On the current research progress of metallic materials fabricated by laser powder bed fusion process: a review

Современный прогресс в исследовании металлических материалов, изготовленных методом лазерного сплавления порошкового слоя: обзор
Walaa Abd‐Elaziem, Sally Elkatatny, Mohd Ali Hassan, Marwa A. Abd El‐baky, Atef Hamada, Antti Jarvenpää, Mahmoud Khedr, Tarek Allam, Abd-Elrahim Abd-Elaziem, Mohamed Abu–Okail, Moustafa M. Mohammed
2022-07-18

laser powder bed fusionmetal additive manufacturingmetallurgical defectsmicrostructure evolutionprocess parameters
Laser powder bed fusion (LPBF) is the most common metal additive manufacturing technique. Following pre-programmed designs, it employs a high-power density laser source to melt pre-alloyed or mixed powders layer by layer, allowing for complex metallic component fabrication. This technique has recently been utilised to produce superior, near-full-density three-dimensional functional parts for various industrial applications. As the LPBF technology matures, ongoing research is being conducted to increase its viability as a sustainable solution in achieving digital transformation in metallic materials and qualifying new metallic materials for digital products. This review focuses on recent developments in the LPBF technique in terms of process parameters, defects, microstructure evolution, related metallurgical phenomena, and microselective laser melting processing for miniaturised part production. First, considerable attention is given to the related parameters that affect the LPBF process, that is, powder-related and laser-related properties. Second, the metallurgical imperfections related to the LPBF products are described in terms of their types, formation mechanisms, and suppression strategies for these defects. Third, the solidification behaviour, phase transformation, and precipitation during the LPBF processing were systematically investigated. Fourth, the materials implemented in microselective laser melting for three-dimensional microfeature production on various metals are summarised. Finally, the results from this review are summarized, and future research addressing existing difficulties and promoting technical advancements are recommended.
1
LPBF research examines powder and laser parameters, metallurgical defects, microstructure evolution, solidification, phase transformation, and precipitation.
2
LPBF uses a high-power-density laser to melt pre-alloyed or mixed powders layer by layer, enabling complex metallic component fabrication.
3
Microselective laser melting enables three-dimensional microfeature production on various metals, supporting miniaturized part fabrication.
4
Recent LPBF developments have produced superior, near-full-density three-dimensional functional metallic parts for diverse industrial applications.
5
The review categorizes LPBF defects by type and formation mechanism and summarizes strategies for suppressing them.

Metallic materials and components fabricated by laser powder bed fusion (LPBF)

LPBF process parameters, defect formation and suppression, microstructure evolution, metallurgical phenomena, and microselective laser melting for miniaturized three-dimensional parts

Publication Details
Publication Date
2022-07-18
Journal
Publisher
ISSN
Cited by
259
Access Type
Author Information
Authors
Walaa Abd‐Elaziem
Sally Elkatatny
Mohd Ali Hassan
Marwa A. Abd El‐baky
Atef Hamada
Antti Jarvenpää
Mahmoud Khedr
Tarek Allam
Abd-Elrahim Abd-Elaziem
Mohamed Abu–Okail
Moustafa M. Mohammed
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%