnan, U Ramamurty - Acta Materialia, 2022 - Elsevier
Solidification cells and a high density of dislocations are two common features of additively
manufactured (AM) alloys that are processed using techniques such as laser powder bed …

[HTML][HTML] Assessing dependency of part properties on the printing location in laser-powder bed fusion metal additive manufacturing

A Mussatto, R Groarke, RK Vijayaraghavan… - Materials Today …, 2022 - Elsevier
Despite the accelerated growth of laser-powder bed fusion in recent years, there are still
major obstacles to be overcome before the technology enjoys truly widespread adoption …

On the effect of rapid annealing on the microstructure and mechanical behavior of additively manufactured stainless steel by Laser Powder Bed Fusion

MR Jandaghi, A Saboori, L Iuliano, M Pavese - Materials Science and …, 2021 - Elsevier
This work presents an investigation on the effect of rapid annealing on the microstructure
evolution and mechanical performance of stainless steel 316L (SS316L) fabricated by Laser …

Volumetric energy density impact on mechanical properties of additively manufactured 718 Ni alloy

B Stegman, A Shang, L Hoppenrath, A Raj… - Materials Science and …, 2022 - Elsevier
The 718 Ni-based superalloy has gained enormous attention in the additive manufacturing
community for its great weldability, allowing for complex geometries to be formed, and its …

Dynamic recrystallization under hot deformation of additively manufactured 316 L stainless steel

F Khodabakhshi, N Hasani, MR Kalaie… - Materials …, 2023 - Elsevier
The high-temperature deformation behavior of additively manufactured 316 L stainless
steels prepared via the laser powder bed fusion (LPBF) technology was investigated using …

[HTML][HTML] Encoding data into metal alloys using laser powder bed fusion

K Sofinowski, M Wittwer, M Seita - Additive Manufacturing, 2022 - Elsevier
Beyond near-net shape manufacturing of parts with complex geometry, additive
manufacturing (AM) makes it possible to fabricate materials with distinct, site-specific …