[HTML][HTML] Big data, machine learning, and digital twin assisted additive manufacturing: A review

L **, X Zhai, K Wang, K Zhang, D Wu, A Nazir, J Jiang… - Materials & Design, 2024‏ - Elsevier
Additive manufacturing (AM) has undergone significant development over the past decades,
resulting in vast amounts of data that carry valuable information. Numerous research studies …

[HTML][HTML] Powder Bed Fusion of nickel-based superalloys: A review

S Sanchez, P Smith, Z Xu, G Gaspard, CJ Hyde… - International Journal of …, 2021‏ - Elsevier
Abstract Powder Bed Fusion (PBF) techniques constitute a family of Additive Manufacturing
(AM) processes, which are characterised by high design flexibility and no tooling …

Scanning strategy in selective laser melting (SLM): a review

H Jia, H Sun, H Wang, Y Wu, H Wang - The International Journal of …, 2021‏ - Springer
During the additive manufacturing (AM) process, energy is transferred from the energy beam
to the processed material. The high-energy input and uneven temperature distribution result …

Selective laser melting of magnesium alloys: necessity, formability, performance, optimization and applications

K Li, C Ji, S Bai, B Jiang, F Pan - Journal of Materials Science & …, 2023‏ - Elsevier
Selective laser melting (SLM), as a rapid prototy** technology, has been widely used to
manufacture high-performance metal components with complex structures, which vitally …

An overview of powder granulometry on feedstock and part performance in the selective laser melting process

JH Tan, WLE Wong, KW Dalgarno - Additive Manufacturing, 2017‏ - Elsevier
Abstract Metal Additive Manufacturing (AM) has begun its revolution in various high value
industry sectors through enabling design freedom and alleviating laborious machining …

Evaluation of topology-optimized lattice structures manufactured via selective laser melting

Z **ao, Y Yang, R **ao, Y Bai, C Song, D Wang - Materials & Design, 2018‏ - Elsevier
Selective laser melting (SLM) technology can manufacture complex lattice structures, which
effectively reduces the manufacturing constraint and significantly increases the design …

[HTML][HTML] Review of powder bed fusion additive manufacturing for metals

L Ladani, M Sadeghilaridjani - Metals, 2021‏ - mdpi.com
Additive manufacturing (AM) as a disruptive technology has received much attention in
recent years. In practice, however, much effort is focused on the AM of polymers. It is …

On the fatigue crack growth behavior in 316L stainless steel manufactured by selective laser melting

A Riemer, S Leuders, M Thöne, HA Richard… - Engineering Fracture …, 2014‏ - Elsevier
Direct manufacturing techniques such as selective laser melting (SLM) enable material
efficient production of individual and complex components in a short period of time. But often …

The effect of SLM process parameters on density, hardness, tensile strength and surface quality of Ti-6Al-4V

AM Khorasani, I Gibson, US Awan, A Ghaderi - Additive manufacturing, 2019‏ - Elsevier
In this paper, we printed Ti-6Al-4V SLM parts based on Taguchi design of experiment and
related standards to measure and compare hardness with different mechanical properties …

Laser powder bed fusion of nickel alloy 625: Experimental investigations of effects of process parameters on melt pool size and shape with spatter analysis

LE Criales, YM Arısoy, B Lane, S Moylan… - International Journal of …, 2017‏ - Elsevier
Laser powder bed fusion (L-PBF) as an metal additive manufacturing process that can
produce fully dense 3D structures with complex geometry using difficult-to-process metal …