[PDF][PDF] The Challenges and Advances in Recycling/Re-Using Powder for Metal 3D Printing: A Comprehensive Review

A Lanzutti, E Marin - Metals, 2024 - air.uniud.it
This review explores the critical role of powder quality in metal 3D printing and the
importance of effective powder recycling strategies. It covers various metal 3D printing …

Response surface methodology (RSM) approach for optimizing the processing parameters of 316L SS in directed energy deposition

E Amar, V Popov, VM Sharma, S Andreev Batat… - Materials, 2023 - mdpi.com
Directed energy deposition (DED) is a crucial branch of additive manufacturing (AM),
performing repairs, cladding, and processing of multi-material components. 316L austenitic …

Nanostructuring of additively manufactured 316L stainless steel using high-pressure torsion technique: an X-ray line profile analysis study

J Gubicza, K Mukhtarova, M Kawasaki - Materials, 2024 - mdpi.com
Experiments were conducted to reveal the nanostructure evolution in additively
manufactured (AMed) 316L stainless steel due to severe plastic deformation (SPD). SPD …

Significant dislocation strengthening of stainless steel 316L via co-directed energy deposition of silica

HS Kim, SH Park - Materials Science and Engineering: A, 2024 - Elsevier
This study aims at fully utilizing dislocation strengthening for higher hardness of stainless
steel 316 L through two methods: 1) Multi-layer directed energy deposition (DED) is utilized …

[HTML][HTML] A Review of Non-Powder-Bed Metal Additive Manufacturing: Techniques and Challenges

J Xu, Y Fei, Y Zhu, W Yu, D Yao, JG Zhou - Materials, 2024 - mdpi.com
Metal additive manufacturing has significantly evolved since the 1990s, achieving a market
valuation of USD 6.36 billion in 2022, with an anticipated compound annual growth rate of …

[HTML][HTML] Explainable machine learning-based fatigue assessment of 316L stainless steel fabricated by laser-powder bed fusion

X Wang, M Braun - International Journal of Fatigue, 2024 - Elsevier
Additive manufacturing (AM) and in particular laser-powder bed fusion has become a
popular manufacturing techniques in recent years due to its significant advantages; …

A comparative analysis of compressive and wear failure of laser-powder bed fused Stainless Steel 316L produced with different hatch spacing in stripe and contour …

RP Riju, S Arulvel - Engineering Failure Analysis, 2024 - Elsevier
The selection of hatch spacing is crucial in additive manufacturing processes to produce a
defect free Stainless Steel 316L (SS) components, especially in laser powder bed fusion …

[HTML][HTML] Mechanical, tribological, and corrosion behavior of laser powder-bed fusion 316L stainless steel parts: Effect of build orientation

MAS Yousif, IA Al-Deheish, U Ali, SS Akhtar… - Journal of Materials …, 2024 - Elsevier
In this study, 316L stainless steel Laser Powder Bed Fusion (LPBF) samples were
manufactured under three different building orientations (0°, 45°, and 90°). Mechanical …

A study integrating in-process thermal signatures, microstructure, and corrosion behaviour of AISI 316L coatings on low carbon steel substrate deposited by laser …

A Sethi, I Mohanty, S Misra, R Chakraborty… - Surface and Coatings …, 2024 - Elsevier
Abstract Surface coating through Laser Directed Energy Deposition (L-DED) of AISI 316L on
low-carbon steel was carried out by varying laser fluence. The resulting melt pool …

[HTML][HTML] Investigating surface integrity, corrosion resistance and biocompatibility of 316L steel using carbon nanotube-assisted EDM process

IA Gul, AMA Rani, M Al-Amin, M Danish, S Rubaiee… - Results in …, 2024 - Elsevier
Abstract 316L steel employed in biomedical applications has experienced mechanical
failure triggered by insufficient biological reactions, a high corrosion rate, and surface …