Towards the next generation of machine learning models in additive manufacturing: A review of process dependent material evolution

M Parsazadeh, S Sharma, N Dahotre - Progress in Materials Science, 2023 - Elsevier
Additive manufacturing facilitates producing of complex parts due to its design freedom in a
wide range of applications. Despite considerable advancements in additive manufacturing …

Advances in powder bed fusion 3D printing in drug delivery and healthcare

A Awad, F Fina, A Goyanes, S Gaisford… - Advanced Drug Delivery …, 2021 - Elsevier
Powder bed fusion (PBF) is a 3D printing method that selectively consolidates powders into
3D objects using a power source. PBF has various derivatives; selective laser …

MeltpoolNet: Melt pool characteristic prediction in Metal Additive Manufacturing using machine learning

P Akbari, F Ogoke, NY Kao, K Meidani, CY Yeh… - Additive …, 2022 - Elsevier
Characterizing melt pool shape and geometry is essential in Metal Additive Manufacturing
(MAM) to control the printing process, and avoid defects. Predicting melt pool flaws based on …

A state-of-the-art review on fatigue performance of powder bed fusion-built alloy 718

E Sadeghi, P Karimi, R Esmaeilizadeh, F Berto… - Progress in Materials …, 2023 - Elsevier
Abstract Alloy 718 is a Ni-Fe-based superalloy, which has been successfully adapted to
powder bed fusion (PBF) additive manufacturing because of the alloy's adaptability with …

Additive manufacturing of high-strength crack-free Ni-based Hastelloy X superalloy

Q Han, Y Gu, R Setchi, F Lacan, R Johnston… - Additive …, 2019 - Elsevier
Laser powder bed fusion (LPBF) is a proven additive manufacturing (AM) technology for
producing metallic components with complex shapes using layer-by-layer manufacture …

Effect of direct aging on the microstructure and tensile properties of AlSi10Mg alloy manufactured by selective laser melting process

TH Park, MS Baek, H Hyer, Y Sohn, KA Lee - Materials Characterization, 2021 - Elsevier
The microstructure and mechanical properties of AlSi10Mg alloy manufactured via selective
laser melting process were investigated. The effect of post heat treatment on microstructure …

Elucidating the effect of preheating temperature on melt pool morphology variation in Inconel 718 laser powder bed fusion via simulation and experiment

Q Chen, Y Zhao, S Strayer, Y Zhao, K Aoyagi… - Additive …, 2021 - Elsevier
In laser powder bed fusion (L-PBF) additive manufacturing, the mechanical performance,
microstructure and defects of fabricated parts are closely associated with the melt pool …

Computational modelling of process–structure–property–performance relationships in metal additive manufacturing: a review

SM Hashemi, S Parvizi… - International …, 2022 - journals.sagepub.com
In the current review, an exceptional view on the multi-scale integrated computational
modelling and data-driven methods in the Additive manufacturing (AM) of metallic materials …

Controlling mechanical properties of additively manufactured hastelloy X by altering solidification pattern during laser powder-bed fusion

A Keshavarzkermani, R Esmaeilizadeh, U Ali… - Materials Science and …, 2019 - Elsevier
Like other manufacturing processes, controlling the microstructure of additively
manufactured parts is essential to reach the desirable mechanical properties. However …

Powder recycling effects on porosity development and mechanical properties of Hastelloy X alloy during laser powder bed fusion process

X He, D Kong, Y Zhou, L Wang, X Ni, L Zhang… - Additive …, 2022 - Elsevier
This study compares and analyzes the morphology, size, oxygen content, and microstructure
of virgin and recycled powders after six iterations to assess the mechanical properties of the …